Fabricated light interior wall partition plate and mounting method

By introducing top pressure control parts, anchor hole limiters and deformation test parts into lightweight interior wall partitions, the problem of installation gap detection is solved, incorrect anchoring is prevented and deformation is promptly prompted, which improves the installation accuracy and the stability and aesthetics of the wall panels.

CN120592379AActive Publication Date: 2025-09-05连云港市锐城建设工程有限公司
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Patent Information

Application Number
CN202510780333.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-12
Publication Date
2025-09-05
Estimated Expiration
2045-06-12

AI Technical Summary

Technical Problem

Existing lightweight interior wall partitions are difficult to automatically detect the installation gap during installation, resulting in frequent mis-anchoring, affecting installation accuracy and wall panel strength. They also fail to provide timely prompts when deformation occurs, affecting flatness and sound insulation.

Method used

The assembly skeleton parts are adopted, including top pressure control parts, anchor hole limit parts, deformation test parts and hidden crack protection parts. The splicing detection is carried out through the power connection fixing piece and the contact power connection piece. The deformation test parts and hidden crack protection parts are used to ensure the accuracy of the installation position and the stability of the wall panel.

Benefits of technology

It improves the accuracy of installation gap inspection, prevents incorrect anchoring, reduces the risk of cracking, ensures sound insulation and wall panel stability, and improves installation standards and building aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a fabricated light interior wall partition plate and a mounting method, and belongs to the technical field of fabricated interior walls. Comprising an assembly framework piece, and jacking control pieces are installed on the upper side and the lower side of the assembly framework piece correspondingly and used for detecting the installation position; anchor hole limiting pieces are installed on the upper side and the lower side of the assembly framework piece correspondingly. The anchor hole limiting piece is used for preventing mistaken anchoring; the upper side and the lower side of the assembly framework piece are respectively provided with a deformation test piece. The deformation test piece is used for preventing deformation installation of the assembly framework piece; the problem that according to an existing light inner wall partition plate, it is not convenient to automatically detect the installation gap for mistaken anchoring prevention is solved. The anchor hole limiting piece is matched with the jacking control piece, the installation position can be limited and detected in the actual installation process of the structure, and it can be ensured that anchoring work can be normally conducted only when the installation position meets the standard.
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Description

Technical Field

[0001] The present invention discloses a lightweight interior wall partition, more specifically belongs to the technical field of assembled interior walls, and in particular relates to an assembled lightweight interior wall partition and an installation method. Background Art

[0002] FPB lightweight interior wall partition is a building partition material. FPB lightweight interior wall partition has good waterproof and moisture-proof properties, and is not easy to mold or deform even in a humid environment. The internal material of FPB lightweight interior wall partition, EPS polystyrene particles, has good sound insulation and sound absorption functions. In order to ensure the sound insulation effect, the installation gap of lightweight interior wall partition is strictly required. The current lightweight interior wall partition is not convenient for automatic detection of installation gaps and anti-misanchoring. For the sake of installation efficiency, workers are prone to directly anchor, which affects the installation accuracy and is more prone to hidden cracks in the future. At the same time, the stress at the joints of traditional wall panels after assembly is relatively concentrated, which is easy to cause mortar cracks and is not conducive to stress dispersion. At the same time, when the wall panels are deformed during transportation and lifting, it is not convenient to prompt in time and prevent direct anchoring installation. Direct anchoring by workers will affect the strength of the wall panels, and deformation of the wall panels will affect the flatness.

[0003] To this end, we propose an assembled lightweight interior wall partition and an installation method. Summary of the Invention

