CN111101622A - Easy-to-mount hanging partition wall - Google Patents

Easy-to-mount hanging partition wall Download PDF

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Publication number
CN111101622A
CN111101622A CN201911032661.1A CN201911032661A CN111101622A CN 111101622 A CN111101622 A CN 111101622A CN 201911032661 A CN201911032661 A CN 201911032661A CN 111101622 A CN111101622 A CN 111101622A
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CN
China
Prior art keywords
vertical
transverse
wall body
clamping
keel
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Granted
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CN201911032661.1A
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Chinese (zh)
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CN111101622B (en
Inventor
陈德义
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Guangdong Tmoon Laboratory Equipment Manufacturing Co ltd
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Guangdong Tmoon Laboratory Equipment Manufacturing Co ltd
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Publication of CN111101622A publication Critical patent/CN111101622A/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/7407Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/76Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Finishing Walls (AREA)
  • Toys (AREA)

Abstract

The easily-installed hanging partition wall comprises transverse connecting keels, vertical connecting keels and a decoration panel which are respectively in a sectional material shape, wherein the transverse connecting keels and the vertical connecting keels are arranged in a transverse and vertical staggered mode and connected, and the decoration panel is detachably installed on the transverse connecting keels; the vertical connecting keel is in a hollow profile shape and is provided with a left vertical wall body and a right vertical wall body which are arranged in parallel from left to right when viewed from the cross section of the vertical connecting keel; at least two transverse connection keels are arranged between the two vertical connection keels arranged on the left and right through a clamping structure, wherein the left end and the right end of one transverse connection keel are respectively clamped on the front side of the left vertical wall body or the front side of the right vertical wall body of the two vertical connection keels arranged on the left and right, and the left end and the right end of the other transverse connection keel are respectively clamped on the rear side of the left vertical wall body or the rear side of the right vertical wall body of the two vertical connection keels arranged on the left and right.

Description

Easy-to-mount hanging partition wall
Technical Field
The invention relates to an easy-to-mount hanging partition wall which is used for separating space, can be used for decorating wall surfaces and is also suitable for being used as a cabinet plate on a wardrobe.
Background
In a large indoor space such as an office, a partition wall is often used to separate an independent small space, and the partition wall generally includes a support frame system and a partition plate laid on the support frame system. The supporting framework system is formed by connecting criss-cross transverse profile pieces and longitudinal profile pieces. Patent CN201810669558.7 discloses a back bolt formula panel curtain wall, including keel frame, keel frame comprises three vertical stand 2 and six crossbeams 1 that set up. The upright posts 2 are aluminum square tube sections, and the cross beam 1 is a metal section with a groove-shaped cross section. The head end and the tail end of the cross beam 1 are respectively connected with one end of an L-shaped angle connector 4 through screws, and the other end of the L-shaped angle connector 4 is connected to the upright post 2 through screws. Therefore, the two ends of the cross beam 1 are connected between the pair of upright posts 2 through the L-shaped corner connectors 4, so that the connection operation is very complicated, and the installation efficiency of the curtain wall is seriously delayed.
Disclosure of Invention
In order to solve the technical problem, the invention provides an easy-to-mount hanging partition wall which is characterized by comprising transverse connecting keels, vertical connecting keels and a decoration panel, wherein the transverse connecting keels, the vertical connecting keels and the decoration panel are respectively in a sectional material shape; the cross section of the vertical connecting keel is a hollow profile, and the vertical connecting keel is provided with a left vertical wall body and a right vertical wall body which are arranged in parallel at the left side and the right side; the vertical connecting keel is provided with clamping hooks, the clamping hooks comprise at least 1 right clamping hook, namely a right front clamping hook and a right rear clamping hook, which are arranged on the front side and the rear side of a right vertical wall body of the vertical connecting keel, and at least 1 left clamping hook, namely a left front clamping hook and a left rear clamping hook, which are arranged on the front side and the rear side of a left vertical wall body of the vertical connecting keel, and the clamping hooks and the wall body where the clamping hooks are located are integrally formed and located in the same plane space, so that an avoiding gap is formed between the clamping hooks and the wall body where the clamping hooks are located; bayonets are respectively arranged on the left end part and the right end part of the transverse connecting keel, the bayonets are sleeved on the hooks after the end part of the transverse connecting keel passes through the avoiding gap, and the bayonets and the hooks are connected in a matched mode to form a clamping structure; at least two transverse connection fossil fragments pass through the joint structure is arranged two about arranging between the vertical connection fossil fragments, wherein, one the left and right both ends of transverse connection fossil fragments joint respectively two that left and right were arranged on the left and right vertical wall body's of vertical connection fossil fragments the front side or the front side of right vertical wall body on, another the left and right both ends difference joint of transverse connection fossil fragments is two that left and right was arranged on the left and right side the rear side of vertical wall body's of vertical connection fossil fragments or the rear side of right vertical wall body on.
The section is made by bending, rolling or extruding and the like, the cross section has a certain geometric shape, and different extending lengths can be specified according to actual processing requirements. The extension length should not be limited in theory. In actual manufacturing, the length of the profile is set to a fixed length such as 2 meters or 3 meters.
The cross section in the cross section of the vertical connecting keel is a cross section obtained by cutting the vertical connecting keel in a direction perpendicular to the length direction of the vertical connecting keel.
The wall body where the hook is located in the above features is a wall body where a specific hook is arranged, for example, for the right front hook, the right vertical wall body is the wall body where the right front hook is located; for the left front hook, the left vertical wall is a wall where the left front hook is located.
