Plate mounting equipment for sound insulation material detection

By designing a sound insulation material testing board installation device, and utilizing the cooperation of servo motor drive and clamping blocks, the problems of laborious installation and tipping of sound insulation boards were solved, achieving automatic alignment and fixing, and improving installation efficiency and stability.

CN120903408APending Publication Date: 2025-11-07JINING SEMBCORP ENVIRONMENTAL PROTECTION MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202511169980.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

The current sound insulation panel installation process requires multiple people to work together, which is laborious and makes it difficult to avoid the panels tipping over, affecting the glue application and fixing process.

Method used

A sound insulation material testing board installation device was designed, including a movable base, guide rail, lifting frame, clamping block, blocking mechanism and pushing mechanism. Through servo motor drive and the cooperation of clamping block and blocking block, the sound insulation board can be automatically aligned and fixed.

Benefits of technology

This enables convenient and labor-saving installation of sound insulation panels, avoids panel tipping, improves installation efficiency and stability, and ensures the smooth progress of adhesive fixing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of sound insulation material detection and installation, in particular to sound insulation material detection plate installation equipment which comprises a movable base, a guide rail frame is connected to the movable base, a lifting frame is slidably connected to the guide rail frame, and clamping blocks are vertically symmetrically connected to the left side and the right side of the front side face of the lifting frame and used for clamping sound insulation plates. A driving mechanism is arranged on the movable base, the driving mechanism is used for driving the lifting frame to ascend and descend so that the sound insulation plate can be aligned with the testing window, a blocking mechanism is arranged on the clamping block and used for blocking the sound insulation plate so as to prevent the sound insulation plate from falling off from the clamping block, and a pushing-out mechanism used for pushing the sound insulation plate into the testing window is arranged on the lifting frame. According to the sound insulation board conveying device, a sound insulation board can be conveyed into an acoustic test laboratory conveniently and rapidly in a labor-saving mode, the sound insulation board can be automatically pushed into a test window, and the sound insulation board can be pressed and fixed in the test window so that the situation that the sound insulation board topples over and influences gluing and fixing operation can be avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of sound insulation material detection installation, and particularly relates to a sound insulation material detection plate installation equipment. BACKGROUND

[0002] The sound insulation board is a material for sound insulation, which is usually made of high-density materials and is divided into two types: building sound insulation board and structure sound insulation board.

[0003] In order to ensure that the quality and performance of the sound insulation board meet the relevant standards and customer requirements, the sound insulation performance of the produced sound insulation board needs to be detected. At present, the sound insulation performance detection of the sound insulation board is carried out in an acoustic test laboratory. When the sound insulation performance is detected, the sound insulation board is carried into the acoustic test laboratory, and then the sound insulation board is placed in the test window of the acoustic test laboratory. Then, acoustic sealant is used to fill the gap between the wall and the sound insulation board to prevent the detection from being affected by the leakage of sound and to affect the detection accuracy. The existing sound insulation board material needs to be carried into the acoustic test laboratory by multiple people, and then it is carried into the test window and waits for the sealing of the glue. When the glue is filled in the gap between the wall and the sound insulation board, the sound insulation board material needs to be manually pressed by artificial to avoid the sound insulation board material from falling and affecting the gluing operation. Therefore, the installation operation of the sound insulation board material is relatively inconvenient and very laborious. SUMMARY

[0004] The purpose of the present application is to provide a sound insulation material detection plate installation equipment which can not only facilitate the movement of the sound insulation board material into the test window to save labor, but also can press the sound insulation board material to avoid the sound insulation board material from falling during the gluing.

