Floor assembly type decoration framework equipment

Through the combination of support frame and control mechanism, the problems of unstable connections and insufficient flatness of prefabricated floor panels are solved, stable support and flatness adjustment of foam concrete components are achieved, and the paving effect of decorative panels is improved.

CN120443874APending Publication Date: 2025-08-08HANGZHOU YUANYI DECORATION ENGINEERING CO LTD
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Patent Information

Application Number
CN202510824126.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-19
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

In the prior art, the connection between prefabricated floor panels is unstable and prone to loosening or offset, resulting in floor cracks and decorative panels breaking, and the flatness of prefabricated floor panels is difficult to ensure.

Method used

The support frame and control mechanism are adopted to adjust the distance between the lifting plate and the support frame through the cooperation of screws, nuts and thread positioning mechanisms. Combined with the cross support plate and pallets, stable support and flatness adjustment of foam concrete components are achieved.

Benefits of technology

Effectively ensure the stability and flatness of foam concrete components, prevent unbalanced stress at the connection position, and improve the stability of the paving layer and the flatness of the decorative panel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of building decoration frameworks, in particular to floor assembly type decoration framework equipment which comprises a supporting frame, a regulation and control mechanism is arranged at the upper end of the supporting frame, a mounting plate is arranged on the regulation and control mechanism, and two openings are formed in each of the two sides of the mounting plate; and a rotating frame is rotationally sleeved with the opening, connecting shafts are installed at the end, penetrating through the opening and extending to the upper side of the mounting plate, of the rotating frame, and an abutting shaft is jointly rotationally sleeved between the two connecting shafts located on the same side. According to the foam concrete assembly supporting device, borne downward pressure can be converted into pushing and lifting force, so that the foam concrete assembly is supported through the supporting plate piece while the cross-shaped supporting plate bears the gravity of the foam concrete assembly, and the stability of the foam concrete assembly can be fully guaranteed; and the distance between the lifting plate piece and the supporting frame can be adjusted through cooperation of the nut piece and the screw rod so as to adapt to the situation that a base layer is uneven, and flatness of the foam concrete assembly is fully guaranteed.
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Description

Technical Field

[0001] The present invention relates to the technical field of building decoration frames, and in particular to a floor assembly type decoration frame device. Background Art

[0002] In the traditional construction industry, houses and high-rise buildings are mostly constructed using cast-in-place concrete, a complex and time-consuming process. In recent years, prefabricated buildings, which use prefabricated panels for assembly, have become increasingly popular. Floor panels are prefabricated first and then sequentially laid on beams during construction. Grouting is performed between the panels to form a single unit. Decorative panels, such as floor tiles, marble, and wood, are then laid on top of the panels. Assembly and decoration are completed simultaneously, significantly shortening the construction timeline. However, if the concrete used for grouting between the panels is unstable or is subjected to external forces, the connections between adjacent panels and between the panels and beams can easily loosen or shift, leading to cracks in the floor and breakage of the decorative panels. Furthermore, the decorative panels are leveled on the floor panels during installation. Due to the limitations of the prefabrication process, prefabricated floor panels often fail to meet required flatness. Leveling on uneven floors is difficult, and the decorative floor surface is prone to significant flatness deviations.

[0003] The floor assembly decoration frame system disclosed in publication number CN114215245B includes a floor frame, floor panels, and a floor paving structure. Multiple floor panels are sequentially spliced and laid on the floor frame to form a floor. The floor frame includes a rectangular base frame, in which N brackets are arranged in parallel and at equal intervals, and the brackets extend along the length of the rectangular base frame. The upper end surfaces of the rectangular base frame and the upper end surfaces of the brackets are provided with protrusions. The floor panel is provided with mounting grooves adapted to the protrusions, and the height of the protrusions is greater than the thickness of the floor panel. The floor paving structure includes a fixing assembly, a cushion layer, an adhesive layer, and a decorative panel. The fixing assembly is fixedly connected to the top of the protrusion. The cushion layer is formed by concrete poured on the floor, and the top of the cushion layer is flush with the top of the fixing assembly. The decorative panel is laid on top of the cushion layer through the adhesive layer. The floor assembly decoration frame system of the present invention improves the connection stability and strength between the floor panel and the beam frame, and can also improve the flatness of the floor decoration.

