TECHNICAL FIELD
[0001] The present disclosure belongs to the technical field of medical appliances, in particular
to a left-right foldable wheelchair.
BACKGROUND
[0002] A wheelchair is a medical appliance that assists a patient in treatment and rehabilitation.
For convenience of storage, a foldable wheelchair appears in the market. Most of the
foldable wheelchairs are in a front-rear folding mode. During folding or unfolding,
a specific operation space is required in a front-rear direction. In some cases, the
foldable wheelchair is not applicable, and some foldable wheelchairs are in a left-right
folding mode. However, this type of solution generally has problems of large space
occupied after folding and weak rigidity during unfolding, and has specific potential
safety hazards when in use.
SUMMARY
[0003] An objective of the present disclosure is to overcome one or more disadvantages in
the prior art, and provide a left-right foldable wheelchair that is novel in structure
and small in occupied space after folding.
[0004] To achieve the foregoing objective, a technical solution adopted in the present disclosure
is as follows: a left-right foldable wheelchair, including two side frames disposed
on a left side and a right side, and a seat assembly disposed between the two side
frames, each of the side frames including a bottom support rod extending along a horizontal
direction, a seat support rod disposed above the bottom support rod in parallel, a
rear upright rod connected to rear end portions of the bottom support rod and the
seat support rod and extending along a vertical direction, and a front connecting
rod connected to front end portions of the bottom support rod and the seat support
rod, where
the seat assembly includes a first rod, a second rod, a third rod, and a fourth rod
that extend along a left-right direction, a left end portion of the first rod is rotatably
connected to a front end portion of the seat support rod of the side frame on the
left side, a right end portion of the second rod is rotatably connected to a front
end portion of the seat support rod of the side frame on the right side, a left end
portion of the third rod is rotatably connected to a rear end portion of the seat
support rod of the side frame on the left side, and a right end portion of the fourth
rod is rotatably connected to a rear end portion of the seat support rod of the side
frame on the right side; a right end portion of the first rod is rotatably connected
to a left end portion of the second rod, and a right end portion of the third rod
is rotatably connected to a left end portion of the fourth rod, so that the first
rod, the second rod, the third rod, the fourth rod, and the seat support rods on both
sides form a first six-rod connection mechanism;
the seat assembly further includes a first connecting rod and a second connecting
rod which are arranged in an X-shaped cross configuration, a front end portion of
the first connecting rod is rotatably connected to a middle portion of the first rod,
a rear end portion of the first connecting rod is rotatably connected to a middle
portion of the fourth rod, a front end portion of the second connecting rod is rotatably
connected to a middle portion of the second rod, a rear end portion of the second
connecting rod is rotatably connected to a middle portion of the third rod, and when
the side frames on both sides move closer to each other along the left-right direction,
the first six-rod connection mechanism is able to be driven to actuate by using the
first connecting rod and the second connecting rod, thereby achieving left-right folding
of the foldable wheelchair.
[0005] Preferably, the first rod and the second rod are located on a same vertical plane,
and the third rod and the fourth rod are on a same vertical plane.
[0006] Preferably, the first rod and the second rod are staggered in an up-down direction,
the third rod and the fourth rod are staggered in the up-down direction, the first
rod and the fourth rod are located on a same horizontal plane, and the second rod
and the third rod are located on a same horizontal plane.
[0007] Further preferably, the second connecting rod, the first rod, and the fourth rod
are located on the same horizontal plane.
[0008] Preferably, the foldable wheelchair further includes a locking mechanism configured
to lock the foldable wheelchair in an unfolded state, the locking mechanism includes
a locking hole and a locking pin, the locking hole is disposed at the left end portion
of the fourth rod, the locking pin is pluggably disposed at the right end portion
of the third rod and corresponds to the locking hole, when the locking pin is inserted
into the locking hole, the locking mechanism is locked, and when the locking pin is
detached from the locking hole, the locking mechanism is unlocked.
[0009] Further preferably, the locking pin is located above the fourth rod.
[0010] Further preferably, a connecting plate extending horizontally towards the right is
disposed at the right end portion of the third rod, the locking pin is pluggably disposed
through the connecting plate, and an upper end face of the locking pin is flush with
a highest point of the third rod.
