Anti-seismic support hanger structure and using method thereof

By designing a seismic support hanger structure including support platform, horizontal chute, horizontal moving parts, buffer telescopic parts and lifting components, the problem of insufficient height adjustment accuracy of the existing seismic support hanger is solved, flexible height adjustment and simplification of installation are achieved, and seismic performance and installation efficiency are improved.

CN119934312AActive Publication Date: 2025-05-06HAINAN FUYAO IND CO LTD
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
CN202510174943.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-05-06
Estimated Expiration
2045-02-18

AI Technical Summary

Technical Problem

The height adjustment accuracy of the existing seismic support hanger is insufficient and needs to be disassembled and reinstalled, which is troublesome to operate.

Method used

A shock-resistant support hanger structure including a support platform, a horizontal chute, a horizontal moving member, a buffer telescopic member and a lifting assembly is designed. Through the combination of a horizontal moving member and a buffer telescopic member, flexible height adjustment is achieved, and the height and orientation of the clamping cylinder are adjusted through the lifting member.

Benefits of technology

The precise adjustment of the height of the seismic support hanger is achieved, which simplifies the installation process, improves the installation efficiency, and enhances the seismic performance of the support hanger.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119934312A_ABST
    Figure CN119934312A_ABST
Patent Text Reader

Abstract

The invention provides an anti-seismic support hanger structure which comprises a supporting platform and two top end circular plates, and a horizontal sliding groove is formed in the supporting platform. Compared with the prior art, the anti-seismic supporting and hanging frame has the following beneficial effects that the whole anti-seismic supporting and hanging frame is fixedly installed, then through the design of the lifting assembly, the extending plate and the supporting plate are driven to ascend, the clamping cylinder is driven to ascend and descend, and the height of the clamping cylinder meets the follow-up pipeline installation height; the clamping cylinder can be manually adjusted and rotated, the orientation angle of the clamping cylinder can be effectively adjusted, the orientation position of the clamping cylinder better conforms to the orientation of follow-up pipeline installation, the overall design is simple, the overall anti-seismic support hanger is installed firstly, then a needed pipeline is installed, the situation that the pipeline is installed firstly is avoided, and the installation efficiency is improved. And then the anti-seismic support hanger and the installed pipeline are hoisted to the wall top to be installed, the whole installation is simpler, and the installation efficiency is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention discloses an anti-seismic support and hanger structure and a use method thereof, belonging to the field of hangers. Background Art

[0002] Seismic supports and hangers are used to limit the displacement of attached electromechanical engineering facilities, control the vibration of facilities, and transfer the load to various components or devices on the bearing structure. The electromechanical engineering facilities such as water supply and drainage, fire protection, heating, ventilation, air conditioning, gas, heat, electricity, and communications of buildings that have been seismically reinforced can reduce earthquake damage, reduce and prevent the occurrence of secondary disasters as much as possible when an earthquake of the seismic fortification intensity of the region occurs, thereby achieving the purpose of reducing casualties and property losses.

[0003] The existing seismic support and hanger brackets have a fixed height, and some support and hanger brackets with adjustable heights have also appeared. However, the height is adjusted through multiple spare holes. The height of this adjustment is related to the distance between the two spare holes, resulting in insufficient height adjustment accuracy and the need for disassembly and reinstallation, which is troublesome to operate. Summary of the invention

[0004] In view of the deficiencies in the prior art, the present invention aims to provide a seismic support and hanger structure and a method of using the same.

[0005] In order to achieve the above object, the present invention is implemented through the following technical solutions:

[0006] A seismic support and hanger structure comprises a supporting platform and two top circular plates, the supporting platform is provided with a horizontal slide groove, two horizontal moving members are installed in the horizontal slide groove, a cylinder is slidably arranged at the top of the horizontal moving member, three movable grooves are provided at the edge of the top surface of the cylinder, movable blocks are rotatably installed in the movable groove through movable shafts, buffer telescopic members are provided on the movable blocks, a U-shaped seat is fixedly provided at the top of the buffer telescopic member, a connecting plate is rotatably installed in the U-shaped seat through a secondary movable shaft, three buffer grooves are provided on the bottom end surface of the top circular plate, a round rod 1 is fixedly provided in the buffer groove, a square block is slidably sleeved on the round rod 1, a spring 1 is fixedly provided at both ends of the square block, and the spring 1 is sleeved on the circular rod On rod one, the other end of spring one is fixed on the inner end wall of the buffer groove, and dustproof bellows are also fixedly provided at both ends of the square block, and the other end of the dustproof bellows is fixed on the inner end wall of the buffer groove, and spring one is located inside the corresponding dustproof bellows, and the connecting plate is fixedly connected with the corresponding square block with screws, a dustproof cylinder is provided in the horizontal slide groove, a lifting assembly is provided in the dustproof cylinder, an extension plate extending out of the dustproof cylinder is provided on the lifting assembly, a support plate is fixedly provided on the other end of the extension plate, a clamping cylinder is installed on the support plate in cooperation with the rotating assembly, a sliding arc clamping plate is provided in the clamping cylinder, and a rotating clamping piece connected to the arc clamping plate is provided on the clamping cylinder.

