Titanium-magnesium fireproof plate assembly type finished product one-time forming formwork-removal-free wall structure

By using prefabricated titanium-magnesium fireproof boards to form a one-time molded wall structure that eliminates the need for demolding, and by using tie rods and plugs to fix the exterior and interior wall panels, the problems of complexity and high cost of traditional cast-in-place construction are solved, achieving the effects of simplified construction, reduced costs and improved efficiency.

CN223458981UActive Publication Date: 2025-10-21SICHUAN JIUDIAN ASSEMBLY DECORATION CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422917459.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-28
Publication Date
2025-10-21
Estimated Expiration
2034-11-28

AI Technical Summary

Technical Problem

In traditional house wall construction, the cast-in-place method results in complex construction, high costs, and high labor intensity, requiring secondary renovation.

Method used

The wall structure adopts a prefabricated, one-piece molded, non-removable titanium-magnesium fireproof board assembly. The exterior and interior wall panels are set at intervals using tie rod components, and concrete is poured in the gaps. The plug is connected and fixed to the wall panel, and the sleeve is integrally formed with the concrete. The structure is reinforced with insulation board and C-shaped steel.

Benefits of technology

It simplifies the construction process, reduces labor intensity and construction period, lowers costs, improves construction efficiency, and enhances the strength of concrete structures.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223458981U_ABST
    Figure CN223458981U_ABST
Patent Text Reader

Abstract

The utility model relates to a titanium-magnesium fireproof plate assembly type finished product one-time forming formwork-removal-free wall structure, and belongs to the technical field of assembly type building decoration. The structure comprises outer wallboards (7), inner wallboards (10) and opposite-pulling assemblies, the outer wallboards (7) and the inner wallboards (10) are arranged at intervals through the opposite-pulling assemblies, and concrete (8) is poured in gaps; the opposite-pulling assembly comprises an opposite-pulling piece (6), a sleeve (13) and an inserting piece (5), an inserting hole (61) is formed in the opposite-pulling piece (6), the opposite-pulling piece (6) is arranged between the adjacent outer wall plates (7) and between the inner wall plates (10) in a penetrating mode, the opposite-pulling piece (6) is sleeved with the sleeve (13), and the inserting piece (5) is of a wedge-shaped structure and arranged in the inserting hole (61) in a penetrating mode. The outer wall plate (7) and the inner wall plate (10) are arranged at intervals through the opposite-pulling assembly, concrete (8) pouring is facilitated, and integral forming is achieved. The problems that an existing outer wall is built in a cast-in-place mode, a wall face needs secondary decoration, and construction is complex are solved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a titanium magnesium fireproof plate assembly type finished product one-time forming disassembly-free mold wall structure belongs to the assembly type building decoration technical field. BACKGROUND

[0002] The wall of the traditional house often adopts the way of wet operation to pour in situ to ensure the supporting strength, and the formwork and preset reinforcement net are often set up according to the design requirements before pouring, and the formwork often needs a plurality of supporting pieces to realize its position fixation, and the actual operation process is relatively complicated, time-consuming and labor-consuming. After pouring, the formwork needs to be removed after forming, and this process needs more manpower and material resources, resulting in long actual construction period, large labor intensity and certain installation hidden danger. At the same time, the wall surface after pouring needs secondary decoration, and the cost of disassembly of the formwork is increasing day by day due to the generally high labor cost in recent years. CONTENT OF THE UTILITY MODEL

[0003] The utility model solves the technical problem that the existing outer wall is built by the way of cast-in-place, resulting in the need for secondary decoration of the wall surface, complicated construction and high cost.