[0005] The application achieves the above-mentioned purpose through the following technical scheme: a plate mounting equipment for sound insulation material detection, comprising a moving base, a guide rail frame connected to the moving base, a lifting frame slidably connected to the guide rail frame, two clamping blocks symmetrically connected to the front side of the lifting frame, the clamping blocks being used for clamping sound insulation plates, a driving mechanism provided on the moving base and used for driving the lifting frame to lift so that the sound insulation plates are aligned with a test window, a blocking mechanism provided on the clamping blocks and used for blocking the sound insulation plates to prevent the sound insulation plates from falling off the clamping blocks, the blocking mechanism comprising a blocking block slidably connected to the clamping block and capable of moving up and down, a sliding rod connected to the blocking block, an L-shaped connecting block slidably connected to the sliding rod, the L-shaped connecting block being fixedly connected to the lifting frame, a tension spring A connected between the blocking block and the L-shaped connecting block, a pushing mechanism provided on the lifting frame and used for pushing the sound insulation plates into the test window, the pushing mechanism comprising guide blocks, the left and right sides of the lifting frame being symmetrically connected to the guide blocks, the upper part of each guide block being provided with a contact plate capable of moving forward and backward, the lower part of each guide block being provided with a push plate capable of moving forward and backward, the top of each push plate and the bottom of each contact plate being connected to a gear rack, the middle part of each guide block being provided with a gear capable of rotating, and the gear being engaged with the two gear racks.

[0006] Preferably, the front and back sides of the blocking block are inclined surfaces.

[0007] Preferably, the rear side of the guide rail frame is provided with a supporting mechanism, the supporting mechanism comprising two sliding rails symmetrically connected to the rear side of the guide rail frame, a lifting plate slidably connected between the two sliding rails, an n-shaped swinging plate provided in the middle part of the lifting plate and capable of swinging forward and backward, a supporting plate provided at the lower part of the n-shaped swinging plate and capable of rotating up and down, two insertion holes opened in the upper and lower parts of each sliding rail, two U-shaped connecting blocks symmetrically connected to the rear side of the lifting plate, a U-shaped insertion rod capable of moving forward and backward provided between the two U-shaped connecting blocks, the U-shaped insertion rod penetrating through the lifting plate and being inserted into the insertion holes, and a tension spring B connected between the U-shaped insertion rod and the U-shaped connecting blocks.

[0008] Preferably, the supporting mechanism further comprises a rubber non-slip pad connected to the supporting plate, the supporting plate being rotated downward to make the rubber non-slip pad contact with the ground.

[0009] Preferably, the driving mechanism comprises a servo motor mounted on the moving base, a screw rod rotatably provided on the guide rail frame, the screw rod being connected to the output shaft of the servo motor, and the screw rod being threadedly connected to the lifting frame.

[0010] Preferably, the left and right sides of the lifting frame are connected to guide plates, the guide plates are provided with push plates capable of moving left and right, the push plates are provided with insertion rod capable of moving up and down, and the guide plates are provided with insertion hole matched with the insertion rod.

[0011] Preferably, the opposite sides of the two push plates are coated with anti-abrasion paint.

[0012] Preferably, two vertical grooves are symmetrically opened on the upper part of the n-shaped swing plate, a fixed plate A is connected between the two slide rails, the fixed plate A is located on the front side of the n-shaped swing plate, two inclined plates are symmetrically connected on the rear side of the fixed plate A, the two inclined plates are located in the two vertical grooves respectively, the top of the inclined plate is an inclined surface, and the n-shaped swing plate is pushed to swing backward by the inclined plate when the n-shaped swing plate moves downward.

[0013] Preferably, a fixed plate B is connected between the two slide rails, the fixed plate B is located below the fixed plate A and on the front side of the n-shaped swing plate, two inclined clamping plates are symmetrically connected on the rear side of the fixed plate B, the two inclined clamping plates are located in the two vertical grooves respectively, and the inclined clamping plates are used for clamping the n-shaped swing plate to avoid the n-shaped swing plate from swinging backward by itself.

[0014] Preferably, an upper and a lower slotted arc-shaped limiting block are connected to the upper side of the rear of the slide rail, a C-shaped handle bar capable of swinging forward and backward is arranged on the upper side of the rear of the slide rail, and the C-shaped handle bar is located in the slot of the slotted arc-shaped limiting block.