[0007] Furthermore, the horizontal moving member includes two upper and lower horizontal plates, a plurality of threaded columns are fixedly provided at the bottom end of the upper horizontal plate, a through groove for the threaded columns to pass through is opened on the lower horizontal plate, and nuts are matched on the threaded columns.

[0008] Furthermore, the buffer telescopic member includes an upper square sleeve and a lower square sleeve, the lower square sleeve is inserted into the upper square sleeve, a plurality of springs 2 are fixedly provided in the upper square sleeve, and the other end of the spring 2 is fixedly connected to the end of the lower square sleeve.

[0009] Furthermore, a hole-shaped plate is fixedly provided on the top of the upper horizontal plate, the cylinder is located inside the hole-shaped plate, traction grooves are opened on both sides of the inner wall of the hole-shaped plate, a balance block extending into the traction groove is fixedly provided on the outer wall of the cylinder, and a plurality of buffer parts are connected between the inner wall of the hole-shaped plate and the outer wall of the cylinder.

[0010] Furthermore, the buffer member includes fixing plates fixed on the inner wall of the opening mold plate and the outer wall of the cylinder, and a spring three and an auxiliary dustproof bellows are fixed between the fixing plates, and the spring three is located on the inner side of the auxiliary dustproof bellows.

[0011] Furthermore, the lifting assembly includes a screw rod rotatably arranged inside the dustproof cylinder, a threaded plate is threadedly sleeved on the outer surface of the screw rod, an arc-shaped shielding long plate is fixedly provided on the threaded plate in cooperation with a fixing rod, the arc-shaped shielding long plate is fixedly connected to the extension plate, a lifting groove is opened on the outer wall of the dustproof cylinder for the extension plate to pass through, a vertical traction rod is fixedly provided inside the dustproof cylinder, the threaded plate is slidably sleeved on the vertical traction rod, the bottom end of the screw rod passes through the dustproof cylinder, and a manual turntable is fixedly provided.

[0012] Furthermore, the rotating assembly includes a round rod fixed at the bottom end of the clamping cylinder, a setting groove is opened in the support plate, a bearing is provided in the setting groove, the round rod passes through the setting groove and is connected to the bearing, an external thread is engraved on the outer surface of the round rod, and a secondary nut is provided on the threaded sleeve at the bottom of the round rod.

[0013] Furthermore, a secondary fixed platform is fixedly provided on the outer surface of the dustproof cylinder, a secondary screw rod is passed through the horizontal slide groove, the secondary fixed platform is threaded on the secondary screw rod, a dust cover is provided between the secondary fixed platform and the inner wall of the horizontal slide groove, and there are two dust covers, one end of the secondary screw rod is connected to a rotating disk, and the other end of the secondary screw rod is sleeved with a secondary bearing fixed to the inner wall of the horizontal slide groove, and the secondary bearing is located in the dust cover.

[0014] Furthermore, the rotating clamping member includes a threaded rod with a thread passing through the inside of the clamping cylinder, a secondary manual turntable is fixedly provided on the top of the threaded rod, the bottom of the threaded rod is in the shape of a T-shaped round head, a fixed platform is fixedly provided on the top of the arc-shaped clamping plate, a T-shaped rotating groove is opened inside the fixed platform, the bottom of the threaded rod is rotatably arranged inside the T-shaped rotating groove, and a plurality of telescopic rods are fixedly provided between the arc-shaped clamping plate and the top of the clamping cylinder.

[0015] A method for using an earthquake-resistant support and hanger structure comprises the following steps:

[0016] Step 1: First, install the cylinder connected to the horizontal moving part and the buffer telescopic part and the top circular plate thereon, and finally install the top circular plate indirectly on the supporting platform, and the top circular plate is installed on the top of the wall, and finally the connected supporting platform is suspended.