Wherein, one the left and right both ends difference joint of transverse connection fossil fragments are two of arranging on a left side, right side on the front side of the left vertical wall body of vertical connection fossil fragments or the front side of right vertical wall body, above-mentioned characteristic has defined, one but the left end optional joint of transverse connection fossil fragments is on the front side of the left vertical wall body of the vertical connection fossil fragments that are located the left side position or the front side of right vertical wall body, and the right-hand member optional joint is on the front side of the left vertical wall body of the vertical connection fossil fragments that are located the right side position or the front side of right vertical wall body. In addition, another left and right both ends of transverse connection fossil fragments joint respectively two of arranging left and right respectively on the rear side of the left vertical wall body of vertical connection fossil fragments or the rear side of right vertical wall body, another has been defined to above-mentioned characteristic the left end optional joint of transverse connection fossil fragments is on the rear side of the left vertical wall body of the vertical connection fossil fragments that are located the left side position or the rear side of right vertical wall body, and the right-hand member optional joint is on the rear side of the left vertical wall body of the vertical connection fossil fragments that are located the right side position or the rear side of right vertical wall body. Therefore, the vertical connecting keels and the transverse connecting keels are in a double-row clamping structure, at least two transverse connecting keels arranged in the front and back can be clamped between the vertical connecting keels, and at least four transverse connecting keels can be simultaneously connected with the same vertical connecting keel.
According to the technical scheme, compared with the prior art, the invention has the beneficial technical effects that:
1. the clamping hook and the wall body where the clamping hook is located are integrally formed and located in the same plane space, so that in the process of carrying the vertical connecting keel, the clamping hook cannot be easily hooked and scraped to other objects to damage the other objects due to the fact that the clamping hook does not protrude out of the wall body where the clamping hook is located, the clamping hook cannot be easily collided by the other objects to be bent, deformed or broken, the hand of a carrier cannot be easily scraped, and the vertical connecting keel cannot be easily clamped by the clamping hook on another adjacent vertical connecting keel and entangled to increase the difficulty of carrying and separating the vertical connecting keel; in addition, the clamping hook is integrally formed with the wall body where the clamping hook is located and is located in the same plane space, so that the processing technology is simplified, and the clamping hook can be directly processed by adopting a punching technology.
2. The bayonet is connected with the clamping hook in a matched mode to form a clamping structure, so that after the transverse connecting keel is clamped to the vertical connecting keel through the clamping structure, the transverse connecting keel can be limited in displacement in the left and right directions at least by means of the matching of the bayonet and the clamping hook, the transverse connecting keel is positioned relative to the vertical connecting keel in the left and right directions, the connecting stability between the transverse connecting keel and the vertical connecting keel is improved, the connecting structure between the transverse connecting keel and the vertical connecting keel can be simplified, and the mounting efficiency is improved; in addition, the bayonet is also a simple and convenient structure, and can be directly processed by adopting a punching process, for example.
3. Because the vertical connecting keel and the transverse connecting keel are in a double-clamping structure, the stability of a framework system formed by connecting the transverse connecting keel and the vertical connecting keel can be enhanced, the framework system is not easy to distort or even scatter, and the decorative panels can be arranged in front of and behind the partition wall, so that the front surface and the back surface of the partition wall can be used as exposed decorative surfaces, and the application range of the partition wall is expanded.
In order to increase the difficulty that the transverse connection keel is separated from the clamping hook by moving in the front-back direction, the following unhooking prevention technical scheme can be adopted:
in the first anti-unhooking technical scheme, the clamping hook protrudes upwards and extends to form a hook arm.
The second anti-unhooking technical scheme the trip root upside is provided with and can accepts the constant head tank of the tip wall body of transverse connection fossil fragments, works as transverse connection fossil fragments's tip passes through the bayonet socket suit is arrived when on the trip, transverse connection fossil fragments's tip also card is gone into in the constant head tank.
Can increase through above-mentioned two kinds of mousing-hook technical scheme transverse connection fossil fragments break away from through removing in the front and back direction the degree of difficulty of trip, the reinforcing transverse connection fossil fragments with the stability of being connected of vertical connection fossil fragments, nevertheless the trip does not prevent transverse connection fossil fragments break away from through the rebound the trip.
In order to make the transverse connection keel can not be easily separated from the clamping hook through upward movement, a clamping edge which protrudes outwards relative to the root of the clamping hook is further arranged above the root of the clamping hook, and when the end part of the transverse connection keel is sleeved on the clamping hook through the clamping opening, the end part of the transverse connection keel is not only clamped into the root of the clamping hook but also clamped into the lower surface of the clamping edge so as to limit that the end part of the transverse connection keel can not be easily separated from the clamping hook. Therefore, the end part of the transverse connecting keel is limited to move upwards through the clamping edge, so that the transverse connecting keel cannot be easily separated from the clamping hook through the upward movement, and the connection stability of the transverse connecting keel and the vertical connecting keel is enhanced. However, the end portions of the cross-linking keels may be bent to avoid the catching edges and moved in an obliquely upward manner to be disengaged from the catching hooks by applying a certain external force, so that the operation of detaching the cross-linking keels is also easy.
The cross-connecting runners are used to connect the trim panels so that the cross-connecting runners need to have a certain structural strength. In view of this, a further technical solution may be that the transverse connecting keel includes a transverse main plate portion, a transverse bent portion located at an upper portion of the transverse main plate portion, and a transverse downward bent portion located at a lower portion of the transverse main plate portion, and when viewed from a front view, an extension length of the transverse bent portion and the transverse downward bent portion in a left-right direction is shorter than that of the transverse main plate portion, so that a blank portion is respectively reserved at a left end and a right end of the transverse main plate portion, and the bayonet is disposed on the blank portion. According to the technical scheme, the transverse connecting keel can be strengthened in structural strength by the transverse bending part and the transverse downward bending part, and the bearing capacity is improved.