[0004] The utility model adopts the technical scheme that the titanium magnesium fireproof plate assembly type finished product one-time forming disassembly-free mold wall structure comprises an outer wall plate, an inner wall plate and a pull-together assembly, the outer wall plate and the inner wall plate are arranged at intervals through the pull-together assembly, and concrete is poured between the outer wall plate and the inner wall plate; the pull-together assembly comprises a pull-together piece, a sleeve pipe and an insert, two insertion holes are arranged at intervals on the pull-together piece, the pull-together piece is arranged at intervals in the gap between adjacent outer wall plates and inner wall plates, the sleeve pipe is sleeved on the middle part of the pull-together piece, and the two ends are respectively in contact connection with the inner walls of the opposite outer wall plate and inner wall plate, the insert is in the shape of a wedge, and is arranged in the insertion hole, and the side walls of the insert are respectively connected with the outer walls of the corresponding side outer wall plate and inner wall plate.

[0005] In the structure, the insert is in the shape of a right-angled triangle, and the right-angled side is connected with the outer walls of the outer wall plate and the inner wall plate after being inserted into the insertion hole, and the middle width of the insert is equal to the length of the insertion hole.

[0006] In the structure, a mounting strip is further arranged, the upper side of the mounting strip is provided with upper fixed plates at both ends, and the lower side of the mounting strip is provided with lower fixed plates at both ends; the outer edges of the outer wall plate and the inner wall plate are respectively provided with strip-shaped holes, and the upper fixed plates and the lower fixed plates are respectively clamped into the corresponding outer wall plate and inner wall plate.

[0007] Further, the structure further comprises an insulating board and a fixing rod, two limiting through holes are arranged at intervals on the mounting strip, the fixing rod is arranged in the limiting through hole, the lower end of the insulating board is arranged on the mounting strip, the upper end of the insulating board is arranged at intervals with the adjacent mounting strip, and the two sides of the insulating board are in contact connection with the fixing rod.

[0008] Wherein, the structure further comprises C-shaped steel, which is arranged at intervals outside the outer wall plate and the inner wall plate, and abuts against the outer wall of the outer wall plate and the inner wall plate respectively, and a plurality of connecting grooves are formed on the bottom surface of the C-shaped steel, so that the both ends of the tensioning piece pass through the C-shaped steel on the corresponding side, and the side wall of the plug-in piece is in contact with the outer wall of the C-shaped steel.

[0009] Further, the lower end of the C-shaped steel in the structure is provided with a leveling piece, the leveling piece comprises a leveling screw and a support, the support is a groove-shaped structure, the groove bottom is connected with the side wall of the lower part of the C-shaped steel, the opening direction of the support is perpendicular to the length direction of the C-shaped steel, and the leveling screw is arranged on the support and is in threaded connection with the support.

[0010] Further, the structure further comprises T-shaped screw, the C-shaped steel is arranged in a horizontal and vertical staggered manner, and is connected and fixed through the T-shaped screw.

[0011] Further, the screw and the large end of the T-shaped screw are provided with a square boss, and the width of the square boss is matched with the width of the connecting groove of the bottom surface of the C-shaped steel.

[0012] Wherein, the structure further comprises a fixing piece, the fixing piece is an F-shaped structure, the fixing piece is connected with the base layer through a screw, and the end of the outer wall plate and the inner wall plate is arranged in the opening of the fixing piece.

[0013] Wherein, the structure further comprises a sealing strip, the sealing strip is a cross-shaped structure, and the symmetric edges can be respectively clamped into the strip-shaped holes between the adjacent outer wall plates or inner wall plates.

[0014] The beneficial effects of the present application are: the structure is simple, convenient to operate, and can greatly shorten the construction period. The outer wall plate and the inner wall plate are arranged at intervals through the tensioning assembly, and then concrete is directly poured into the gap between the outer wall plate and the inner wall plate to form a wall body. The outer wall plate and the inner wall plate of the structure do not need to be removed as a support piece in the later period, which greatly reduces the labor intensity and construction period, improves the efficiency. After the concrete solidifies, the plug-in piece is pulled out, the tensioning piece is taken out for secondary use, the sleeve is integrally formed with the concrete, the distance between the outer wall plate and the inner wall plate is ensured, and the structural strength of the concrete is also increased. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a structural schematic diagram of the present application;

[0016] Figure 2 It is a structural schematic diagram of the A-A section of the present application;

[0017] Figure 3 It is a structural schematic diagram of the A-A section of the present application; Figure 2 It is an enlarged schematic diagram of the structure at I in the present application.

