Sound insulation floor assembling device

Through the support components and the loading mechanism of the sound insulation floor assembly device, the time-consuming and laborious construction of the sound insulation floor slab is solved, and the rapid paving and limiting are achieved, and the construction period is shortened.

CN120553451AActive Publication Date: 2025-08-29SICHUAN INSITITUTE OF BUILDING RES
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Patent Information

Application Number
CN202511050286.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-08-29
Estimated Expiration
2045-07-29

AI Technical Summary

Technical Problem

In the prior art, the on-site construction process of sound insulation floor slabs is time-consuming and labor-intensive, especially when digging holes to install sound insulation bricks, it is necessary to separate sound insulation cotton, which affects the construction period.

Method used

The sound-insulating floor slab assembly device is adopted, including the supporting components and the loading mechanism of the clamping parts. Through the design of the assembly table and clamping parts of the supporting components, the paving and limiting of the sound-insulating floor slab is realized, and the construction process is simplified.

Benefits of technology

Through the sound-insulating floor slab assembly device, no on-site stacking assembly is achieved, shortening the construction period and improving construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a sound insulation floor assembling device, and belongs to the technical field of sound insulation floor assembling equipment. The four clamping piece feeding mechanisms comprise linear mechanisms, frame bodies are arranged on the linear mechanisms, conveying assemblies are arranged on the frame bodies and used for conveying clamping pieces to the corresponding corners of the sound insulation floor, and pressing assemblies are arranged at the tail ends of the conveying assemblies; the pressing assembly comprises a pressing plate piece and a top plate piece, the pressing plate piece is slidably connected with the upper transverse portion of the E-shaped plate and used for pressing the upper end of the vertical plate, and the top plate piece is vertically and movably arranged corresponding to the rectangular hole and used for pushing the end plate so that the plug pins can be inserted into the corresponding insertion holes to form clamping pieces for clamping the corresponding corners of the sound insulation floor. By using the scheme provided by the invention, a plurality of sound insulation floor slabs can be spliced and paved on the surface of the floor slab during construction, and on-site stacking assembly is not needed, so that the construction period is shortened.
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Description

Technical Field

[0001] The invention belongs to the technical field of sound insulation floor slab processing, and in particular relates to a sound insulation floor slab assembly device. Background Art

[0002] Soundproof floor slabs are mainly used to block the sound propagation path. They are usually constructed on-site. Sound insulation felt, the first layer of sound insulation cotton, the second layer of sound insulation cotton, and the sound insulation board are laid on the floor slab in sequence. Then, steel mesh is laid on the sound insulation board, and finally concrete is poured.

[0003] To achieve both sound isolation and absorption, workers typically use a utility knife to carve square holes in the second layer of soundproofing, then install high-density soundproofing tiles into the corresponding holes. To facilitate the use of the utility knife, workers often divide the second layer of soundproofing into smaller pieces before laying them down, which is time-consuming and labor-intensive, impacting the project schedule. Summary of the Invention

[0004] In order to solve the above-mentioned deficiencies in the prior art, the present invention provides a sound insulation floor assembly device, which can be used to lay multiple sound insulation floor panels on the floor surface during construction without the need for on-site stacking and assembly, thereby shortening the construction period.

[0005] In order to achieve the purpose of the present invention, the following scheme is proposed: A sound insulation floor assembly device, comprising: The supporting assembly includes a bottom plate with an assembly platform provided thereon for stacking the sound insulation floor panels, and right-angle notches are provided at the four corners of the assembly platform; There are four clip-on feeding mechanisms, which are arranged in a circular array on the bottom plate. They include a linear mechanism that moves parallel to the side of the bottom plate, and the linear mechanism is located below the corresponding right-angle notch. The linear mechanism is provided with a frame, and the frame is provided with a conveying assembly. Its conveying direction is parallel to the movement direction of the linear mechanism, and is used to convey the clips to the corresponding corners of the sound insulation floor. A pressing assembly is provided at the end of the conveying direction of the conveying assembly; The clamping member includes a vertical plate and an end plate. The cross section of the vertical plate is a right angle. The upper end of the vertical plate is provided with a sealing plate, the lower end is provided with a latch, and the end plate is provided with a socket. The frame includes two parallel and spaced apart brackets, and the bracket cross section is U-shaped; The conveying assembly includes a first conveyor belt and a second conveyor belt, the first conveyor belt is arranged on the upper bracket, the second conveyor belt is arranged on the lower bracket, and one end of the lower bracket is penetrated by a rectangular hole; An E-shaped plate with an opening facing the bracket is provided at one end of the outer side of the upper bracket. The pressing assembly includes a pressing plate and a top plate. The pressing plate is slidably connected to the upper horizontal part of the E-shaped plate and is used to press the upper end of the vertical plate. The top plate is vertically movable corresponding to the rectangular hole and is used to push the end plate so that the pin is inserted into the corresponding socket to form a clamping piece for the corresponding corner of the sound insulation floor.