[0011] Preferably, the seat assembly further includes a fifth rod, a sixth rod, a seventh
rod, and an eighth rod that extend along the left-right direction, a left end portion
of the fifth rod is rotatably connected to a front end portion of the bottom support
rod of the side frame on the left side, a right end portion of the sixth rod is rotatably
connected to a front end portion of the bottom support rod of the side frame on the
right side, a left end portion of the seventh rod is rotatably connected to a rear
end portion of the bottom support rod of the side frame on the left side, and a right
end portion of the eighth rod is rotatably connected to a rear end portion of the
bottom support rod of the side frame on the right side; and a right end portion of
the fifth rod is rotatably connected to a left end portion of the sixth rod, and a
right end portion of the eighth rod is rotatably connected to a left end portion of
the seventh rod, so that the fifth rod, the sixth rod, the seventh rod, the eighth
rod, and the bottom support rods on both sides form a second six-rod connection mechanism.
[0012] Further preferably, the fifth rod is located directly below the first rod, the sixth
rod is located directly below the second rod, the seventh rod is located directly
below the third rod, and the eighth rod is located directly below the fourth rod.
[0013] Further preferably, the fifth rod and the sixth rod are staggered in an up-down direction,
the seventh rod and the eighth rod are staggered in the up-down direction, the fifth
rod and the eighth rod are located on a same horizontal plane, and the sixth rod and
the seventh rod are located on a same horizontal plane.
[0014] Further preferably, the seat assembly further includes a first vertical rod, a second
vertical rod, a third vertical rod, and a fourth vertical rod, two end parts of the
first vertical rod are respectively connected to the first rod and the fifth rod,
two end parts of the second vertical rod are respectively connected to the second
rod and the sixth rod, two end parts of the third vertical rod are respectively connected
to the third rod and the seventh rod, and two end parts of the fourth vertical rod
are respectively connected to the fourth rod and the eighth rod, so that the first
rod mechanism and the second rod mechanism are connected to each other to form a stable
support frame.
[0015] Further preferably, the first vertical rod and the third vertical rod are disposed
near the side frame on the left side, and the second vertical rod and the fourth vertical
rod are disposed near the side frame on the right side.
[0016] Preferably, an upper end portion of the rear upright rod extends rearward and upwardly
to form a handle portion.
[0017] Preferably, the side frame further includes a grab rail, a front end portion of the
grab rail extends forward and downward and is connected to the front end portion of
the seat support rod, and a rear end portion of the grab rail extends rearward and
is connected to a middle portion of the rear upright rod.
[0018] To achieve the foregoing objective, a technical solution adopted in the present disclosure
is as follows: a left-right foldable wheelchair, including two side frames disposed
on a left side and a right side, wheel assemblies connected to bottoms of the side
frames, a seat assembly disposed between the two side frames, and a locking mechanism
configured to lock the foldable wheelchair in an unfolded state, each of the side
frames including a bottom support rod extending along a horizontal direction, a seat
support rod disposed above the bottom support rod in parallel, a rear upright rod
connected to rear end portions of the bottom support rod and the seat support rod
and extending along a vertical direction, and a front connecting rod connected to
front end portions of the bottom support rod and the seat support rod, an upper end
portion of the rear upright rod extending rearward and upwardly to form a handle portion,
the side frame further including a grab rail, a front end portion of the garb rail
extending forward and downward and being connected to a front end portion of the seat
support rod, a rear end portion of the grab rail extending rearward and being connected
to a middle portion of the rear upright rod, and the wheel assemblies including a
front wheel assembly connected to a bottom of the front connecting rod and a rear
wheel assembly connected to a bottom of the rear upright rod, where
the seat assembly includes a first rod, a second rod, a third rod, and a fourth rod
that extend along a left-right direction, the first rod and the second rod are located
on a same vertical plane, the third rod and the fourth rod are located on a same vertical
plane, a left end portion of the first rod is rotatably connected to a front end portion
of the seat support rod of the side frame on the left side, a right end portion of
the first rod is rotatably connected to a left end portion of the second rod, a right
end portion of the second rod is rotatably connected to a front end portion of the
seat support rod of the side frame on the right side, a left end portion of the third
rod is rotatably connected to a rear end portion of the seat support rod of the side
frame on the left side, a right end portion of the third rod is rotatably connected
to a left end portion of the fourth rod, and a right end portion of the fourth rod
is rotatably connected to a rear end portion of the seat support rod of the side frame
on the right side, so that the first rod, the second rod, the third rod, the fourth