[0018] Figure 4 For the utility model Figure 2 The structure enlarged schematic view of III place in the middle;

[0019] Figure 5 For the utility model B-B section structure schematic view;

[0020] Figure 6 For the utility model Figure 5 The structure enlarged schematic view of III place in the middle;

[0021] Figure 7 For the utility mounting strip structure schematic view of the utility model;

[0022] Figure 8 For the utility model structure schematic view of the counter pull;

[0023] Figure 9 For the utility model plug-in structure schematic view.

[0024] Figure 10 For the utility model T-shaped screw rod structure schematic view;

[0025] Figure 11 For the utility model sealing strip mounting structure schematic view;

[0026] Figure 12 For the utility model wall corner local structure schematic view;

[0027] Figure 13 For the utility model connecting piece structure schematic view;

[0028] Figure 14 For the utility model Figure 2 The structure schematic view of fixed rod whole installation;

[0029] Figure 15 For the utility model Figure 5 The structure schematic view of fixed rod whole installation.

[0030] Marked as: 1 is C-shaped steel, 2 is connecting groove, 3 is base layer, 4 is leveling piece, 5 is plug-in, 6 is counter pull, 61 is jack, 7 is outer wall board, 8 is concrete, 9 is insulation board, 10 is inner wall board, 11 is T-shaped screw rod, 111 is square boss, 12 is fixed rod, 13 is sleeve, 14 is fixed piece, 15 is screw, 16 is mounting strip, 161 is limiting through hole, 162 is upper fixed plate, 163 is lower fixed plate, 17 is sealing strip, 18 is structural column, 19 is steel column, 20 is connecting piece, 201 is connecting hole, 202 is fixed hole. Specific implementation

[0031] The utility model is further illustrated below with reference to the drawings.

[0032] As Figures 1 to 15 The titanium magnesium fireproof plate assembly type finished product one-time forming demolding wall structure, including outer wall board 7, inner wall board 10 and the opposite pull assembly, outer wall board 7 and inner wall board 10 are set up by the opposite pull assembly interval, and the concrete 8 is poured between outer wall board 7 and inner wall board 10, the opposite pull assembly includes puller 6, sleeve pipe 13 and insert 5, two jack 61 are set up in puller 6 interval, and puller 6 is set up in the clearance between adjacent outer wall board 7 and inner wall board 10 interval, sleeve pipe 13 is set in the middle of puller 6, and two ends are respectively connected with the inner wall of the opposite outer wall board 7 and inner wall board 10, insert 5 is wedge structure, and is set in jack 61, and the side wall of insert 5 is connected with the outer wall of the corresponding side outer wall board 7 and inner wall board 10. Those skilled in the art should understand that the structure is set up by the opposite pull assembly interval between outer wall board 7 and inner wall board 10, and the concrete 8 is directly poured into the gap between outer wall board 7 and inner wall board 10, which can form a wall, and the concrete 8 can be selected according to the need to select the steel concrete 8 to ensure the structural strength. The outer wall board 7 and inner wall board 10 of the structure do not need to be removed in the later period, which greatly reduces the labor intensity and construction period, improves the efficiency, and optimizes the outer wall board 7 and inner wall board 10 as titanium magnesium fireproof plate. The outer wall board 7 and inner wall board 10 are set up by the opposite pull assembly interval, and the opposite pull assembly includes puller 6, sleeve pipe 13 and insert 5, specifically two jack 61 are set up in puller 6 interval, and puller 6 is set up in the clearance between adjacent outer wall board 7 and inner wall board 10 interval, that is, one end of puller 6 is along the clearance between the adjacent outer wall board 7, and the other end is set in the clearance between the adjacent inner wall board 10 on the corresponding side, and the number of puller 6 is set according to the need interval, sleeve pipe 13 is set in the middle of puller 6, and two ends are respectively connected with the inner wall of the opposite outer wall board 7 and inner wall board 10, so that sleeve pipe 13 can keep the interval between outer wall board 7 and inner wall board 10, and then ensure the uniform thickness of the poured wall. Preferably, the insert 5 is wedge-shaped structure, and is set in the jack 61, and the side wall of the insert 5 is connected with the outer wall of the corresponding side outer wall board 7 and inner wall board 10, which realizes the fixed interval of the outer wall board 7 and the inner wall board 10, and avoids the phenomenon of concrete 8 expansion and outflow during pouring. The opposite pull assembly of the device can be recycled and reused, and the insert 5 can be pulled out after the concrete 8 is solidified, and the puller 6 can be taken out, and the sleeve pipe 13 is integrally formed with the concrete 8, which ensures the interval between the outer wall board 7 and the inner wall board 10 and increases the structural strength of the concrete 8. The outer wall board 7 and the inner wall board 10 should cover the structural column 19 or the steel column 18, which is convenient for one-time pouring and forming to ensure the structural strength.