[0004] The object of the present invention is to provide an assembled lightweight interior wall partition and an installation method to solve the problem raised in the above background technology that the current lightweight interior wall partition is not convenient for automatic detection of installation gaps to prevent mis-anchoring.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an assembled lightweight interior wall partition, comprising an assembly frame member, wherein top pressure control members are respectively installed on the upper and lower sides of the assembly frame member, and the top pressure control members are used to detect the installation position; anchor hole limit members are respectively installed on the upper and lower sides of the assembly frame member; the anchor hole limit members are used to prevent incorrect anchoring; deformation testing members are respectively installed on the upper and lower sides of the assembly frame member; the deformation testing members are used to prevent the assembly frame member from deforming during installation; hidden crack protection members are respectively pasted on both sides of the assembly frame member; the hidden crack protection members are used to prevent stress concentration at the splicing part; the assembly frame member comprises: an assembly frame, an electrical fixing plate and an abutting electrical plate, a protrusion structure is provided on one side of the assembly frame, and a groove structure is provided on the other side of the assembly frame; a row of electrical fixing plates is fixedly embedded on one side of the groove on the assembly frame; a row of abutting electrical plates is fixedly embedded on one side of the protrusion on the assembly frame; a row of the electrical fixing plates and a row of abutting electrical plates are aligned.

[0006] Preferably, the assembly frame also includes: anchor holes, infill wall panels, steel bars and baffles, and the assembly frame is respectively provided with anchor holes on the upper and lower sides; the inner side is fixedly sleeved with infill wall panels; the assembly frame is fixedly installed with steel bars on the inner side, and the steel bars and infill wall panels are cast and formed; the assembly frame is respectively fixedly installed with baffles on the upper and lower sides.

[0007] Preferably, the assembly frame member further comprises: a connecting bevel, and the four corners of the filling wall panel are respectively provided with a connecting bevel; the connecting bevel is used to increase the mortar thickness at the joint.

[0008] Preferably, the top pressure control component includes: a top pressure column and a connecting tension spring, the bottom of the top pressure column is provided with a chamfer; the top pressure column is slidably installed on the assembly frame; the bottom of the top pressure column is provided with a chamfer; a connecting tension spring is sleeved on the top pressure column; the end of the connecting tension spring is connected to the inner side of the assembly frame, and the other end of the connecting tension spring is connected to the top pressure column.

[0009] Preferably, the anchor hole limiter includes: an inclined slider and an insert plate, the inclined slider is slidably mounted on the assembly frame; the inclined slider is an inclined structure; the bottom of the top pressure column is attached to the inclined surface of the side of the inclined slider; the insert plate is fixedly mounted on the inclined slider, and the insert plate is inserted into the assembly frame; the insert plate is provided with a through hole, and the through hole on the insert plate corresponds to the anchor hole; the insert plate is used to limit the anchor position.

[0010] Preferably, a tension spring is fixedly installed at the bottom of the inclined sliding block, and the other end of the tension spring at the bottom of the inclined sliding block is connected to the baffle; the inclined sliding block is located on the inner side of the filling wall panel.

[0011] Preferably, the deformation test piece includes: a sliding limit shell, a one-way limit spring, a spacer and a pull-back spring, and the sliding limit shells are fixedly installed on the upper and lower sides of the inner side of the assembly frame; the two sliding limit shells are fixedly installed with one-way limit springs, and the ends of the one-way limit springs are installed obliquely; the two sliding limit shells are slidably inserted with spacers; the spacers are provided with through holes, and the through holes on the spacers correspond to the anchor holes; the spacers are provided with a row of slots, and the spacers are elastic steel sheet structures; the one-way limit springs are inserted in the slots on the spacers; the pull-back springs are fixedly installed on the bottom of the sliding limit shell, and the other end of the pull-back springs is connected to the spacer; the pull-back springs are V-shaped structures.

[0012] Preferably, the deformation test piece further includes: a pulling steel wire rope, wherein the pulling steel wire rope is fixedly installed between the two one-way limiting spring pieces, and the pulling steel wire rope passes through the steel frame and the filling wall panel.

[0013] Preferably, the hidden crack protection component includes: a fixed net and a dispersion net, and two fixed nets are provided, and the two fixed nets are respectively used to be pasted on the filling wall panels; a dispersion net is fixedly installed between the two fixed nets, and the dispersion nets are aligned with the connecting slopes at the joints.

[0014] A method for installing assembled lightweight interior wall partitions:

[0015] 1) During assembly, the raised structure on the assembly frame matches the groove structure on the adjacent assembly frame. After plugging and assembling, the rivets are driven through the upper and lower anchor holes into the roof and the ground for anchoring.