rod, and the seat support rods on both sides form a first six-rod connection mechanism,
the first rod and the second rod are staggered in an up-down direction, the third
rod and the fourth rod are staggered in the up-down direction, the first rod and the
fourth rod are located on a same horizontal plane, and the second rod and the third
rod are located on a same horizontal plane;
the seat assembly further includes a fifth rod, a sixth rod, a seventh rod, and an
eighth rod that extend along a left-right direction, the fifth rod is located directly
below the first rod, the sixth rod is located directly below the second rod, a left
end portion of the fifth rod is rotatably connected to a front end portion of the
bottom support rod of the side frame on the left side, a right end portion of the
fifth rod is rotatably connected to a left end portion of the sixth rod, and a right
end portion of the sixth rod is rotatably connected to a front end portion of the
bottom support rod of the side frame on the right side; the seventh rod is located
directly below the third rod, the eighth rod is located directly below the fourth
rod, a left end portion of the seventh rod is rotatably connected to a rear end portion
of the bottom support rod of the side frame on the left side, a right end portion
of the eighth rod is rotatably connected to a left end portion of the seventh rod,
and a right end portion of the eighth rod is rotatably connected to a rear end portion
of the bottom support rod of the side frame on the right side, so that the fifth rod,
the sixth rod, the seventh rod, the eighth rod, and the bottom support rods on both
sides form a second six-rod connection mechanism; the fifth rod and the sixth rod
are staggered in an up-down direction, the seventh rod and the eighth rod are staggered
in the up-down direction, the fifth rod and the eighth rod are located on a same horizontal
plane, and the sixth rod and the seventh rod are located on a same horizontal plane;
the seat assembly further includes a first vertical rod, a second vertical rod, a
third vertical rod, and a fourth vertical rod, two end portions of the first vertical
rod are respectively connected to the first rod and the fifth rod, two end portions
of the second vertical rod are respectively connected to the second rod and the sixth
rod, two end portions of the third vertical rod are respectively connected to the
third rod and the seventh rod, and two end portions of the fourth vertical rod are
respectively connected to the fourth rod and the eighth rod, so that the first six-rod
connection mechanism and the second six-rod connection mechanism are mutually connected
to form a stable support frame; the first vertical rod and the third vertical rod
are disposed near the side frame on the left side, and the second vertical rod and
the fourth vertical rod are disposed near the side frame on the right side;
the seat assembly further includes a first connecting rod and a second connecting
rod which are arranged in an X-shaped cross configuration, a front end portion of
the first connecting rod is rotatably connected to a middle portion of the first rod,
a rear end portion of the first connecting rod is rotatably connected to a middle
portion of the fourth rod, a front end portion of the second connecting rod is rotatably
connected to a middle portion of the second rod, and a rear end portion of the second
connecting rod is rotatably connected to a middle portion of the third rod; the second
connecting rod, the first rod, and the fourth rod are located on the same horizontal
plane; and
the locking mechanism includes a locking pin pluggably disposed at the right end portion
of the third rod, the locking pin is located above the fourth rod and corresponds
to a locking hole disposed at the left end portion of the fourth rod, when the locking
pin is inserted into the locking hole, the locking mechanism is locked, when the locking
pin is detached from the locking hole, the locking mechanism is unlocked, a connecting
plate extending horizontally towards the right is disposed at the right end portion
of the third rod, the locking pin is pluggably disposed through the connecting plate,
and an upper end face of the locking pin is flush with a highest point of the third
rod.
[0019] Because the foregoing technical solutions are used, compared with the prior art,
the foldable wheelchair has the following advantages:
The seat assembly includes a first rod, a second rod, a third rod, and a fourth rod
that extend along a left-right direction, the first rod and the second rod are located
on a same vertical plane, the third rod and the fourth rod are located on a same vertical
plane, a left end portion of the first rod is rotatably connected to a front end portion
of the seat support rod of the side frame on the left side, a right end portion of
the first rod is rotatably connected to a left end portion of the second rod, a right
end portion of the second rod is rotatably connected to a front end portion of the
seat support rod of the side frame on the right side, a left end portion of the third
rod is rotatably connected to a rear end portion of the seat support rod of the side
frame on the left side, a right end portion of the third rod is rotatably connected
to a left end portion of the fourth rod, and a right end portion of the fourth rod
is rotatably connected to a rear end portion of the seat support rod of the side frame
on the right side, so that the first rod, the second rod, the third rod, the fourth
rod, and the seat support rods on both sides can form a first six-rod connection mechanism.
