A wall panel partitioning device and method

By designing an adjustment mechanism for the wall panel partition device, the problems of material waste and low installation efficiency caused by cutting errors of the wall panel partition strips were solved, achieving precise partitioning and efficient installation.

CN119434590BActive Publication Date: 2025-10-24CHINA FIRST METALLURGICAL GROUP
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Patent Information

Application Number
CN202411823624.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-10-24
Estimated Expiration
2044-12-12

AI Technical Summary

Technical Problem

Existing technologies are prone to errors when cutting wall panel dividers, leading to low installation efficiency and material waste.

Method used

A wall panel partition device is designed, including a wall panel partition strip and an adjustment mechanism. Through the cooperation of gears, racks and pinions, the length of the partition strip can be adjusted as needed, and it can be fixed to the wall panel body at different heights through a limiting component and a fixing mechanism.

Benefits of technology

It enables precise separation of wall panels of different heights, avoiding material waste and improving installation efficiency, while reducing handling and storage space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a wall panel separation device, comprising a wall panel separation strip and a wall panel body. The wall panel separation strip is provided with mounting grooves for mounting the wall panel body along both longitudinal sides. The wall panel separation strip is provided with an inner cavity with an "I"-shaped cross section along the longitudinal direction. The inner cavity of the wall panel separation strip is provided with an adjustment mechanism that slides with its inner wall. When the adjustment mechanism moves to the desired position along the "I"-shaped inner cavity of the wall panel separation strip, the adjustment mechanism is fixed to the wall panel separation strip via a set limiting assembly. The wall panel separation strip, the adjustment mechanism and the wall panel body are provided with a fixing mechanism that fixes the three together. The present invention also discloses a wall panel separation method. The present invention can separate wall panel bodies of different heights, avoid the problems of low installation efficiency and serious material waste, and can be widely used in the field of wall assembly technology.
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Description

Technical Field

[0001] The present invention relates to a wall assembly technology, in particular to a wall panel separation device and method. Background Art

[0002] Wall panel dividers, also known as wall panel divider strips, are usually made of metal. They are components installed between two wall panels for partitioning and splicing, making them easier to operate during installation and maintenance.

[0003] When using wall panel dividers to partition and splice two adjacent partitions during the decoration and installation process of the interior of a building, the height of the wall panel to be partitioned will be determined based on the height of the wall panel to be partitioned. The commonly used method now is to measure the wall panel divider on site and mark it, and then manually cut the marked area with a handheld cutting machine. During the cutting process, if the worker's hands shake, it is easy to cause cutting offset or cutting errors, so that the wall panel divider may have an extra section after cutting and cannot be installed, requiring secondary cutting processing, thereby reducing installation efficiency, or the wall panel divider may be cut short, resulting in a waste of wall panel divider materials. Summary of the Invention

[0004] The purpose of the present invention is to overcome the shortcomings of the above-mentioned background technology and provide a wall panel separation device and method, so that wall panel bodies of different heights can be separated to avoid the problems of low installation efficiency and serious material waste.

[0005] The present invention provides a wall panel partition device, including a wall panel partition strip and a wall panel body, wherein the wall panel partition strip is provided with installation grooves for installing the wall panel body along both sides of the longitudinal direction, and the wall panel partition strip is provided with an inner cavity with an "I"-shaped cross-section along the longitudinal direction, and the inner cavity of the wall panel partition strip is provided with an adjustment mechanism that slides with its inner wall, and when the adjustment mechanism moves to the desired position along the "I"-shaped inner cavity of the wall panel partition strip, the adjustment mechanism is fixed to the wall panel partition strip through a set limit assembly, and the wall panel partition strip, the adjustment mechanism and the wall panel body are provided with a fixing mechanism that fixes the three together.

[0006] In the above technical solution, the adjustment mechanism has an adjustment dividing strip, the outer wall of the adjustment dividing strip cooperates with the "I"-shaped inner cavity of the wall panel dividing strip, a rectangular cavity is provided in the middle of the adjustment dividing strip along the longitudinal direction, and the overall cross-section is a "Ⅱ"-shaped structure, a gear is provided between the two sides of the rectangular cavity of the adjustment dividing strip, and a rotating shaft is provided at both ends of the gear to pass through the side walls of the adjustment dividing strip and the wall panel dividing strip in sequence, the inner wall of the adjustment dividing strip corresponding to the gear tooth surface is provided with a rack meshing with the gear, and the side walls of the adjustment dividing strip corresponding to the two ends of the gear are respectively provided with symmetrical A strip-shaped through groove, the rotating shaft of the gear passes through the strip-shaped through groove, the limiting component of the adjusting mechanism includes a rotating wheel arranged on the rotating shaft at one end of the gear, and the side wall of the wall panel partition strip corresponding to the rotating wheel is provided with a circular groove for accommodating the rotation of the rotating wheel, and a first circular hole is provided on the disk surface of the rotating wheel, and a plurality of second circular holes are evenly distributed on the side wall of one side of the circular groove, and the plurality of second circular holes correspond to the movement trajectory of the first circular hole. When the first circular hole is coaxially aligned with one of the second circular holes, the second circular hole is connected to the first circular hole through a clamping rod, and the outer wall of the clamping rod is interference fit with the inner wall of the first circular hole and the second circular hole.

[0007] In the above technical solution, a bearing with an inner ring fixedly connected to the rotating shaft at the other end of the gear is provided, and the outer ring of the bearing is fixed on the inner wall corresponding to the wall panel dividing strip, and a circular hole for accommodating the bearing is provided on the side wall corresponding to the adjusting dividing strip and the bearing.