[0015] The beneficial effects of the present application are:

[0016] 1. The clamping block can clamp the sound insulation board, the sound insulation board can be blocked by the cooperation of the tension spring A and the stopper to prevent the sound insulation board from falling off the clamping block, the moving base can save labor during transportation, the cooperation of the servo motor and the screw rod can drive the lifting frame to move the clamping block up and down to align the sound insulation board with the test window, the cooperation of the contact plate, the rack and the gear can enable the push plate to push the sound insulation board into the test window, and the cooperation of the contact plate, the push plate, the rack and the gear can press and fix the sound insulation board in the test window, so that the present application can conveniently, quickly and labor-savingly transport the sound insulation board into the acoustic test laboratory, automatically push the sound insulation board into the test window, and press and fix the sound insulation board in the test window to prevent the sound insulation board from falling and affecting the gluing and fixing operation.

[0017] 2. The n-shaped swing plate is swung backward, and the supporting plate is turned downward to contact the ground, so that a stable triangular structure is formed between the n-shaped swing plate, the supporting plate, the moving base and the guide rail frame, thereby avoiding self-movement of the present application and improving stability.

[0018] 3. The two push plates are close to each other to push the sound insulation board to move to the center, thereby facilitating subsequent alignment of the sound insulation board with the test window.

[0019] 4. The inclined plate can push the n-shaped swing plate to swing backward during the downward movement of the n-shaped swing plate, so that manual backward swinging of the n-shaped swing plate is not needed, thereby saving time and labor.

[0020] 5, through the cooperation of fixed plate B and inclined clamping plate can limit n-shaped swing plate, to avoid the n-shaped swing plate swings forward and backward by itself during the process of moving and conveying sound insulation board, so as to improve stability and safety. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application.

[0022] Figure 2 It is a schematic diagram of part of the three-dimensional structure of the present application.

[0023] Figure 3 It is a schematic diagram of the installation of the blocking mechanism of the present application.

[0024] Figure 4 It is a schematic diagram of the three-dimensional structure of the blocking mechanism of the present application.

[0025] Figure 5 It is a schematic diagram of the installation of the pushing mechanism of the present application.

[0026] Figure 6 It is a schematic diagram of the three-dimensional structure of the pushing mechanism of the present application.

[0027] Figure 7 It is a schematic diagram of the three-dimensional structure of the supporting mechanism of the present application.

[0028] Figure 8 It is a working state diagram of the supporting mechanism of the present application.

[0029] Figure 9 It is a schematic diagram of the three-dimensional structure of the guide plate, the pushing plate and the bolt rod of the present application.

[0030] Figure 10 It is a schematic diagram of the installation of the fixed plate A, the inclined plate, the fixed plate B and the inclined clamping plate of the present application.

[0031] Figure 11 It is a schematic diagram of the three-dimensional structure of the fixed plate A, the inclined plate, the fixed plate B and the inclined clamping plate of the present application.

[0032] Figure 12 It is a schematic diagram of the installation of the C-shaped handle rod and the slotted arc-shaped limiting block of the present application.

[0033] Figure 13 It is a schematic diagram of the three-dimensional structure of the C-shaped handle rod and the slotted arc-shaped limiting block of the present application.

[0034] In the figure: 1 - moving base, 2 - guide rail frame, 3 - lifting frame, 4 - clamping block, 51 - servo motor, 52 - screw rod, 61 - L-shaped connecting block, 62 - sliding rod, 63 - stop block, 64 - tension spring A, 71 - sliding rail, 72 - lifting plate, 73 - n-shaped swing plate, 74 - support plate, 75 - U-shaped connecting block, 76 - U-shaped insertion rod, 77 - tension spring B, 78 - insertion hole, 79 - rubber non-slip pad, 81 - guide block, 82 - contact plate, 83 - push plate, 84 - rack, 85 - gear, 9 - vertical groove, 91 - guide plate, 92 - pushing plate, 93 - bolt rod, 94 - bolt hole, 10 - fixed plate A, 11 - inclined plate, 12 - fixed plate B, 13 - inclined clamping plate, 14 - C-shaped handle rod, 15 - slotted arc-shaped limiting block. DETAILED DESCRIPTION

[0035] The following detailed description of the application is made with reference to the accompanying drawings, it is necessary to point out here that the following detailed description is only used to further illustrate the application, and cannot be understood as limiting the scope of protection of the application, and those skilled in the art can make some non-essential improvements and adjustments to the application according to the above application content.