The seat assembly further includes a first connecting rod and a second connecting
rod which are arranged in an X-shaped cross configuration, a front end portion of
the first connecting rod is rotatably connected to a middle portion of the first rod,
a rear end portion of the first connecting rod is rotatably connected to a middle
portion of the fourth rod, a front end portion of the second connecting rod is rotatably
connected to a middle portion of the second rod, and a rear end portion of the second
connecting rod is rotatably connected to a middle portion of the third rod. When the
locking mechanism is unlocked, the side frames on both sides can move closer to each
other along the left-right direction, so that the first connecting rod and the second
connecting rod drive the first six-rod connection mechanism to actuate, thereby achieving
left-right folding of the foldable wheelchair. The structure is novel. Because each
rod piece of the seat assembly is relatively short, the foldable wheelchair is smaller
in occupied space after folding.
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
FIG. 1 is a solid schematic diagram according to a preferred embodiment of the present
disclosure, and in this case, the foldable wheelchair is in an unfolding state;
FIG. 2 is top view of FIG. 1;
FIG. 3 is a schematic diagram of an intermediate state during transition of a foldable
wheelchair to a foldable state in FIG. 2; and
FIG. 4 is a schematic diagram after transition of a foldable wheelchair to a foldable
state in FIG. 2.
[0021] Reference numerals: 10: side frame; 11: bottom support rod; 12: seat support rod;
13: rear upright rod; 131: handle portion; 14: front connecting rod; 15: grab rail;
21: front wheel assembly; 22: rear wheel assembly; 30: seat assembly; 31: first rod;
32: second rod; 33: third rod; 331: connecting plate; 34: fourth rod; 35: first connecting
rod; 36: second connecting rod; 37: fifth rod; 38: sixth rod; 39: seventh rod; 40:
eighth rod; 41: first vertical rod; 42: second vertical rod; 43: third vertical rod;
44: fourth vertical rod; and 51: locking pin.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] Preferred embodiments of the present disclosure are described in detail below with
reference to accompanying drawings, so that advantages and features of the present
disclosure can be more readily understood by those skilled in the art.
[0023] Front-rear, up-down, and left-right directions described in the present disclosure
are front-rear, up-down, and left-right directions observed during riding by a user.
[0024] As shown in FIG. 1 to FIG. 4, a left-right foldable wheelchair provided in the present
disclosure includes two side frames 10 disposed on a left side and a right side, wheel
assemblies connected to bottoms of the side frames 10, a seat assembly 30 disposed
between the two side frames 10, and a locking mechanism configured to lock the foldable
wheelchair in an unfolded state. Each of the side frames 10 includes a bottom support
rod 11 extending along a horizontal direction, a seat support rod 12 disposed above
the bottom support rod 11 in parallel, a rear upright rod 13 connected to rear end
portions of the bottom support rod 11 and the seat support rod 12 and extending along
a vertical direction, and a front connecting rod 14 connected to front end portions
of the bottom support rod 11 and the seat support rod 12. The wheel assemblies include
a front wheel assembly 21 connected to a bottom of the front connecting rod 14 and
a rear wheel assembly 22 connected to a bottom of the rear upright rod 13. The seat
assembly 30 includes a first rod 31, a second rod 32, a third rod 33, and a fourth
rod 34 that extend along a left-right direction. The first rod 31 and the second rod
32 are located on a same vertical plane and have equal lengths. The third rod 33 and
the fourth rod 34 are located on a same vertical plane and have equal lengths. A left
end portion of the first rod 31 is rotatably connected to a front end portion of the
seat support rod 12 of the side frame 10 on the left side, a right end portion of
the first rod 31 is rotatably connected to a left end portion of the second rod 32,
a right end portion of the second rod 32 is rotatably connected to a front end portion
of the seat support rod 12 of the side frame 10 on the right side, a left end portion
of the third rod 33 is rotatably connected to a rear end portion of the seat support
rod 12 of the side frame 10 on the left side, a right end portion of the third rod
33 is rotatably connected to a left end portion of the fourth rod 34, and a right
end portion of the fourth rod 34 is rotatably connected to a rear end portion of the
seat support rod 12 of the side frame 10 on the right side, so that the first rod
31, the second rod 32, the third rod 33, the fourth rod 34, and the seat support rods
12 on both sides form a first six-rod connection mechanism. The seat assembly 30 further
includes a first connecting rod 35 and a second connecting rod 36 which are arranged
in an X-shaped cross configuration (a projection in the up-down direction is X-shaped).