[0006] Furthermore, a group of slide grooves are symmetrically provided on the two vertical axes of the assembly table, and a push plate member is provided in the slide groove. The push plate member includes a push plate parallel to the corresponding side of the assembly table. One side of the push plate is connected to the first linear cylinder, and the first linear cylinder is installed at the outer end of the slide groove.

[0007] Furthermore, the horizontal part of the bracket on the upper side is provided with an avoidance groove connected to its front end, the bottom ends of the bracket on the lower side are respectively provided with support legs, the end of the conveying direction of the second conveyor belt is provided with a positioning groove, and a rectangular hole is provided in the middle of the positioning groove.

[0008] Furthermore, a group of latches are provided on both sides of the lower end of the vertical plate, and a card slot is provided on the outer side of the vertical plate. The number of sockets in the card slot is consistent with the number of latches. A stepped hole is vertically provided on the outer side of the middle part of the socket, and a card pin is provided in the stepped hole for engaging with the card slot when the latch is inserted into the socket.

[0009] Furthermore, the latch includes a T-pin, one end of the T-pin is provided with a right-angled trapezoidal block, the vertical part of the T-pin is provided with a spring, one end of the spring abuts against one side of the right-angled side of the right-angled trapezoidal block, and the other end abuts against the inner wall of the stepped hole, the slot includes a plane and a first inclined surface, one end of the plane is connected to the axis of the pin, and the lower end of the first inclined surface is connected to one end of the plane, when the pin is inserted into the socket, the inclined side of the right-angled trapezoidal block is adapted to the inclination of the first inclined surface, and the bottom surface of the right-angled trapezoidal block fits with the plane.

[0010] Furthermore, the transverse parts of the two T-shaped pins on the same side of the end plate are rotatably connected with C-shaped hooks.

[0011] Furthermore, a group of slide rails are provided on the bottom surface of the upper horizontal part of the E-shaped plate, and the pressure plate component includes a pressure plate, and the upper end of the pressure plate is provided with a guide groove connected to the slide rail. A shift rod is provided on the outer side of the E-shaped plate, and the shift rod is L-shaped, and the connection between the horizontal part and the vertical part of the shift rod is rotatably connected to one end of the middle horizontal part of the E-shaped plate. The horizontal part of the L-shaped shift rod has a first strip groove, and the vertical part has a second strip groove. A T-shaped rod is provided on one side of the pressure plate, and the vertical part of the T-shaped rod is slidably connected to the second strip groove. The top plate component includes a top plate, and a support plate is provided at the bottom thereof. A push rod is vertically provided at one end of the support plate, and the upper end of the push rod is slidably connected to the second strip groove.

[0012] Furthermore, a rectangular rod is provided at the bottom of the top plate, and the support plate is a horizontally arranged L-shaped structure. The lower end of the rectangular rod is vertically connected to the vertical part of the support plate of the L-shaped structure, and the lower end of the push rod is vertically connected to one end of the horizontal part of the support plate of the L-shaped structure. A second linear cylinder is vertically provided on the lower side of the vertical part of the support plate of the L-shaped structure.

[0013] Furthermore, a rectangular groove is provided on the top surface of the top plate, and the inner dimensions of the groove are adapted to the outer dimensions of the end plate.

[0014] Furthermore, a U-shaped groove is provided at the upper end of the push rod, a connecting pin is provided in the U-shaped groove, and the connecting pin is slidably connected to the second strip groove.