[0004] In the above technical solution, the pavement layer cannot be fully supported and does not have the corresponding force unloading function, which will cause the pavement layer to directly transfer force to the frame structure, which may cause unbalanced force between the connected position and the unconnected position, affecting the paving effect of the pavement layer, so it needs to be improved. Summary of the Invention

[0005] The purpose of the present invention is to solve the shortcomings of the prior art and to propose a floor assembly type decoration frame equipment.

[0006] In order to achieve the above object, the present invention adopts the following technical solutions: A floor assembly decoration frame device includes a support frame, an upper end of the support frame is provided with a regulating mechanism, a mounting plate is provided on the regulating mechanism, and two openings are provided on both sides of the mounting plate; A rotating frame is rotatably sleeved in the opening, and the rotating frame passes through the opening and extends to one end of the upper side of the mounting plate, where a connecting shaft is mounted. An interfering shaft is rotatably sleeved between the two connecting shafts on the same side. The lower end of the rotating frame is connected to a push-up mechanism, and the push-up mechanism is provided with a cross support plate and four reinforcement plates. The cross support plate abuts against the upper ends of the two abutment shafts, and the four support plate members abut against the upper ends of the four reinforcement plates respectively. The upper ends of the cross support plate and the supporting plate member are arranged flush with each other.

[0007] Compared with the prior art, the present application can convert the downward pressure it bears into a lifting force so that the cross support plate can bear the gravity of the foam concrete assembly while supporting the foam concrete assembly through the support plate, thereby fully ensuring the stability of the foam concrete assembly. The distance between the lifting plate and the support frame can be adjusted through the cooperation of the nut and the screw to adapt to the unevenness of the base layer, thereby fully ensuring the flatness of the foam concrete assembly.

[0008] Preferably, the regulating mechanism includes a carrier frame fixed to the upper end of the support frame, a screw is fixed to the upper end of the carrier frame, a threaded positioning mechanism is provided on the screw, a lifting plate is slidably installed on the screw, and a support adjustment mechanism is provided between the lifting plate and the support frame.

[0009] Furthermore, welding and other methods can fully ensure the firmness of the connection between the screw and the carrier frame, and can also ensure the firmness of the connection between the carrier frame and the support frame. The threaded positioning mechanism and the support adjustment mechanism cooperate to ensure the stability of the distance between the support frame and the lifting plate, and facilitate adjustment, and can also make the support frame rise and fall smoothly relative to the lifting plate.

[0010] Preferably, the screw positioning mechanism includes a circular ring member slidably sleeved on the screw rod, the circular ring member is located at the lower end of the lifting plate member, and a nut member is threadedly sleeved on the screw rod, and the nut member abuts against the lower end of the circular ring member.

[0011] Furthermore, by lifting the lifting plate, the lifting plate can be raised along the screw to effectively adjust the distance between the lifting plate and the support frame, and ensure that multiple lifting plates in the same room are in the same horizontal plane. When the lifting plate is adjusted into place, the nut part can be rotated to make the upper end of the nut part contact the lower end of the circular ring part, and ensure that the circular ring part and the lower end of the lifting plate contact each other.

[0012] Preferably, the support adjustment mechanism is fixed to the fixed frame at the upper end of the support frame, and a connecting port is provided on the lifting plate. A plurality of triangular plates are fixed at equal intervals from bottom to top on one side of the fixed frame, and a bending plate is rotated in the connecting port. Two resistance spring members are fixed on the side of the bending plate away from the fixed frame, and both resistance spring members are fixedly connected to the connecting port. One side of the lower end of the bending plate extends between two adjacent triangular plates.

[0013] Furthermore, when the lifting plate moves in a direction away from the support frame, the bending plate can be rotated so that the lower end of the bending plate and the triangular plate are separated, and when the force is reduced, the horizontal end of the bending plate and the horizontal end of the triangular plate can be made to conflict with each other, thereby ensuring the stability of the position of the lifting plate; The horizontal end of the triangle plate is located at the upper end, and the fixing frame is slidably installed in the connecting port.

[0014] Preferably, one end of the bending plate extending between two adjacent triangular plates is rotatably sleeved with a rotating shaft, and the rotating shaft is in conflict with the triangular plate located at the upper end.

[0015] Furthermore, the rotating shaft is installed on the horizontal end of the bending plate at the lower end, and the rotating shaft is convenient for contacting with the inclined end of the triangular plate, so that the bending plate can be deflected to facilitate the lifting of the lifting plate relative to the fixed frame.