[0036] Embodiment: a kind of board installation equipment for soundproof material detection, refer to Figures 1-6 As shown in the figure, it includes moving base 1, moving base 1 top is connected with guide rail frame 2, guide rail frame 2 is slidably connected with lifting frame 3, the left and right sides of the front side of lifting frame 3 are symmetrically connected with clamping block 4 up and down, driving mechanism is arranged on moving base 1, driving mechanism includes servo motor 51 installed on the top of moving base 1, screw rod 52 is rotatably connected on guide rail frame 2, screw rod 52 is connected with the output shaft of servo motor 51, screw rod 52 is threadedly connected with lifting frame 3, blocking mechanism is arranged on clamping block 4, blocking mechanism includes stop block 63 slidably connected on clamping block 4 and can move up and down, the front and back sides of stop block 63 are both inclined surface, sliding rod 62 is connected on stop block 63, L-shaped connecting block 61 is slidably connected on sliding rod 62, L-shaped connecting block 61 is fixedly connected on lifting frame 3, tension spring A 64 is connected between stop block 63 and L-shaped connecting block 61, pushing mechanism is arranged on lifting frame 3, pushing mechanism includes guide block 81, the left and right sides of lifting frame 3 are symmetrically connected with guide block 81 up and down, the upper part of guide block 81 is slidably connected with contact plate 82 that can move forward and backward, the lower part of guide block 81 is slidably connected with push plate 83 that can move forward and backward, the top of push plate 83 and the bottom of contact plate 82 are both connected with rack 84, the middle part of guide block 81 is rotatably connected with gear 85, gear 85 is engaged with the upper and lower two racks 84.

[0037] The sound insulation board is placed between the four clamping blocks 4, and the sound insulation board is pushed backward to make the sound insulation board close to the lifting frame 3, the sound insulation board can be clamped by the clamping block 4, and when the sound insulation board moves backward, the inclined surface on the front side of the stop block 63 is extruded to make the stop block 63 move towards the L-shaped connecting block 61, and the tension spring A64 is compressed, and when the sound insulation board moves backward beyond the stop block 63, the stop block 63 can be moved and reset under the reset action of the tension spring A64 to block the sound insulation board, so as to avoid the sound insulation board from falling off the clamping block 4. Then the device is pushed to transport the sound insulation board into the acoustic test laboratory, and then the servo motor 51 is controlled to drive the screw rod 52 to rotate, the screw rod 52 drives the lifting frame 3 to move upward to drive the clamping block 4 to move upward, so as to push the sound insulation board upward, and the sound insulation board can be moved downward by controlling the servo motor 51 to rotate in reverse, so that the height of the sound insulation board can be adjusted to align the test window. Then the device is pushed to continue to move towards the test window, when the contact plate 82 contacts the wall, the contact plate 82 and the rack 84 thereon cannot continue to move, so that the guide block 81 drives the push plate 83 and the gear 85 to continue to move towards the test window, so that the gear 85 rotates, the gear 85 pushes the rack 84 on the push plate 83 to move towards the test window, so that the push plate 83 moves towards the test window to push the sound insulation board into the test window. Because the rear side of the stop block 63 is inclined, the stop block 63 does not hinder the sound insulation board from entering the test window, and through the cooperation of the contact plate 82, the push plate 83, the rack 84 and the gear 85, the sound insulation board can be pressed and fixed in the test window to avoid the sound insulation board from falling and affecting the gluing operation. Thus, the device can conveniently, quickly and labor-savingly transport the sound insulation board into the acoustic test laboratory, and can automatically push the sound insulation board into the test window and press and fix the sound insulation board in the test window to avoid the sound insulation board from falling and affecting the gluing operation; after the sound insulation board is glued and fixed, the device is pushed away.