[0033] Preferably, the plug-in part 5 in the above structure is a right-angled triangular structure, and the right-angled side is connected with the outer wall of the outer wall panel 7 and the outer wall of the inner wall panel 10 after being inserted into the insertion hole 61, and the middle width of the plug-in part 5 is equal to the length of the insertion hole 61. Those skilled in the art should understand that the structure preferably has the plug-in part 5 in a right-angled triangular structure, and the right-angled side of the plug-in part 5 is in contact and connected with the outer wall of the outer wall panel 7 and the outer wall of the inner wall panel 10 after the plug-in part 5 is actually inserted into the insertion hole 61, so as to realize abutting and fixing. At the same time, in order to facilitate the control of the distance between the outer wall panel 7 and the inner wall panel 10, and to avoid damage to the edge side of the outer wall panel 7 and the inner wall panel 10 caused by excessive pulling of the plug-in part 5, the middle width of the plug-in part 5 is equal to the length of the insertion hole 61, so that the plug-in part 5 is inserted into the insertion hole 61 by at most half of the length, and the middle width of the plug-in part 5 and the length of the insertion hole 61 are limited, which is also convenient for keeping the center of the puller 6 coincident with the center of the wall during construction by different workers, and the sleeve 13 of the puller 6 will not be damaged to the edge side of the outer wall panel 7 or the inner wall panel 10. The width of the insertion hole 61 is preferably equal to the thickness of the plug-in part 5.

[0034] Preferably, the above structure further comprises a mounting strip 16, the upper side of the mounting strip 16 is provided with upper fixed plates 162 at both ends, and the lower side is provided with lower fixed plates 163 at both ends; the outer edges of the outer wall panel 7 and the inner wall panel 10 are provided with strip-shaped holes, and the upper fixed plates 162 and the lower fixed plates 163 are respectively clamped into the strip-shaped holes on the corresponding side of the outer wall panel 7 and the inner wall panel 10. Those skilled in the art should understand that in order to increase the consistency of the distance between the outer wall panel 7 and the inner wall panel 10 arranged opposite to each other, and to prevent the concrete 8 from expanding and overflowing during pouring, the device further comprises a mounting strip 16, the upper fixed plates 162 are spaced apart and arranged at both ends of the upper side of the body, and the lower fixed plates 163 are spaced apart and arranged at both ends of the lower side of the body; at the same time, the outer edges of the outer wall panel 7 and the inner wall panel 10 are provided with strip-shaped holes, and the upper fixed plates 162 and the lower fixed plates 163 are respectively clamped into the strip-shaped holes on the corresponding side of the outer wall panel 7 and the inner wall panel 10, which further ensures the fixed distance between the outer wall panel 7 and the inner wall panel 10. An L-shaped structure can be inserted into the strip-shaped hole at the corner of the outer wall panel 7 or the inner wall panel 10 to realize the connection of the adjacent outer wall panel 7 or inner wall panel at the corner.