[0008] In the above technical solution, an "I"-shaped support seat is provided on the top of the adjustable dividing strip, and there are multiple fixing mechanisms, which are respectively arranged on the "I"-shaped support seat at the bottom of the wall panel dividing strip and the adjustable dividing strip to fix the wall panel body to the wall panel dividing strip and the adjustable dividing strip.

[0009] In the above technical scheme, the fixing mechanism comprises L-shaped sliding grooves arranged on the bottom of the wallboard partition strip and the top of the "H"-shaped support seat of the adjusting partition strip respectively, the L-shaped sliding grooves are arranged on four corners of the bottom of the wallboard partition strip and the top of the "H"-shaped support seat of the adjusting partition strip respectively, the L-shaped sliding grooves on the four corners of the wallboard partition strip and the "H"-shaped support seat of the adjusting partition strip are opposite to each other, the horizontal openings of the L-shaped sliding grooves are arranged opposite to the horizontal openings of the corresponding L-shaped sliding grooves, the vertical openings of the L-shaped sliding grooves on the bottom of the wallboard partition strip are arranged downward, the vertical openings of the L-shaped sliding grooves on the "H"-shaped support seat of the adjusting partition strip are arranged upward, each L-shaped sliding groove is provided with a sliding plug block, each sliding plug block is provided with a stop plate with a circumferential size greater than that of the horizontal opening of the L-shaped sliding groove and located in the L-shaped sliding groove, the stop plate is attached to the inner wall of the horizontal opening of the corresponding L-shaped sliding groove, the part of each sliding plug block extending out of the horizontal opening of the corresponding L-shaped sliding groove is in a wedge-shaped structure, the inclined surface of the wedge-shaped structure is inclined from outside to inside, and the inward side of the inclined surface is a vertical surface parallel to the L-shaped sliding groove, the side of the stop plate away from the wedge-shaped structure is provided with a spring, one end of the spring is fixedly connected to the stop plate, and the other end of the spring is fixedly connected to the inner wall opposite to the L-shaped sliding groove and the stop plate, and the eight corners of the wallboard body are provided with rectangular grooves corresponding to the wedge-shaped structure of the sliding plug block, and the rectangular grooves are adapted to the wedge-shaped structure of the sliding plug block in shape and size.

[0010] In the above technical scheme, the top of the "H"-shaped support seat of the wallboard partition strip and the adjusting partition strip is respectively provided with an adapter connecting mechanism, the adapter connecting mechanism has adapter heads arranged on the top of the "H"-shaped support seat of the wallboard partition strip and the adjusting partition strip respectively, the adapter head has a "H"-shaped body arranged symmetrically, first bodies in the shape of inverted "L" are symmetrically arranged on both sides of the vertical structure of the "H"-shaped body, one end of the horizontal section of the first body is flush with the horizontal structure of the first end part of the "H"-shaped body, and the other end is shorter than the horizontal structure of the top of the "H"-shaped body, second bodies in the shape of "L" are symmetrically arranged on both sides of the vertical structure of the "H"-shaped body, one end of the horizontal section of the second body is flush with the horizontal structure of the second end part of the "H"-shaped body, and the other end is shorter than the horizontal structure of the bottom of the "H"-shaped body, and the structure of the adapter head is adapted to the end of the wallboard partition strip or the adjusting partition strip with a cross section in the shape of "H".

[0011] In the above technical scheme, the adapter head top and bottom are provided with a screw hole clamping block composed of a square plate and a threaded rod at the center of one side of the square plate, the threaded rod of the screw hole clamping block is connected with the screw hole thread of the adapter head top and bottom, the center of the square plate of the screw hole clamping block is provided with a screw hole, the bottom of the wallboard partition strip and the center of the top of the "H" shaped support of the adjusting partition strip are respectively provided with a clamping groove matched with the section of the square plate of the screw hole clamping block, the clamping groove is provided below with a rotating cavity in the shape of a cylinder, the geometric center of the clamping groove is coaxially arranged with the axis of the rotating cavity, the section of the bottom of the wallboard partition strip is in the shape of an H, the side wall of the bottom of the wallboard partition strip in the shape of an H and the top support of the adjusting partition strip is provided with a threaded hole communicating with the rotating cavity and the external space, the adapter connecting mechanism further comprises a bolt, the bolt is connected with the threaded hole and the screw hole of the square plate of the screw hole clamping block in sequence.

[0012] In the above technical scheme, one side of the wedge-shaped structure is provided with a telescopic rod, the telescopic rod is sleeved in the spring and the end away from the stop plate is a distance away from the inner wall of the L-shaped sliding groove; the sliding insertion clamping block is made of iron material, the inner wall of the rectangular slot of the wallboard body opposite to the slot is provided with a magnet block, the magnet block is attracted to the wedge-shaped structure of the sliding insertion clamping block; the outer wall of the clamping rod is provided with a rubber sleeve, the side wall of the rubber sleeve is in interference fit with the inner wall of the first circular hole and the second circular hole; one end of the clamping rod is provided with a connecting rope connected with the rotating wheel; one end of the bolt is provided with a screw groove facilitating the rotation of the bolt; the inner wall of the rotating cavity is provided with two limiting blocks, the two limiting blocks are respectively located on both sides of the clamping groove, the horizontal distance between the end portions of the two limiting blocks is greater than the thickness of the square plate of the screw hole clamping block, and the horizontal distance between the opposite sides of the two limiting blocks is equal to the thickness of the square plate of the screw hole clamping block.

