Field Of The Invention
[0001] The utility model relates to a floor, and in particular to a stainless steel metal
floor.
Background Of The Invention
[0002] Conventional single metal floor substrate has 9 counter bores (0.36 square meters),
and is screwed up and connected with a cement base surface through expansion bolts
and under the action of adhesives; customers think that products having no expansion
bolt head on the surfaces are more beautiful than those having expansion bolt heads
on the surfaces and the antiskid effect is better than that of previous products.
SUMMARY OF THE INVENTION
[0003] In view of the above problem, the utility model provides a stainless steel metal
floor, which is simple and reasonable in structure design, convenient in assembly,
firm and reliable in connection and fine in antiskid effect.
[0004] The utility model is realized through the following technical scheme:
[0005] the above stainless steel metal floor is formed by the assembly of more than one
substrate and more than one floor edge trim identification strip; the substrate is
a rectangular plate structure, the upper base surface of which is provided with protruding
lines; a pair of adjacent right-angle edges of the substrate is provided with a first
substrate lug buckle respectively, the other pair of adjacent right-angle edges is
provided with a second substrate lug buckle respectively; both the first substrate
lug buckle and the second substrate lug buckle are extended out along the outer side
of the substrate horizontally; both the first substrate lug buckle and the second
substrate lug buckle are formed by being bent upwards by 90 degrees first and then
being bent outwards horizontally by 90 degrees; the second substrate lug buckle is
opened with a substrate taper hole and a substrate straight hole from top to bottom;
adjacent substrates are connected through the first substrate lug buckle and the second
substrate lug buckle respectively and correspondingly, plus matched invisible expansion
bolts; the floor edge trim identification strip comprises a first floor edge trim
identification strip and a second floor edge trim identification strip which are of
long-strip plate structures; the end part of one ends of the first and second floor
edge trim identification strips along the length direction thereof is provided with
an inward groove, the end part of the other ends of the first and second floor edge
trim identification strips is provided with an outward buckle matched with the inward
groove; the base surfaces of the first and second floor edge trim identification strips
are further evenly provided with concave-convex strips and one sides thereof are further
evenly provided with expansion screw holes along the length direction; the first and
second floor edge trim identification strips are secured to the ground through the
expansion screw holes plus expansion bolts; one long side edge of the first floor
edge trim identification strip is provided with a first identification strip lug buckle
matched with the first substrate lug buckle; the first identification strip lug buckle
is bent upwards by 90 degrees first and then is bent outwards horizontally by 90 degrees
to be flat with the base surface of the substrate; one long side edge of the second
floor edge trim identification strip is provided with a second identification strip
lug buckle matched with the second substrate lug buckle, the second identification
strip lug buckle is bent upwards by 90 degrees first and then is bent outwards horizontally
by 90 degrees to be flat with the base surface of the substrate; and all the second
identification strip lug buckles are provided with an identification strip straight
hole and an identification strip taper hole from top to bottom; the first and second
floor edge trim identification strips are connected through the matching between the
inward groove and the outward buckle.
[0006] Herein, for the stainless steel metal floor, the upper base surface of the protruding
line and the concave base surface of the substrate have a height difference of 3.2mm;
the protruding line comprises a straight protruding line and an arc protruding line;
the central point of the substrate is an intersection point formed by the intersection
of the straight protruding lines, the surrounding of the central point of the substrate
has four intersection points formed by the intersection of the straight protruding
lines and the arc protruding lines; all the intersection points are circular concave
surfaces, which are flat with the upper base surface of the substrate.
[0007] Herein, for the stainless steel metal floor, a pair of adjacent right-angle edges
of the substrate is provided with a group of three first substrate lug buckles respectively,
and the other pair of adjacent right-angle edges is provided with a group of four
second substrate lug buckles respectively.
[0008] Herein, for the stainless steel metal floor, one long side edge of the first floor
edge trim identification strip is straight and the arris edge is a cambered surface,
the other long side edge is evenly provided with three first identification strip
lug buckles.
[0009] Herein, for the stainless steel metal floor, one long side edge of the second floor
edge trim identification strip is straight and the arris edge is a cambered surface,
the other long side edge is evenly provided with four second identification strip
lug buckles.
[0010] Herein, for the stainless steel metal floor, the concave-convex strips are of Z-shaped
structures, the concave Z shape is an identification surface, and the convex Z shape
is an arc wear-resisting surface.
[0011] Herein, for the stainless steel metal floor, the first and second substrate lug buckles
are bent upwards by 90 degrees first and then are bent outwards horizontally by 90
degrees to form a trapezoid having a height of 3.2mm.
[0012] Benefits:
the stainless steel metal floor provided by the utility model has a simple and reasonable
structure design; during construction, it only needed to connect the substrate with
a cement base surface by screwing up expansion bolts on the first substrate lug buckle
and the second substrate lug buckle of the substrate and under the action of adhesives,
and then trim the four edges of the substrate using the floor edge trim identification
strip; the assembly connection is firm, reliable and beautiful.