[0035] Preferably, the structure further comprises the heat preservation plate 9 and the fixing rod 12, two limiting through holes 161 are arranged on the mounting strip 16 at intervals, the fixing rod 12 is arranged in the limiting through hole 161, the lower end of the heat preservation plate 9 is arranged on the mounting strip 16, the upper end is arranged at intervals with the adjacent mounting strip 16, and the two sides of the heat preservation plate 9 are in contact with the fixing rod 12. Those skilled in the art should understand that, since the outer wall actually needs heat preservation and insulation, in order to facilitate the installation and fixation of the heat preservation plate 9, the structure is specifically provided with two limiting through holes 161 on the mounting strip 16 at intervals, the fixing rod 12 is actually arranged in the limiting through hole 161, the lower end of the heat preservation plate 9 is arranged on the mounting strip 16, the upper end is arranged at intervals with the adjacent mounting strip 16, and the two sides of the heat preservation plate 9 are in contact with the fixing rod 12. Here, the two sides of the heat preservation plate 9 are specifically the upper end and the lower end of the heat preservation plate 9, which are connected by the fixing rod 12, for keeping the heat preservation plate 9 fixedly arranged in the gap between the outer wall plate 7 and the inner wall plate 10, avoiding the movement of the heat preservation plate 9 during the pouring of the concrete 8, which affects the quality of the wall. At the same time, the upper end of the heat preservation plate 9 is arranged at intervals with the upper adjacent mounting strip 16, which can ensure the smooth pouring of the concrete and realize the full coverage of the heat preservation plate 9, thereby ensuring the pouring quality. The structure column 19 or the steel column 18 located at the corner should not be provided with the heat preservation plate 9.

[0036] Preferably, the structure further comprises the C-shaped steel 1, which is arranged at intervals outside the outer wall plate 7 and the inner wall plate 10 and abuts against the outer walls of the outer wall plate 7 and the inner wall plate 10, respectively, a plurality of connecting grooves 2 are formed on the bottom surface of the C-shaped steel 1, so that the both ends of the counter pull piece 6 pass through the corresponding side C-shaped steel 1 along the connecting grooves, and the side wall of the plug-in piece 5 is in contact with the outer wall of the C-shaped steel 1. Those skilled in the art should understand that, in order to ensure the pouring quality of the outer wall, the C-shaped steel 1 is preferably arranged at intervals outside the outer wall plate 7 and the inner wall plate 10, which ensures the stability of the formwork structure and can be removed after the pouring and shaping of the C-shaped steel 1. The C-shaped steel 1 abuts against the outer walls of the outer wall plate 7 and the inner wall plate 10, respectively, which avoids the expansion and deformation of the concrete 8 during the pouring. A plurality of connecting grooves 2 are formed on the bottom surface of the C-shaped steel 1, so that the both ends of the counter pull piece 6 pass through the corresponding side C-shaped steel 1 along the connecting grooves, and the side wall of the plug-in piece 5 is in contact with the outer wall of the C-shaped steel 1, which can realize the fixation of the C-shaped steel 1. At the same time, in order to facilitate the connection, the width of the outer wall plate 7 and the inner wall plate 10 should be an integer multiple of the center distance of the adjacent connecting grooves 2.

[0037] Preferably, the lower end of the C-shaped steel 1 in the above structure is provided with a leveling piece 4, the leveling piece 4 comprises a leveling screw 41 and a support 42, the support 42 is a groove structure, and the groove bottom is connected with the lower side wall of the C-shaped steel 1, the opening direction of the support 42 is perpendicular to the length direction of the C-shaped steel 1, and the leveling screw 41 is arranged on the support 42 and is threadedly connected with the support 42. Those skilled in the art should understand that, in order to facilitate the vertical installation of the C-shaped steel 1 on the base layer 3, the structure is preferably provided with a leveling piece 4 at the lower end of the C-shaped steel 1, and the leveling piece 4 comprises a leveling screw 41 and a support 42, the support 42 is a groove structure, and the groove bottom is connected with the lower side wall of the C-shaped steel 1, and the support 42 can be actually fixed by welding, and the opening direction of the support 42 is perpendicular to the length direction of the C-shaped steel 1, and the leveling screw 41 is arranged on the support 42 and is threadedly connected with the support 42, and the height of the C-shaped steel 1 can be actually adjusted by turning the leveling screw 41. In order to facilitate adjustment, the upper end of the leveling screw 41 is preferably provided with a one-character opening for easy adjustment.