[0016] 2) Use the multimeter terminals to connect the power fixing piece and the contact power piece to perform a continuity test. If there is a gap, no continuity can be formed.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] The present invention adopts the electrical fixing plate and the contact electrical plate to assist the staff in performing the splicing position detection work when the structure is assembled and spliced. It can be used to improve the accuracy of the staff's gap inspection. At the same time, the operation is simpler, which can avoid the problem of inaccurate visual observation and the use of instruments such as feeler gauges for detection. The use of hidden crack protection parts can cooperate with the connecting bevel to be recessed at the connection point, increase the mortar thickness at the joint, and cooperate with the fixed net to fix the filling wall panel with glue. The dispersion net is not connected to the filling wall panel. At this time, the width of the dispersion net can disperse stress, reduce the risk of cracking, and improve the service life of the present structure.

[0019] By using anchor hole limiters in conjunction with top pressure control parts, the installation position of this structure can be limited and detected during actual installation, which can prevent workers from encountering uneven ground or excessive distance between the top of the assembly frame and the roof, affecting the subsequent sound insulation effect, as well as waterproofing and installation stability. This structure can ensure that the anchoring work can only be carried out normally when the installation position meets the standards, otherwise the rivets cannot be penetrated normally. This structure is simple to operate and can be directly controlled, which can prevent workers from performing anchoring work in violation of regulations.

[0020] The use of deformation test pieces can help workers to promptly understand whether the assembly frame has been bent or deformed due to factors such as transportation and hoisting, improve installation standards, and ensure that anchoring work can only be carried out normally when the wall is not bent, so that workers can be informed in time. Bent and deformed wall panels may not fit tightly with the ground or ceiling during installation, making the installation process complicated and time-consuming. Bending deformation will destroy the flatness of the wall panels and affect the overall aesthetics of the building. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1This is a schematic diagram of the overall structure of an assembled lightweight interior wall partition of the present invention;

[0022] Figure 2 This is a cross-sectional view of the internal structure of an assembled lightweight interior wall partition of the present invention;

[0023] Figure 3 This is a schematic diagram of the structure of the assembled skeleton parts of the present invention;

[0024] Figure 4 This is a schematic diagram of the position of the power connection fixing plate of the present invention;

[0025] Figure 5 This is a schematic diagram of the position of the steel frame of the present invention;

[0026] Figure 6 For the present invention Figure 2 A magnified view of the structure of the middle C region;

[0027] Figure 7 This is a schematic diagram of the position of the pulling wire rope of the present invention;

[0028] Figure 8 For the present invention Figure 7 A magnified view of the structure of the middle D region;

[0029] Figure 9 For the present invention Figure 3 A magnified view of the structure of the middle E region;

[0030] Figure 10 For the present invention Figure 9 A magnified view of the structure of the middle F region.

[0031] In the figure: 1. Assembly skeleton parts; 101. Assembly frame; 1011. Power connection fixing plate; 1012. Contact power connection plate; 1013. Anchor hole; 102. Filling wall panel; 1021. Connection slope; 103. Steel bar frame; 104. Baffle; 2. Top pressure control part; 201. Top pressure column; 202. Connection tension spring; 3. Anchor hole limiter; 301. Inclined slider; 302. Insert plate; 4. Deformation test piece; 401. Sliding limit shell; 402. One-way limit spring; 403. Spacer; 404. Pull-back spring; 405. Pulling wire rope; 5. Hidden crack protection part; 501. Fixed net; 502. Dispersion net. DETAILED DESCRIPTION

[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0033] Example 1: Please refer to Figures 1 to 10 As shown:

[0034] The lightweight interior wall partition of the present invention provides a technical solution: an assembled lightweight interior wall partition includes an assembly frame member 1, with top pressure control members 2 installed on the upper and lower sides of the assembly frame member 1, respectively, and the top pressure control members 2 are used to detect the installation position; anchor hole limiters 3 are installed on the upper and lower sides of the assembly frame member 1; the anchor hole limiters 3 are used to prevent incorrect anchoring; deformation test members 4 are installed on the upper and lower sides of the assembly frame member 1; the deformation test members 4 are used to prevent the assembly frame member 1 from deforming during installation; and hidden crack protection members 5 are attached to both sides of the assembly frame member 1; The hidden crack protection member 5 is used to prevent stress concentration at the splicing point; the assembly skeleton member 1 includes: an assembly frame 101, an electrical fixing plate 1011 and an abutting electrical plate 1012. A protrusion structure is provided on one side of the assembly frame 101, and a groove structure is provided on the other side of the assembly frame 101; a row of electrical fixing plates 1011 are fixedly embedded on one side of the groove on the assembly frame 101; a row of abutting electrical plates 1012 are fixedly embedded on one side of the protrusion on the assembly frame 101; a row of electrical fixing plates 1011 and a row of abutting electrical plates 1012 are aligned.

[0035] Among them, the assembly frame member 1 also includes: anchor holes 1013, filling wall panels 102, steel frames 103 and baffles 104. The assembly frame 101 has anchor holes 1013 on both sides; the inner side is fixedly sleeved with filling wall panels 102; the inner side of the assembly frame 101 is fixedly installed with steel frames 103, and the steel frames 103 and filling wall panels 102 are cast; the assembly frame 101 has baffles 104 on both sides; the assembly frame member 1 also includes: connecting bevels 1021, filling wall panels The four corners of 102 are respectively provided with connecting bevels 1021; the connecting bevels 1021 are used to increase the thickness of the mortar at the joints; the hidden crack protection member 5 includes: a fixed net 501 and a dispersion net 502, two fixed nets 501 are provided, and the two fixed nets 501 are respectively used to be pasted on the filling wallboard 102; a dispersion net 502 is fixedly installed between the two fixed nets 501, and the dispersion net 502 is aligned with the connecting bevels 1021 at the joints, and the electric fixing piece 1011 and the contact electric piece 1012 can be installed in this structure When used with splicing, it assists staff in performing splicing in place detection work, which can be used to improve the accuracy of staff gap inspection. At the same time, the operation is simpler, which can avoid inaccurate visual observation and prevent the problem of large wear of wall panels when using instruments such as feeler gauges for detection. The use of hidden crack protection parts 5 can cooperate with the connecting bevel 1021 to be recessed at the joint, increase the mortar thickness at the joint, and at the same time cooperate with the fixing net 501 to fix the filling wall panel 102 by glue. The dispersion net 502 is not connected to the filling wall panel 102. At this time, the width of the dispersion net 502 can disperse stress, reduce the risk of cracking, and improve the service life of this structure. After the adjacent assembly frames 101 are assembled, the power fixing plate 1011 and the contact power plate 1012 will be attached to each other, otherwise it means there is a gap. The multimeter terminals can be used to connect the power fixing plate 1011 and the contact power plate 1012 to perform a path test. A row of power fixing plates 1011 and the contact power plate 1012 are tested respectively, and the staff can deal with it in time.

