Relief-imitating mounting structure and process

Through imitating the relief installation structure, the combination of the mounting frame, lifting device and installation device is used to solve the gap expansion problem caused by shaking during the relief installation, and a more stable installation effect is achieved.

CN119974809APending Publication Date: 2025-05-13KUYA CULTURE TECHNOLOGY GROUP CO LTD +1
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Patent Information

Application Number
CN202510102435.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

During the installation of relief, lifting belts can easily cause relief to shake, causing gaps between adjacent reliefs to expand, affecting the installation effect.

Method used

It adopts a relief installation structure, including a mounting frame, lifting device and mounting device. The installation device provides stable support and limiting effects through components such as mounting plates, fixed tubes, sliding rods, limiting plates and push cylinders to avoid relief shaking.

Benefits of technology

It improves the stability of the relief during the installation process, reduces the gap between the reliefs, and ensures improvement in the installation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a relief-imitating mounting structure and process, and relates to the technical field of relief decoration.The relief-imitating mounting structure comprises a mounting frame, a lifting device and a mounting plate, and the lifting device is used for adjusting the position and angle of the mounting plate relative to the mounting frame; a plurality of fixing pipes are evenly distributed on the mounting plate in the circumferential direction of the plate face and can synchronously get close to or get away from the mounting plate in the axis direction, and sliding rods are arranged in inner cavities of the fixing pipes and slide along the fixing pipes. The sliding rod is provided with a limiting plate, and the limiting plate is elastically hinged to the sliding rod. Each fixing pipe is provided with a supporting plate in a matched mode, and the supporting plates slide in the axis direction of the fixing pipes. A connecting pipe is arranged in an inner cavity of the fixing pipe and rotationally connected along the fixing pipe, and the two ends of the connecting pipe are connected with the limiting plate and the supporting plate correspondingly. The mounting plate is provided with a plurality of pushing cylinders which are arranged on the mounting plate in a penetrating manner; the embossment supporting device has the effect of providing stable supporting for the embossment.
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Description

Technical Field

[0001] The present application relates to the technical field of relief decoration, and in particular to an imitation relief installation structure and process. Background Art

[0002] Reliefs are widely used in museums. As a common artwork and display object, reliefs are usually three-dimensional patterns or images carved on the flat surface of prefabricated parts. After carving, they are transported to the museum and installed in a fixed location in the museum.

[0003] In the related art, during the installation of the relief, a lifting belt is usually used to lift the relief, and then the relief is fixed to the corresponding position of the wall by an operator, and then the relief is fixed at the corresponding position by positioning bolts.

[0004] With regard to the above-mentioned related technologies, the relief is hoisted by a hoisting belt, which is easy to cause shaking during installation, thereby widening the gap between two adjacent reliefs, affecting the installation effect of the relief. Summary of the invention

[0005] In order to provide stable support for the relief, the present application provides a relief-like installation structure and process.

[0006] The present application provides an imitation relief installation structure and process, which adopts the following technical solutions: An imitation relief mounting structure comprises a mounting frame, a lifting device and a mounting device, wherein the lifting device is used to adjust the position and angle of the mounting plate relative to the mounting frame; The mounting device comprises a mounting plate, wherein a plurality of fixing tubes are evenly distributed along the circumference of the plate surface, wherein the fixing tubes can be synchronously moved toward or away from the axis direction of the mounting plate, wherein a sliding rod is provided in the inner cavity of the fixing tube, and wherein the sliding rod slides along the fixing tube; The sliding rod is equipped with a limit plate, and the limit plate and the sliding rod are elastically hinged; Each of the fixed tubes is provided with a support plate, and the support plate slides along the axial direction of the fixed tube; The inner cavity of the fixed tube is provided with a connecting tube, the connecting tube is rotatably connected along the fixed tube, and the two ends of the connecting tube are respectively connected to the limiting plate and the supporting plate; The mounting plate is provided with a plurality of pushing cylinders, and the pushing cylinders are penetrated through the mounting plate.

[0007] By adopting the above technical solution, the operator first moves the mounting frame to a suitable position, and installs the relief through the mounting plate. The mounting plate provides support for the installation of the mounting tube. At the same time, the mounting tube provides support for the installation of the sliding rod. The limit plate can provide a certain limiting effect on the relief. By rotating the connecting tube, the distance between the support plate and the limit plate can be changed, and reliefs of different thicknesses can be limited, which improves the overall applicability of the device. When the mounting plate reaches the appropriate position, the operator can push the relief to the appropriate position through the push cylinder, and the operator fixes the relief accordingly, thereby avoiding the relief shaking and causing the stability of the relief installation to decrease, and better installing the relief.