[0013] The application also provides a wallboard partition method, which has the following steps: S1, according to the height of the wallboard body to be partitioned, manually or with the aid of a tool, inserting the gear and the rack into the inner wall of the adjusting partition strip, twisting the rotating wheel in the circular groove to a certain direction and rotating by a certain angle, driving the gear and the bearing to rotate by a corresponding angle, driving the rack to move upward, and driving the inner wall of the adjusting partition strip to move upward to a certain position in the inner wall of the wallboard partition strip 1 through the strip-shaped through groove; S2, inserting the clamping rod into the first circular hole and the second circular hole corresponding to the angle to fix the adjusting partition strip, and the extended adjusting partition strip and the wallboard partition strip forming a partition structure with a new length; S3, partitioning and splicing the wallboard body according to the partition structure with the new length, holding one end of the wallboard body and pushing it into the grooves on both sides of the wallboard partition strip and the adjusting partition strip, and in the pushing process, the end of the wallboard body first contacts the wedge-shaped structure of the sliding insertion block and extrudes it, the sliding insertion block moves away from the horizontal opening of the L-shaped sliding groove, and the spring and the telescopic rod are also extruded and move away from the horizontal opening of the L-shaped sliding groove; S4, moving the wallboard body to the position where the rectangular groove corresponds to the wedge-shaped structure of the sliding insertion block, and the spring and the telescopic rod reset to cause the wedge-shaped structure of the sliding insertion block to be clamped into the rectangular groove and be fixed by the magnet block.

[0014] In the above technical solution, the method further comprises the following step S5: when the wallboard body is installed in a cross shape, the screw hole clamping block at the end of the adapter head is inserted into the clamping groove, and the adapter head is rotated to 90 degrees, so that the square plates on both sides of the screw hole clamping block abut against the corresponding limiting blocks, the bolts are sequentially connected with the screw holes and the screw holes of the square plates of the screw hole clamping blocks, the end of the wallboard partition strip or the adjusting partition strip with a cross-section in the shape of an I-beam is matched with the two side structures of the adapter head, and the partitioning of the wallboard body is completed.

[0015] The wallboard partition device and method have the following beneficial effects:

[0016] 1) By arranging the adjusting mechanism, when the wallboard partition strip is used to partition and splice two adjacent wallboard bodies during the decoration and installation of the interior of a building, the height of the wallboard body to be partitioned can be adjusted, the gear and the rack are manually or with the aid of a tool inserted into the inner wall of the adjusting partition strip, the rotating wheel is twisted to rotate the gear in the circular groove to a certain direction and by a certain angle, the rack is driven to move upward, the inner wall of the adjusting partition strip is driven to move upward to a certain position in the inner wall of the wallboard partition strip through the strip-shaped through groove, one end of the clamping rod is inserted into the first circular hole and the second circular hole, the adjusted adjusting partition strip can be fixed, the extended adjusting partition strip and the wallboard partition strip form a partition structure with a new length, and the two wallboard bodies are partitioned and spliced according to the new partition structure.

[0017] 2) By adjusting the position relationship of the adjusting partition strip and the wallboard partition strip, the wallboard body of different heights can be separated, so that the material waste caused by cutting due to measurement error and the reduction of installation efficiency can be avoided.

[0018] 3) By setting the adjusting mechanism, the partition processing operation can reduce the material waste, reduce the workload and storage space of transportation, and facilitate the transportation operation. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a schematic diagram of the overall structure of the wallboard partition device of the present application.

[0020] Figure 2 It is a structure display schematic diagram of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application.

[0021] Figure 3 It is a further display schematic diagram of the structure of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application.

[0022] Figure 4 It is a structure display schematic diagram of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application. Figure 3

[0023] Figure 5 It is a structure display schematic diagram of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application.

[0024] Figure 6 It is a structure display schematic diagram of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application. Figure 5

[0025] Figure 7 It is a structure display schematic diagram of the wallboard partition strip and the adjusting mechanism in embodiment 1 of the wallboard partition device of the present application.

[0026] Figure 8 It is a detailed structure schematic diagram of the "H" shaped support seat at the top of the adjusting partition strip in embodiment 2 of the wallboard partition device of the present application.

[0027] Figure 9 It is a structure schematic diagram of the wallboard body in embodiment 2 of the wallboard partition device of the present application.

[0028] Figure 10 It is a structure enlarged view of the local structure of the wallboard body in embodiment 2 of the wallboard partition device of the present application.

[0029] Figure 11 It is a structure schematic diagram of the adapter head and the bolt cooperation in embodiment 3 of the wallboard partition device of the present application.

[0030] Figure 12 ​​This is a schematic structural diagram of the coordination between the adapter clamp and the wall panel partition strips 1 (adjustable partition strips 27 ) on both sides in Example 3 of the wall panel partition device of the present invention;

[0031] Figure 13 A schematic structural diagram of the cooperation between the adapter head and the "I"-shaped support seat of the adjustment partition strip (27) in Example 3 of the wall panel partition device of the present invention;

[0032] Figure 14 This is a schematic structural diagram of the slot, rotating cavity, limiting block and threaded hole in Example 3 of the wall panel partition device of the present invention;

[0033] Figure 15 It is a schematic flow chart of the wall panel separation method of the present invention. DETAILED DESCRIPTION

[0034] The present invention will be further described in detail below with reference to the accompanying drawings and examples, but the examples should not be construed as limiting the present invention.