[0015] The beneficial effects of the present invention are: Place each layer of the sound insulation floor slab on the assembly table in turn for stacking, then use the pressure plate to limit the upper end of the vertical plate, and use the top plate to push the end plate upward at the same time, so that the end plate is inserted upward into the lower end of the vertical plate, and the four corners of the sound insulation floor slab are clamped simultaneously, so that the four corners of the sound insulation floor slab are limited to prevent the sound insulation floor slab from being dislocated during transportation. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings described herein are for illustrative purposes only of selected embodiments and not all possible implementations, and are not intended to limit the scope of the present invention.

[0017] Figure 1 A schematic diagram of the limiting state of the sound insulation floor by the clamping member of the present application is shown.

[0018] Figure 2 A schematic exploded view of the structure of the clamping member of the present application is shown.

[0019] Figure 3 A schematic diagram of the connection structure of the T-pin, right-angle trapezoidal block, and C-shaped hook of the present application is shown.

[0020] Figure 4 A schematic cross-sectional view of the stepped hole of the present application projected in the horizontal direction is shown.

[0021] Figure 5 A cross-sectional schematic diagram of the plug-in connection between the end plate and the vertical plate of the present application is shown.

[0022] Figure 6 Shown Figure 5 A partial enlarged schematic diagram of point B in FIG.

[0023] Figure 7 A schematic diagram of the application state of the clamping part feeding mechanism of the present application is shown.

[0024] Figure 8 A schematic diagram of the application state of the clamping part feeding mechanism of the present application is shown.

[0025] Figure 9 A schematic diagram of the support assembly structure of the present application is shown.

[0026] Figure 10 A schematic diagram of the connection structure between the linear mechanism and the frame of the present application is shown.

[0027] Figure 11 A schematic diagram of the bracket and E-type plate connection structure is shown.

[0028] Figure 12 A schematic diagram of the connection structure between the top plate and the push rod of the present application is shown.

[0029] Figure 13 A schematic diagram of the pressure plate structure of the present application is shown.

[0030] Figure 14 Shown Figure 7 A local enlarged schematic diagram of point A in the figure.

[0031] Markings in the figure: sound insulation floor 1, support assembly 10, bottom plate 11, assembly table 12, right-angle notch 121, slide 13, push plate member 14, push plate 141, first linear cylinder 142, linear mechanism 20, frame 30, bracket 31, rectangular hole 311, avoidance groove 312, support leg 313, positioning groove 314, E-shaped plate 32, slide rail 321, shift rod 33, first strip groove 331, second strip groove 332, conveyor assembly 40, first conveyor belt 41, second conveyor belt 42, clamping member 50, vertical Plate-51, pin-511, slot-512, plane-5121, first inclined surface-5122, end plate-52, jack-521, stepped hole-522, T-pin-523, right-angled trapezoidal block-524, spring-525, C-shaped hook-526, pressing assembly-60, pressure plate-61, pressure plate-611, guide groove-612, T-bar-613, top plate-62, top plate-621, support plate-622, rectangular rod-623, second linear cylinder-624, groove-625, push rod-63, U-shaped groove-631, connecting pin-632. DETAILED DESCRIPTION

[0032] To make the objectives, technical solutions and advantages of the embodiments of the present invention more clear, the embodiments of the present invention are described in detail below with reference to the accompanying drawings. However, the embodiments described in the present invention are only part of the embodiments of the present invention, rather than all the embodiments.

[0033] like Figure 7-14 As shown, this embodiment provides a sound insulation floor assembly device, including a support assembly 10 and four clip-on loading mechanisms provided on the support assembly 10, for assembling the clips 50 on the four corners of the sound insulation floor 1 to achieve the limitation of the stacked sound insulation floor 1, so as to facilitate the transportation of the sound insulation floor 1.

[0034] Specifically, such as Figures 1-6As shown, the connector 50 includes a vertical plate 51 and an end plate 52. The vertical plate 51 has a right-angled cross-section, with a set of spaced-apart latches 511 positioned at the lower ends of each of the two right-angled sides. Each latch 511 has a recessed slot 512 positioned toward the outer side of the corresponding right-angled side of the vertical plate 51. The end plate 52 is positioned at the lower end of the vertical plate 51. Two sets of spaced-apart sockets 521 are positioned on its top surface. Each set of sockets 521 corresponds to a set of latches 511, and the depth of the sockets 521 matches the length of the latches 511. When the end plate 52 is docked with the lower end of the vertical plate 51, the latches 511 are inserted into the corresponding sockets 521.