[0008] Optionally, the mounting plate is provided with a slide groove at the fixed tube, a first spring and a slider are provided in the slide groove, two ends of the first spring are respectively connected to the mounting plate and the slider, and the fixed tube and the slider are fixedly connected.

[0009] By adopting the above technical solution, the setting of the slide groove provides support for the installation of the slider, the slider can slide along the slide groove, the slider and the fixed tube are fixedly connected, and the positional relationship between the fixed tubes can be changed to install reliefs of different sizes, thereby improving the overall practicality of the device.

[0010] Optionally, a third spring and an extension rod are provided at both ends of the connecting tube, and the extension rod slides elastically along the connecting tube through the third spring; A connecting rod is provided at the end of the extension rod, one end of the connecting rod is rotatably connected to the extension rod, and the other end of the connecting rod is connected to the limiting plate and / or the sliding rod.

[0011] By adopting the above technical solution, the connecting tube provides support for the installation of the third spring and the extension rod. The third spring can make the extension rod slide along the connecting tube to a certain extent. The setting of the third spring can ensure that the extension rod is always in a suitable position, and then the support plate and the sliding rod are connected by the extension plate.

[0012] Optionally, the sliding rod is provided with a connecting groove on a side of the limiting plate close to the mounting plate, and the limiting plate is provided with a plug-in groove; The mounting device is equipped with an unlocking component, which includes an abutment block and a plug-in block. The abutment block is inserted into the connecting groove and can slide elastically along the connecting groove. The plug-in groove is used to accommodate the plug-in block, and the plug-in block and the abutment block are fixedly connected.

[0013] By adopting the above technical solution, the connecting groove provides support for the sliding of the abutment block, and the plug-in groove provides support for the installation of the plug-in block. The operator controls the sliding of the abutment block, thereby driving the plug-in block to slide along the plug-in groove, thereby limiting the rotation direction of the limit plate and preventing the limit plate from rotating in the opposite direction in the limited state, which would affect the limiting effect of the relief.

[0014] Optionally, the end surfaces of the limiting plate and the supporting plate that are close to each other are both installed with flexible pads, and the flexible pads are fixedly connected to the limiting plate and / or the supporting plate.

[0015] By adopting the above technical solution, the provision of the flexible pad can provide better contact with the relief and fill the depression on the surface of the relief, thereby enabling the limiting plate and the supporting plate to better limit the relief.

[0016] Optionally, the flexible pad installed on the limiting plate is provided with a second avoidance groove, and the second avoidance groove is used to accommodate the abutment block.

[0017] By adopting the above technical solution, the setting of the second limiting groove can provide support for the installation of the abutment block, avoiding direct contact between the abutment block and the relief side wall, so that the limiting block no longer enters the limiting groove and affects the limiting effect of the limiting plate.

[0018] Optionally, the top wall of the limiting plate is provided with a first guide groove; The bottom wall of the abutment block is provided with a second guide groove.

[0019] By adopting the above technical solution, the setting of the first guide groove can better facilitate the contact between the relief and the limit plate and rotate the limit plate, and the second guide groove can better enable the abutment block to slide along the connecting groove when the relief and the abutment block contact.

[0020] Optionally, the top wall of the sliding rod is provided with an abutment rod, and the abutment rod includes a fitting block, the fitting block is fixedly connected to an end of the sliding rod away from the fixed tube, and scale lines are provided on the surface of the fitting block.

[0021] By adopting the above technical solution, the bonding block is connected to the sliding rod, which provides support for the installation of the bonding block. The bonding block is provided with scale lines, which makes it easier for operators to perceive the distance between adjacent reliefs and better control the gap.

[0022] Optionally, the side walls of the fixed tube, the sliding rod and the fitting block are flush and located in the same plane.

[0023] By adopting the above technical solution, the three are located in the same plane, which can better enable the relief to slide smoothly and finally reach the corresponding position for installation.