Further technical scheme can also be, follow the cross section of vertical connection fossil fragments, vertical connection fossil fragments are still including setting up preceding vertical wall body, the back vertical wall body between the vertical wall body of a left side, right side, wherein left side vertical wall body includes left front vertical wall body and left back vertical wall body, left side front vertical wall body with the interval has between the vertical wall body of left back, left side front trip sets up on the vertical wall body of left front, left back trip sets up on the vertical wall body of left back. According to the technical scheme, the left front vertical wall body and the left rear vertical wall body are spaced, so that the left front vertical wall body and the left rear vertical wall body are formed with a space capable of communicating with the space between the hollow cavities of the vertical connecting keels, and functional pipelines are arranged and maintained in the hollow cavities of the vertical connecting keels conveniently. In addition, the vertical connecting keel with the cross section structure is further beneficial to simplification of the manufacturing process and the manufacturing cost of the vertical connecting keel, for example, the vertical connecting keel can be formed by bending a plate body.
In order to realize the detachable connection between the decorative panel and the transverse connecting keel, a plurality of panel connectors are arranged on the back side wall of the decorative panel, each panel connector comprises a base body and a lower extension arm, the base body is used for being connected to the back side wall of the decorative panel, the lower extension arms extend outwards from the base body, and the lower extension arms are used for forming first clamping grooves; the buffer rubber block is U-shaped, so that the buffer rubber block not only has a front wall body and a rear wall body, but also is provided with a second clamping groove between the front wall body and the rear wall body, and a clamping matching structure is arranged between the front wall body and/or the rear wall body and the front and rear groove walls of the first clamping groove, so that the buffer rubber block cannot be easily separated from the first clamping groove after being embedded into the first clamping groove; the panel connector is clamped to the transverse downward bending part of the transverse connecting keel through the second clamping groove arranged on the panel connector. According to the technical scheme, firstly, in a specific application occasion, the transverse downward bending part of the transverse connecting keel is inserted into the second clamping groove of the buffer rubber block, the front wall body and the rear wall body of the buffer rubber block are utilized to fill a gap between the transverse downward bending part and the front and rear groove side walls of the first clamping groove, so that the looseness of the panel connector on the transverse downward bending part can be reduced, the mounting stability of a decorative panel connected to the panel connector is improved, and when the decorative panel is knocked, the vibration of the decorative panel can be buffered by utilizing the buffer rubber block, the noise generated by the vibration of the decorative panel is absorbed, a relatively thick and low sound is formed, and a person can feel that the structure of the partition wall is solid and stable; in addition, because preceding wall body and/or rear wall body with arranged joint cooperation structure between the front and back cell wall of first draw-in groove, like this, be favorable to strengthening the piece is glued in the buffering with joint stability between the first draw-in groove is adjusting because of needs the reason of decorative panel position is adjusted during the position of panel connector, the piece is glued in the buffering is difficult to follow break away from in the first draw-in groove, can make the adjustment operation accomplish smoothly, conveniently.
In order to facilitate the adjustment of the height of the decorative panel connected to the panel connector, a further technical solution may be that the panel connector further includes a cantilever body connected to the base body, the cantilever body is further provided with a thread adjusting hole and an adjusting screw screwed in the thread adjusting hole, and the thread adjusting hole and the lower arm are arranged in a staggered manner and located at a position farther away from the base body than the lower arm; when the decorative panel is hung on the transverse downward bending part through the panel connector, the bottom end of the adjusting screw abuts against the transverse downward bending part and the position of the decorative panel in the vertical direction can be finely adjusted by rotating the adjusting screw. Wherein the cantilever body is attached to the substrate, the above features define that the cantilever body can be directly attached to the substrate or indirectly attached to the substrate by being attached to other features, such as the lower arm. Secondly, the threaded adjusting hole is located at a position far away from the base body relative to the lower extending arm, and the position of the threaded adjusting hole relative to the lower extending arm is defined by the characteristics, and the threaded adjusting hole is relatively far away from the base body, namely, the threaded adjusting hole is relatively far away from the back side wall of the decoration panel, so that the operation of an adjusting screw screwed on the threaded adjusting hole is facilitated, and the structural strength of the panel connector is not easily influenced.
The hanging type partition wall can be used for collecting power signal pipelines except for decoration and space separation, and the further technical scheme can be that a through line hole for avoiding the power signal pipelines is formed in the vertical connecting keel.
During the post-delivery use of the hanging type partition wall, if the power signal pipeline needs to be maintained or replaced, the decoration panel needs to be detached, and in the case that the width of the decoration panel is large, such as 1mx2m, the whole decoration panel is very difficult to detach. In view of this, the present invention further provides a solution, wherein the decorative panel comprises a main panel and an auxiliary panel arranged above or below the main panel, and the auxiliary panel is hung on the transverse connecting keel arranged in the area near the through hole so as to hide the through hole. Therefore, the auxiliary panel can be detached independently to maintain or replace the power signal pipeline.
Due to the characteristics and the advantages, the invention can be applied to the easily-installed hanging partition wall.