[0038] Preferably, the above structure further comprises a T-shaped screw 11, the C-shaped steel 1 is arranged horizontally and vertically staggered, and is fixed by the T-shaped screw 11. Those skilled in the art should understand that, in order to ensure the stability of the formwork structure, the device is preferably arranged horizontally and vertically staggered by the C-shaped steel 1, and is fixed by the T-shaped screw 11, and the T-shaped screw 11 can be actually installed by being arranged in the connecting groove 2 at the staggered position and then being screwed into a matching nut. In order to facilitate the connection of the horizontal C-shaped steel 1 at the corner, the structure is realized by connecting the horizontal C-shaped steel 1 on the inner side into a whole through the L-shaped fixing piece, and the horizontal C-shaped steel 1 on the outer side can be connected through the connecting piece 20, the connecting piece 20 of the structure is actually preferably a bending structure with an included angle of 135°, and a plurality of fixing holes 202 are arranged on one bending edge at intervals, and a connecting hole 201 with an opening is arranged on the other bending edge, the horizontal C-shaped steel 1 on the outer side is actually connected under the action of a fastening bolt through the fixing hole 202, and the connecting hole 202 is connected and fixed by being screwed into a nut after being arranged in a fastening screw.

[0039] Preferably, the screw and the large end connection of the T-shaped screw 11 in the above structure are provided with a square boss 111, and the width of the square boss 111 is matched with the width of the connecting groove 2 of the bottom surface of the C-shaped steel 1. Those skilled in the art should understand that, in order to facilitate the fastening of the T-shaped screw 11, the screw and the large end connection of the T-shaped screw 11 in the structure are preferably provided with a square boss 111, and the width of the square boss 111 is matched with the width of the connecting groove 2 of the bottom surface of the C-shaped steel 1, and the T-shaped screw 11 can be actually fixed by being clamped in the connecting groove 2 of a C-shaped steel 1, avoiding the inconvenience of fastening caused by the secondary rotation of the T-shaped screw 11 when being screwed into a nut.

[0040] Preferably, the structure further comprises a fixing member 14, which is in the shape of F, and is connected to the base layer 3 by screws 15, and the outer wall panel 7 and the inner wall panel 10 are inserted into the opening of the fixing member 14. Those skilled in the art should understand that in order to fix the lower end of the outer wall panel 7 and the inner wall panel 10, the device preferably comprises a fixing member 14 in the shape of F, which is connected to the base layer 3 by screws 15, so that the opening of the fixing member 14 faces upward, and then the lower end of the outer wall panel 7 and the inner wall panel 10 are inserted into the opening of the fixing member 14.

[0041] Preferably, the structure further comprises a sealing strip 17, which is in the shape of cross, and the symmetrical edges of the sealing strip 17 are respectively inserted into the strip-shaped holes between the adjacent outer wall panels 7 or the inner wall panels 10. Those skilled in the art should understand that in order to prevent the concrete 8 from overflowing from the gaps between the adjacent outer wall panels 7 and the gaps between the adjacent inner wall panels 10 during pouring, the structure preferably comprises a sealing strip 17, which is in the shape of cross, and the symmetrical edges of the sealing strip 17 are respectively inserted into the strip-shaped holes between the adjacent outer wall panels 7 or the inner wall panels 10, so as to seal the gaps between the adjacent outer wall panels 7 and the gaps between the adjacent inner wall panels 10.