[0024] Optionally, a relief-like installation process comprises the following steps: S1: Move the mounting frame to a suitable position and fix the mounting frame; S2: Press the relief to enter between the sliding rods; S3: the relief slides along the sliding rod, and the abutment plate rotates until the relief contacts the support plate, and the support plate and the relief slide away from each other; S4: After the relief completely passes through the limit plate, the second spring causes the support plate to slide in the opposite direction to complete the locking of the relief; S5: Move the installation plate to a suitable position through the lifting device, and make the fitting block fit the position to be installed; S6: The relief is driven to slide along the sliding rod by the push cylinder, and then the relief squeezes the abutment block, driving the plug-in block to withdraw from the plug-in slot, thereby causing the limit plate to rotate in the opposite direction, so as to facilitate sliding along the sliding rod; S7: Install the relief.

[0025] By adopting the above technical solution, the operator first moves the mounting frame to a suitable position, and then fixes the relief between the support plate and the limit plate. At the same time, the setting of the plug-in block can limit the rotation direction of the limit plate to a certain extent. The operator can control the contact between the relief and the abutment block, thereby releasing the control of the rotation direction of the limit plate, and finally pushes the relief to the corresponding position for the operator to install the relief.

[0026] In summary, the present application includes at least one of the following beneficial technical effects: 1. By setting up the installation device, different reliefs can be limited and pushed, avoiding the need to hoist the reliefs by means of lifting belts, improving the stability of the reliefs during installation, and reducing the gaps between the reliefs; 2. By setting up a lifting device, reliefs of different heights can be installed, which improves the applicability of the device; 3. By setting up a moving device, it is convenient for operators to move the position of the mounting frame, thereby improving the convenience of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic diagram of the structure of the first viewing angle of an embodiment of the present application; Figure 2 It is a schematic diagram of the structure of the second viewing angle of the embodiment of the present application; Figure 3 It is a schematic diagram of the mounting plate structure; Figure 4 is a cross-sectional schematic diagram of a fixed tube from a first-person perspective; Figure 5 is a cross-sectional schematic diagram of the fixed tube from a second viewing angle; Figure 6yes Figure 5 Enlarged schematic diagram of part A in the middle.

[0028] Figure numerals: 1, moving device; 11, mounting frame; 12, caster; 13, lifting cylinder; 14, contact plate; 15, counterweight; 2, lifting device; 21, support seat; 22, adjustment rod; 23, mounting seat; 3, mounting device; 31, mounting plate; 311, slide groove; 312, first spring; 313, mounting block; 32, mounting assembly; 321, fixing pipe; 322, sliding rod; 3221, mounting groove; 3222, connecting groove; 323, first avoidance groove; 324, groove; 325, limit plate; 3251, first guide groove ; 3252, plug-in slot; 326, support plate; 3261, second spring; 33, accommodating chamber; 34, flexible pad; 341, second avoidance slot; 35, connecting assembly; 351, connecting pipe; 352, third spring; 353, extension rod; 354, connecting rod; 36, unlocking assembly; 361, abutment block; 362, connecting plate; 363, plug-in block; 364, fourth spring; 365, second guide slot; 37, abutment rod; 371, support rod; 372, fitting block; 373, scale line; 38, pushing cylinder; 381, pushing plate. DETAILED DESCRIPTION

[0029] The following is combined with Figure 1-6 This application is described in further detail.

[0030] The embodiment of the present application discloses an imitation relief installation structure and process.

[0031] Reference Figure 1 and Figure 2 A relief imitation installation structure includes a moving device 1, a lifting device 2 and an installation device 3.

[0032] Reference Figure 1 The mobile device 1 includes a mounting frame 11. In this embodiment, the mounting frame 11 is preferably a rectangular frame, and the mounting frame 11 is horizontally arranged.

[0033] Reference Figure 1 A caster 12 is provided at each corner of the mounting frame 11. In the present embodiment, the caster 12 is preferably a universal caster with a locking structure and a driving source, and the housing of the caster 12 is fixedly connected to the mounting frame 11 by screws.

[0034] Reference Figure 1The mounting frame 11 is evenly distributed with a plurality of lifting cylinders 13 in the vertical direction. The lifting cylinders 13 are vertically arranged, and the output ends of the lifting cylinders 13 are penetrated through the mounting frame 11. The lifting cylinders 13 are vertically arranged, and the outer shells of the lifting cylinders 13 are fixedly connected to the mounting frame 11 by screws. A contact plate 14 is provided at the output end of the lifting cylinder 13, and the contact plate 14 is rotatably connected to the output end of the lifting cylinder 13 by means of a hinged seat connection.