[0035] In order to limit the pin 511, a stepped hole 522 perpendicular to the axis of the hole 521 is provided on one side of each hole 521, and a T-shaped pin 523 is provided in the stepped hole 522. The insertion end of the T-shaped pin 523 is provided with a right-angled trapezoidal block 524, and a spring 535 is passed through the vertical part of the T-shaped pin 523. One end of the spring 525 is connected to the connection between the large end and the small end of the stepped hole 522, and the other end is in contact with the surface where the height of the right-angled trapezoidal plate 524 is located.

[0036] When the latch 511 is inserted into the socket 521, the right-angled trapezoidal block 524 is inserted into the slot 512. To improve the stability of the insertion, the slot 512 is designed to include a horizontal plane 5121 and an inclined first slope 5122. The upper end of the first slope 5122 connects to the outer wall of the latch 511, and the lower end intersects with the plane 5121 at the axis of the latch 511. The inclination of the first slope 5122 matches the slope of the right-angled trapezoidal block 524. The bottom edge of the right-angled trapezoidal block 524 is in contact with the plane 5121.

[0037] When in use, the inner right angles of the vertical plate 51 are inserted into the four corresponding corners of the sound insulation floor 1, the closing plate is abutted against the top surface of the sound insulation floor 1, the end plate 52 is inserted vertically upward along the pin 511, and the right-angled trapezoidal block 524 is used to lock the pin 511, so that the four corners of the stacked sound insulation floor 1 are stably limited, which is not only convenient for transportation, but also easy to transfer during installation.

[0038] like Figure 7 、 Figure 9As shown, the support assembly 10 includes a base plate 11, an assembly platform 12, and a push plate 14. The assembly platform 12 is located at the center of the top surface of the base plate 11 and has a square structure. It is used to assemble and stack the sound insulation floor panels 1. The four corners of the assembly platform 12 are respectively provided with right-angled notches 121, so that the four corners of the assembled and stacked sound insulation floor panels 1 are respectively located above the right-angled notches 121. A set of symmetrically spaced slides 13 are respectively provided on two perpendicular axes of the assembly platform 12. The push plate 14 includes a push plate 141. A slider is provided at the lower middle portion of the push plate 141. The slider is slidably connected to the slide 13. A first linear cylinder 142 is provided at the outer end of each slide 13. The output end of the first linear cylinder 142 passes through the outer end of the slide 13 and connects to the connection between the push plate 141 and the slider, which is used to ensure that the outer sides of each layer of the sound insulation floor panels 1 remain flush.

[0039] like Figure 7 、 Figure 8 、 Figure 10-14 As shown, the clamping component feeding mechanism includes a linear mechanism 20 , a frame 30 , a conveying assembly 40 , and a pressing assembly 60 .

[0040] The bottom plate 11 is provided with guide grooves in a circumferential array parallel to the side of the bottom plate 11 , and one end of the guide groove is located below the right-angle notch 121 . The linear mechanism 20 is arranged to move along the length direction of the guide groove.

[0041] like Figure 7-Figure 8 、 Figure 10-11 、 Figure 14 As shown, the frame 30 includes a bracket 31, an E-shaped plate 32, and a lever 33. Two brackets 31 are arranged parallel to each other and spaced apart. The length of each bracket 31 aligns with the direction of movement of the linear mechanism 20, and the cross-section of each bracket 31 is U-shaped. Vertical leg 313 is provided at each end of the bottom surface of the lower bracket 31. A rectangular hole 311 is recessed into the horizontal portion of the lower bracket 31, facing the corresponding right-angled notch 121. A positioning groove 314 is provided at the top of the rectangular hole 311. A clearance groove 312 is provided on the horizontal portion of the upper bracket 31, extending through the end of the horizontal portion facing the right-angled notch 121.

[0042] The opening of the E-shaped plate 32 is toward the direction of the bracket 31. An extension plate is provided at one end of the vertical portion of the upper bracket 31 facing the outer side of the right-angle notch 121. One end of the lower horizontal portion of the E-shaped plate 32 is perpendicularly connected to the top surface of the extension plate. The length of the upper horizontal portion of the E-shaped plate 32 is greater than the length of the lower horizontal portion, and extends toward the middle of the upper bracket 31. Two slide rails 321 are provided on the upper horizontal portion of the E-shaped plate 32, and the length direction of the slide rails 321 is perpendicular to the vertical portion of the E-shaped plate 32.