[0035] Reference Figure 1 As shown, the present invention provides a wall panel partition device, comprising a wall panel partition strip 1 and two wall panel bodies 5. The inner wall of the wall panel partition strip 1 is provided with an adjustment mechanism 2, and the adjustment mechanism 2 includes an adjustment partition strip 27 and a clamping rod 26. The bottom inner wall of the wall panel partition strip 1 and the top inner wall of the adjustment partition strip 27 are respectively connected to the two ends of the two wall panel bodies 5 through a fixing mechanism 3, and a transfer connection mechanism 4 is provided on one side of the wall panel partition strip 1 and one side of the adjustment partition strip 27.

[0036] Example 1

[0037] See also Figures 2 to 6The inner wall size and shape of the wallboard partition strip 1 and the adjusting partition strip 27 are matched with the end size and shape of the wallboard body 5, the inner wall of the wallboard partition strip 1 is provided with a gear 21, one end of the gear 21 is fixedly connected with a rotating wheel 22, one side of the wallboard partition strip 1 is provided with a circular groove 24, the inner wall size and shape of the circular groove 24 are matched with the outer surface size and shape of the rotating wheel 22, one side of the rotating wheel 22 is provided with a first circular hole 23, the inner wall of the circular groove 24 is provided with a plurality of second circular holes 25, the inner wall size and shape of the first circular hole 23 and all the second circular holes 25 are the same, and the first circular hole 23 and the second circular hole 25 are matched with the size and shape of the outer wall of the clamping rod 26, the inner wall of the wallboard partition strip 1 is slidably connected with the outer surface of the adjusting partition strip 27, the inner wall of the adjusting partition strip 27 is symmetrically provided with a strip-shaped through groove 212, the inner wall size of the adjusting partition strip 27 is matched with the width of the gear 21, the groove width of the strip-shaped through groove 212 is matched with the diameter of the rotating shaft at both ends of the gear 21, the inner wall of the adjusting partition strip 27 is fixedly connected with a gear rack 28, and the gear rack 28 is engaged with the tooth surface of the gear 21. When the wallboard partition strip 1 is used to separate and splice two adjacent wallboard bodies 5 during the decoration and installation of the interior of a building, the gear 21 and the gear rack 28 can be inserted into the inner wall of the adjusting partition strip 27 according to the height of the wallboard body 5 to be separated, the rotating wheel 22 is twisted in a certain direction in the circular groove 24 and rotated by a certain angle, the gear 21 and the bearing 29 are driven to rotate by a corresponding angle, the gear 21 drives the gear rack 28 to move upward, the gear rack 28 drives the inner wall of the adjusting partition strip 27 to move upward to a certain position in the inner wall of the wallboard partition strip 1 through the strip-shaped through groove 212, the clamping rod 26 is inserted into the first circular hole 23 and the corresponding second circular hole 25 at this angle, so that the adjusted adjusting partition strip 27 can be fixed, the extended adjusting partition strip 27 and the wallboard partition strip 1 form a new length of the partition structure, and then the two wallboard bodies 5 are separated and spliced. Through the adjustment of the wallboard partition strip 1, different heights of wallboard bodies 5 can be separated, avoiding various problems caused by excessive or insufficient cutting due to errors during on-site measurement and cutting of the wallboard partition strip 1. Through the setting of the adjusting mechanism 2, the installation efficiency is improved, the material waste is reduced, the carrying time is reduced, and the transportation is facilitated.

[0038] Referring to Figure 4 and Figure 6As shown, the other end of the gear 21 is fixedly connected with a bearing 29, and the outer ring of the bearing 29 is fixedly connected with the inner wall of one side of the wall partition strip 1. By arranging the bearing 29, the connecting friction between the one end of the gear 21 and the inner wall of the wall partition strip 1 can be reduced, and the service life of the gear 21 is improved. The outer surface of the one end of the clamping rod 26 is fixedly connected with a rubber sleeve 210, and the inner wall of the first circular hole 23 and the second circular hole 25 is matched with the size and shape of the outer surface of the rubber sleeve 210. By arranging the rubber sleeve 210, the contact friction of the outer surface of the one end of the clamping rod 26 can be increased, so that the clamping rod 26 is not easy to shake after being clamped into the first circular hole 23 and the second circular hole 25, and the clamping is more firm.

[0039] With reference to Figure 6 As shown, the one end of the clamping rod 26 is fixedly connected with a connecting rope 211, and the one end of the connecting rope 211 is fixedly connected with one side of the rotating wheel 22. By arranging the connecting rope 211, the one end of the clamping rod 26 can be fixedly positioned on one side of the rotating wheel 22, so that the clamping rod 26 is not easy to lose after being pulled out of the first circular hole 23 and the second circular hole 25.