[0035] Reference Figure 1 The top wall of the mounting frame 11 is provided with a plurality of groups of counterweight blocks 15, which are arranged in sequence along the vertical direction, and are evenly distributed circumferentially along the vertical direction, wherein each group of counterweight blocks 15 is composed of a plurality of counterweight blocks, and two adjacent counterweight blocks 15 are detachably connected by snap-fitting, and the lowest counterweight block 15 is fixed to the top wall of the mounting frame 11 by screws.

[0036] Reference Figure 1 and Figure 2 The lifting device 2 is installed on the top wall of the mounting frame 11. The lifting device 2 includes a support seat 21 and an adjusting rod 22. The support seat 21 is rotatably connected to the mounting frame 11 by a bearing connection. The adjusting rod 22 is provided with a corresponding hydraulic cylinder so that the length of the end of the adjusting rod 22 is adjustable. The adjusting rod 22 is equipped with a first rotating motor. In this embodiment, the first rotating motor is preferably a servo motor, and the first rotating motor is used to drive the adjusting rod 22 to rotate along the support seat 21.

[0037] Reference Figure 1 and Figure 2 The lifting device 2 further includes a mounting seat 23. In this embodiment, the mounting seat 23 is preferably an electrically controlled hinged seat. The mounting seat 23 is fixed to the end of the adjusting rod 22 away from the supporting seat 21 by screws. Reference Figure 2 and Figure 3 , the mounting device 3 is mounted on the mounting seat 23.

[0038] Reference Figure 3 The mounting device 3 includes a mounting plate 31. In this embodiment, the mounting plate 31 is preferably a rectangular plate, and the mounting plate 31 is fixedly connected to the mounting seat 23 by screws. The top wall of the mounting plate 31 is provided with a plurality of groups of slide grooves 311. Here, the number of the slide grooves 311 is preferably four, and they are evenly distributed circumferentially in a direction perpendicular to the plate surface of the mounting plate 31. The inner cavity of each slide groove 311 is provided with a first spring 312 and a mounting block 313. The expansion and contraction direction of the first spring 312 is parallel to the sliding direction of the slide groove 311. The mounting block 313 can slide along the inner cavity of the slide groove 311. The two ends of the first spring 312 are fixedly connected to the mounting plate 31 and the slider, respectively.

[0039] Reference Figure 3 and Figure 4Each slider is provided with a mounting assembly 32, and the mounting assembly 32 includes a fixed tube 321 and a sliding rod 322. The fixed tube 321 is fixedly connected to the slider by screws. In this embodiment, the fixed tube 321 is preferably a hollow rectangular tube, and the axial direction of the fixed tube 321 is perpendicular to the plate surface of the mounting plate 31. A plurality of fixed tubes 321 jointly enclose a rectangular accommodating cavity 33, and the accommodating cavity 33 is used to accommodate the relief. The end surface of the fixed tube 321 close to the accommodating cavity 33 is provided with a first avoidance groove 323, wherein the long side direction of the first avoidance groove 323 is parallel to the axial direction of the fixed tube 321. The sliding rod 322 is provided through the fixed tube 321 and the first avoidance groove 323, and can slide along the axial direction of the fixed tube 321.

[0040] Reference Figure 3 and Figure 4 A groove 324 is provided on the side of the sliding rod 322 away from the fixed tube 321, and a limit plate 325 is arranged in the groove 324. The limit plate 325 is rotatably connected to the sliding rod 322 by a torsion spring connection. In this embodiment, the limit plate 325 is preferably a rectangular plate. In the initial state, the rectangular plate is horizontally arranged, and the top wall of the limit plate 325 is provided with a first guide groove 3251. Here, the groove depth of the first guide groove 3251 gradually increases along the long side direction of the limit plate 325 pointing to the direction close to the accommodating cavity 33.

[0041] Reference Figure 3 and Figure 4 The mounting assembly 32 also includes a support plate 326, which is horizontally arranged. The support plate 326 is located on the side of the limit plate 325 close to the slider. The support plate 326 is equipped with two second springs 3261, which are vertically arranged, and the expansion and contraction directions of the second springs 3261 are parallel to the axial direction of the fixed tube 321. The two second springs 3261 are arranged in sequence along the long side direction of the support plate 326, and the two ends of the second springs 3261 are respectively fixedly connected to the support plate 326 and the slider.