[0038] Referring to Figures 7-8 , the rear side of the guide rail frame 2 is provided with a supporting mechanism, the supporting mechanism comprises two slide rails 71 which are symmetrically connected to the rear side of the guide rail frame 2, a lifting plate 72 which is slidably connected between the two slide rails 71, an n-shaped swing plate 73 which is hingedly connected to the middle of the lifting plate 72 and can swing forward and backward, a supporting plate 74 which is hingedly connected to the lower part of the n-shaped swing plate 73 and can rotate up and down, two insertion holes 78 which are opened in the upper and lower parts of the slide rail 71, two U-shaped connecting blocks 75 which are symmetrically connected to the rear side of the lifting plate 72, a U-shaped insertion rod 76 which is slidably connected between the two U-shaped connecting blocks 75 and can move forward and backward, the U-shaped insertion rod 76 penetrating through the lifting plate 72 and being inserted into the insertion hole 78, a tension spring B 77 which is connected between the U-shaped insertion rod 76 and the U-shaped connecting block 75, and a rubber non-slip pad 79 which is connected to the rear side of the supporting plate 74.

[0039] At the beginning, the U-shaped insertion rod 76 is inserted into the upper insertion hole 78, when the sound insulation board needs to be pushed into the test window for gluing, the U-shaped insertion rod 76 is pulled out of the upper insertion hole 78, the tension spring B 77 is compressed, then the U-shaped connecting block 75 is pulled down to make the lifting plate 72 drive the n-shaped swing plate 73 and the U-shaped insertion rod 76 to move downward, when the U-shaped insertion rod 76 moves to the lower insertion hole 78, the U-shaped insertion rod 76 is loosened, under the reset action of the tension spring B 77, the U-shaped insertion rod 76 is inserted into the lower insertion hole 78 to lock the lifting plate 72, then the n-shaped swing plate 73 is swung backward, and then the supporting plate 74 is turned downward to the horizontal state to make the supporting plate 74 contact with the ground, so that a stable triangular structure is formed between the n-shaped swing plate 73, the supporting plate 74, the moving base 1 and the guide rail frame 2, thereby avoiding the device from moving by itself, improving the stability, the supporting plate 74 is turned downward to drive the rubber anti-skid pad 79 to turn downward to contact with the ground, the rubber anti-skid pad 79 can increase the friction with the ground, thereby preventing slipping, further avoiding the device from moving by itself, further improving the stability. When the device needs to be moved, the lifting plate 72 drives the n-shaped swing plate 73 to move upward, then the supporting plate 74 is turned upward to reset.

[0040] Referring to Figure 9 The left and right sides of the lifting frame 3 are connected with guide plates 91, the guide plates 91 are slidably connected with push plates 92 which can move left and right, the opposite sides of the two push plates 92 are coated with anti-wear paint, the push plates 92 are slidably connected with insertion rod 93 which can move up and down, the guide plates 91 are spaced apart with insertion hole 94 which cooperates with the insertion rod 93.

[0041] The insertion rod 93 is pulled out of the insertion hole 94 on the guide plate 91, then the two push plates 92 are pushed close to each other, the two push plates 92 close to each other can push the sound insulation board to move to the center, thereby facilitating the subsequent alignment of the sound insulation board with the test window, after the sound insulation board moves to the center, the insertion rod 93 is inserted into the corresponding insertion hole 94 to lock the push plate 92, since the opposite sides of the two push plates 92 are coated with anti-wear paint, the friction between the push plate 92 and the sound insulation board can be reduced, so that the push plate 83 can stably and smoothly push the sound insulation board out of the two push plates 92.

[0042] Referring to Figures 10-11 The upper part of the n-shaped swing plate 73 is symmetrically provided with two vertical grooves 9, the two slide rails 71 are connected with a fixed plate A 10, the fixed plate A 10 is located on the front side of the n-shaped swing plate 73, the rear side of the fixed plate A 10 is symmetrically connected with two inclined plates 11, the two inclined plates 11 are respectively located in the two vertical grooves 9, and the top of the inclined plate 11 is a slope.