[0043] The lever 33 has an L-shaped structure, and the intersection of the horizontal and vertical parts is rotatably connected to the outer side of one end of the middle horizontal section of the E-shaped plate 32, and the inner right angle of the L-shaped lever 33 faces the direction of the vertical part of the E-shaped plate 32. A first strip groove 331 and a second strip groove 332 are respectively provided in the vertical and horizontal parts of the L-shaped lever 33.

[0044] like Figure 11 As shown, the conveying assembly 40 includes a first conveyor belt 41 and a second conveyor belt 42. The first conveyor belt 41 is arranged on the horizontal part of the bracket 31 located on the upper side, and the second conveyor belt 42 is arranged on the horizontal part of the bracket 31 located on the lower side. The first conveyor belt 41 is provided with two and is located on both sides of the avoidance groove 312. When in use, the latch 511 of the vertical plate 51 is downwardly inserted into the avoidance groove 312, with the inner right angle facing the conveying direction of the first conveyor belt 41. The second conveyor belt 42 is used to convey the end plate 52, and the direction of the socket 521 on the end plate 52 is consistent with the arrangement direction of the latch 511 of the vertical plate 51, so that the vertical plate 51 is conveyed to the end of the first conveyor belt 41. When the end plate 52 is conveyed to the end of the second conveyor belt 42, the latch 511 corresponds to the socket 521.

[0045] like Figure 10-14 As shown, the pressing assembly 60 includes a pressing plate 61, a top plate 62, and a push rod 63. The pressing plate 61 includes a pressing plate 611. The pressing plate 611 has an inverted L-shaped structure, with its vertical portion facing the direction of the opening of the E-shaped plate 32. The front end of the horizontal portion of the pressing plate 611 is provided with a second inclined surface. A protrusion is provided on the top surface of the horizontal portion of the pressing plate 611. The protrusion is provided with a guide groove 612, and the guide groove 612 is slidably connected to the corresponding slide rail 321. A T-shaped rod 613 is perpendicularly provided at the junction of the horizontal and vertical portions of the pressing plate 611. The T-shaped rod 613 is located on the side of the pressing plate 611 facing the right-angled notch 121. The vertical portion of the T-shaped rod 613 is disposed in the first strip groove 331 and is slidably connected to the first strip groove 331.

[0046] The pressure plate 611 is set to an inverted L-shaped structure so that when the pressure plate 611 moves forward along the slide rail 321, the vertical part of the pressure plate 611 can be used to push the vertical plate 51 toward the outer side surface of one side of the vertical part of the pressure plate 611, so that when the pressure plate 611 moves forward, the inner side wall corresponding to the vertical plate 51 is conveniently fitted with the side wall corresponding to the sound insulation floor 1, so as to avoid excessive gaps between the inner side walls of the sound insulation floor 1 and the vertical plate 51, which affects the clamping effect.

[0047] The top plate member 62 includes a top plate 621, a support plate 622, a rectangular rod 623, and a second linear cylinder 624. The top plate 621 is arranged in the positioning groove 314, and the outer dimensions of the top plate 621 are adapted to the inner wall dimensions of the positioning groove 314. A groove 625 is provided on the top surface of the top plate 621 for accommodating an end plate at the front end of the conveying direction of the second conveyor belt 42; the rectangular rod 623 is vertically arranged in the middle of the bottom surface of the top plate 621, and the rectangular rod 623 is slidably connected to the rectangular hole 311. The projection of the support plate 622 on the horizontal plane is an L-shaped structure. The lower end of the rectangular rod 623 is vertically connected to the upper side of the vertical part of the support plate 622, and the inner right angle of the L-shaped support plate 622 is slidably connected to the support leg 313 at one end facing the right-angle notch 121. The second linear cylinder 624 is vertically arranged, and its output end is vertically upward and connected to the lower side of the vertical part of the support plate 622.

[0048] The push rod 63 is arranged vertically and is vertically connected to one end of the horizontal part of the support plate 622. A U-shaped groove 631 is provided at the upper end of the push rod 63. A connecting pin 632 is provided in the U-shaped groove 631. The two ends of the connecting pin 632 are respectively connected to the inner walls on both sides of the U-shaped groove 631. The middle part of the connecting pin 632 is arranged in the second strip groove 332 and is slidably connected to the second strip groove 332.