A front end portion of the first connecting rod 35 is rotatably connected to a middle
portion of the first rod 31. A rear end portion of the first connecting rod 35 is
rotatably connected to a middle portion of the fourth rod 34. A front end portion
of the second connecting rod 36 is rotatably connected to a middle portion of the
second rod 32. A rear end portion of the second connecting rod 36 is rotatably connected
to a middle portion of the third rod 33.
[0025] An advantage of such arrangement is that when the locking mechanism is unlocked,
the side frames on both sides can move closer to each other along the left-right direction,
so that the first connecting rod and the second connecting rod drive the first six-rod
connection mechanism to actuate, thereby achieving left-right folding of the foldable
wheelchair. The structure is novel. Because each rod piece (the first rod, the second
rod, the third rod, or the fourth rod) of the seat assembly is relatively short, the
foldable wheelchair is smaller in occupied space after folding. In addition, the first
rod and the second rod can further play a role in assist to support a seat below the
seat.
[0026] To improve rigidity during unfolding of the foldable wheelchair and improve a support
force of the seat assembly, the first rod 31 and the second rod 32 are staggered in
an up-down direction, the third rod 33 and the fourth rod 34 are staggered in the
up-down direction, the first rod 31 and the fourth rod 34 are located on a same horizontal
plane, and the second rod 32 and the third rod 33 are located on a same horizontal
plane. Further, the second connecting rod 36, the first rod 31, and the fourth rod
34 are located on the same horizontal plane, so as to enhance compactness and save
space.
[0027] To further improve rigidity during unfolding of the foldable wheelchair, in this
embodiment, the seat assembly 30 further includes a fifth rod 37, a sixth rod 38,
a seventh rod 39, and an eighth rod 40 that extend along a left-right direction, the
fifth rod 37 is located directly below the first rod 31 and has a length equal to
that of the first rod 31, the sixth rod 38 is located directly below the second rod
32 and has a length equal to that of the second rod 32, a left end portion of the
fifth rod 37 is rotatably connected to a front end portion of the bottom support rod
11 of the side frame 10 on the left side, a right end portion of the fifth rod 37
is rotatably connected to a left end portion of the sixth rod 38, and a right end
portion of the sixth rod 38 is rotatably connected to a front end portion of the bottom
support rod 11 of the side frame 10 on the right side. The seventh rod 39 is located
directly below the third rod 33 and has a length equal to that of the third rod 33,
the eighth rod 40 is located directly below the fourth rod 34 and has a length equal
to that of the fourth rod 34, a left end portion of the seventh rod 39 is rotatably
connected to a rear end portion of the bottom support rod 11 of the side frame 10
on the left side, a right end portion of the eighth rod 40 is rotatably connected
to a left end portion of the seventh rod 39, and a right end portion of the eighth
rod 40 is rotatably connected to a rear end portion of the bottom support rod 11 of
the side frame 10 on the right side, so that the fifth rod 37, the sixth rod 38, the
seventh rod 39, the eighth rod 40, and the bottom support rods 11 on both sides form
a second six-rod connection mechanism. Specifically, the fifth rod 37 and the sixth
rod 38 are staggered in an up-down direction, the seventh rod 39 and the eighth rod
40 are staggered in the up-down direction, the fifth rod 37 and the eighth rod 40
are located on a same horizontal plane, and the sixth rod 38 and the seventh rod 39
are located on a same horizontal plane.
[0028] Further, the seat assembly 30 further includes a first vertical rod 41, a second
vertical rod 42, a third vertical rod 43, and a fourth vertical rod 44, two end portions
of the first vertical rod 41 are respectively connected to the first rod 31 and the
fifth rod 37, two end portions of the second vertical rod 42 are respectively connected
to the second rod 32 and the sixth rod 38, two end portions of the third vertical
rod 43 are respectively connected to the third rod 33 and the seventh rod 39, and
two end portions of the fourth vertical rod 44 are respectively connected to the fourth
rod 34 and the eighth rod 40, so that the first six-rod connection mechanism and the
second six-rod connection mechanism are mutually connected to form a stable support
frame. In addition, the first vertical rod 41 and the third vertical rod 43 are disposed
near the side frame 10 on the left side, and the second vertical rod 42 and the fourth
vertical rod 44 are disposed near the side frame 10 on the right side.
