Technical Field
[0001] The present application relates to the technical field of electric vacuum pumps,
and in particular to a connecting rod structure for an electric vacuum pump, and an
electric vacuum pump.
Background Art
[0002] An electric vacuum pump of a vehicle generates vacuum by a motor and a motor shaft
driving a piston to move, which can improve the braking performance of the whole vehicle.
In a current electric vacuum pump, a motor shaft and a piston are connected via a
connecting rod structure, the connection of the connecting rod structure with the
piston suffers from disadvantages such as low strength, poor wear resistance and short
lifetime, and an urgent problem to be addressed in the art is to develop a connecting
rod structure that is easy to manufacture and assemble and can withstand a large axial
forces.
[0003] It should be noted that information disclosed in the above background art section
is only used to enhance the understanding of the background of the present application,
and therefore may include information that does not constitute the prior art known
to those skilled in the art.
Summary
[0004] For the problems in the prior art, an objective of the present application is to
provide a connecting rod structure for an electric vacuum pump and an electric vacuum
pump. The connecting rod structure for an electric vacuum pump according to the present
application prevents, by means of the fitting between the pin and the bushing, jamming
or wear due to impurities entering a clearance therebetween, and has advantages such
as ease of manufacturing and assembly, and prolonged lifetime.
[0005] A first aspect of the present application provides a connecting rod structure for
an electric vacuum pump, including:
a connecting rod, a proximal end of the connecting rod being configured for a motor
shaft to pass through, and a distal end of the connecting rod being configured for
connection with a piston;
a pin including a shank, a neck and a cap which are connected in sequence, the shank
being connected to the distal end of the connecting rod;
and a bushing sleeved around the neck.
[0006] According to the first aspect of the present application, the bushing further includes
an extension that extends to one side of the cap.
[0007] According to the first aspect of the present application, the connecting rod structure
further includes a sealing unit, the sealing unit being provided at an end of the
neck close to the shank.
[0008] According to the first aspect of the present application, the sealing unit is a dust-proof
sleeve;
the dust-proof sleeve includes a bottom face provided with a through hole and a side
wall connected to the bottom face; and
the shank passes through the through hole, and the dust-proof sleeve is sleeved around
the end of the neck close to the shank.
[0009] According to the first aspect of the present application, an outer peripheral wall
of the bushing at the dust-proof sleeve is a recessed wall recessed toward a centre
of the pin, the side wall of the dust-proof sleeve fitting with the recessed wall.
[0010] According to the first aspect of the present application, the sealing unit is a sealing
groove provided in the distal end of the connecting rod, and one end of the bushing
is in insertion fit with the sealing groove.
[0011] According to the first aspect of the present application, the shank is connected
to the distal end of the connecting rod by means of interference fit; or
the bushing is in clearance fit with the neck.
[0012] According to the first aspect of the present application, the bushing is a sintered
copper bushing.
[0013] According to the first aspect of the present application, the bushing is a sintered
copper bushing containing graphite.
[0014] A second aspect of the present application provides an electric vacuum pump, including
at least one connecting rod structure for an electric vacuum pump as described.
[0015] According to the second aspect of the present invention, the electric vacuum pump
further includes at least one piston; and
each of the bushings is connected to a piston rod of one of the pistons by means of
interference fit.
[0016] The connecting rod structure for an electric vacuum pump according to the present
application prevents, by means of the fitting between the pin and the bushing, jamming
or wear due to impurities entering a clearance therebetween, and has advantages such
as ease of manufacturing and assembly, capability of withstanding large axial forces,
and rare chances for the pin to be detached during the swinging of the connecting
rod. Further, the bushing may be a sintered copper bushing, prolonging the lifetime
of the connecting rod structure.
Brief Description of the Drawings
[0017] Other features, objectives, and advantages of the present application will become
more apparent from reading the detailed description of non-limiting embodiments with
reference to the following accompanying drawing.
FIG. 1 is a schematic diagram of a connecting rod structure for an electric vacuum
pump according to an embodiment of the present application;
FIG. 2 is an enlarged view of a part of FIG. 1 in a dashed box;
FIG. 3 is a sectional view of a dust-proof sleeve according to an embodiment of the
present application;
FIG. 4 is a partial cutaway view of a connecting rod structure for an electric vacuum
pump according to another embodiment of the present application; and
FIG. 5 is a structural schematic diagram of an electric vacuum pump according to an
embodiment of the present application.