Claims

1. A titanium magnesium fireproof plate assembled finished product one-time forming demoulding-free wall structure, characterized in that: The utility model provides a kind of wall structure, including outer wall panel (7), inner wall panel (10) and tensioning component, the outer wall panel (7) and inner wall panel (10) are spaced apart by tensioning component, and concrete (8) is poured between the outer wall panel (7) and inner wall panel (10);The tensioning component includes tensioning piece (6), sleeve (13) and insert (5), two insertion holes (61) are spaced apart on the tensioning piece (6), and the tensioning piece (6) is spaced apart and arranged at the gap between adjacent outer wall panel (7) and inner wall panel (10), the sleeve (13) is sleeved in the middle of tensioning piece (6), and two ends are respectively contacted with the inner wall of the outer wall panel (7) and inner wall panel (10) opposite, the insert (5) is wedge structure, and is arranged in insertion hole (61), and the side wall of insert (5) is connected with the outer wall of the outer wall panel (7) and the outer wall of inner wall panel (10) on the corresponding side respectively. ​ 2. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 1, characterized in that: The insert (5) is a right triangle structure, and the right angle side is connected with the outer wall of the outer wall panel (7) and the outer wall of the inner wall panel (10) after being inserted into the insertion hole (61), and the middle width of the insert (5) is equal to the length of the insertion hole (61).

3. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 1, characterized in that: It also includes a mounting strip (16), the upper side of the mounting strip (16) is provided with an upper fixed plate (162) at both ends, and the lower side is provided with a lower fixed plate (163) at both ends;The outer edge side of the outer wall panel (7) and the inner wall panel (10) is provided with a strip-shaped hole, and the upper fixed plate (162) and the lower fixed plate (163) are respectively clamped into the outer wall panel (7) and the inner wall panel (10) on the corresponding side.

4. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 3, characterized in that: It also includes an insulation board (9) and a fixed rod (12), the mounting strip (16) is provided with two limiting through holes (161) at intervals, the fixed rod (12) is arranged in the limiting through hole (161), the lower end of the insulation board (9) is arranged on the mounting strip (16), and the upper end is arranged at intervals with the adjacent mounting strip (16), and the two sides of the insulation board (9) are connected with the fixed rod (12).

5. The prefabricated one-time forming and non-dismantling mould wall structure of titanium-magnesium fireproof sheet assembly type according to claim 1, characterized in that: It also includes a C-shaped steel (1), which is arranged at intervals on the outer side of the outer wall panel (7) and the inner wall panel (10), and is closely connected with the outer wall of the outer wall panel (7) and the inner wall panel (10) respectively, a plurality of connecting grooves (2) are formed on the bottom surface of the C-shaped steel (1), so that the two ends of the tensioning piece (6) pass through the C-shaped steel (1) on the corresponding side respectively, and the side wall of the insert (5) is connected with the outer wall of the C-shaped steel (1).

6. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 5, characterized in that: The lower end of the C-shaped steel (1) is provided with a leveling piece (4), the leveling piece (4) includes a leveling screw (41) and a support (42), the support (42) is a groove structure, and the groove bottom is connected with the lower side wall of the C-shaped steel (1), the opening direction of the support (42) is perpendicular to the length direction of the C-shaped steel (1), and the leveling screw (41) is arranged on the support (42) and is threadedly connected with the support (42).

7. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 6, characterized in that: It also includes a T-shaped screw (11), the C-shaped steel (1) is arranged horizontally and vertically in a staggered manner, and is connected and fixed by the T-shaped screw (11).

8. The titanium magnesium fireproof panel assembly type finished product one-time forming non-dismantling mold wall structure according to claim 7, characterized in that: The screw of the T-shaped screw (11) is provided with a square boss (111) at the connection with the large end, and the width of the square boss (111) is matched with the width of the connecting groove (2) on the bottom surface of the C-shaped steel (1).

9. The prefabricated one-time forming and non-dismantling mould wall structure of titanium-magnesium fireproof sheet assembly type according to claim 1, characterized in that: It also comprises a fixing part (14) in the shape of F, which is connected with the base layer (3) by a screw (15), and the outer wall plate (7) and the inner wall plate (10) are inserted into the opening of the fixing part (14).

10. The prefabricated one-time forming non-dismantling mould wall structure of titanium magnesium fireproof sheet assembly according to claim 1, characterized in that: It also comprises a sealing strip (17) in the shape of cross, and the symmetric edges can be respectively inserted into the strip-shaped hole between the adjacent outer wall plate (7) or inner wall plate (10).