Drawings
Fig. 1 is a schematic perspective view of an easy-to-mount partition wall 100 according to the present invention;
FIG. 2 is an enlarged view of part A of FIG. 1;
fig. 3 is a schematic perspective view of the vertical connecting keel 1;
fig. 4 is a structural schematic diagram of the vertical connecting keel 1 in a front view direction;
fig. 5 is a structural schematic diagram of the vertical connecting keel 1 in a rear view direction;
figure 6 is a cross-sectional structural schematic view of the vertical connecting keel 1;
fig. 7 is a schematic view of the clamping structure between the left front hook 111 and the left margin 24;
figure 8 is a schematic perspective view of the transverse connecting keel 2;
figure 9 is a front view (front view) of the cross connecting runner 2;
figure 10 is a side view schematic of the cross connect runner 2;
fig. 11 is a structural schematic diagram of a second clamping mode between the vertical connecting keel 1 and the transverse connecting keel 2;
fig. 12 is a schematic structural view of a third clamping manner between the vertical connecting keel 1 and the transverse connecting keel 2;
fig. 13 is a schematic view of the hanging structure between the cross connecting keels 2 and the decorative panel 3;
fig. 14 is an exploded view of the panel connector 400.
Detailed Description
The panel connector 400 and the structure of the easily-installed hanging partition wall 100 to which the improved structure of the present invention is applied will be further described with reference to the accompanying drawings.
As shown in the figure, an easily-installed hanging partition wall 100 comprises transverse connecting keels 2 (including a transverse connecting keel 2a and a transverse connecting keel 2b, the transverse connecting keels 2 at different positions are indicated by marks 2a and 2 b), vertical connecting keels 1 (including a vertical connecting keel 1a and a vertical connecting keel 1b, the vertical connecting keels 1 at different positions are indicated by marks 1a and 1 b) and decorative panels 3, wherein the transverse connecting keels 2 and the vertical connecting keels 1 are arranged in a transverse and vertical staggered mode and connected, and the decorative panels 3 are detachably installed on the transverse connecting keels 2; as shown in fig. 6, when viewed from the cross section of the vertical connecting keel 1, the vertical connecting keel 1 is in a hollow profile shape, and has a left vertical wall 16 and a right vertical wall 13 which are arranged in parallel; the vertical connecting keel 1 is provided with clamping hooks (111, 111a, 131 and 131 a), the clamping hooks comprise at least 1 right clamping hook, namely a right front clamping hook 131 and a right rear clamping hook 131a, which are arranged on the front side and the rear side of a right vertical wall body 13 of the vertical connecting keel 1, and at least 1 left clamping hook, namely a left front clamping hook 111 and a left rear clamping hook 111a, which is arranged on the front side and the rear side of a left vertical wall body 16 of the vertical connecting keel 1, and the clamping hooks and the wall body where the clamping hooks are located are integrally formed and located in the same plane space, so that an avoidance gap is formed between the clamping hooks and the wall body where the clamping hooks are located; bayonets (240, 240 a) are respectively arranged on the left end part and the right end part of the transverse connecting keel 2, the bayonets (240, 240 a) are sleeved on the hooks after the end part of the transverse connecting keel 2 penetrates through the avoiding gap, and the bayonets (240, 240 a) are connected with the hooks in a matched mode to form a clamping structure; at least two transverse connection fossil fragments 2 pass through the joint structure is arranged about two and is arranged between the vertical connection fossil fragments 1, wherein, one transverse connection fossil fragments 2's left and right both ends joint respectively two that arrange on a left side, right on the front side of the vertical connection fossil fragments 1's left vertical wall body 16's front side or the right vertical wall body 13, another transverse connection fossil fragments 2's left and right both ends joint respectively two that arrange on a left side, right on the rear side of the vertical connection fossil fragments 1's left vertical wall body 16's rear side or the right vertical wall body 13's rear side.
The structure of the vertical connecting keel 1 will be discussed in further detail with reference to the accompanying drawings. As shown in fig. 3 to 6, when viewed from a cross section of the vertical connection keel 1, the vertical connection keel 1 is in a hollow profile shape, and has a left vertical wall 16 and a right vertical wall 13 which are arranged in parallel, and a front vertical wall 15 and a rear vertical wall 14 which are arranged between the left vertical wall 16 and the right vertical wall 13, wherein the left vertical wall 16 includes a left front vertical wall 11 and a left rear vertical wall 12, and a space is provided between the left front vertical wall 11 and the left rear vertical wall 12. Like this, left front vertical wall body 11 with be formed with between the vertical wall body 12 of left back and can communicate the interval space 17 of the cavity of vertical connection fossil fragments 1 has made things convenient for arrange, maintain the function pipeline in the cavity of vertical connection fossil fragments 1. In addition, vertical connection fossil fragments 1 adopts above-mentioned cross section structure still to be favorable to simplifying vertical connection fossil fragments 1's manufacturing process, reduction in manufacturing cost, in this embodiment, vertical connection fossil fragments 1 adopts the plate body punching press to bend and forms. The left front vertical wall 11 is provided with 1, 2 or more left front hooks 111, and the left front hooks 111 and the left front vertical wall 11 are integrally formed and located in the same plane space so as to have a left front avoidance gap 114 between the left front hooks 111 and the left front vertical wall 11; the left rear vertical wall 12 is provided with 1, 2 or more left rear hooks 111a, and the left rear hooks 111a and the left rear vertical wall 12 are integrally formed and located in the same plane space, so that a left rear avoidance gap 114a is formed between the left rear hooks 111a and the left rear vertical wall 12. Front side, the rear side of vertical connection fossil fragments 1's right vertical wall body 13 are provided with 1, 2 or more right trip respectively and are right front trip 131 and right back trip 131a, right front trip 131 with right vertical wall body 13 integrated into one piece is thereby in being in coplanar space right front trip 131 with right front clearance 134 has between the vertical wall body 13 of right side, right back trip 131a with right vertical wall body 13 integrated into one piece is thereby in being in coplanar space right back trip 131a with right back clearance 134a has between the vertical wall body 13 of right side. According to the technical scheme, the hooks (111, 111a, 131 a) are integrally formed with the wall body where the hooks are located and are located in the same plane space, so that in the process of carrying the vertical connecting keel 1, the hooks (111, 111a, 131 a) cannot be easily hooked and scraped on other objects to damage other objects due to the fact that the hooks do not protrude out of the wall body where the hooks are located, the hooks are not easily collided by other objects to be bent, deformed or broken, the hands of a carrier cannot be easily scraped, and the vertical connecting keel 1 cannot be easily clamped and entangled by the hooks on another adjacent vertical connecting keel 1 to increase the difficulty of lifting and separating the vertical connecting keel 1; in addition, the clamping hooks (111, 111a, 131 a) are integrally formed with the wall body where the clamping hooks are located and located in the same plane space, so that the processing technology is simplified, and the clamping hooks are directly processed by adopting a punching technology in the embodiment.