[0042] Reference Figure 4 The top wall of the support plate 326 and the bottom wall of the limiting plate 325 are both provided with flexible pads 34. In this embodiment, the flexible pads 34 are preferably rubber pads with a certain deformation effect. The flexible pads 34 are fixedly connected to the support plate 326 and / or the limiting plate 325 by screws.

[0043] Reference Figure 4 In this embodiment, when the second spring 3261 is not deformed, the two flexible pads 34 installed at the support plate 326 and the limiting plate 325 are in contact with each other.

[0044] Reference Figure 4 A second avoidance groove 341 is provided at one end of the flexible pad 34 mounted on the limiting plate 325 and close to the sliding rod 322 .

[0045] Reference Figure 4 In this embodiment, the distance of the long side of the support plate 326 is greater than the distance of the long side of the limiting plate 325.

[0046] Reference Figure 4 , Figure 5 and Figure 6 Each mounting assembly 32 is equipped with a connecting assembly 35, and the connecting assembly 35 includes a connecting tube 351, and the connecting tube 351 is located in the inner cavity of the fixed tube 321. In this embodiment, the connecting tube 351 is preferably a hollow rectangular tube, and the middle part of the connecting tube 351 rotates along the fixed tube 321 through a rotating shaft connection, wherein the rotation axis of the connecting tube 351 is parallel to the plane of the mounting plate 31.

[0047] Reference Figure 5 and Figure 6 Both ends of the connecting tube 351 are provided with connecting parts, and the connecting parts include a third spring 352 and an extension rod 353. The extension direction of the third spring 352 is parallel to the axial direction of the connecting tube 351. The extension rod 353 is penetrated into the inner cavity of the fixed tube 321 and can slide along the axial direction of the fixed tube 321. The two ends of the third spring 352 are fixedly connected to the connecting tube 351 and the extension rod 353 respectively. The top wall of the extension rod 353 is provided with a positioning hole at the end away from the fixed tube 321, and the inner cavity of the positioning hole is provided with a rotating block, which can rotate in the inner cavity of the positioning hole. Each rotating block is equipped with a positioning block and a connecting rod 354. The positioning block is fixedly connected to the fixed tube 321 by screws. The positioning block is penetrated by a through hole in the vertical direction. The connecting rod 354 is penetrated by the through hole, and the connecting rod 354 can slide along the axis of the through hole. The bottom of the connecting rod 354 is fixedly connected to the rotating block by screws, and the top of the connecting rod 354 is fixedly connected to the sliding rod 322 and the support plate 326 by screws.

[0048] Reference Figure 5 and Figure 6 , wherein the length of the connecting rod 354 connected to the support plate 326 is longer than the length of the connecting rod 354 connected to the sliding rod 322 .

[0049] Reference Figure 5 The sliding rod 322 is provided with a mounting groove 3221 at the groove 324, and the mounting groove 3221 is connected to the inner cavity of the groove 324. The mounting groove 3221 is provided with a connecting groove 3222 on the side of the groove 324 close to the mounting plate 31. The connecting groove 3222 is penetrated in the horizontal direction, and the connecting groove 3222 is connected to the inner cavity of the mounting groove 3221.

[0050] Reference Figure 5An end of the limiting plate 325 close to the sliding rod 322 is provided with an inserting groove 3252. In this embodiment, the inserting groove 3252 is preferably a fan-shaped groove.

[0051] Reference Figure 5 , each of the mounting grooves 3221 is provided with an unlocking assembly 36, which includes an abutting block 361, a connecting plate 362, a plug-in block 363 and a fourth spring 364. The abutting block 361 is inserted into the connecting groove 3222 and can slide along the connecting groove 3222 in the axial direction. The two ends of the connecting plate 362 are respectively fixedly connected to the abutting block 361 and the plug-in block 363, and the plug-in groove 3252 is used to accommodate the plug-in block 363. The expansion and contraction direction of the fourth spring 364 is parallel to the axial direction of the connecting groove 3222, and the two ends of the fourth spring 364 are respectively fixedly connected to the connecting plate 362 and the sliding rod 322.