[0036] Among them, the top pressure control part 2 includes: a top pressure column 201 and a connecting tension spring 202, the bottom of the top pressure column 201 is provided with a chamfer; the top pressure column 201 is slidably installed on the assembly frame 101; the bottom of the top pressure column 201 is provided with a chamfer; a connecting tension spring 202 is sleeved on the top pressure column 201; the end of the connecting tension spring 202 is connected to the inner side of the assembly frame 101, and the other end of the connecting tension spring 202 is connected to the top pressure column 201; the anchor hole limiter 3 includes: an inclined slider 301 and an insert plate 302, the inclined slider 301 is slidably installed on the assembly frame 101; the inclined slider 301 is an inclined structure ; The bottom of the top pressure column 201 is attached to the side inclined surface of the inclined slider 301; the inclined slider 301 is fixedly mounted with a plug plate 302, and the plug plate 302 is plugged into the assembly frame 101; the plug plate 302 is provided with a through hole, and the through hole on the plug plate 302 corresponds to the anchor hole 1013; the plug plate 302 is used to limit the anchor position; the bottom of the inclined slider 301 is fixedly mounted with a tension spring, and the other end of the tension spring at the bottom of the inclined slider 301 is connected to the baffle 104; the inclined slider 301 is located on the inner side of the filling wall panel 102, and the anchor hole limiter 3 is used in conjunction with the top pressure control member 2, so that the structure can be During the actual installation, the installation position is limited and detected to prevent the staff from installing the wall panel on an uneven ground or too large a gap between the top of the assembly frame 101 and the roof, which affects the subsequent sound insulation effect, and also affects the waterproofing and installation stability. It can ensure that the installation position meets the standards before the anchoring work can be carried out normally, otherwise the rivet cannot be inserted normally. The operation is simple and can be directly controlled, which can prevent the staff from performing the anchoring work in violation of regulations. The flat ground is the basis for the installation of wall panels. Only when the ground is flat can the wall panels be installed flatly and firmly, avoiding problems such as tilting and deformation. Meeting the top gap standard can effectively isolate indoor and outdoor noise, improve the sound insulation effect of the building, and provide users with a quieter and more comfortable environment. Once the ground is uneven or the gap between the top of the assembly frame 101 and the roof is too large, the top pressure column 201 fails to be squeezed inward into place, and the top pressure column 201 moves the extrusion inclined slider 301, driving the displacement of the plug plate 302 to be substandard. At this time, the through hole on the plug plate 302 cannot be concentric with the anchor hole 1013, but will produce dislocation and eccentricity. At this time, the staff cannot pass the rivet through the anchor hole 1013 for subsequent anchoring work.

[0037] Example 2, based on Example 1, the deformation test piece 4 includes: a sliding limit shell 401, a one-way limit spring 402, a spacer 403 and a pull-back spring 404, and the sliding limit shells 401 are fixedly installed on the upper and lower sides of the inner side of the assembly frame 101; the two sliding limit shells 401 are respectively fixedly installed with a one-way limit spring 402, and the end of the one-way limit spring 402 is installed obliquely; the two sliding limit shells 401 are respectively slidably plugged with a spacer 403; the spacer 403 A through hole is provided on the spacer 403, and the through hole on the spacer 403 corresponds to the anchor hole 1013; a row of slots is provided on the spacer 403, and the spacer 403 is an elastic steel sheet structure; a one-way limit spring 402 is inserted into the slot on the spacer 403; a pull-back spring 404 is fixedly installed at the bottom of the sliding limit shell 401, and the other end of the pull-back spring 404 is connected to the spacer 403; the pull-back spring 404 is a V-shaped structure; the deformation test piece 4 also includes: a pulling wire rope 405, two one-way limit springs 4 02, and the pulling wire rope 405 passes through the steel frame 103, and the pulling wire rope 405 passes through the filling wall panel 102; the use of the deformation test piece 4 can facilitate the staff to timely understand that the assembly frame 101 is bent and deformed due to factors such as transportation and lifting, which can improve the installation standard and ensure that the anchoring work can be carried out normally when the wall is not bent, so that the staff can be informed in time. The bent and deformed wall panel may not fit tightly with the ground or ceiling during installation, resulting in the installation process becoming complicated and time-consuming. The bending deformation will destroy the flatness of the wall panel and affect the overall aesthetics of the building. When the assembly frame 101 and the filling wall panel 102 are bent, because the filling wall panel 102 has thickness, once bending occurs, the pulling wire rope 405 will be pulled, and at least one side of the spacer 403 will be pulled. At this time, the through hole on the spacer 403 will be misaligned with the anchor hole 1013, and the rivet cannot be passed through, thereby reminding the staff.

[0038] A method for installing assembled lightweight interior wall partitions:

[0039] 1) During assembly, the raised structure on the assembly frame 101 is matched with the groove structure on the adjacent assembly frame 101. After plugging and assembling, rivets are driven through the upper and lower anchor holes 1013 into the roof and the ground for anchoring;

[0040] 2) Use the multimeter terminals to connect the power fixing piece 1011 and the contact power piece 1012 to perform a continuity test. If there is a gap, no continuity can be formed.