[0040] Example 2

[0041] Example 2 is basically the same as Example 1, and the difference is that:

[0042] With reference to Figures 7-10The cam 33 is fixed to the left of the locking cam 33 and the left end of the locking cam 33 is fixed to the left of the locking cam 33 and the left end of the locking cam 33 is fixed to the right of the locking cam 33 and the left end of the locking cam 33 is fixed to the right of the locking cam 33 and the left end of the locking cam 33 is fixed to the left ... When the wall panel dividing strip 1 is adjusted to a certain height, manually hold the wall panel body 5 and push one end of it into the installation slide grooves on both sides of the wall panel dividing strip 1 and the adjusting dividing strip 27, so that one side of the wall panel dividing strip 1 is abutted against the wedge-shaped structure of the sliding card block 33, and squeeze it to make the wedge-shaped structure of the sliding card block 33 move inward in the L-shaped slide groove 31, compressing the spring 32 between the stop plate of the sliding card block 33 and the inner wall opposite to the L-shaped slide groove 31 and the stop plate. After the wall panel body 5 is locked in the corresponding position, the spring 32 is reset to push the tube sliding card block 33 into the rectangular groove 35, fixing the wall panel body 5 in the inner wall of the wall panel dividing strip 1 and the adjusting dividing strip 27, making it convenient for later installation, and at the same time, it can prevent the wall panel body 5 and the wall panel dividing strip 1 from shaking, resulting in gaps and tilting.

[0043] Reference Figure 8 As shown, a telescopic rod 34 is fixedly connected to the inner wall of the L-shaped chute 31. One end of the telescopic rod 34 is fixedly connected to one side of the sliding block 33. The outer surface of the telescopic rod 34 is sleeved and connected to the inner wall of the spring 32. By providing the telescopic rod 34, the inner wall of the spring 32 can be limited and supported, so that it is not easy to bend and deform when it is compressed or stretched, thereby increasing the service life of the spring 32. Figures 9 to 10 The inner wall of the rectangular slot 35 is fixedly connected to a magnet block 36. The sliding card block 33 is made of iron. One side of the magnet block 36 is magnetically attracted to the other side of the sliding card block 33. By providing the magnet block 36, the sliding card block 33 will be attracted and fixed by the magnet block 36 after it is inserted into the rectangular slot 35, making it more secure when it is engaged and less likely to fall off.

[0044] Example 3

[0045] Example 3 is basically the same as Example 2, except that:

[0046] Reference Figure 8 、 Figures 11-14As shown, the adapter connecting mechanism 4 comprises an adapter head 43 and a bolt 45.

[0047] Referring to Figure 11 , the adapter head 43 has a symmetrically arranged I-shaped body, a first end of the vertical structure of the I-shaped body is symmetrically provided with a first structure in the shape of an inverted "L", one end of the horizontal section of the first structure is flush with the same end of the horizontal structure of the first end of the I-shaped body, and the other end is shorter than the same end of the horizontal structure of the top of the I-shaped body, and a second end of the vertical structure of the I-shaped body is symmetrically provided with a second structure in the shape of an "L", one end of the horizontal section of the second structure is flush with the same end of the horizontal structure of the second end of the I-shaped body, and the other end is shorter than the same end of the horizontal structure of the bottom of the I-shaped body. Figure 12 The structure of the adapter head 43 is adapted to the end of the wall panel partition strip 1 or the adjusting partition strip 27 with a cross-sectional I-shaped wall panel partition strip 1.

[0048] Referring to Figures 13 to 14 , the bottom of the wall panel partition strip 1 and the top of the "I"-shaped support seat of the adjusting partition strip 27 are both provided with a clamping groove 41, the inner wall of the cavity below the clamping groove 41 is provided with a threaded hole 42, the size and shape of the outer surface of one end of the wall panel partition strip 1 and the adjusting partition strip 27 are adapted to the size and shape of the structure on both sides of the adapter head 43, the top and bottom of the adapter head 43 are both fixedly connected with a threaded hole clamping block 44, the size and shape of the outer surface of one end of the threaded hole clamping block 44 are adapted to the size and shape of the inner wall of the clamping groove 41, and the size and shape of the threads of the inner wall of the threaded hole 42 and the threaded hole clamping block 44 are adapted to the threads of the bolt 45. When it is necessary to install the wall panel body 5 in the building in a cross-shaped distribution, the adapter head 43 can be manually held to clamp the threaded hole clamping block 44 on one end into the clamping groove 41, and then rotated to ninety degrees, and then the bolt 45 can be screwed into the threaded hole of the threaded hole clamping block 44, so that the adapter head 43 can be fixed on the bottom of the wall panel partition strip 1 or the "I"-shaped support seat of the adjusting partition strip 27, which facilitates the later addition of the wall panel partition strip 1 or the adjusting partition strip 27 and the connection and fixation, so that the wall panel body 5 installed in a cross shape can be partitioned.

[0049] Referring to Figure 11 , one end of the bolt 45 is provided with a twisting groove 46, and the cross section of the twisting groove 46 is in the shape of a cross. By providing the twisting groove 46, when it is not convenient to manually twist the bolt 45, a corresponding shaped twisting tool can be inserted into the twisting groove 46 to twist it, so that the bolt 45 can be conveniently twisted. Referring to Figure 14, the card slot 41 below is provided with a cylindrical rotating cavity 48, the geometric center of the card slot 41 and the axis of the rotating cavity 48 are coaxially arranged, the inner wall of the rotating cavity 48 is provided with two limiting blocks 47, the two limiting blocks 47 are respectively located on both sides of the card slot 41, the horizontal distance between the end portions of the two limiting blocks 47 is greater than the thickness of the square plate of the screw hole clamping block 44, the horizontal distance between the opposite sides of the two limiting blocks 47 is equal to the thickness of the square plate of the screw hole clamping block 44, in one or more embodiments, the longitudinal section of the limiting block 47 is rectangular. By arranging the limiting block 47, after the screw hole clamping block 44 is clamped into the card slot 41 to a certain position and rotated to a certain angle, the two sides thereof can be abutted on one side of the two limiting blocks 47, so that the inner wall of the screw hole clamping block 44 can be quickly aligned with the inner wall of the threaded hole 42, facilitating the installation of the bolt 45.