[0017] Step 2: Then, a buffer connection is performed through the buffer telescopic member, which has a certain buffering effect when the support platform is suspended, and the buffer telescopic member is a movable connection. The buffer telescopic member cooperates with the movable shaft and the movable block. The bottom of the buffer telescopic member is movably connected to the cylinder, and the inclination of the buffer telescopic member can be manually adjusted. Finally, the U-shaped seat and the connecting plate at the top of the buffer telescopic member are adjusted. After the inclination range of the connecting plate is adjusted, it better corresponds to the square block, and is correspondingly installed on the square block with screws;

[0018] Step 3: The designed spring 1 is used to ensure the buffering and anti-seismic effect. The designed buffer telescopic member plays a supporting and buffering role. The overall anti-seismic support and hanger has been fixed and installed. Through the design of the lifting component, the extension plate and the support plate are driven to rise, and the clamping cylinder is driven to rise and fall, so that the height of the clamping cylinder meets the height of the subsequent pipeline installation;

[0019] Step 4: Finally, in conjunction with the design of the rotating assembly, ensure that the clamping cylinder can produce manually adjustable rotation, so that the orientation angle of the clamping cylinder can be effectively adjusted, and the orientation position of the clamping cylinder is more consistent with the orientation of the subsequent pipeline installation.

[0020] Beneficial effects of the present invention:

[0021] Through the design of the horizontal moving part, the cylinder connected to the horizontal moving part and the buffer telescopic part and the top circular plate thereon are installed, and finally the top circular plate is indirectly installed on the supporting platform, the top circular plate is installed on the top of the wall, and finally the connected supporting platform is suspended.

[0022] The buffer connection is performed through the arranged buffer telescopic parts, which has a certain buffering effect when the suspended support platform is played, and the buffer telescopic parts are movable connections. The buffer telescopic parts cooperate with movable shafts and movable blocks. The bottom of the buffer telescopic parts is movably connected to the cylinder. The inclination of the buffer telescopic parts can be manually adjusted, and finally the U-shaped seat and the inclination of the connecting plate on the top of the buffer telescopic parts are adjusted. There are three buffer telescopic parts in total, forming a triangle shape. The inclination range of the connecting plates in three directions is adjusted to better correspond to the square blocks, and they are installed accordingly on the square blocks, cooperate with screws, and the designed springs to ensure the buffering and anti-seismic effect. The designed buffer telescopic parts play a supporting buffering and anti-seismic role.

[0023] The overall anti-seismic support and hanger bracket has been fixed and installed. Secondly, through the design of the lifting component, the extension plate and the support plate are driven to rise, and the clamping cylinder is driven to rise and fall, so that the height of the clamping cylinder meets the height of the subsequent pipeline installation. Secondly, with the design of the rotating component, it is ensured that the clamping cylinder can produce manual adjustment rotation, so that the direction angle of the clamping cylinder can be effectively adjusted. The direction of the clamping cylinder is more in line with the direction of the subsequent pipeline installation. The overall design is simple. The overall anti-seismic support and hanger bracket is installed first, and then the required pipelines are installed. It avoids installing the pipeline first, and then lifting the anti-seismic support and hanger bracket and the installed pipeline to the top of the wall for installation. The whole installation is simpler and its installation efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0025] Figure 1 A front view of an anti-seismic support and hanger structure and a method of using the same according to the present invention;

[0026] Figure 2 A schematic diagram of a cutout plate of an anti-seismic support and hanger structure of the present invention;

[0027] Figure 3 A schematic diagram of a top circular plate of an anti-seismic support and hanger structure of the present invention;

[0028] Figure 4 It is a schematic diagram of a horizontal moving part of a seismic support and hanger structure of the present invention.

[0029] Figure 5 A schematic diagram of a buffer telescopic member of an anti-seismic support and hanger structure of the present invention;

[0030] Figure 6 It is a schematic diagram of the connection between the support platform and the dustproof cylinder of an anti-seismic support and hanger structure of the present invention;

[0031] Figure 7 It is a schematic diagram of the interior of a dustproof cylinder of an anti-seismic support and hanger structure of the present invention;

[0032] Figure 8 A schematic diagram of a lifting slot of an anti-seismic support and hanger structure of the present invention;

[0033] Fig. 9 It is a schematic diagram of a rotary clamping member of a seismic support and hanger structure of the present invention;

[0034] Fig.10A schematic diagram of a fixing platform of a seismic support and hanger structure of the present invention;

[0035] Fig.11 The present invention is a schematic diagram of a secondary fixing platform of a seismic support and hanger structure.

[0036] In the figure: 1. Support platform; 2. Horizontal slide; 3. Cylinder; 4. Movable groove; 5. Movable shaft; 6. Movable block; 7. U-shaped seat; 8. Auxiliary movable shaft; 9. Connecting plate; 10. Buffer groove; 11. Round rod 1; 12. Square block; 13. Spring 1; 14. Dustproof bellows; 15. Dustproof cylinder; 16. Extension plate; 17. Support plate; 18. Clamping cylinder; 19. Arc clamping plate; 20. Horizontal plate; 21. Threaded column; 22. Through groove; 23. Nut; 24. Upper square sleeve; 25. Lower square Sleeve; 26. Mouth plate; 27. Traction groove; 28. Balance block; 29. ​​Spring three; 30. Screw rod; 31. Threaded plate; 32. Arc-shaped shielding long plate; 33. Lifting groove; 34. Vertical traction rod; 35. Manual turntable; 36. Round rod; 37. Bearing; 38. Threaded rod; 39. Auxiliary manual turntable; 40. Fixed platform; 41. T-shaped turning groove; 42. Telescopic rod; 43. Top circular plate; 44. Spring two; 45. Auxiliary dustproof bellows; 46. Auxiliary fixed platform; 47. Auxiliary screw rod; 48. Dust cover. DETAILED DESCRIPTION