[0016] Preferably, the lifting mechanism includes an oblique rod rotatably connected to the lower end of the rotating frame, two oblique rods located on the same side are rotatably connected to a supporting U-shaped frame, four reinforcing plates are respectively fixed to the two ends of the two supporting U-shaped frames, and a connecting structure is commonly provided between the four reinforcing plates; A telescopic rod is fixed to the upper end of the mounting plate, and the piston rod end of the telescopic rod is fixed to the lower end of the cross support plate.

[0017] Furthermore, when the connecting shaft causes the rotating frame to rotate under the action of the interference shaft, the rotating frame can be deflected to push the oblique rod to move. The support U-shaped frame is lifted up by the push of the oblique rod, which can enable the support U-shaped frame to push the reinforcing plate, so that the reinforcing plate and the support plate conflict with each other, so as to fully make the support plate conflict with the lower end of the foam concrete assembly.

[0018] Preferably, the connecting mechanism includes a horizontal frame that passes through two reinforcing plates on the same side, and two connecting plates are fixed between the two horizontal frames.

[0019] Furthermore, the connection between the two cross frames and the two connecting plates can be firmly achieved through welding or bolt connection. At the same time, the two cross frames and the two connecting plates are arranged in a rectangular shape to fully realize the synchronous lifting of multiple reinforcement plates.

[0020] Preferably, first rubber pads are fixed on both sides of the upper end of the mounting plate, and the first rubber pads are in contact with the lower end of the cross support plate.

[0021] Furthermore, the first rubber pad can provide damping and buffering, thereby avoiding direct collision between components.

[0022] Preferably, a second rubber pad is fixed to one side of the lower end of the rotating frame, and the second rubber pad is in conflict with the lower end of the mounting plate.

[0023] Furthermore, the second rubber pad can play a buffering role, thereby avoiding collision between the rotating frame and the mounting plate and protecting corresponding components.

[0024] Preferably, the lower end of the support frame abuts against a concrete floor layer assembly, and the upper ends of the cross support plate and the four supporting plate members are commonly fixed with a foam concrete assembly.

[0025] Furthermore, it can facilitate connection with the base layer and can effectively support the foam concrete assembly to ensure the stability of the foam concrete assembly.

[0026] The beneficial effects of the present invention are: 1. During actual production and preparation, the lower end of the support frame contacts the upper end of the concrete floor assembly. At the same time, the distance between the lifting plate and the support frame is adjusted by the cooperation of the screw, nut and ring. In addition, during actual production and preparation, the horizontal setting of multiple lifting plates is achieved through the cooperation of components such as a laser level. It is then ensured that the multiple lifting plates are on the same horizontal plane, and the mounting plate is on the same horizontal plane to ensure the horizontality of the foam concrete assembly. 2. When the position of the lifting plate is adjusted, the rotating shaft and the lower end of the triangular plate can collide with each other, which can cause the bending plate to deflect. When the lifting plate is forced to drop, the horizontal end of the bending plate can collide with the horizontal surface of the triangular plate at the lower end of the bending plate, which can ensure the stability of the position of the lifting plate. 3. When the foam concrete assembly is subjected to force, it will press down the cross support plate, which can squeeze the interference axis through the action of the cross support plate, so that the interference axis drives the opening to rotate, and the opening can push the support U-shaped frame upward through the oblique rod, and the reinforcement plate can push the support plate upward to ensure the stability of the foam concrete assembly; 4. The two cross frames and two connecting plates can ensure the smooth lifting of the four reinforcement plates. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 It is a structural diagram of the present invention; Figure 2 This is a structural diagram of the mounting plate, support column, lifting plate and support frame in the present invention; Figure 3 It is a structural diagram of the screw, nut and ring member in the present invention; Figure 4 It is a structural diagram of the resistance spring component, the bending plate and the rotating shaft component in the present invention; Figure 5 It is a structural diagram of the rotating frame and the oblique rod in the present invention; Figure 6 The present invention is attached Figure 2 A magnified view of point A; Figure 7 This is an installation structure diagram of a floor assembly type decoration frame device proposed by the present invention; In the figure: 1 cross support plate, 2 support plate member, 3 support frame, 4 lifting plate member, 5 support column, 6 mounting plate, 7 cross frame, 8 reinforcement plate, 9 first rubber pad, 10 support U-shaped frame, 11 connecting plate, 12 resistance shaft, 13 telescopic rod member, 14 screw rod, 15 circular ring member, 16 nut member, 17 resistance spring member, 18 bending plate, 19 rotating shaft member, 20 connecting shaft, 21 rotating frame, 22 second rubber pad, 23 oblique rod member, 24 opening, 25 fixing frame, 26 triangle plate, 27 connecting port, 28 foam concrete assembly, 29 concrete floor layer assembly, 30 bearing frame. DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0029] Reference Figure 1-7 A floor assembly decoration frame device includes a support frame 3, the lower end of the support frame 3 is in conflict with a concrete floor layer component 29, and the upper ends of the cross support plate 1 and the four support plate members 2 are jointly fixed with a foam concrete component 28, which can effectively play a role of separation. At the same time, multiple foam concrete components 28 conflict with each other to form a complete plane, which is convenient for subsequent decoration operations on the foam concrete component 28. The support frame 3 is installed at the upper end of the concrete floor layer component 29, which can effectively adapt to the concrete floor layer components 29 in different situations, that is, when the concrete floor layer components 29 in the same floor When the surface is uneven, multiple support frames 3 are set up to make the lifting plate 4 at the same horizontal plane, which is convenient for the subsequent paving of the foam concrete component 28 and ensures the smoothness of the ground during subsequent decoration. In actual use, the foam concrete component 28 can also use lightweight building materials such as fly ash products, cement products such as building insulation and energy saving, which can be selected according to needs to ensure the flatness of the overall structure. The upper end of the support frame 3 is provided with a regulating mechanism, and the regulating mechanism is provided with a mounting plate 6. The position of the lifting plate 4 can be controlled by the regulating mechanism, and the distance between the lifting plate 4 and the support frame 3 is fully limited.