BRIEF DESCRIPTION OF THE FIGURES
[0013]
FIG. 1 is a structure diagram of a stainless steel metal floor of the utility model;
FIG. 2 is a top view of a substrate of a stainless steel metal floor of the utility
model;
FIG. 3 is a bottom view of a substrate of a stainless steel metal floor of the utility
model;
FIG. 4 is a left view of a substrate of a stainless steel metal floor of the utility
model;
FIG. 5 is a top view of a first floor edge trim identification strip of a stainless
steel metal floor of the utility model; and
FIG. 6 is a top view of a second floor edge trim identification strip of a stainless
steel metal floor of the utility model.
DETAILED DESCRIPTION OF THE INVENTION
[0014] As shown in FIG. 1 to FIG. 6, the stainless steel metal floor provided by the utility
model is formed by the assembly of more than one substrate 1 and more than one floor
edge trim identification strip 2.
[0015] Each substrate 1 is a rectangular structure, the upper base surface of which is provided
with a plurality of protruding lines 11; the plurality of protruding lines 11 comprise
straight protruding lines and arc protruding lines; the upper base surfaces of the
plurality of protruding lines 11 and the concave base surface of the substrate 1 have
a height difference of 3.2mm; the central point of the substrate 1 is a first intersection
point 12 formed by the intersection of the straight protruding lines, the surrounding
of the central point of the substrate 1 has four intersection points 13 formed by
the intersection of the straight protruding lines and the arc protruding lines; the
first intersection point 12 and the four second intersection points 13 all are circular
concave surfaces, which are flat with the upper base surface of the substrate 1; during
construction, the substrate is closely adhered to the ground under the action of metal
adhesives.
[0016] A pair of adjacent right-angle edges of each substrate 1 is provided with a group
of three first substrate lug buckles 14 respectively, and the other pair of adjacent
right-angle edges is provided with a group of four second substrate lug buckles 15
respectively; both the first substrate lug buckle 14 and the second substrate lug
buckle 15 are of rectangular block structures and are extended out along the outer
side of the substrate 1 horizontally; herein, both the first substrate lug buckle
14 and the second substrate lug buckle 15 are bent upwards by 90 degrees first and
then bent outwards horizontally by 90 degrees to form a trapezoid having a height
of 3.2mm; meanwhile, each second substrate lug buckle 15 is opened with a substrate
taper hole 151 and a substrate straight hole 152 from the upper base surface to the
lower base surface; the smaller hole of one end of the substrate taper hole 151 has
a diameter of 8.5 mm, and the bigger hole of the other end has a diameter of 11.5
mm; the substrate straight hole 152 has a diameter of 8.5 mm; adjacent substrates
1 are connected through the first substrate lug buckle 14 and the second substrate
lug buckle 15 respectively and correspondingly, plus matched invisible expansion bolts.
[0017] The floor edge trim identification strip 2 comprises a first floor edge trim identification
strip 21 and a second floor edge trim identification strip 22.
[0018] The first floor edge trim identification strip 21 is a rectangular structure overall;
the end part of one end along the length direction thereof is provided with a first
trapezoidal inward groove 211, the end part of the other end is provided with a first
trapezoidal outward buckle 212 matched with the first inward groove 211; the base
surface of the first floor edge trim identification strip 21 is further evenly provided
with a plurality of first Z-shaped concave-convex strips 213; the concave Z shape
of the first Z-shaped concave-convex strip 213 is an identification surface, and the
convex Z shape is an arc wear-resisting surface (antiskid surface); one side of the
first floor edge trim identification strip 21 is further evenly provided with four
first expansion screw holes 214 along the length direction; the first edge trim identification
strip 21 is secured to the ground through the four first expansion screw holes 214
plus expansion bolts; meanwhile, one long side edge of the first floor edge trim identification
strip 21 is straight and the arris edge is a cambered surface, the other long side
edge is evenly provided with three first identification strip lug buckles 215; each
first identification strip lug buckles 215 is bent upwards by 90 degrees first and
then is bent outwards horizontally by 90 degrees to be flat with the base surface
of the substrate 1.
[0019] The second floor edge trim identification strip 22 is a rectangular structure overall;
the end part of one end along the length direction thereof is provided with a second
trapezoidal inward groove 221, the end part of the other end is provided with a second
trapezoidal outward buckle 222 matched with the second inward groove 221; the base
surface of the second floor edge trim identification strip 22 is further evenly provided
with a plurality of second Z-shaped concave-convex strips 223; the concave Z shape
of the Z-shaped concave-convex strip 223 is an identification surface, and the convex
Z shape is an arc wear-resisting surface (antiskid surface); one side of the second
floor edge trim identification strip 22 is further evenly provided with four second
expansion screw holes 224 along the length direction; the second edge trim identification
strip 22 is secured to the ground through the four second expansion screw holes 224
plus expansion bolts; meanwhile, one long side edge of the second floor edge trim
identification strip 22 is straight and the arris edge is a cambered surface, the
other long side edge is evenly provided with four second identification strip lug
buckles 225; each second identification strip lug buckles 225 is bent upwards by 90
degrees first and then is bent outwards horizontally by 90 degrees to be flat with
the base surface of the substrate 1; each second identification strip lug buckle 225
is provided with an identification strip straight hole 226 and an identification strip
taper hole 227 from top to bottom.