Detailed Description of Embodiments
[0018] Now exemplary implementations will be described more fully with reference to the
accompanying drawings. However, the exemplary implementations can be implemented in
many forms and should not be construed as being limited to the implementations set
forth herein. On the contrary, these implementations are provided to make the present
application thorough and complete, and to fully convey the concept of the exemplary
implementations to those skilled in the art. The embodiments described below with
reference to the drawings are exemplary and are merely for the purpose of explaining
the present application and should not be construed as limiting the present application.
In the drawings, the same reference signs denote the same or similar structures, and
thus the repeated description thereof will be omitted.
[0019] In the description of the present application, it is to be understood that the terms
"first" and "second" are used only for the purpose of illustration, and are not to
be construed as indicating or implying the relative importance or implicitly indicating
the number of technical features indicated. Thus, a feature defined by "first" and
"second" may explicitly or implicitly include one or more features. In the description
of the present application, "a plurality of" means two or more, unless explicitly
and specifically defined otherwise.
[0020] In the description of the present application, it should be noted that, unless otherwise
explicitly specified and defined, the terms "mount", "connect", and "connection" should
be understood in a broad sense, for example, they may be a fixed connection, a detachable
connection, or an integrated connection; may be a mechanical connection, or an electrical
connection or mutual communication; may be a direct connection or an indirect connection
by means of an intermediate medium, or may be communication between interiors of two
elements or interaction between the two elements. For those skilled in the art, the
specific meanings of the above terms in the present application should be understood
according to specific circumstances.
[0021] The disclosure below provides many different embodiments or examples for implementing
different structures of the present application. In order to simplify the disclosure
of the present application, components and settings of specific examples are described
below. Of course, they are merely examples and are not intended to limit the present
application. In addition, reference numerals and/or reference letters may be repeated
in different examples in the present application, such repetition being for the purpose
of simplicity and clarity, and not by itself indicative of the relationships between
the various embodiments and/or settings in discussion. In addition, the present application
provides examples of various specific processes and materials, but those skilled in
the art may recognize the application of other processes and/or the use of other materials.
[0022] For existing technical problems, the present application provides a connecting rod
structure for an electric vacuum pump and an electric vacuum pump. The connecting
rod structure for an electric vacuum pump includes: a connecting rod, a proximal end
of the connecting rod being configured for a motor shaft to pass through, and a distal
end of the connecting rod being configured for connection with a piston; a pin including
a shank, a neck and a cap which are connected in sequence, the shank being connected
to the distal end of the connecting rod; and a bushing sleeved around the neck. The
connecting rod structure for an electric vacuum pump according to the present application
prevents, by means of the fitting between the pin and the bushing, jamming or wear
due to impurities entering a clearance therebetween, and has advantages such as ease
of manufacturing and assembly, capability of withstanding large axial forces, and
rare chances for the pin to be detached during the swinging of the connecting rod.
Further, the bushing may be a sintered copper bushing, prolonging the lifetime of
the connecting rod structure.
[0023] The connecting rod structure for an electric vacuum pump and the structure of the
electric vacuum pump according to the present application are further set forth below
with reference to the drawings and specific embodiments. It may be understood that
the various specific embodiments are not to be construed as limitations on the scope
of protection of the present application.
[0024] FIG. 1 is a schematic diagram of a connecting rod structure for an electric vacuum
pump according to an embodiment of the present application. Specifically, the connecting
rod structure for an electric vacuum pump includes a connecting rod 11, a pin 12,
and a bushing 13.
[0025] A proximal end 111 of the connecting rod 11 is configured for a motor shaft to pass
through, rotation of the motor shaft brings about rotation of the connecting rod,
and a distal end of the connecting rod 11 is configured for connecting with a piston.
Here, the proximal end represents an end of the connecting rod 11 close to the motor
shaft, and the distal end represents an end of the connecting rod 11 relatively away
from the motor shaft. Typically, the proximal end 111 of the connecting rod 11 is
connected to the motor shaft by a stud which is coaxially connected to the motor shaft.