[0052] Reference Figure 5 In this embodiment, when the plug-in block 363 is located in the inner cavity of the plug-in slot 3252 , the limit plate 325 can only reciprocate at a certain angle toward the direction close to the mounting plate 31 , and the abutment block 361 extends to the outside of the connecting slot 3222 .

[0053] Reference Figure 5 When the limiting block withdraws from the limiting groove, the rotation direction of the limiting plate 325 is no longer restricted, and the abutting block 361 is located in the connecting groove 3222 .

[0054] Reference Figure 5 When the limiting plate 325 is in the initial state, the abutment block 361 extends to the inner cavity of the second avoidance groove 341, and the bottom wall of the abutment block 361 is provided with a second guide groove 365, and the groove depth of the second guide groove 365 gradually deepens along the long side direction of the abutment block 361 toward the direction close to the connecting plate 362.

[0055] Reference Figure 4 The top wall of the sliding rod 322 is provided with an abutment rod 37, and the abutment rod 37 is composed of a support rod 371 and a fitting block 372. In this embodiment, the support rod 371 is preferably a rectangular rod, and the long side direction of the support rod 371 is parallel to the long side direction of the sliding rod 322. The support rod 371 is fixedly connected to the sliding rod 322 by screw fixing. In this embodiment, the fitting block 372 is preferably a right-angled triangle block, and the fitting block 372 is preferably a right-angled triangle block, one right-angled side of the fitting block 372 is close to the accommodating cavity 33, and the other right-angled side is fitted to the support rod 371. In this embodiment, the end faces of the sliding rod 322, the support rod 371 and the fitting block 372 close to the accommodating cavity 33 are located in the same plane.

[0056] Reference Figure 4 The inclined surface of the fitting block 372 is provided with a scale line 373 , wherein the scale line 373 refers to the distance between the inclined surface and the accommodating cavity 33 .

[0057] Reference Figure 3 A plurality of push cylinders 38 are arranged in an array on the end surface of the mounting plate 31 close to the mounting seat 23. The output end of the push cylinder 38 is passed through the mounting plate 31. The outer shell of the driving cylinder is fixedly connected to the mounting plate 31 by screws. A push plate 381 is provided at the output end of the push cylinder 38. The push plate 381 is fixedly connected to the output end of the push cylinder 38 by screws.

[0058] The present application embodiment discloses a relief-like installation process, comprising the following steps: S1: The operator moves the mounting frame 11 to a suitable position and supports the mounting frame 11 through the lifting cylinder 13 to prevent sliding; S2: The operator presses the relief so that the relief and the sliding rod 322 come into contact and the sliding rod 322 slides away from each other, and then continues to press the relief; S3: Continue to press the relief until it contacts the limiting plate 325, and make the limiting plate 325 rotate along the sliding rod 322, then squeeze the supporting plate 326, drive the sliding rod 322 and the supporting plate 326 to slide away from each other, when the relief completely enters under the limiting plate 325, then release the relief, at this time the fixing tube 321 moves in the direction of approaching each other, and completes the positioning of the relief; S4: Under the action of the second spring 3261, the support plate 326 is driven away from the mounting plate 31 to complete the positioning of the relief plate; S5: The relief is sent to the corresponding position by the lifting device 2, and the laminating block 372 is laminating to the corresponding position; S6: The relief is driven to slide along the sliding rod 322 by pushing the material, and at the same time, the abutment block 361 is squeezed to drive the plug-in block 363 to withdraw from the plug-in slot 3252, so that the limiting plate 325 can rotate in the opposite direction, and the relief can be withdrawn; S7: The relief is pushed to a corresponding position by the pushing cylinder 38, so that the relief is accurately installed.

[0059] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A relief-like mounting structure, characterized in that: It comprises a mounting frame (11), a lifting device (2) and a mounting device (3), wherein the lifting device (2) is used to adjust the position and angle of the mounting plate (31) relative to the mounting frame (11); The mounting device (3) comprises a mounting plate (31), wherein the mounting plate (31) is provided with a plurality of fixed tubes (321) uniformly distributed along the circumference of the plate surface, wherein the fixed tubes (321) can synchronously approach or move away from the axial direction of the mounting plate (31), and wherein a sliding rod (322) is provided in the inner cavity of the fixed tube (321), and the sliding rod (322) slides along the fixed tube (321); The sliding rod (322) is provided with a limiting plate (325), and the limiting plate (325) and the sliding rod (322) are elastically hinged; Each of the fixed tubes (321) is provided with a support plate (326), and the support plate (326) slides along the axial direction of the fixed tube (321); The inner cavity of the fixed tube (321) is provided with a connecting tube (351), the connecting tube (351) is rotatably connected along the fixed tube (321), and the two ends of the connecting tube (351) are respectively connected to the limiting plate (325) and the supporting plate (326); The mounting plate (31) is provided with a plurality of pushing cylinders (38), and the pushing cylinders (38) are penetrated through the mounting plate (31).