[0030] Reference Figure 2-3 The regulating mechanism includes a carrier frame 30 fixed to the upper end of the support frame 3. The firmness of the connection between the carrier frame 30 and the support frame 3 is ensured by welding or bolt connection. A screw 14 is fixed to the upper end of the carrier frame 30. In actual use, a triangular reinforcement plate can be installed between the lower end of the screw 14 and the carrier frame 30 to fully ensure the stability of the screw 14. A threaded positioning mechanism is provided on the screw 14, and a lifting plate 4 is slidably installed on the screw 14. A support adjustment mechanism is provided between the lifting plate 4 and the support frame 3.

[0031] Reference Figure 1 、 2 , 3, 7, the screw positioning mechanism includes a circular ring member 15 slidably sleeved on the screw rod 14, through which the downward force of the lifting plate 4 can be differentiated, the circular ring member 15 is located at the lower end of the lifting plate 4, and a nut member 16 is threadedly sleeved on the screw rod 14, and the nut member 16 abuts against the lower end of the circular ring member 15. When in use, the distance between the lifting plate 4 and the support frame 3 can be adjusted, and as the lifting plate 4 rises and reaches the adjusted position, the nut member 16 can be rotated to make the nut member 16 abut against the lower end of the circular ring member 15, and the circular ring member 15 abuts against the lower end of the lifting plate 4. When the lifting plate 4 descends, the gravity will be transmitted to the circular ring member 15, and transmitted to the nut member 16 through the circular ring member 15. The nut member 16 abuts against the circular ring member 15 and the lifting plate 4 to effectively limit the position of the lifting plate 4, and at the same time, the stability of the lifting plate 4 can also be ensured by the support adjustment mechanism.