The construction of the cross connecting runner 2 is discussed in further detail below in conjunction with the drawings. As shown in fig. 8 to 10, the transverse connecting keel 2 includes a transverse main plate portion 21, a transverse bent portion 22 located at an upper portion of the transverse main plate portion 21, and a transverse downward bent portion 23 located at a lower portion of the transverse main plate portion 21. The transverse downward bent portion 23 includes a transverse vertical wall 231 arranged substantially parallel to the transverse main plate portion 21 and a transverse groove bottom wall 232 connected between the transverse main plate portion 21 and the transverse vertical wall 231, and the transverse connecting keel 2 is connected to the vertical connecting keel 1 through the transverse main plate portion 21. As seen from the front view (fig. 9), the length L2 of the transverse bent portion 22 in the left-right direction and the length L1 of the transverse bent portion 23 in the left-right direction are respectively shorter than the length L3 of the transverse main plate portion 21 in the left-right direction, so that a left margin 24 and a right margin 24a are respectively reserved at the left and right ends of the transverse main plate portion 21, and bayonets, namely, a left bayonet 240 and a right bayonet 240a, are respectively arranged on the margins (24, 24 a). According to the technical scheme, the structural strength of the transverse connecting keel 2 can be strengthened by the transverse bending part 22 and the transverse downward bending part 23, and the bearing capacity is improved. In addition, the bayonets (240, 240 a) are also a simple and convenient structure, and are directly machined by a punching process in the embodiment.
As shown in fig. 1 and 2, a plurality of transverse connection keels 2 are clamped between a pair of left and right vertical connection keels 1, and every two transverse connection keels 2 are arranged in the same height position of the vertical connection keels 1 in a group in a front-back arrangement mode. The clamping connection mode between the transverse connecting keel 2 and the vertical connecting keel 1 is described below by taking the transverse connecting keels (2 a, 2 b) as an example. Be located the front side the left empty remainder 24 of transverse connection fossil fragments 2a passes and is located left vertical connection fossil fragments 1a let behind the left side front avoidance clearance 114 the suit of left side bayonet 240 is arrived on the left side front trip 111, left side bayonet 240 with the cooperation of the left side front trip 111 is connected and is constituted the joint structure, and the right empty remainder 24a of transverse connection fossil fragments 2a passes and is located the vertical connection fossil fragments 1b on right side the left side front avoidance clearance 114 is followed and is let right side bayonet 240a suit is arrived on the left side front trip 111, right side bayonet 240a with the cooperation of the left side front trip 111 is connected and is constituted the joint structure. Therefore, the left end and the right end of the transverse connecting keel 2a are respectively clamped on the left front vertical wall body 11 of the vertical connecting keels (1 a and 1 b) arranged on the left side and the right side. The left end and the right end of the transverse connecting keel 2b positioned at the rear side are respectively clamped on the left rear vertical wall body 12 of the vertical connecting keels (1 a, 1 b) arranged at the left side and the right side in the same mode. It can be seen that what adopt between the vertical connection fossil fragments 1 with the cross connection fossil fragments 2 is two formula joint structures of arranging, two cross connection fossil fragments 2 that arrange around side joint between the same high position of vertical connection fossil fragments 1, and the same root the same high position of vertical connection fossil fragments 1 can connect four cross connection fossil fragments 2 simultaneously (of course in other embodiments, the cross connection fossil fragments 2 of tandem can arrange in the different high positions of vertical connection fossil fragments 1). Therefore, the stability of a framework system formed by connecting the transverse connecting keels 2 and the vertical connecting keels 1 can be enhanced, the framework system is not easy to distort and even scatter, and the decoration panels 3 can be arranged on the front and the back of the partition wall 100, so that the front and the back of the partition wall 100 can be used as exposed decoration surfaces, and the application range of the partition wall 100 is expanded. In addition, work as transverse connection fossil fragments 2 pass through joint structure joint is received back on the vertical connection fossil fragments 1, utilize bayonet socket (240, 240 a) with the cooperation of trip (111, 111a, 134 a) is connected, can restrict at least transverse connection fossil fragments 2 is at the ascending displacement of left right side direction, makes transverse connection fossil fragments 2 is relative in left right side direction vertical connection fossil fragments 1 obtains the location, improves transverse connection fossil fragments 2 with connection stability between the vertical connection fossil fragments 1 can also simplify transverse connection fossil fragments 2 with connection structure between the vertical connection fossil fragments 1 improves the installation effectiveness.