2. The imitation relief installation structure according to claim 1, characterized in that: The mounting plate (31) is provided with a slide groove (311) at the fixed tube (321), a first spring (312) and a slider are provided in the slide groove (311), two ends of the first spring (312) are respectively connected to the mounting plate (31) and the slider, and the fixed tube (321) and the slider are fixedly connected.

3. The imitation relief installation structure according to claim 2, characterized in that: A third spring (352) and an extension rod (353) are provided at both ends of the connecting tube (351), and the extension rod (353) slides elastically along the connecting tube (351) through the third spring (352); A connecting rod (354) is provided at the end of the extension rod (353); one end of the connecting rod (354) is rotatably connected to the extension rod (353), and the other end of the connecting rod (354) is connected to the limiting plate (325) and / or the sliding rod (322).

4. The imitation relief installation structure according to claim 1, characterized in that: The sliding rod (322) is provided with a connecting groove (3222) on one side of the limiting plate (325) close to the mounting plate (31), and the limiting plate (325) is provided with a plug-in groove (3252); The mounting device (3) is provided with an unlocking assembly (36), and the unlocking assembly (36) comprises an abutment block (361) and a plug-in block (363); the abutment block (361) is inserted into the connecting groove (3222) and can elastically slide along the connecting groove (3222) and along the connecting groove (3222); the plug-in groove (3252) is used to accommodate the plug-in block (363), and the plug-in block (363) and the abutment block (361) are fixedly connected.

5. The imitation relief installation structure according to claim 4, characterized in that: The end surfaces of the limiting plate (325) and the supporting plate (326) that are close to each other are both installed with flexible pads (34), and the flexible pads (34) are fixedly connected to the limiting plate (325) and / or the supporting plate (326).

6. The imitation relief installation structure according to claim 5, characterized in that: The flexible pad (34) mounted on the limiting plate (325) is provided with a second avoidance groove (341), and the second avoidance groove (341) is used to accommodate the abutment block (361).

7. The imitation relief mounting structure according to claim 6, characterized in that: The top wall of the limiting plate (325) is provided with a first guide groove (3251); The bottom wall of the abutment block (361) is provided with a second guide groove (365).

8. The imitation relief mounting structure according to claim 1, characterized in that: The top wall of the sliding rod (322) is provided with an abutting rod (37), and the abutting rod (37) includes a fitting block (372). The fitting block (372) is fixedly connected to an end of the sliding rod (322) away from the fixed tube (321), and a scale line (373) is provided on the surface of the fitting block (372).

9. The imitation relief installation structure according to claim 8, characterized in that: The side walls of the fixed tube (321), the sliding rod (322) and the fitting block (372) are flush and located in the same plane.

10. A relief-like installation process, characterized in that: The imitation relief mounting structure according to any one of claims 1 to 9 comprises the following steps: S1: moving the mounting frame (11) to a suitable position and fixing the mounting frame (11); S2: Press the relief to enter between the sliding rods (322); S3: the relief slides along the sliding rod (322), and the abutment plate rotates until the relief contacts the support plate (326), and the support plate (326) and the relief slide in a direction away from each other; S4: After the relief completely passes through the limiting plate (325), the second spring (3261) causes the supporting plate (326) to slide in the opposite direction, thereby completing the locking of the relief; S5: Move the installation plate (31) to a suitable position by means of the lifting device (2), and make the fitting block (372) fit the position to be installed; S6: The relief is driven to slide along the sliding rod (322) by the pushing cylinder (38), and then the relief squeezes the abutment block (361), driving the plug-in block (363) to withdraw from the plug-in slot (3252), thereby causing the limit plate (325) to rotate in the opposite direction, so as to facilitate sliding along the sliding rod (322); S7: Install the relief.