[0032] Reference Figure 1 、 2, 3, 7, the support adjustment mechanism is fixed to the fixing frame 25 at the upper end of the support frame 3, and a connecting port 27 is provided on the lifting plate 4. A plurality of triangular plates 26 are fixed at equal intervals from bottom to top on one side of the fixing frame 25, and a bending plate 18 is connected to the rotating sleeve in the connecting port 27. Two resistance spring members 17 are fixed to the side of the bending plate 18 away from the fixing frame 25. Both resistance spring members 17 are fixedly connected to the connecting port 27. One side of the lower end of the bending plate 18 extends between the two adjacent triangular plates 26. A notch is provided on one side of the fixing frame 25, and a plurality of triangular plates 26 are fixed at equal intervals from bottom to top on the side wall at one end of the fixing frame 25. 26 is a right triangle arrangement, and the vertical end is fixedly connected to the fixing frame 25, the horizontal end is located at the upper end, and the horizontal end will conflict with the lower end of the horizontal end of the bending plate 18, and the inclined end of the triangular plate 26 is arranged at the lower end, so that it is convenient to make the upper end side of the horizontal end of the bending plate 18 conflict with the inclined end of the triangular plate 26 for deflection. When the lifting plate 4 is forced to descend, the bending plate 18 will be driven down, and the lower end of the horizontal end of the bending plate 18 can conflict with the horizontal end of the triangular plate 26 located at the lower end of the bending plate 18, thereby preventing the lifting plate 4 from descending. The stability of the position of the lifting plate 4 can be ensured by the nut 16, the circular ring 15 and the screw 14.

[0033] Reference Figure 2 、 4 6. The bending plate 18 extends to one end between the two adjacent triangular plates 26 and is rotatably sleeved with a rotating shaft 19. The rotating shaft 19 and the triangular plate 26 at the upper end conflict with each other. The rotating shaft 19 facilitates conflict with the inclined end of the triangular plate 26. When the lifting plate 4 rises, the inclined end of the triangular plate 26 will conflict with the rotating shaft 19, so that the rotating shaft 19 drives the bending plate 18 to deflect. At this time, the resistance spring 17 will be stretched to adapt to the deflection of the bending plate 18, and the rotating shaft 19 can also make the rotating shaft 19 The lower end of the bending plate 18 always contacts the triangular plate 26. When the bending plate 18 moves to the upper end of the triangular plate 26, the resistance spring member 17 can quickly reset the bending plate 18 and insert it between the two triangular plates 26 again, so that the bending plate 18 can be quickly deflected, and the rotating shaft member 19 is arranged at the upper end of the horizontal end of the bending plate 18, that is, the lower end of the bending plate 18 is a whole surface, which can fully contact the upper end of the triangular plate 26 to effectively support it, and support the stability of the lifting plate 4 through the bending plate 18.

[0034] Reference Figure 1-7, two openings 24 are provided on both sides of the mounting plate 6; that is, openings 24 are provided at the four corners of the mounting plate 6, and a rotating frame 21 is rotatably sleeved in the opening 24. The rotating shaft can be fixed on both sides of the rotating frame 21, or an axis can cross the rotating frame 21 at the same time to connect the axis and the opening 24. In this way, stable rotation can be performed and the synchronous lifting of the rotating frame 21 and the lifting plate 4 can be effectively achieved. The rotating frame 21 passes through the opening 24 and extends to one end of the upper side of the mounting plate 6. A connecting shaft 20 is installed. The two connecting shafts 20 located on the same side 0 are jointly rotatably sleeved with a resistance shaft 12, the rotating frame 21 is bent and arranged, and the rotating frame 21 is rotatably sleeved in the corresponding opening 24. At the same time, the resistance shaft 12 is arranged on the two connecting shafts 20 on the same side, which can make the resistance shaft 12 rotate stably, that is, when the cross support plate 1 is pressed down by force, the cross support plate 1 can squeeze the resistance shaft 12, so that the resistance shaft 12 can resist the cross support plate 1 to roll, and the resistance shaft 12 can also drive the rotating frame 21 to rotate, so that the rotating frame 21 is deflected.

[0035] Reference Figure 1-7 The lower end of the rotating frame 21 is connected to a pushing mechanism, and the pushing mechanism is provided with a cross support plate 1 and four reinforcing plates 8. The pushing mechanism can fully realize the conversion of gravity, that is, the descending gravity is converted into an upward pushing force, and the reverse push of gravity is realized, thereby improving the overall stability. The cross support plate 1 is in contact with the upper ends of the two conflicting shafts 12, and the four supporting plate members 2 are respectively in contact with the upper ends of the four reinforcing plates 8. The reinforcing plates 8 can fully support the supporting plate members 2; the upper ends of the cross support plate 1 and the supporting plate members 2 are flush with each other. Through the flush setting of the cross support plate 1 and the supporting plate members 2, the stability of the installation of the foam concrete assembly 28 can be fully guaranteed, and the force borne by the foam concrete assembly 28 can be distributed more smoothly, which helps to protect the foam concrete assembly 28.