[0050] Embodiment 4

[0051] Referring to Figure 15 , the wallboard partitioning method (i.e., the operating principle of the present application) has the following steps:

[0052] S1, when the wallboard partition strip 1 is used to partition and splice two adjacent wallboard bodies 5, according to the height of the wallboard body 5 to be partitioned, the gear 21 and the rack 28 are inserted into the inner wall of the adjusting partition strip 27, the rotating knob 22 is twisted in a certain direction in the circular groove 24 and rotated by a certain angle, the gear 21 and the bearing 29 are rotated by a corresponding angle, the gear 21 drives the rack 28 to move upward, and the rack 28 drives the inner wall of the adjusting partition strip 27 to move upward in the wallboard partition strip 1 through the strip-shaped through slot 212 to a certain position;

[0053] S2, the clamping rod 26 is inserted into the first circular hole 23 and the corresponding second circular hole 25 at the angle to fix the adjusting partition strip 27, and the extended adjusting partition strip 27 and the wallboard partition strip 1 form a new length of partition structure, this adjustment can partition the wallboard bodies 5 of different heights, avoid errors caused by mistakes when measuring and cutting the wallboard partition strip 1 on site, cause waste of materials due to excessive cutting or require secondary cutting processing due to insufficient cutting, reduce installation efficiency, improve installation efficiency, reduce material waste, reduce the amount of carrying work and storage space, and facilitate transportation and processing;

[0054] S3, the wallboard bodies 5 are partitioned and spliced according to the new length of the partition structure, the wallboard bodies 5 are respectively pushed into the grooves on both sides of the wallboard partition strip 1 and the adjusting partition strip 27, the end portion of the wallboard body 5 first contacts the wedge-shaped structure of the sliding insertion clamping block 33 and extrudes it during the pushing process, the sliding insertion clamping block 33 moves away from the horizontal opening of the L-shaped sliding slot 31, and the spring 32 and the telescopic rod 34 are also extruded and move away from the horizontal opening of the L-shaped sliding slot 31.

[0055] S4, the wall plate body 5 moves to the rectangular slot 35 and the wedge-shaped structure of the sliding plug block 33, the spring 32 and the telescopic rod 34 reset, causing the wedge-shaped structure of the sliding plug block 33 to be clamped into the rectangular slot 35 and be absorbed and fixed by the magnet block 36, facilitating the later installation work, and the wall plate body 5 and the wall plate partition strip 1 are not prone to shaking to cause gaps and tilting;

[0056] S5, when installing the wall plate body 5 in a cross distribution, the screw hole plug block 44 at the end of the adapter head 43 is inserted into the clamping groove 41, and is rotated to 90 degrees, so that the two sides of the square plate of the screw hole plug block 44 abut against the corresponding limiting blocks 47, the bolts 45 are sequentially connected with the threaded holes 42 and the screw holes of the square plate of the screw hole plug block 44, the ends of the wall plate partition strip 1 or the adjusting partition strip 27 are matched with the two side structures of the adapter head 43, and the partition treatment of the wall plate body 5 is completed, so that it is convenient to splice new wall plate partition strips 1 and adjusting partition strips 27 later.

[0057] Innovative points

[0058] 1) By setting the adjusting mechanism, when two adjacent wall plate bodies are spliced by using the wall plate partition strip during the decoration and installation of the building interior, the height of the wall plate body to be partitioned can be adjusted according to the need, and the wall plate partition strip can be manually or with the aid of a tool inserted into the inner wall of the rotating wheel, and then rotated to a certain position in the circular groove, driving the rack to move upward, and driving the adjusting partition strip and the inner wall of the strip-shaped through groove to move upward to a certain position in the inner wall of the wall plate partition strip and on the outer surfaces of the two ends of the gear respectively, and then the first circular hole and the second circular hole are clamped at one end of the clamping rod, so that the adjusting partition strip after adjustment can be fixed, and a new length of wall plate partition strip is formed, and then the two wall plate bodies are spliced.

[0059] 2) By adjusting the wall plate partition strip, different heights of wall plate bodies can be partitioned, avoiding errors in measuring and cutting the wall plate partition strip on site, causing excessive cutting and material waste, or requiring secondary cutting processing, reducing installation efficiency,

[0060] 3) By setting the adjusting mechanism, the installation efficiency can be improved, the material waste can be reduced, and the transportation space can be reduced, facilitating transportation.

[0061] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these modifications and variations.

[0062] That which is not described in detail in the specification is considered to be of prior art by those skilled in the art.