[0029] In this embodiment, the locking mechanism includes a locking pin 51 pluggably disposed
at the right end portion of the third rod 33, the locking pin 51 is located above
the fourth rod 34 and corresponds to a locking hole (unshown in figures) disposed
at the left end portion of the fourth rod 34, when the locking pin 51 is inserted
into the locking hole, the locking mechanism is locked, and when the locking pin 51
is detached from the locking hole, the locking mechanism is unlocked.
[0030] Further, a connecting plate 331 extending horizontally towards the right is disposed
at the right end portion of the third rod 33, the locking pin 51 is pluggably disposed
through the connecting plate 331, and an upper end face of the locking pin 51 is flush
with a highest point of the third rod 33.
[0031] To improve comfort when in use, in this embodiment, an upper end portion of the rear
upright rod 13 extends rearward and upwardly to form a handle portion 131. The side
frame 10 further includes a grab rail 15, a front end portion of the grab rail 15
extends forward and downward and is connected to the front end portion of the seat
support rod 12, and a rear end portion of the grab rail 15 extends rearward and is
connected to a middle portion of the rear upright rod 13.
[0032] The foregoing embodiments are only for illustrating the technical concept and features
of the present disclosure. An objective is to enable those skilled in the art to understand
the content of the present disclosure and implement the present disclosure accordingly,
and shall not be used to limit the protection scope of the present disclosure. Any
equivalent changes or modifications made in accordance with the spirit and essence
of the present disclosure shall fall within the protection scope of the present disclosure.
1. A left-right foldable wheelchair, comprising two side frames disposed on a left side
and a right side, and a seat assembly disposed between the two side frames, each of
the side frames comprising a bottom support rod extending along a horizontal direction,
a seat support rod disposed above the bottom support rod in parallel, a rear upright
rod connected to rear end portions of the bottom support rod and the seat support
rod and extending along a vertical direction, and a front connecting rod connected
to front end portions of the bottom support rod and the seat support rod,
wherein
the seat assembly comprises a first rod, a second rod, a third rod, and a fourth rod
that extend along a left-right direction, a left end portion of the first rod is rotatably
connected to a front end portion of the seat support rod of the side frame on the
left side, a right end portion of the second rod is rotatably connected to a front
end portion of the seat support rod of the side frame on the right side, a left end
portion of the third rod is rotatably connected to a rear end portion of the seat
support rod of the side frame on the left side, and a right end portion of the fourth
rod is rotatably connected to a rear end portion of the seat support rod of the side
frame on the right side; a right end portion of the first rod is rotatably connected
to a left end portion of the second rod, and a right end portion of the third rod
is rotatably connected to a left end portion of the fourth rod, so that the first
rod, the second rod, the third rod, the fourth rod, and the seat support rods on both
sides form a first six-rod connection mechanism; and
the seat assembly further comprises a first connecting rod and a second connecting
rod which are arranged in an X-shaped cross configuration, a front end portion of
the first connecting rod is rotatably connected to a middle portion of the first rod,
a rear end portion of the first connecting rod is rotatably connected to a middle
portion of the fourth rod, a front end portion of the second connecting rod is rotatably
connected to a middle portion of the second rod, a rear end portion of the second
connecting rod is rotatably connected to a middle portion of the third rod, and when
the side frames on both sides move closer to each other along the left-right direction,
the first six-rod connection mechanism is able to be driven to actuate by using the
first connecting rod and the second connecting rod, thereby achieving left-right folding
of the foldable wheelchair.
2. The left-right foldable wheelchair according to claim 1, wherein the first rod and
the second rod are located on a same vertical plane, and the third rod and the fourth
rod are on a same vertical plane.
3. The left-right foldable wheelchair according to claim 1, wherein the first rod and
the second rod are staggered in an up-down direction, the third rod and the fourth
rod are staggered in the up-down direction, the first rod and the fourth rod are located
on a same horizontal plane, and the second rod and the third rod are located on a
same horizontal plane.
4. The left-right foldable wheelchair according to claim 2, wherein the second connecting
rod, the first rod, and the fourth rod are located on the same horizontal plane.
5. The left-right foldable wheelchair according to claim 1, wherein the foldable wheelchair
further comprises a locking mechanism configured to lock the foldable wheelchair in
an unfolded state, the locking mechanism comprises a locking hole and a locking pin,
the locking hole is disposed at the left end portion of the fourth rod, the locking
pin is pluggably disposed at the right end portion of the third rod and corresponds
to the locking hole, when the locking pin is inserted into the locking hole, the locking
mechanism is locked, and when the locking pin is detached from the locking hole, the
locking mechanism is unlocked.