[0036] Reference Figure 1-7 The lifting mechanism includes an oblique rod 23 rotatably connected to the lower end of the rotating frame 21. The rotation of the rotating frame 21 can push the oblique rod 23 to deflect, and can gradually make the oblique rod 23 operate in a direction parallel to the supporting U-shaped frame 10. The two oblique rods 23 on the same side are jointly connected to the supporting U-shaped frame 10 in rotation, which can stably push the supporting U-shaped frame 10 to rise and fall. The four reinforcing plates 8 are respectively fixed at both ends of the two supporting U-shaped frames 10. A connecting structure is commonly provided between the four reinforcing plates 8. Through the supporting U-shaped frame 10, the two reinforcing plates 8 on the same side can be lifted and lowered synchronously, and it helps to make the reinforcing plates 8 fully resist the support plate 2.

[0037] Reference Figure 1-2A telescopic rod 13 is fixed to the upper end of the mounting plate 6, and the piston rod end of the telescopic rod 13 is fixed to the lower end of the cross support plate 1; the action of the telescopic rod 13 can fully ensure that the cross support plate 1 can be vertically lifted relative to the mounting plate 6.

[0038] Reference Figure 2 The connecting mechanism includes a horizontal frame 7 that passes through two reinforcing plates 8 on the same side. Two connecting plates 11 are fixed between the two horizontal frames 7. A rectangular frame can be formed by the two horizontal frames 7 and the two connecting plates 11, and the rectangular frame can fully enable the four reinforcing plates 8 to rise and fall synchronously.

[0039] Reference Figure 2 、 5 , first rubber pads 9 are fixed on both sides of the upper end of the mounting plate 6, and the first rubber pad 9 is in conflict with the lower end of the cross support plate 1. A second rubber pad 22 is fixed to one side of the lower end of the rotating frame 21, and the second rubber pad 22 is in conflict with the lower end of the mounting plate 6. The first rubber pad 9 and the second rubber pad 22 can fully form a buffer layer through the action of the first rubber pad 9 and the second rubber pad 22. When subjected to external force, it can first collide with the first rubber pad 9 and the second rubber pad 22 to avoid direct collision between components, which helps to protect the components. At the same time, it can also play a mobile buffering protection role and reduce the occurrence of abnormal noise.

[0040] In the present invention, the staff can set up multiple devices on the floor, which can make the support frame 3 and the foam concrete component 28 conflict. At the same time, the staff can set up equipment such as a laser level to achieve leveling; When the lifting plate 4 is lifted up, the inclined surface at the lower end of the triangular plate 26 will come into contact with the horizontal surface of the bending plate 18, and the bending plate 18 can be deflected by the contact between the rotating shaft 19 and the inclined surface of the triangular plate 26, so that the lifting plate 4 can be lifted and lowered relative to the fixing frame 25. At the same time, the bending plate 18 can be pulled back to its original position by the action of the resistance spring 17, so that the lower end of the bending plate 18 can be quickly inserted between the two adjacent triangular plates 26 again. When the position of the lifting plate 4 is adjusted and fixed, the foam concrete assembly 28 is laid on the cross support plate 1 and the supporting plate 2. When the foam concrete assembly 28 applies pressure to the cross support plate 1, the cross support plate 1 can be pressed down to squeeze the interference shaft 12, and the telescopic rod 13 can ensure the stability of the lifting of the cross support plate 1 to avoid deviation. At the same time, the interference shaft 12 will drive the rotating frame 21 to deflect, and the deflection of the rotating frame 21 can push the inclined rod 23 to move, so that the inclined rod 23 can push the supporting U-shaped frame 10 to rise, so that the supporting U-shaped frame 10 can drive the two reinforcing plates 8 fixed thereto to rise, so that the reinforcing plates 8 and the supporting plate 2 can conflict with the foam concrete assembly 28, and the stability of the foam concrete assembly 28 can be ensured, and the synchronous lifting of the four reinforcing plates 8 can be achieved through the action of the two connecting plates 11 and the two cross frames 7; At the same time, when the cross support plate 1 is squeezed and lowered, the cross support plate 1 and the first rubber pad 9 can collide with each other. At the same time, when the rotating frame 21 deflects, the second rubber pad 22 is also squeezed, avoiding direct collision between components.

[0041] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.