The transverse connecting keels 2 and the vertical connecting keels 1 can adopt a clamping mode as shown in fig. 1 and fig. 2 and a clamping mode as shown in fig. 11. As shown in fig. 11, the vertical connecting keels (1 a, 1 b) arranged on the left and right are arranged in the same direction, that is, the space 17 between the vertical connecting keels (1 a, 1 b) faces to the left, and the left front vertical wall 11 and the left rear vertical wall 12 of the vertical connecting keel 1b are close to the right vertical wall 13 of the vertical connecting keel 1 a. The left end joint of transverse connection fossil fragments 2a is in on the front side of vertical connection fossil fragments 1 a's right vertical wall body 13, and the right-hand member joint is on vertical connection fossil fragments 1 b's left front vertical wall body 11, transverse connection fossil fragments 2 b's left end joint is in on the rear side of vertical connection fossil fragments 1 a's right vertical wall body 13, and the right-hand member joint is on vertical connection fossil fragments 1 b's left back vertical wall body 12. Or alternatively, a snap-fit arrangement as shown in figure 12. As shown in fig. 12, the vertical connecting keels (1 a, 1 b) arranged on the left and right are arranged in a back-to-back arrangement, that is, the space spaces 17 of the vertical connecting keels (1 a, 1 b) face in opposite directions, and the right vertical wall 13 of the vertical connecting keel 1b is close to the right vertical wall 13 of the vertical connecting keel 1 a. The left and right ends of the transverse connection keel 2a are respectively connected with the front side of the right vertical wall body 13 of the vertical connection keel (1 a, 1 b), and the left and right ends of the transverse connection keel 2b are respectively connected with the rear side of the right vertical wall body 13 of the vertical connection keel (1 a, 1 b).
The left front hook 111, the left rear hook 111a, the right front hook 131 and the right rear hook 131a have similar structures, functions and technical effects, and the left front hook 111 is taken as an example for description below. As shown in fig. 4 and 7, in order to increase the difficulty of separating the cross connecting keel 2 from the left front hook 111 by moving in the front-rear direction, the left front hook 111 protrudes upward to form a hook arm. Left front trip 111 root upside is provided with and to accept the constant head tank 112 of the left vacant part 24 of transverse connection fossil fragments 2, works as transverse connection fossil fragments 2's left vacant part 24 passes through left bayonet 240 suit is in when on the left front trip 111, transverse connection fossil fragments 2's left vacant part 24 also blocks into in the constant head tank 112. Can increase like this transverse connection fossil fragments 2 break away from through moving in the front and back direction the degree of difficulty of left front trip 111, the reinforcing transverse connection fossil fragments 2 with vertical connection fossil fragments 1's stability of being connected, but left front trip 111 does not prevent transverse connection fossil fragments 2 break away from through the rebound left front trip 111. In order to make the transverse connection fossil fragments 2 can not break away from through upward movement easily left front trip 111, it is further still be provided with in left side front trip 111 root top for left side front trip 111 root and outside convex card limit 113, work as the left vacant portion 24 of transverse connection fossil fragments 2 passes through when the left bayonet 240 suit is in on the left side front trip 111, the left vacant portion 24 of transverse connection fossil fragments 2 not only block into in left side front trip 111 root but also block into thereby the restriction below the card limit 113 the left vacant portion 24 of transverse connection fossil fragments 2 can not upwards deviate from easily. Thus, the connection stability of the transverse connection keel 2 and the vertical connection keel 1 is enhanced. However, it is possible to make the left vacant part 24 of the cross-linking runner 2 be bent and deformed to avoid the catching edge 113 by applying a certain external force and moved in an obliquely upward manner to be disengaged from the left front catching hook 111, and it is seen that the operation of detaching the cross-linking runner 2 is also easy.
As shown in fig. 13 and 14, in order to enable the detachable connection between the decorative panel 3 and the transverse connecting keel 2, a plurality of panel connectors 400 are provided on the back side wall of the decorative panel 3, and the panel connectors 400 include a base 4 and a cushion rubber block 5. The base 4 includes a base 41 for attachment to the back side wall of the trim panel 3, and a lower arm 42 extending outwardly from the base 41, the lower arm 42 forming a first catch 43. In the present embodiment, the first engaging groove 43 is formed between the lower arm 42 and the base 41. Of course, in other embodiments, the first locking groove 43 may be directly disposed on the lower arm 42; alternatively, after the panel connector 400 is mounted on the rear side wall of the decorative panel 3, the decorative panel 3 cooperates with the lower arm 42 to form the first engaging groove 43. The cushion rubber block 5 is inserted into the first clamping groove 43. The cushion rubber block 5 is U-shaped, so that not only the front wall body 52 and the rear wall body 51 are provided, but also a second clamping groove 53 is arranged between the front wall body 52 and the rear wall body 51, and a clamping matching structure is respectively arranged between the front wall body 52 and the rear wall body 51 and between the front groove wall and the rear groove wall (41, 42) of the first clamping groove 43, so that the cushion rubber block 5 cannot be easily separated from the first clamping groove 43 after being embedded into the first clamping groove 43. Specifically say the joint cooperation structure includes and sets up respectively recess (510, 520) on preceding, back wall body (51, 52), and set up respectively joint (411, 421) on preceding, back cell wall (41, 42) of first draw-in groove 43, joint (411, 421) can stretch into recess (510, 520) internal fixation block 5 is glued in the buffering. Of course, in other embodiments, the positions of the grooves (510, 520) and the latching heads (411, 421) may be interchanged, or it is also possible to provide the grooves 510 only on the front slot wall 51 and the latching heads 411 on the front slot wall 41 of the first latching slot 43. The panel connector 400 is clamped to the transverse vertical wall 231 of the transverse downward bending part 23 through the second clamping groove 53 formed on the panel connector. According to the above technical solution, firstly, in a specific application, the transverse upright wall 231 is inserted into the second slot 53 of the cushion rubber block 5, and the gap between the transverse upright wall 231 and the front and rear slot side walls (41, 42) of the first slot 43 is filled with the front wall body 52 and the rear wall body 51 of the cushion rubber block 5, so that the looseness of the panel connector 400 on the transverse downward bent part 23 can be reduced, which is beneficial to improving the mounting stability of the decorative panel 3 connected to the panel connector 400, and when the decorative panel 3 is knocked, the vibration of the decorative panel 3 can be buffered by the cushion rubber block 5, and the noise generated by the vibration of the decorative panel 3 is absorbed, so that a relatively heavy and low sound is formed, and people feel that the structure of the partition wall 100 is solid and stable; in addition, since the clamping fit structure is arranged between the front wall body 52 and the rear wall body 51 and the front and rear groove walls of the first clamping groove 43, the clamping stability between the cushion rubber block 5 and the first clamping groove 43 is enhanced, and when the position of the panel connector 400 is adjusted due to the need to adjust the position of the decorative panel 3, the cushion rubber block 5 is not easily separated from the first clamping groove 43, so that the adjustment operation can be smoothly and conveniently completed.