Claims

1. A wallboard partition device comprising a wallboard partition strip (1) and a wallboard body (5), the wallboard partition strip (1) is provided with a mounting sliding groove for mounting the wallboard body (5) along the longitudinal two sides, characterized in that: The wallboard partition strip (1) is provided with an inner cavity in the longitudinal direction, which is in the shape of a "H" in cross section. The inner cavity of the wallboard partition strip (1) is provided with an adjusting mechanism (2) which is in sliding fit with the inner wall of the inner cavity. When the adjusting mechanism (2) is moved to the desired position along the "H"-shaped inner cavity of the wallboard partition strip (1), the adjusting mechanism (2) is fixed with the wallboard partition strip (1) through the limiting assembly provided. The wallboard partition strip (1), the adjusting mechanism (2) and the wallboard body (5) are provided with a fixing mechanism (3) which fixes the three together. The adjusting mechanism (2) is provided with an adjusting partition strip (27). The outer wall of the adjusting partition strip (27) is in fit with the "H"-shaped inner cavity of the wallboard partition strip (1). The adjusting partition strip (27) is provided with a cuboid cavity in the middle in the longitudinal direction, and the overall cross section is in the shape of a "II" character. The two sides of the cuboid cavity of the adjusting partition strip (27) are provided with a gear (21). The two ends of the gear (21) are respectively provided with rotating shafts which pass through the side walls of the adjusting partition strip (27) and the wallboard partition strip (1) in sequence. The inner wall of the adjusting partition strip (27) corresponding to the gear (21) is provided with a rack (28) which is in engagement with the gear (21). The side walls of the adjusting partition strip (27) corresponding to the two ends of the gear (21) are respectively provided with symmetric strip-shaped through grooves (212). The rotating shaft of the gear (21) passes through the strip-shaped through grooves (212). The limiting assembly of the adjusting mechanism (2) comprises a rotating wheel (22) provided on the rotating shaft of one end of the gear (21). The side wall of the wallboard partition strip (1) corresponding to the rotating wheel (22) is provided with a circular groove (24) which accommodates the rotation of the rotating wheel (22). The disc surface of the rotating wheel (22) is provided with a first circular hole (23). The side wall of the circular groove (24) is uniformly provided with a plurality of second circular holes (25). The plurality of second circular holes (25) correspond to the movement track of the first circular hole (23). When the first circular hole (23) is coaxially aligned with one of the second circular holes (25), the second circular hole (25) and the first circular hole (23) are connected through a clamping rod (26). The outer wall of the clamping rod (26) is in interference fit with the inner walls of the first circular hole (23) and the second circular hole (25).

2. The wall panel separation device of claim 1, wherein: The rotating shaft of the other end of the gear (21) is provided with a bearing (29) with an inner ring fixedly connected thereto. The outer ring of the bearing (29) is fixed to the corresponding inner wall of the wallboard partition strip (1). The side wall of the adjusting partition strip (27) corresponding to the bearing (29) is provided with a circular hole which accommodates the bearing (29).

3. The wall panel separation device of claim 2, wherein: The top of the adjusting partition strip (27) is provided with a "H"-shaped support seat. The fixing mechanism (3) has a plurality of fixing mechanisms (3) which are respectively arranged on the bottom of the wallboard partition strip (1) and the "H"-shaped support seat of the adjusting partition strip (27) to fix the wallboard body (5) with the wallboard partition strip (1) and the adjusting partition strip (27).

4. The wall panel separation device of claim 3, wherein: The fixing mechanism (3) comprises an L-shaped sliding groove (31) respectively arranged on the bottom of the wall panel partition strip (1) and the "I"-shaped support seat of the adjustment partition strip (27), wherein the L-shaped sliding groove (31) has a plurality of grooves and is respectively located at the four corners of the bottom of the wall panel partition strip (1) and the "I"-shaped support seat of the adjustment partition strip (27), and the L-shaped sliding grooves (31) on the four corners of the "I"-shaped support seat of the wall panel partition strip (1) and the adjustment partition strip (27) are opposite to each other, and the horizontal openings of the L-shaped sliding grooves (31) are arranged opposite to the horizontal openings of the corresponding L-shaped sliding grooves (31), the vertical opening of the L-shaped sliding groove (31) at the bottom of the wall panel partition strip (1) is arranged downward, and the vertical opening of the L-shaped sliding groove (31) of the "I"-shaped support seat of the adjustment partition strip (27) is arranged upward, and each L-shaped sliding groove (31) is provided with a sliding card block (33), and each sliding card block (33) is provided. The card block (33) is provided with a stop plate whose circumferential dimension is larger than the circumferential dimension of the horizontal opening of the L-shaped slide groove (31) and is located in the L-shaped slide groove (31), and the stop plate is attached to the inner wall of the horizontal opening of the corresponding L-shaped slide groove (31). The portion of each sliding card block (33) extending out of the horizontal opening of the corresponding L-shaped slide groove (31) is wedge-shaped, and the inclined surface of the wedge-shaped structure is inclined from the outside to the inside, and the inner side is a vertical surface parallel to the L-shaped slide groove (31). The stop plate is provided with a spring (32) on the side away from the wedge structure, and one end of the spring (32) is fixedly connected to the stop plate, and the other end is fixedly connected to the inner wall opposite to the L-shaped slide groove (31) and the stop plate. The eight corners of the wall panel body (5) are provided with rectangular grooves (35) corresponding to the wedge structure of the sliding card block (33), and the shape and size of the rectangular groove (35) are adapted to the wedge structure of the sliding card block (33).

5. The wall panel separation device of claim 4, wherein: The bottom of the wall panel partition strip (1) and the top of the "I" shaped support seat of the adjustment partition strip (27) are respectively provided with a transfer connection mechanism (4), and the transfer connection mechanism (4) has a transfer clamp (43) respectively provided at the bottom of the wall panel partition strip (1) and the top of the "I" shaped support seat of the adjustment partition strip (27), and the transfer clamp (43) has a symmetrically arranged I-shaped body, and the first end portions of the vertical structure of the two sides of the I-shaped body are symmetrically provided with an inverted "L" shaped first structure, and one end of the horizontal section of the first structure is connected to the "I" shaped body. The horizontal structure of the first end of the I-shaped body is flush with the same end, and the other end is shorter than the same end of the horizontal structure at the top of the I-shaped body. The second ends of the vertical structure on both sides of the I-shaped body are symmetrically provided with "L"-shaped second structures. One end of the horizontal section of the second structure is flush with the same end of the horizontal structure of the second end of the I-shaped body, and the other end is shorter than the same end of the horizontal structure at the bottom of the I-shaped body. The structure of the adapter card (43) is adapted to the ends of the wall panel partition strips (1) or the adjustment partition strips (27) with I-shaped cross sections on both sides.