[0041] The working principle of this embodiment is as follows: First, when the structure needs to be assembled in multiple pieces, the raised structure on the assembly frame 101 is matched with the groove structure on the adjacent assembly frame 101. After plugging and assembling, it is placed on the ground and the rivet is passed through the anchor hole 1013 to perform the anchoring work. At the same time, after the adjacent assembly frames 101 are assembled, the power fixing piece 1011 and the contact power piece 1012 will be attached to each other. Otherwise, it means there is a gap. You can use the multimeter terminal to connect the power fixing piece 1011 and the contact power piece 1012 to perform a continuity test. Test, respectively, a row of power fixing pieces 1011 and the contact power piece 1012 are tested, the staff can deal with it in time, when the assembly frame 101 is placed on the ground, the upper and lower pressure columns 201 are squeezed respectively, once the ground is uneven or the gap between the top of the assembly frame 101 and the roof is too large, at this time the pressure column 201 cannot be squeezed inward into place, the pressure column 201 moves the extrusion inclined slider 301, and the displacement of the plug plate 302 is not up to standard, at this time the through hole on the plug plate 302 cannot be concentric with the anchor hole 1013 , but will produce dislocation and eccentricity. At this time, the staff cannot pass the rivet through the anchor hole 1013 for subsequent anchoring work, and the staff needs to make relevant adjustments. In actual transportation and other factors, when the assembly frame 101 and the filling wall panel 102 are bent, at this time, because the filling wall panel 102 has thickness, once bending occurs, the pulling wire rope 405 will be pulled, and at least one side of the spacer 403 will be pulled. At this time, the through hole on the spacer 403 will be misaligned with the anchor hole 1013, and the staff cannot pass the rivet through the anchor hole. 1013 performs subsequent anchoring work, and at the same time, the one-way limiting spring piece 402 can be fitted with the spacer 403 in real time for one-way limiting, so as to remind the staff that when applying mortar, the hidden crack protection piece 5 can be used to cooperate with the connecting bevel 1021 to be recessed at the joint, thereby increasing the mortar thickness at the joint, and at the same time cooperate with the fixing net 501 to fix the filling wall panel 102 with glue, and the dispersion net 502 is not connected to the filling wall panel 102, and the gap between the filling wall panel 102 increases. When cracks occur, the width of the dispersion net 502 can disperse the stress.

[0042] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0043] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An assembled lightweight interior wall partition, comprising an assembled frame member (1), wherein top pressure control members (2) are respectively installed on the upper and lower sides of the assembled frame member (1), and characterized in that: The top pressure control member (2) is used to detect the installation position; the upper and lower sides of the assembly frame member (1) are respectively installed with anchor hole limit members (3); the anchor hole limit members (3) are used to prevent incorrect anchoring; Deformation test pieces (4) are respectively installed on the upper and lower sides of the assembly frame member (1); the deformation test pieces (4) are used to prevent the assembly frame member (1) from being deformed during installation; Hidden crack protection pieces (5) are respectively adhered to both sides of the assembly frame member (1); the hidden crack protection pieces (5) are used to prevent stress concentration at the splicing location; The assembly skeleton member (1) comprises: an assembly frame (101), an electrical connection fixing sheet (1011) and an abutting electrical connection sheet (1012); a protrusion structure is provided on one side of the assembly frame (101), and a groove structure is provided on the other side of the assembly frame (101); a row of electrical connection fixing sheets (1011) is fixedly embedded in one side of the groove on the assembly frame (101); a row of abutting electrical connection sheets (1012) is fixedly embedded in one side of the protrusion on the assembly frame (101); a row of electrical connection fixing sheets (1011) and a row of abutting electrical connection sheets (1012) are aligned.

2. The assembled lightweight interior wall partition according to claim 1, characterized in that: The assembly frame member (1) further comprises: an anchor hole (1013), an infill wall panel (102), a steel bar frame (103) and a baffle (104); the upper and lower sides of the assembly frame (101) are respectively provided with an anchor hole (1013); the inner side is fixedly sleeved with the infill wall panel (102); the inner side of the assembly frame (101) is fixedly installed with a steel bar frame (103), and the steel bar frame (103) and the infill wall panel (102) are cast and formed; the upper and lower sides of the assembly frame (101) are respectively fixedly installed with a baffle (104).