As shown in fig. 14, the lower arm 42 is an arc-shaped arm capable of enhancing elasticity, but in other embodiments, the lower arm 42 may also be a bending arm capable of enhancing elasticity. In this way, in the process of inserting the horizontal standing wall 231 into the first locking groove 43 in a clamping manner, when the lower arm 42 bears the pushing force of the horizontal standing wall 231, the lower arm can be opened and expanded outwards to make the first locking groove 43 relatively easy to insert the horizontal standing wall 231 into the first locking groove 43, and then the lower arm can be reset and narrowed to narrow the first locking groove 43 to reduce the looseness of the horizontal standing wall 231 in the first locking groove 43 in the inner and outer directions, so that the looseness of the decorative panel 3 in the inner and outer directions can be reduced. In addition, the first engaging groove 43 is trumpet-shaped. Thus, the first slot 43 has a shape with a notch larger than the slot cavity, and the accuracy of inserting the transverse standing wall 231 into the first slot 43 at one time can be improved by the shape characteristics, so that the difficulty of inserting the transverse standing wall 231 into the first slot 43 quickly is reduced. Furthermore, the side wall of the surface of the substrate 41 is provided with an uneven pattern 412 for accommodating an adhesive. In this way, a certain amount of adhesive can be accommodated by the embossment 412, and the base body 41 can be adhered to the decorative panel 3 by the adhesive accommodated on the embossment 412.
In order to facilitate the adjustment of the height of the decoration panel 3 connected to the panel connector 400, the base 4 further includes a cantilever body 44, the cantilever body 44 is connected to the base 41 through the lower arm 42 (of course, in other embodiments, the cantilever body 44 may also be directly connected to the base 41), a threaded adjustment hole 440 and an adjustment screw 6 screwed to the threaded adjustment hole 440 are further provided on the cantilever body 44, the threaded adjustment hole 440 is offset from the lower arm 42, and the threaded adjustment hole 440 is located at a position farther away from the base 41 than the lower arm 42; when the decorative panel 3 is hung on the transverse downward bending part 23 through the panel connector 400, the bottom end of the adjusting screw 6 abuts against the transverse groove bottom wall 232 of the transverse downward bending part 23 and the position of the decorative panel 3 in the up-down direction can be finely adjusted by rotating the adjusting screw 6.
The hanging partition wall 100 can be used for storing power signal pipelines besides decorating and separating spaces, and further, a through line hole (not shown in the figure) for avoiding the power signal pipelines is formed in the vertical connecting keel 1. The decorative panel 3 comprises a main panel and an auxiliary panel arranged above or below the main panel, and the auxiliary panel is hung on the transverse connecting keel 2 arranged in the area near the through hole so as to hide the through hole. Therefore, the auxiliary panel can be detached independently to maintain or replace the power signal pipeline. The vertical connecting keel structure further comprises a connecting angle bracket (not shown) which is approximately L-shaped, and the connecting angle bracket is connected to the top or/and the foot of the vertical connecting keel 1 and is used for connecting the vertical connecting keel 1 to a building.

Claims (10)

1. The easily-installed hanging partition wall is characterized by comprising transverse connecting keels, vertical connecting keels and a decoration panel which are respectively in a sectional material shape, wherein the transverse connecting keels and the vertical connecting keels are arranged in a transversely-vertically staggered mode and connected, and the decoration panel is detachably installed on the transverse connecting keels; the cross section of the vertical connecting keel is a hollow profile, and the vertical connecting keel is provided with a left vertical wall body and a right vertical wall body which are arranged in parallel at the left side and the right side; the vertical connecting keel is provided with clamping hooks, the clamping hooks comprise at least 1 right clamping hook, namely a right front clamping hook and a right rear clamping hook, which are arranged on the front side and the rear side of a right vertical wall body of the vertical connecting keel, and at least 1 left clamping hook, namely a left front clamping hook and a left rear clamping hook, which are arranged on the front side and the rear side of a left vertical wall body of the vertical connecting keel, and the clamping hooks and the wall body where the clamping hooks are located are integrally formed and located in the same plane space, so that an avoiding gap is formed between the clamping hooks and the wall body where the clamping hooks are located; bayonets are respectively arranged on the left end part and the right end part of the transverse connecting keel, the bayonets are sleeved on the hooks after the end part of the transverse connecting keel passes through the avoiding gap, and the bayonets and the hooks are connected in a matched mode to form a clamping structure; at least two transverse connection fossil fragments pass through the joint structure is arranged two about arranging between the vertical connection fossil fragments, wherein, one the left and right both ends of transverse connection fossil fragments joint respectively two that left and right were arranged on the left and right vertical wall body's of vertical connection fossil fragments the front side or the front side of right vertical wall body on, another the left and right both ends difference joint of transverse connection fossil fragments is two that left and right was arranged on the left and right side the rear side of vertical wall body's of vertical connection fossil fragments or the rear side of right vertical wall body on.