[0049] When in use, start the second linear cylinder 624, so that the second linear cylinder 624 pushes the support plate 622 to move vertically upward. On the one hand, the support plate 622 pushes the rectangular rod 623 vertically upward along the rectangular hole 311, so that the top plate 621 moves the end plate 52 at the front end of the conveying direction of the second conveyor belt 42 upward; on the other hand, the support plate 622 pushes the push rod 63 to move vertically upward. During the vertical upward movement of the push rod 63, the connecting pin 632 moves vertically upward synchronously, so that the connecting pin 63 2 acts on the inner wall of the second strip groove 332, so that the horizontal portion of the lever 33 rotates upward, and the vertical portion of the lever 33 rotates downward during the process of the horizontal portion rotating upward, thereby causing the first strip groove 331 to act on the T-shaped rod 613, so that the T-shaped rod 613 moves forward along the rotation of the vertical portion of the lever 33, thereby causing the pressing plate 611 to move forward along the slide rail 321 to above the sealing plate at the upper end of the vertical plate 51, thereby pushing the side wall of the vertical plate 51 toward the pressing plate 611 to approach the side wall of the sound insulation floor 1.

[0050] When both inner walls at the right angle of the vertical plate 51 are in contact with both inner walls of the corresponding corner of the sound insulation floor 1 , the end plate 52 is spliced ​​with the vertical plate 51 under the upward force of the pressing plate 611 .

[0051] Preferably, in order to facilitate the disassembly of the clamping member 50, the outer ends of the two T-pins 523 on the same side of the end plate 52 are connected to the same C-shaped hook 526. When disassembly is required, the C-shaped hook 526 can be pulled outward to cancel the limit of the two right-angled trapezoidal blocks 524 on the same side corresponding to the pins 511 on the same side, which is easy to operate.

[0052] Specific usage process: The sound insulation felt, the first layer of sound insulation cotton, and the second layer of sound insulation cotton are stacked on the assembly table 12 from bottom to top, and then the sound insulation bricks are inserted into the corresponding holes on the second layer of sound insulation cotton in sequence, with the upper end of the sound insulation bricks facing downward, and finally the sound insulation board is laid on the second layer of sound insulation cotton.

[0053] It is worth noting that at this time, the part of the sound insulation felt located at the bottom layer that is exposed above the right-angled notch 121 is evenly supported by side walls at the right angles of the right-angled notch 121. Although the sound insulation felt and the first sound insulation cotton of the upper layer are not tightly fitted, there will be no situation where it hangs vertically downward toward the right-angled notch 121.

[0054] The first linear cylinder 142 is activated to push the corresponding push rod 141 , so that the corresponding side of each layer on the sound insulation floor 1 is flush.

[0055] The linear mechanism 20 is started and moved toward the right-angle notch 121 , and stops when the front end of the side of the upper bracket 31 without the extension plate abuts against the side corresponding to the sound insulation floor 1 .

[0056] Pass the latch 511 of the vertical plate 51 vertically downward through the avoidance groove 312 and place it on the first conveyor belt 41. Place the end plate 52 on the second conveyor belt 42, and make the direction of the socket 521 on the end plate 52 consistent with the direction of the latch 511 at the lower end of the vertical plate 51 placed on the first conveyor belt 41.

[0057] When a vertical plate 51 at the front end of the first conveyor belt 41 in the conveying direction moves to the front of the extension plate, the vertical plate 51 completely separates from the first conveyor belt 41 and moves vertically downward along the corner corresponding to the sound insulation floor 1 to the sound insulation floor 1, and the side of the vertical plate 51 facing the next vertical plate 51 is pushed forward by the forward conveying force of the next vertical plate 51, so that the side of the inner right angle corresponding to the vertical plate 51 at the front end of the first conveyor belt 41 in the conveying direction abuts against the outer side corresponding to the sound insulation floor 1, and the sealing plate falls onto the top surface of the sound insulation floor 1 under the action of gravity.