[0020] The utility model is simple and reasonable in structure design, convenient in assembly,
firm and reliable in connection and fine in antiskid effect, and is suitable for popularization
and application.
1. A stainless steel metal floor, characterized in that: the floor is formed by the assembly of more than one substrate (1) and more than
one floor edge trim identification strip (2);
the substrate (1) is a rectangular plate structure, the upper base surface of which
is provided with protruding lines (11); a pair of adjacent right-angle edges of the
substrate (1) is provided with a first substrate lug buckle (14) respectively, the
other pair of adjacent right-angle edges is provided with a second substrate lug buckle
(15) respectively; both the first substrate lug buckle (14) and the second substrate
lug buckle (15) are extended out along the outer side of the substrate horizontally;
both the first substrate lug buckle (14) and the second substrate lug buckle (15)
are formed by being bent upwards by 90 degrees first and then being bent outwards
horizontally by 90 degrees; the second substrate lug buckle (15) is opened with a
substrate taper hole (151) and a substrate straight hole (152) from top to bottom;
adjacent substrates are connected through the first substrate lug buckle (14) and
the second substrate lug buckle (15) respectively and correspondingly, plus matched
invisible expansion bolts;
the floor edge trim identification strip (2) comprises a first floor edge trim identification
strip (21) and a second floor edge trim identification strip (22) which are of long-strip
plate structures; the end part of one ends of the first and second floor edge trim
identification strips along the length direction thereof is provided with an inward
groove, the end part of the other ends of the first and second floor edge trim identification
strips is provided with an outward buckle; the base surfaces of the first and second
floor edge trim identification strips are further evenly provided with concave-convex
strips and one sides thereof are further evenly provided with expansion screw holes
along the length direction; the first and second floor edge trim identification strips
are secured to the ground through the expansion screw holes plus expansion bolts;
one long side edge of the first floor edge trim identification strip (21) is provided
with a first identification strip lug buckle (215) matched with the first substrate
lug buckle (14); the first identification strip lug buckle (215) is bent upwards by
90 degrees first and then is bent outwards horizontally by 90 degrees to be flat with
the base surface of the substrate; one long side edge of the second floor edge trim
identification strip (22) is provided with a second identification strip lug buckle
(225) matched with the second substrate lug buckle (15), the second identification
strip lug buckle (225) is bent upwards by 90 degrees first and then is bent outwards
horizontally by 90 degrees to be flat with the base surface of the substrate; and
all the second identification strip lug buckles (225) are provided with an identification
strip straight hole (226) and an identification strip taper hole (227) from top to
bottom; the first and second floor edge trim identification strips are connected through
the matching between the inward groove and the outward buckle.
2. The stainless steel metal floor according to claim 1, characterized in that: the upper base surface of the protruding line (11) and the concave base surface
of the substrate (1) have a height difference of 3.2mm; the protruding line (11) comprises
a straight protruding line and an arc protruding line; the central point of the substrate
(1) is an intersection point formed by the intersection of the straight protruding
lines, the surrounding of the central point of the substrate (1) has four intersection
points formed by the intersection of the straight protruding lines and the arc protruding
lines; all the intersection points are circular concave surfaces, which are flat with
the upper base surface of the substrate (1).
3. The stainless steel metal floor according to claim 1, characterized in that: a pair of adjacent right-angle edges of the substrate (1) is provided with a group
of three first substrate lug buckles (14) respectively, and the other pair of adjacent
right-angle edges is provided with a group of four second substrate lug buckles (15)
respectively.
4. The stainless steel metal floor according to claim 1, characterized in that: one long side edge of the first floor edge trim identification strip (21) is straight
and the arris edge is a cambered surface, the other long side edge is evenly provided
with three first identification strip lug buckles (215).
5. The stainless steel metal floor according to claim 1, characterized in that: one long side edge of the second floor edge trim identification strip (22) is straight
and the arris edge is a cambered surface, the other long side edge is evenly provided
with four second identification strip lug buckles (225).
6. The stainless steel metal floor according to claim 1, characterized in that: the concave-convex strips are of Z-shaped structures, the concave Z shape is an
identification surface, and the convex Z shape is an arc wear-resisting surface.
7. The stainless steel metal floor according to claim 1, characterized in that: the first and second substrate lug buckles are bent upwards by 90 degrees first
and then are bent outwards horizontally by 90 degrees to form a trapezoid having a
height of 3.2mm.