6. The left-right foldable wheelchair according to claim 5, wherein the locking pin is
located above the fourth rod.
7. The left-right foldable wheelchair according to claim 5, wherein a connecting plate
extending horizontally towards the right is disposed at the right end portion of the
third rod, the locking pin is pluggably disposed through the connecting plate, and
an upper end face of the locking pin is flush with a highest point of the third rod.
8. The left-right foldable wheelchair according to claim 1, wherein the seat assembly
further comprises a fifth rod, a sixth rod, a seventh rod, and an eighth rod that
extend along the left-right direction, a left end portion of the fifth rod is rotatably
connected to a front end portion of the bottom support rod of the side frame on the
left side, a right end portion of the sixth rod is rotatably connected to a front
end portion of the bottom support rod of the side frame on the right side, a left
end portion of the seventh rod is rotatably connected to a rear end portion of the
bottom support rod of the side frame on the left side, and a right end portion of
the eighth rod is rotatably connected to a rear end portion of the bottom support
rod of the side frame on the right side; and a right end portion of the fifth rod
is rotatably connected to a left end portion of the sixth rod, and a right end portion
of the eighth rod is rotatably connected to a left end portion of the seventh rod,
so that the fifth rod, the sixth rod, the seventh rod, the eighth rod, and the bottom
support rods on both sides form a second six-rod connection mechanism.
9. The left-right foldable wheelchair according to claim 8, wherein the fifth rod is
located directly below the first rod, the sixth rod is located directly below the
second rod, the seventh rod is located directly below the third rod, and the eighth
rod is located directly below the fourth rod.
10. The left-right foldable wheelchair according to claim 8, wherein the fifth rod and
the sixth rod are staggered in an up-down direction, the seventh rod and the eighth
rod are staggered in the up-down direction, the fifth rod and the eighth rod are located
on a same horizontal plane, and the sixth rod and the seventh rod are located on a
same horizontal plane.
11. The left-right foldable wheelchair according to claim 8, wherein the seat assembly
further comprises a first vertical rod, a second vertical rod, a third vertical rod,
and a fourth vertical rod, two end portions of the first vertical rod are respectively
connected to the first rod and the fifth rod, two end portions of the second vertical
rod are respectively connected to the second rod and the sixth rod, two end portions
of the third vertical rod are respectively connected to the third rod and the seventh
rod, and two end portions of the fourth vertical rod are respectively connected to
the fourth rod and the eighth rod, so that the first six-rod connection mechanism
and the second six-rod connection mechanism are mutually connected to form a stable
support frame.
12. The left-right foldable wheelchair according to claim 11, wherein the first vertical
rod and the third vertical rod are disposed near the side frame on the left side,
and the second vertical rod and the fourth vertical rod are disposed near the side
frame on the right side.
13. The left-right foldable wheelchair according to claim 1, wherein an upper end portion
of the rear upright rod extends rearward and upwardly to form a handle portion.
14. The left-right foldable wheelchair according to claim 1, wherein the side frame further
comprises a grab rail, a front end portion of the grab rail extends forward and downward
and is connected to the front end portion of the seat support rod, and a rear end
portion of the grab rail extends rearward and is connected to a middle portion of
the rear upright rod.