[0058] When the frontmost end plate 52 of the second conveyor belt 42 enters the groove 625, the second conveyor belt 42 is paused and the second linear cylinder 624 is activated, causing it to push the support plate 622 vertically upward. On the one hand, the support plate 622 pushes the rectangular rod 623 vertically upward, and the rectangular rod 623 pushes the top plate 621 vertically upward, thereby moving the end plate 52 entering the groove 625 vertically upward. On the other hand, the support plate 622 pushes the push rod 63 vertically upward, causing the push rod 63 to push the horizontal portion of the lever 33 upward, thereby rotating the vertical portion of the lever 33 downward. Under the action of the vertical portion of the lever 33, the pressure plate 611 moves along the slide rail 321 toward the sound insulation floor 1. The vertical portion of the pressure plate 611 pushes the vertical plate 1 toward the side of the vertical portion of the pressure plate 611, thereby moving the vertical plate 1 toward the sound insulation floor 1. Thus, the vertical plate 51 is connected under the action of the pressure plate 611, and the end plate 52 is connected under the upward force of the top plate 621.

[0059] In order to achieve coaxiality when the pin 511 is plugged into the socket 521, upward convex strips are respectively provided on both sides of the socket 521 of the end plate 52, and the opposite ends of the two convex strips are vertically connected so that the width of the convex strips is consistent with the thickness of the two sides of the vertical plate 51. When the top plate 621 pushes the end plate 52 vertically upward, the joint of the two convex strips is vertically upward along the corresponding corner of the sound insulation floor 1, so that the inner right angle of the joint of the convex strips and the vertical plate 51 are both located outside the corresponding corner of the sound insulation floor 1.

[0060] During the plugging process, the end plate 52 only moves vertically but not horizontally, thereby effectively preventing the sound insulation felt at the bottom layer from being deformed or wrinkled.

[0061] The above description is only a preferred embodiment of the present invention and is not intended to be the only one or to limit the present invention. It should be understood by those skilled in the art that various changes or equivalent replacements made to the present invention without departing from the scope of the present invention are within the scope of protection of the present invention.

Claims

1. A sound insulation floor assembly device, characterized in that: include: A support assembly (10) includes a base plate (11) on which an assembly platform (12) is provided for stacking the sound insulation floor slabs (1), and right-angled notches (121) are provided at four corners of the assembly platform (12); The clamping part feeding mechanism is provided with four and is arranged in a circular array on the bottom plate (11), including a linear mechanism (20) moving along a side parallel to the bottom plate (11), and the linear mechanism (20) is located below the corresponding right-angle notch (121), a frame (30) is provided on the linear mechanism (20), and a conveying assembly (40) is provided on the frame (30), the conveying direction of which is parallel to the movement direction of the linear mechanism (20), and is used to convey the clamping part (50) to the corresponding corner of the sound insulation floor (1), and a pressing assembly (60) is provided at the end of the conveying direction of the conveying assembly (40); The clamping member (50) includes a vertical plate (51) and an end plate (52). The vertical plate (51) has a right-angled cross section, a sealing plate is provided at its upper end, a latch (511) is provided at its lower end, and a socket (521) is provided on the end plate (52). The frame (30) comprises two parallel and spaced apart brackets (31), wherein the brackets (31) have a U-shaped cross section; The conveying assembly (40) includes a first conveying belt (41) and a second conveying belt (42), wherein the first conveying belt (41) is arranged on the upper bracket (31), and the second conveying belt (42) is arranged on the lower bracket (31), and a rectangular hole (311) is passed through one end of the lower bracket (31); An E-shaped plate (32) with an opening facing the bracket (31) is provided at one end of the outer side of the upper bracket (31). The pressing assembly (60) includes a pressing plate member (61) and a top plate member (62). The pressing plate member (61) is slidably connected to the upper horizontal portion of the E-shaped plate (32) and is used to press the upper end of the vertical plate (51). The top plate member (62) is vertically movable corresponding to the rectangular hole (311) and is used to push the end plate (52) so that the pin (511) is inserted into the corresponding socket (521) to form a clamping member (50) that is clamped to the corresponding corner of the sound insulation floor (1).

2. The sound insulation floor assembly device according to claim 1, characterized in that: A group of slide grooves (13) are symmetrically provided on two vertical axes of the assembly table (12), and a push plate member (14) is provided in the slide groove (13). The push plate member (14) includes a push plate (141) parallel to the corresponding side of the assembly table (12), and one side of the push plate (141) is connected to the first linear cylinder (142), and the first linear cylinder (142) is installed at the outer end of the slide groove (13).