[0043] When the n-shaped swing plate 73 moves downward to contact the top of the inclined plate 11, the n-shaped swing plate 73 continues to move downward and is pushed by the inclined surface of the top of the inclined plate 11 to swing backward, and then the n-shaped swing plate 73 continues to move downward along the rear inclined surface of the inclined plate 11, so that the n-shaped swing plate 73 can be kept in a state of swinging backward when moving downward through the inclined plate 11, so as to avoid the n-shaped swing plate 73 from swinging forward to reset by itself under the action of gravity, so that the n-shaped swing plate 73 can swing backward by itself during the downward movement, thereby avoiding manual backward swinging of the n-shaped swing plate 73, and time and labor can be saved. When the n-shaped swing plate 73 moves upward to disengage from the inclined plate 11, the n-shaped swing plate 73 swings forward to reset by itself under the action of gravity.

[0044] Referring to Figures 10-11 , the two slide rails 71 are connected with a fixed plate B12, the fixed plate B12 is located below the fixed plate A10 and on the front side of the n-shaped swing plate 73, the rear side of the fixed plate B12 is symmetrically connected with two inclined clamping plates 13, and the two inclined clamping plates 13 are respectively located in the two vertical grooves 9.

[0045] Initially, the bottom of the inclined clamping plate 13 is in contact with the rear side of the n-shaped swing plate 73, and the n-shaped swing plate 73 can be clamped by the inclined clamping plate 13 to avoid swinging backward by itself, and the n-shaped swing plate 73 can be supported by the fixed plate B12 to avoid swinging forward by itself, so as to avoid the n-shaped swing plate 73 from swinging forward and backward by itself during the movement of the device for transporting the sound insulation board, thereby improving stability and safety; the n-shaped swing plate 73 can disengage from the inclined clamping plate 13 when moving downward, and then the n-shaped swing plate 73 can swing backward, and the n-shaped swing plate 73 is clamped by the inclined clamping plate 13 when swinging forward to reset and moving upward to reset.

[0046] Referring to Figures 12-13 , the rear upper side of the slide rail 71 is connected with an upper and lower two slotted arc-shaped limiting block 15, and the rear upper side of the slide rail 71 is hingedly connected with a C-shaped handle 14 capable of swinging forward and backward, and the C-shaped handle 14 is located in the slot of the slotted arc-shaped limiting block 15.

[0047] The door of the acoustic test laboratory is generally small, and the device can be conveniently pushed in and out of the acoustic test laboratory laterally. When the device needs to be pushed into or out of the acoustic test laboratory laterally, the C-shaped handle 14 is rotated backward, the C-shaped handle 14 is limited by the slotted arc-shaped limiting block 15 to avoid excessive rotation of the C-shaped handle 14, and then the device can be conveniently and quickly pushed into or out of the acoustic test laboratory laterally by pushing the C-shaped handle 14. After the C-shaped handle 14 is rotated forward to reset, the device can be conveniently and quickly pushed forward to the test window, so as to align the sound insulation board with the test window.

[0048] The above merely describes preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.

Claims

1. A sound insulation material detection plate mounting device, comprising a mobile base (1), a guide rail frame (2) is connected to the mobile base (1), a lifting frame (3) is slidably connected to the guide rail frame (2), a clamping block (4) is symmetrically connected to the left and right sides of the front side of the lifting frame (3), and the clamping block (4) is used for clamping sound insulation plates, characterized in that, The mobile base (1) is provided with a driving mechanism for driving the lifting frame (3) to lift to align the sound insulation board with the test window. The clamping block (4) is provided with a blocking mechanism for blocking the sound insulation board to prevent it from falling off the clamping block (4). The blocking mechanism includes a blocking block (63) slidably connected to the clamping block (4) and movable up and down. The blocking block (63) is connected with a sliding rod (62). The sliding rod (62) is slidably connected with an L-shaped connecting block (61). The L-shaped connecting block (61) is fixedly connected to the lifting frame (3). A tension spring A (64) is connected between the blocking block (63) and the L-shaped connecting block (61). The lifting frame (3) is provided with a pushing mechanism for pushing the sound insulation board into the test window. The pushing mechanism includes a guide block (81). The left and right sides of the lifting frame (3) are both connected with the guide block (81) in a symmetrical manner. The upper part of the guide block (81) is provided with a contact plate (82) movable forward and backward. The lower part of the guide block (81) is provided with a push plate (83) movable forward and backward. The top of the push plate (83) and the bottom of the contact plate (82) are both connected with a rack (84). The middle part of the guide block (81) is provided with a gear (85) rotatable. The gear (85) is engaged with the two racks (84).