Claims

1. A floor assembly decoration frame device, comprising a support frame (3), characterized in that: The upper end of the support frame (3) is provided with a regulating mechanism, and a mounting plate (6) is provided on the regulating mechanism, and two openings (24) are provided on both sides of the mounting plate (6); A rotating frame (21) is rotatably sleeved in the opening (24), and the rotating frame (21) passes through the opening (24) and extends to one end of the upper side of the mounting plate (6) to be mounted with a connecting shaft (20), and a contact shaft (12) is rotatably sleeved between the two connecting shafts (20) on the same side; The lower end of the rotating frame (21) is connected to a push-up mechanism, and the push-up mechanism is provided with a cross support plate (1) and four reinforcement plates (8), the cross support plate (1) abuts against the upper ends of the two abutment shafts (12), and the four support plate members (2) respectively abut against the upper ends of the four reinforcement plates (8); The upper ends of the cross support plate (1) and the supporting plate member (2) are arranged flush with each other.

2. The floor assembly decoration frame equipment according to claim 1, characterized in that: The regulating mechanism comprises a carrier frame (30) fixed to the upper end of the support frame (3), a screw rod (14) is fixed to the upper end of the carrier frame (30), a threaded positioning mechanism is provided on the screw rod (14), a lifting plate (4) is slidably mounted on the screw rod (14), and a support regulating mechanism is provided between the lifting plate (4) and the support frame (3).

3. The floor assembly type decoration frame equipment according to claim 2, characterized in that: The screw positioning mechanism comprises a circular ring member (15) slidably sleeved on a screw rod (14), the circular ring member (15) being located at the lower end of the lifting plate member (4), a nut member (16) being threadedly sleeved on the screw rod (14), and the nut member (16) being in contact with the lower end of the circular ring member (15).

4. The floor assembly type decoration frame equipment according to claim 2, characterized in that: The support adjustment mechanism is fixed to a fixed frame (25) at the upper end of the support frame (3), and a connecting port (27) is provided on the lifting plate (4). A plurality of triangular plates (26) are fixed at equal intervals from bottom to top on one side of the fixed frame (25), and a bending plate (18) is rotatably sleeved in the connecting port (27). Two resistance spring members (17) are fixed on the side of the bending plate (18) away from the fixed frame (25), and both resistance spring members (17) are fixedly connected to the connecting port (27). One side of the lower end of the bending plate (18) extends between two adjacent triangular plates (26).

5. The floor assembly type decoration frame equipment according to claim 4, characterized in that: One end of the bending plate (18) extending between two adjacent triangular plates (26) is rotatably sleeved with a rotating shaft member (19), and the rotating shaft member (19) is in conflict with the triangular plate (26) located at the upper end.

6. The floor assembly type decoration frame equipment according to claim 1, characterized in that: The lifting mechanism comprises an oblique rod (23) rotatably connected to the lower end of the rotating frame (21); two oblique rods (23) located on the same side are rotatably connected to a supporting U-shaped frame (10); four reinforcing plates (8) are respectively fixed to the two ends of the two supporting U-shaped frames (10); and a connecting structure is commonly provided between the four reinforcing plates (8); A telescopic rod (13) is fixed to the upper end of the mounting plate (6), and the piston rod end of the telescopic rod (13) is fixed to the lower end of the cross support plate (1).

7. The floor assembly type decoration frame equipment according to claim 6, characterized in that: The connection mechanism comprises a cross frame (7) extending through two reinforcement plates (8) on the same side, with two connection plates (11) being fixed between the two cross frames (7).

8. The floor assembly type decoration frame equipment according to claim 1, characterized in that: First rubber pads (9) are fixed on both sides of the upper end of the mounting plate (6), and the first rubber pads (9) are in contact with the lower end of the cross support plate (1).

9. The floor assembly type decoration frame equipment according to claim 1, characterized in that: A second rubber pad (22) is fixed to one side of the lower end of the rotating frame (21), and the second rubber pad (22) is in contact with the lower end of the mounting plate (6).

10. The floor assembly type decoration frame equipment according to claim 1, characterized in that: The lower end of the support frame (3) abuts against a concrete floor slab component (29), and the upper ends of the cross support plate (1) and the four support plate members (2) are jointly fixed with a foam concrete component (28).

Citation Information

Patent Citations

  • Prefabricated floor and ground decoration framework system

    CN114215245B