3. The assembled lightweight interior wall partition according to claim 2, characterized in that: The assembly frame member (1) further comprises: connecting bevels (1021), and the four corners of the filling wallboard (102) are respectively provided with connecting bevels (1021); the connecting bevels (1021) are used to increase the mortar thickness at the joints.

4. The assembled lightweight interior wall partition according to claim 2, characterized in that: The top pressure control component (2) comprises: a top pressure column (201) and a connecting tension spring (202); the bottom of the top pressure column (201) is provided with a chamfer; the top pressure column (201) is slidably mounted on an assembly frame (101); the bottom of the top pressure column (201) is provided with a chamfer; the connecting tension spring (202) is sleeved on the top pressure column (201); the end of the connecting tension spring (202) is connected to the inner side of the assembly frame (101), and the other end of the connecting tension spring (202) is connected to the top pressure column (201).

5. The assembled lightweight interior wall partition according to claim 4, characterized in that: The anchor hole limiting member (3) comprises: an inclined sliding block (301) and an inserting plate (302), wherein the inclined sliding block (301) is slidably mounted on the assembly frame (101); the inclined sliding block (301) is an inclined structure; the bottom of the top pressure column (201) is attached to the inclined surface of the side of the inclined sliding block (301); the inserting plate (302) is fixedly mounted on the inclined sliding block (301), and the inserting plate (302) is inserted into the assembly frame (101); a through hole is provided on the inserting plate (302), and the through hole on the inserting plate (302) corresponds to the anchoring hole (1013); the inserting plate (302) is used to limit the anchoring position.

6. The assembled lightweight interior wall partition according to claim 5, characterized in that: A tension spring is fixedly installed at the bottom of the inclined sliding block (301), and the other end of the tension spring at the bottom of the inclined sliding block (301) is connected to the baffle (104); the inclined sliding block (301) is located inside the filling wallboard (102).

7. The assembled lightweight interior wall partition according to claim 2, characterized in that: The deformation test piece (4) comprises: a sliding limit shell (401), a one-way limit spring piece (402), a spacer (403) and a pull-back spring piece (404); the sliding limit shell (401) is fixedly mounted on the upper and lower sides of the inner side of the assembly frame (101); the one-way limit spring piece (402) is fixedly mounted on the two sliding limit shells (401), and the end of the one-way limit spring piece (402) is installed obliquely; the spacer (403) is slidably inserted on the two sliding limit shells (401) ; A through hole is provided on the spacer (403), and the through hole on the spacer (403) corresponds to the anchor hole (1013); a row of slots is provided on the spacer (403), and the spacer (403) is an elastic steel sheet structure; a one-way limiting spring (402) is inserted into the slot on the spacer (403); a pull-back spring (404) is fixedly installed on the bottom of the sliding limit shell (401), and the other end of the pull-back spring (404) is connected to the spacer (403); the pull-back spring (404) is a V-shaped structure.

8. The assembled lightweight interior wall partition according to claim 7, characterized in that: The deformation test piece (4) further comprises: a pulling steel wire rope (405), wherein the pulling steel wire rope (405) is fixedly installed between the two one-way limiting spring pieces (402), and the pulling steel wire rope (405) passes through the steel frame (103), and the pulling steel wire rope (405) passes through the filling wall panel (102).

9. The assembled lightweight interior wall partition according to claim 3, characterized in that: The hidden crack protection member (5) comprises: a fixed net (501) and a dispersion net (502); two fixed nets (501) are provided, and the two fixed nets (501) are respectively used to be pasted on the filling wallboard (102); a dispersion net (502) is fixedly installed between the two fixed nets (501), and the dispersion nets (502) are aligned with the connecting inclined surfaces (1021) at the joints.

10. A method for installing an assembled lightweight interior wall partition, applied to the assembled lightweight interior wall partition according to claim 1, characterized in that: The steps include: 1) During assembly, the raised structure on the assembly frame (101) is matched with the groove structure on the adjacent assembly frame (101). After plugging and assembling, rivets are respectively driven through the upper and lower anchor holes (1013) into the roof and the ground for anchoring; 2) Use the multimeter terminals to connect the electrical connection fixing piece (1011) and the contact electrical connection piece (1012) to perform a path test. If there is a gap, no path can be formed.

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