2. The easy-to-mount, hanging partition wall of claim 1 wherein the hooks project upwardly to form hook arms.
3. The easy-to-mount partition wall according to claim 1, wherein a positioning groove capable of receiving an end wall body of the cross connecting keel is provided on an upper side of a root of the hook, and when the end of the cross connecting keel is fitted to the hook through the bayonet, the end of the cross connecting keel is also snapped into the positioning groove.
4. The easy-to-mount hanging partition wall according to claim 1, wherein a clamping edge protruding outward relative to the root of the hook is further provided above the root of the hook, and when the end of the cross-connecting keel is fitted to the hook through the bayonet, the end of the cross-connecting keel is not only clamped into the root of the hook but also clamped into the lower surface of the clamping edge so as to limit the end of the cross-connecting keel from being easily released upward.
5. The easy-to-mount hanging partition wall according to any one of claims 1 to 4, wherein the transverse connecting keel comprises a transverse main plate portion, a transverse bent portion located at an upper portion of the transverse main plate portion, and a transverse downward bent portion located at a lower portion of the transverse main plate portion, and when viewed from a front view, the extension lengths of the transverse bent portion and the transverse downward bent portion in the left-right direction are shorter than those of the transverse main plate portion, so that spare portions are reserved at left and right ends of the transverse main plate portion respectively, and the bayonet is arranged on the spare portions.
6. The easy-to-mount hanging partition wall according to any one of claims 1 to 4, wherein the vertical connection keel further comprises a front vertical wall body and a rear vertical wall body which are arranged between the left vertical wall body and the right vertical wall body when viewed from the cross section of the vertical connection keel, the left vertical wall body comprises a left front vertical wall body and a left rear vertical wall body, a distance is formed between the left front vertical wall body and the left rear vertical wall body, the left front clamping hook is arranged on the left front vertical wall body, and the left rear clamping hook is arranged on the left rear vertical wall body.
7. The easy-to-install hanging partition wall according to claim 5, wherein a plurality of panel connectors are provided on the back side wall of the decorative panel, the panel connectors including a base for connecting to the back side wall of the decorative panel, a lower extension arm extending outwardly from the base, the lower extension arm for forming a first card slot; the buffer rubber block is U-shaped, so that the buffer rubber block not only has a front wall body and a rear wall body, but also is provided with a second clamping groove between the front wall body and the rear wall body, and a clamping matching structure is arranged between the front wall body and/or the rear wall body and the front and rear groove walls of the first clamping groove, so that the buffer rubber block cannot be easily separated from the first clamping groove after being embedded into the first clamping groove; the panel connector is clamped to the transverse downward bending part of the transverse connecting keel through the second clamping groove arranged on the panel connector.
8. The easy-to-mount wall spacer according to claim 7, wherein the panel connector further comprises a cantilever body, the cantilever body is connected to the base, the cantilever body is further provided with a threaded adjusting hole and an adjusting screw screwed in the threaded adjusting hole, the threaded adjusting hole and the lower extension arm are arranged in a staggered manner, and the threaded adjusting hole is located at a position far away from the base relative to the lower extension arm; when the decorative panel is hung on the transverse downward bending part through the panel connector, the bottom end of the adjusting screw abuts against the transverse downward bending part and the position of the decorative panel in the vertical direction can be finely adjusted by rotating the adjusting screw.
9. The easy-to-mount hanging partition wall according to claim 7 or 8, wherein the vertical connecting keel is provided with a through hole for avoiding a power signal pipeline.
10. The easy-to-install hanging partition wall according to claim 9, wherein the decorative panel comprises a main panel and an auxiliary panel arranged above or below the main panel, and the auxiliary panel is hung on the transverse connecting keel arranged in the area near the through hole so as to hide the through hole.
CN201911032661.1A 2018-10-29 2019-10-28 Easy-to-install hanging partition wall Active CN111101622B (en)

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CN201821762182 2018-10-29

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CN201921823753.7U Active CN211114247U (en) 2018-10-29 2019-10-28 Easy-to-mount hanging partition wall
CN201921823746.7U Active CN211523646U (en) 2018-10-29 2019-10-28 Panel connector and hanging type partition wall applied to same
CN201921824668.2U Active CN211114248U (en) 2018-10-29 2019-10-28 Panel connector with improved structure and application of hanging type partition wall
CN201911032656.0A Active CN111101621B (en) 2018-10-29 2019-10-28 Mounted partition wall using panel connector with improved structure
CN201911032661.1A Active CN111101622B (en) 2018-10-29 2019-10-28 Easy-to-install hanging partition wall

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CN201921823746.7U Active CN211523646U (en) 2018-10-29 2019-10-28 Panel connector and hanging type partition wall applied to same
CN201921824668.2U Active CN211114248U (en) 2018-10-29 2019-10-28 Panel connector with improved structure and application of hanging type partition wall
CN201911032656.0A Active CN111101621B (en) 2018-10-29 2019-10-28 Mounted partition wall using panel connector with improved structure

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CN115553594A (en) * 2022-09-21 2023-01-03 广州百利康泰医疗科技有限公司 Modular furniture system

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CN211114247U (en) * 2018-10-29 2020-07-28 广东天赐湾实验室装备制造有限公司 Easy-to-mount hanging partition wall
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CN211114248U (en) 2020-07-28
CN111101621A (en) 2020-05-05
CN211523646U (en) 2020-09-18
CN111101621B (en) 2025-10-10
CN211114247U (en) 2020-07-28
CN111101622B (en) 2025-06-13

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