The motor shaft connected to the motor can drive the piston smoothly by the connecting
rod 11, allowing the piston to run with less vibration.
[0026] FIG. 2 is an enlarged view of a part of FIG. 1 in a dashed box, the pin 12 includes
a shank 121, a neck 122, and a cap 123 connected in sequence, and outer diameters
of the shank 121, the neck 122 and the cap 123 increase in sequence. The shank 121
is connected to the distal end of the connecting rod 11. The connection between the
shank 121 and the distal end of the connecting rod 11 may be implemented by means
of interference fit, i.e., a hole adapted to the shank 121 may be provided at the
distal end of the connecting rod 11, to which hole the shank 121 is then fitted. The
bushing 13 is sleeved around the neck 122, the bushing 13 may be a sintered copper
bushing which has a stronger wear resistance, thereby prolonging the lifetime of the
connecting rod structure and of the electric vacuum pump using the connecting rod
structure. Preferably, the bushing may be a sintered copper bushing containing graphite.
During sintering, an appropriate amount of graphite is uniformly mixed into copper
powder, and a sintered copper bushing containing graphite is obtained after the sintering.
Since the graphite having a platelet-like crystal structure has good lubricating performance
as well as good wear resistance, pressure resistance and temperature resistance, the
sintered copper bushing containing graphite is more wear-resistant, and its self-lubricating
action allows the electric vacuum pump to operate with less noise and better smoothness.
The bushing 13 is in clearance-fit with the neck. During the fitting of the copper
bushing, a mandrel may be used to press in the neck 122 of the pin 12, preventing
excessive deformation.
[0027] In some embodiments, to reduce impurities entering a clearance between bushing 13
and the pin 12, the bushing 13 further includes an extension 131 that extends to one
side of the cap 123. Further, the connecting rod structure further includes a sealing
unit, and the sealing unit is arranged at an end of the neck 122 close to the shank
121. That is, the bushing according to the present application is sleeved on the middle
(the neck 122) of the pin 12, impurities are prevented from entering the bushing 13
at the connection between the neck 122 and the cap 123 by means of the extension 131
of the bushing 13, and the sealing unit is provided at the end of the neck 122 connected
to the shank 121 to implement sealing for this connection. The above structure prevents
the impurities from entering the clearance between the bushing 13 and the pin 12,
thereby preventing jamming or wear between the bushing 13 and the pin 12. In addition,
the above connecting rod structure is simple in terms of structure and has the advantages
such as ease of manufacturing and assembly, capability of withstanding large axial
forces, and rare chances for the pin to be detached during the swinging of the connecting
rod.
[0028] In an embodiment, the sealing unit is a dust-proof sleeve 14, i.e., the connecting
rod structure further includes the dust-proof sleeve 14. FIG. 3 is a sectional view
of the dust-proof sleeve according to an embodiment of the present application. The
dust-proof sleeve 14 is sleeved on the end of the neck 122 close to the shank 121.
The dust-proof sleeve includes a bottom face 141 provided with a through hole h and
a side wall 142 connected to the bottom face 141. The shank 121 passes through the
through hole h, and the dust-proof sleeve 14 is sleeved around the end of the neck
22 close to the shank 121. As shown in FIG. 2, in this case, the bottom face 141 of
the dust-proof sleeve 14 abuts against an end face of the connecting rod 11. In this
embodiment, an outer peripheral wall of the bushing 13 at the dust-proof sleeve 14
is a recessed wall recessed toward a centre of the pin 12, and the side wall 142 of
the dust-proof sleeve 14 fits with the recessed wall. By means of the recessed wall,
the side wall 142 of the dust-proof sleeve 14 may be flush with the outer periphery
of the rest of the dust-proof sleeve 14, thus avoiding affecting the connection between
the bushing and the piston. The dust-proof sleeve may be a steel sleeve.
[0029] FIG. 4 is a partial cutaway view of a connecting rod structure for an electric vacuum
pump according to another embodiment of the present application. In this embodiment,
the sealing unit is a sealing groove 112 provided in the distal end of the connecting
rod 11, and one end of the bushing 13' is in insertion fit with the sealing groove
112. The sealing groove 112 may also function to prevent impurities from entering
the clearance between the neck 122 and the bushing 13 from the connection between
the neck 122 and the shank 121. The sealing unit is not limited to the structure in
the above embodiment.