2. The panel mounting apparatus for soundproof material detection according to claim 1, wherein The front and rear sides of the blocking block (63) are both inclined surfaces.

3. The panel mounting apparatus for soundproof material detection according to claim 2, wherein The rear side of the guide rail frame (2) is provided with a supporting mechanism. The supporting mechanism includes two slide rails (71) symmetrically connected to the rear side of the guide rail frame (2). The two slide rails (71) are slidably connected with a lifting plate (72). The middle part of the lifting plate (72) is provided with an n-shaped swinging plate (73) swingable forward and backward. The lower part of the n-shaped swinging plate (73) is provided with a support plate (74) rotatable up and down. The upper part of the slide rail (71) is provided with two insertion holes (78). The rear side of the lifting plate (72) is symmetrically connected with two U-shaped connecting blocks (75). The two U-shaped connecting blocks (75) are provided with a U-shaped insertion rod (76) movable forward and backward. The U-shaped insertion rod (76) penetrates through the lifting plate (72) and is inserted into the insertion hole (78). The U-shaped insertion rod (76) and the U-shaped connecting block (75) are connected with a tension spring B (77).

4. The panel mounting apparatus for soundproof material detection according to claim 3, wherein The supporting mechanism further includes a rubber non-slip pad (79) connected to the support plate (74). The support plate (74) is rotated downward to make the rubber non-slip pad (79) contact with the ground.

5. The panel mounting apparatus for soundproof material detection according to claim 4, wherein The driving mechanism includes a servo motor (51) mounted on the mobile base (1). The guide rail frame (2) is provided with a screw rod (52) rotatable. The screw rod (52) is connected with the output shaft of the servo motor (51). The screw rod (52) is threadedly connected with the lifting frame (3).

6. The panel mounting apparatus for soundproof material detection according to claim 5, wherein The left and right sides of the lifting frame (3) are both connected with a guide plate (91). The guide plate (91) is provided with a pushing plate (92) movable left and right. The pushing plate (92) is provided with a bolt rod (93) movable up and down. The guide plate (91) is provided with bolt holes (94) matched with the bolt rod (93) in a spaced manner.

7. The panel mounting apparatus for soundproof material detection according to claim 6, wherein The opposite sides of the two pushing plates (92) are coated with anti-wear paint.

8. The panel mounting apparatus for soundproof material detection according to claim 7, wherein Two vertical slots (9) are symmetrically arranged on the upper part of the n-shaped swing plate (73), and a fixed plate A (10) is connected between the two slide rails (71). The fixed plate A (10) is located on the front side of the n-shaped swing plate (73), and two inclined plates (11) are symmetrically connected to the rear side of the fixed plate A (10). The two inclined plates (11) are respectively located in the two vertical slots (9), the top of the inclined plate (11) is an inclined surface, and the n-shaped swing plate (73) is pushed to swing backward by the inclined plate (11) when it moves downward.

9. The panel mounting apparatus for soundproof material detection according to claim 8, wherein A fixed plate B (12) is connected between the two slide rails (71), and the fixed plate B (12) is located below the fixed plate A (10) and on the front side of the n-shaped swing plate (73). Two inclined clamping plates (13) are symmetrically connected to the rear side of the fixed plate B (12), and the two inclined clamping plates (13) are respectively located in the two vertical slots (9). The inclined clamping plate (13) is used to clamp the n-shaped swing plate (73) to prevent the n-shaped swing plate (73) from swinging backward by itself.

10. The panel mounting apparatus for soundproof material detection according to claim 9, wherein An upper and lower two slotted arc-shaped limiting block (15) is connected to the rear upper side of the slide rail (71), and a C-shaped handle rod (14) capable of swinging forward and backward is arranged on the rear upper side of the slide rail (71). The C-shaped handle rod (14) is located in the slot of the slotted arc-shaped limiting block (15).