15. A left-right foldable wheelchair, comprising two side frames disposed on a left side
and a right side, wheel assemblies connected to bottoms of the side frames, a seat
assembly disposed between the two side frames, and a locking mechanism configured
to lock the foldable wheelchair in an unfolded state, each of the side frames comprising
a bottom support rod extending along a horizontal direction, a seat support rod disposed
above the bottom support rod in parallel, a rear upright rod connected to rear end
portions of the bottom support rod and the seat support rod and extending along a
vertical direction, and a front connecting rod connected to front end portions of
the bottom support rod and the seat support rod, an upper end portion of the rear
upright rod extending rearward and upwardly to form a handle portion, the side frame
further comprising a grab rail, a front end portion of the garb rail extending forward
and downward and being connected to a front end portion of the seat support rod, a
rear end portion of the grab rail extending rearward and being connected to a middle
portion of the rear upright rod, and the wheel assemblies comprising a front wheel
assembly connected to a bottom of the front connecting rod and a rear wheel assembly
connected to a bottom of the rear upright rod,
wherein
the seat assembly comprises a first rod, a second rod, a third rod, and a fourth rod
that extend along a left-right direction, the first rod and the second rod are located
on a same vertical plane, the third rod and the fourth rod are located on a same vertical
plane, a left end portion of the first rod is rotatably connected to a front end portion
of the seat support rod of the side frame on the left side, a right end portion of
the first rod is rotatably connected to a left end portion of the second rod, a right
end portion of the second rod is rotatably connected to a front end portion of the
seat support rod of the side frame on the right side, a left end portion of the third
rod is rotatably connected to a rear end portion of the seat support rod of the side
frame on the left side, a right end portion of the third rod is rotatably connected
to a left end portion of the fourth rod, and a right end portion of the fourth rod
is rotatably connected to a rear end portion of the seat support rod of the side frame
on the right side, so that the first rod, the second rod, the third rod, the fourth
rod, and the seat support rods on both sides form a first six-rod connection mechanism,
the first rod and the second rod are staggered in an up-down direction, the third
rod and the fourth rod are staggered in the up-down direction, the first rod and the
fourth rod are located on a same horizontal plane, and the second rod and the third
rod are located on a same horizontal plane;
the seat assembly further comprises a fifth rod, a sixth rod, a seventh rod, and an
eighth rod that extend along a left-right direction, the fifth rod is located directly
below the first rod, the sixth rod is located directly below the second rod, a left
end portion of the fifth rod is rotatably connected to a front end portion of the
bottom support rod of the side frame on the left side, a right end portion of the
fifth rod is rotatably connected to a left end portion of the sixth rod, and a right
end portion of the sixth rod is rotatably connected to a front end portion of the
bottom support rod of the side frame on the right side; the seventh rod is located
directly below the third rod, the eighth rod is located directly below the fourth
rod, a left end portion of the seventh rod is rotatably connected to a rear end portion
of the bottom support rod of the side frame on the left side, a right end portion
of the eighth rod is rotatably connected to a left end portion of the seventh rod,
and a right end portion of the eighth rod is rotatably connected to a rear end portion
of the bottom support rod of the side frame on the right side, so that the fifth rod,
the sixth rod, the seventh rod, the eighth rod, and the bottom support rods on both
sides form a second six-rod connection mechanism; the fifth rod and the sixth rod
are staggered in an up-down direction, the seventh rod and the eighth rod are staggered
in the up-down direction, the fifth rod and the eighth rod are located on a same horizontal
plane, and the sixth rod and the seventh rod are located on a same horizontal plane;
the seat assembly further comprises a first vertical rod, a second vertical rod, a
third vertical rod, and a fourth vertical rod, two end portions of the first vertical
rod are respectively connected to the first rod and the fifth rod, two end portions
of the second vertical rod are respectively connected to the second rod and the sixth
rod, two end portions of the third vertical rod are respectively connected to the
third rod and the seventh rod, and two end portions of the fourth vertical rod are
respectively connected to the fourth rod and the eighth rod, so that the first six-rod
connection mechanism and the second six-rod connection mechanism are mutually connected
to form a stable support frame; the first vertical rod and the third vertical rod
are disposed near the side frame on the left side, and the second vertical rod and
the fourth vertical rod are disposed near the side frame on the right side;
the seat assembly further comprises a first connecting rod and a second connecting
rod which are arranged in an X-shaped cross configuration, a front end portion of
the first connecting rod is rotatably connected to a middle portion of the first rod,
a rear end portion of the first connecting rod is rotatably connected to a middle
portion of the fourth rod, a front end portion of the second connecting rod is rotatably
connected to a middle portion of the second rod, and a rear end portion of the second
connecting rod is rotatably connected to a middle portion of the third rod; the second
connecting rod, the first rod, and the fourth rod are located on the same horizontal
plane; and
the locking mechanism comprises a locking pin pluggably disposed at the right end
portion of the third rod, the locking pin is located above the fourth rod and corresponds
to a locking hole disposed at the left end portion of the fourth rod, when the locking
pin is inserted into the locking hole, the locking mechanism is locked, when the locking
pin is detached from the locking hole, the locking mechanism is unlocked, a connecting
plate extending horizontally towards the right is disposed at the right end portion
of the third rod, the locking pin is pluggably disposed through the connecting plate,
and an upper end face of the locking pin is flush with a highest point of the third
rod.