[0030] A second aspect of the present application provides an electric vacuum pump, including
at least one connecting rod structure for an electric vacuum pump as described. Of
course, the electric vacuum pump further includes a motor, a motor shaft, and a plurality
of pistons, and the number of pistons of the electric vacuum pump may be adjusted
according to the actual conditions. FIG. 5 is a structural schematic diagram of an
electric vacuum pump according to an embodiment of the present application, the electric
vacuum pump including two connecting rod structures and two pistons 2. The motor shaft
3 of the electric vacuum pump is in transmission connection with the piston 2 by means
of a connecting rod structure. More specifically, a proximal end of each connecting
rod 11 is configured for the motor shaft 3 to passing through, and a distal end of
the connecting rod 11 is connected to one piston 2, that is, by means of the shank
121 of the pin 12 being connected to the distal end of the connecting rod 11, the
bushing 13 is sleeved on the neck 122 of the pin 12, and the piston rod of the piston
2 is sleeved on the bushing 13. Each of the bushings 13 may be connected to the piston
rod of one of the pistons 2 by means of interference fit, thereby maintaining the
strength of the connection therebetween, making the pin 12 and the bushing 13 less
prone to detachment, and improving the structural and operating stabilities of the
electric vacuum pump.
[0031] Although the embodiments of the present application have been shown and described
above, it can be understood that the above embodiments are exemplary and cannot be
construed as limiting the present application, and changes, modifications, substitutions,
and variations may be made by a person skilled in the art to the above embodiments
within the scope of the present application.
[0032] The above contents are further detailed descriptions of the present application made
with reference to the specific preferred embodiments, and it cannot be considered
that the specific implementation of the present application is limited to these descriptions.
For those skilled in the art of the present application, several simple deductions
or substitutions can be made without departing from the spirit of the present application,
and should be regarded as falling within the scope of protection of the present application.
1. A connecting rod structure for an electric vacuum pump,
characterized by comprising:
a connecting rod, a proximal end of the connecting rod being configured for a motor
shaft to pass through, and a distal end of the connecting rod being configured for
connection with a piston;
a pin including a shank, a neck and a cap which are connected in sequence, the shank
being connected to the distal end of the connecting rod;
and a bushing sleeved around the neck.
2. The connecting rod structure for an electric vacuum pump according to claim 1, characterized in that the bushing further comprises an extension that extends to one side of the cap.
3. The connecting rod structure for an electric vacuum pump according to claim 1 or 2,
characterized in that the connecting rod structure further comprises a sealing unit, the sealing unit being
arranged at an end of the neck close to the shank.
4. The connecting rod structure for an electric vacuum pump according to claim 3,
characterized in that the sealing unit is a dust-proof sleeve;
the dust-proof sleeve comprises a bottom face provided with a through hole and a side
wall connected to the bottom face; and
the shank passes through the through hole, and the dust-proof sleeve is sleeved around
the end of the neck close to the shank.
5. The connecting rod structure for an electric vacuum pump according to claim 4, characterized in that an outer peripheral wall of the bushing at the dust-proof sleeve is a recessed wall
recessed toward a centre of the pin, the side wall of the dust-proof sleeve fitting
with the recessed wall.
6. The connecting rod structure for an electric vacuum pump according to claim 3, characterized in that the sealing unit is a sealing groove provided in the distal end of the connecting
rod, and one end of the bushing is in insertion fit with the sealing groove.
7. The connecting rod structure for an electric vacuum pump according to any one of the
preceding claims, characterized in that the shank is connected to the distal end of the connecting rod by means of interference
fit; or
the bushing is in clearance fit with the neck.
8. The connecting rod structure for an electric vacuum pump according to any one of the
preceding claims, characterized in that the bushing is a sintered copper bushing.
9. The connecting rod structure for an electric vacuum pump according to any one of the
preceding claims, characterized in that the bushing is a sintered copper bushing containing graphite.
10. An electric vacuum pump, characterized by comprising at least one connecting rod structure for an electric vacuum pump according
to any one of claims 1 to 9.
11. The electric vacuum pump according to claim 10, characterized by further comprising at least one piston; wherein
each of the bushings is connected to a piston rod of one of the pistons by means of
interference fit.