3. The sound insulation floor assembly device according to claim 1, characterized in that: The horizontal portion of the bracket (31) located on the upper side is provided with an avoidance groove (312) connected to its front end, and the bottom ends of the bracket (31) located on the lower side are respectively provided with supporting legs (313), and the end of the second conveyor belt (42) in the conveying direction is provided with a positioning groove (314), and the rectangular hole (311) is provided in the middle of the positioning groove (314).

4. The sound insulation floor assembly device according to claim 1, characterized in that: A group of latches (511) are respectively provided on both sides of the lower end of the vertical plate (51), and the latches (511) are provided with a card slot (512) toward the outside of the vertical plate (51), the number of the jacks (521) of the card slot (512) is consistent with the number of the latches (511), and a stepped hole (522) is vertically provided on the outside of the middle part of the jack (521), and a card pin is provided in the stepped hole (522) for engaging with the card slot (512) when the latch (511) is inserted into the jack (521).

5. The sound insulation floor assembly device according to claim 4, characterized in that: The latch pin comprises a T-shaped pin (523), one end of the T-shaped pin (523) is provided with a right-angled trapezoidal block (524), a vertical portion of the T-shaped pin (523) is provided with a spring (525), one end of the spring (525) abuts against one side of the right-angled side of the right-angled trapezoidal block (524), and the other end abuts against the inner wall of the stepped hole (522), the latch slot (512) comprises a plane (5121) and a first inclined surface (5122), one end of the plane (5121) is connected to the axis of the latch pin (511), and the lower end of the first inclined surface (5122) is connected to one end of the plane (5121), when the latch pin (511) is inserted into the insertion hole (521), the inclined side of the right-angled trapezoidal block (524) is adapted to the inclination of the first inclined surface (5122), and the bottom surface of the right-angled trapezoidal block (524) is in contact with the plane (5121).

6. The sound insulation floor assembly device according to claim 5, characterized in that: The transverse portions of the two T-shaped pins (523) on the same side of the end plate (52) are rotatably connected to a C-shaped retractor (526).

7. The sound insulation floor assembly device according to claim 1, characterized in that: The bottom surface of the upper horizontal portion of the E-shaped plate (32) is provided with a set of slide rails (321), the pressure plate member (61) includes a pressure plate (611), the upper end of the pressure plate (611) is provided with a guide groove (612) connected to the slide rail (321), the outer side of the E-shaped plate (32) is provided with a lever (33), the lever (33) is L-shaped, and the horizontal portion and the vertical portion of the lever (33) are connected to one end of the middle horizontal portion of the E-shaped plate (32) at a connection point, and the horizontal portion of the lever (33) is provided with a guide groove (612) connected to the slide rail (321). A first strip groove (331) is provided, and a second strip groove (332) is provided on the vertical portion. A T-shaped rod (613) is provided on one side of the pressure plate (611), and the vertical portion of the T-shaped rod (613) is slidably connected to the first strip groove (331). The top plate member (62) includes a top plate (621), a support plate (622) is provided at the bottom thereof, and a push rod (63) is vertically provided at one end of the support plate (622), and the upper end of the push rod (63) is slidably connected to the second strip groove (332).

8. The sound insulation floor assembly device according to claim 7, characterized in that: A rectangular rod (623) is provided at the bottom of the top plate (621), and the support plate (622) is in a horizontally arranged L-shaped structure. The lower end of the rectangular rod (623) is vertically connected to the vertical portion of the support plate (622), and the lower end of the push rod (63) is vertically connected to one end of the horizontal portion of the support plate (622). A second linear cylinder (624) is vertically provided on the lower side of the vertical portion of the support plate (622).

9. The sound insulation floor assembly device according to claim 7, characterized in that: The top surface of the top plate (621) is provided with a rectangular groove (625), the inner dimensions of which are adapted to the outer dimensions of the end plate (52).

10. The sound insulation floor assembly device according to claim 7, characterized in that: A U-shaped groove (631) is provided at the upper end of the push rod (63), a connecting pin (632) is provided in the U-shaped groove (631), and the connecting pin (632) is slidably connected to the second strip groove (332).

Citation Information

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