6. The wall panel separation device of claim 5, wherein: The adapter head (43) top and bottom are provided with screw hole clamping block (44) composed of a square plate and a threaded rod in the center of one side of the square plate, the threaded rod of the screw hole clamping block (44) is connected with the screw hole thread of the top and bottom of the adapter head (43), the center of the square plate of the screw hole clamping block (44) is provided with a screw hole, the bottom of the wallboard partition strip (1) and the top center of the adjusting partition strip (27) are respectively provided with a clamping groove (41) matched with the square plate section of the screw hole clamping block (44), the lower part of the clamping groove (41) is provided with a rotating cavity (48) in the shape of a cylinder, the geometric center of the clamping groove (41) is coaxially arranged with the axis of the rotating cavity (48), the section of the bottom of the wallboard partition strip (1) is in the shape of an I-beam, the side wall of the top support of the bottom of the wallboard partition strip (1) and the adjusting partition strip (27) is provided with a threaded hole (42) communicating with the rotating cavity (48) and the external space, the adapter connecting mechanism (4) further comprises a bolt (45), the bolt (45) is connected with the threaded hole (42) and the screw hole thread of the screw hole clamping block (44) square plate in sequence.

7. The wall panel separation device of claim 6, wherein: One side of the wedge structure is provided with a telescopic rod (34), the telescopic rod (34) is sleeved in the spring (32) and the end away from the stop plate is a distance away from the inner wall of the L-shaped sliding groove (31); The sliding insertion clamping block (33) is made of iron material, the inner wall of the rectangular groove (35) of the wallboard body (5) opposite to the slot is provided with a magnet block (36), the magnet block (36) is attracted to the wedge structure of the sliding insertion clamping block (33); The outer wall of the clamping rod (26) is provided with a rubber sleeve (210), the side wall of the rubber sleeve (210) is in interference fit with the inner wall of the first circular hole (23) and the second circular hole (25); one end of the clamping rod (26) is provided with a connecting rope (211) connected with the rotating wheel (22); One end of the bolt (45) is provided with a screw groove (46) for facilitating the rotation of the bolt (45); The inner wall of the rotating cavity (48) is provided with two limiting blocks (47), the two limiting blocks (47) are respectively located on both sides of the clamping groove (41), the horizontal distance between the end portions of the two limiting blocks (47) is greater than the thickness of the square plate of the screw hole clamping block (44), and the horizontal distance between the opposite sides of the two limiting blocks (47) is equal to the thickness of the square plate of the screw hole clamping block (44).

8. A wall panel partitioning method according to claim 7, wherein: The steps are as follows: S1, according to the height of the wallboard body (5) to be partitioned, manually or with the help of tools, the gear (21) and the rack (28) are inserted into the inner wall of the adjusting partition strip (27), the rotating wheel (22) is twisted in a certain direction in the circular groove (24) and rotated by a certain angle, the gear (21) and the bearing (29) are rotated by a corresponding angle, the gear (21) drives the rack (28) to move upward, the rack (28) drives the inner wall of the adjusting partition strip (27) to move upward to a certain position in the inner wall of the wallboard partition strip 1 through the strip-shaped through groove (212); S2, the card rod (26) is inserted into the first round hole (23) and the corresponding second round hole (25) under the angle, and the adjusting partition strip (27) is fixed. The extended adjusting partition strip (27) and the wallboard partition strip (1) form a new length of partition structure; S3, according to the new length of the partition structure, the wallboard body (5) is partitioned and spliced, holding one end of the wallboard body (5) and pushing it into the recess on both sides of the wallboard partition strip (1) and the adjusting partition strip (27). During the pushing process, the end of the wallboard body (5) first contacts the wedge structure of the sliding plug-in block (33) and extrudes it. The sliding plug-in block (33) moves away from the horizontal opening of the L-shaped sliding groove (31), and the spring (32) and the telescopic rod (34) are also extruded and move away from the horizontal opening of the L-shaped sliding groove (31); S4, the wallboard body (5) moves to the rectangular groove (35) corresponding to the wedge structure of the sliding plug-in block (33), and the spring (32) and the telescopic rod (34) are reset to cause the wedge structure of the sliding plug-in block (33) to be clamped into the rectangular groove (35) and be attracted and fixed by the magnet block (36).

9. The method of claim 8, wherein: S5, when installing the wallboard body (5) in a cross shape, the screw hole clamping block (44) at the end of the adapter head (43) is inserted into the clamping groove (41), and is rotated to ninety degrees, so that the square plates on both sides of the screw hole clamping block (44) abut against the corresponding limiting blocks (47). The bolts (45) are connected with the screw holes (42) and the screw holes of the square plates of the screw hole clamping block (44) in sequence. The end of the wallboard partition strip (1) or the adjusting partition strip (27) with an I-shaped cross section is adapted to the structure on both sides of the adapter head (43), and the partitioning of the wallboard body (5) is completed.

Citation Information

Patent Citations

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