[0037] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0038] See also Figure 1-11The present invention provides a technical solution: an anti-seismic support and hanger structure, including a support platform 1 and two top circular plates 43, the support platform 1 is provided with a horizontal slide groove 2, two horizontal moving parts are installed in the horizontal slide groove 2, a cylinder 3 is slidably arranged at the top of the horizontal moving part, three movable grooves 4 are provided at the edge of the top surface of the cylinder 3, movable blocks 6 are rotatably installed in the movable groove 5 through movable shafts 5, buffer telescopic parts are provided on the movable blocks 6, a U-shaped seat 7 is fixedly provided at the top of the buffer telescopic part, a connecting plate 9 is rotatably installed in the U-shaped seat 7 through a secondary movable shaft 8, three buffer grooves 10 are provided on the bottom end surface of the top circular plate 43, a round rod 11 is fixedly provided in the buffer groove 10, a square block 12 is slidably sleeved on the round rod 11, springs 13 are fixedly provided at both ends of the square block 12, and the spring 13 is sleeved in the On the round rod 11, the other end of the spring 13 is fixed on the inner end wall of the buffer groove 10, and the two ends of the square block 12 are also fixed with dustproof bellows 14, the other end of the dustproof bellows 14 is fixed on the inner end wall of the buffer groove 10, and the spring 13 is located inside the corresponding dustproof bellows 14, the connecting plate 9 is fixedly connected with the corresponding square block 12 by means of screws, a dustproof cylinder 15 is provided in the horizontal slide groove 2, a lifting component is provided in the dustproof cylinder 15, an extension plate 16 extending out of the dustproof cylinder 15 is provided on the lifting component, a support plate 17 is fixed on the other end of the extension plate 16, a clamping cylinder 18 is installed on the support plate 17 to cooperate with the rotating component, a sliding arc clamping plate 19 is provided in the clamping cylinder 18, and a rotating clamping member connected to the arc clamping plate 19 is provided on the clamping cylinder 18.

[0039] See also Figure 1 and Figure 4 The horizontal moving member includes two upper and lower horizontal plates 20, a plurality of threaded columns 21 are fixedly provided at the bottom end of the upper horizontal plate 20, a through groove 22 for the threaded columns 21 to pass through is opened on the lower horizontal plate 20, and nuts 23 are matched on the threaded columns 21. The upper and lower horizontal plates 20 better correspond to the top and bottom surfaces of the supporting platform 1, the threaded columns 21 pass through the through groove 22, and the bottom of the threaded columns 21 are threaded into the nuts 23, and the nuts 23 are tightened to complete the fixation of the horizontal moving member.

[0040] See also Figure 5 The buffer telescopic member includes an upper square sleeve 24 and a lower square sleeve 25. The lower square sleeve 25 is inserted into the upper square sleeve 24. A plurality of springs 44 are fixedly arranged in the upper square sleeve 24. The other end of the spring 44 is fixedly connected to the end of the lower square sleeve 25. The design of the spring 44 plays a role in supporting, buffering and anti-seismic.

[0041] See also Figure 1-2 A slot plate 26 is fixedly provided on the top of the upper horizontal plate 20, the cylinder 3 is located inside the slot plate 26, and traction grooves 27 are provided on both sides of the inner wall of the slot plate 26. A balancing block 28 extending into the traction groove 27 is fixedly provided on the outer wall of the cylinder 3. A plurality of buffers are connected between the inner wall of the slot plate 26 and the outer wall of the cylinder 3, and the buffers include fixing plates fixed on the inner wall of the slot plate 26 and the outer wall of the cylinder 3. A spring three 29 and an auxiliary dustproof bellows 45 are fixedly provided between the fixing plates. The spring three 29 is located on the inner side of the auxiliary dustproof bellows 45, and the spring three 29 plays a role of horizontal buffering and shock resistance, and the spring three 29 is wrapped as a whole inside the auxiliary dustproof bellows 45, plays a role of supporting dust prevention, and plays a role of avoiding direct contact with the outside world, and has a good dustproof and rust-proof effect.

[0042] See also Figure 7-8 The lifting assembly includes a screw rod 30 rotatably arranged inside the dustproof cylinder 15, a threaded plate 31 is threadedly sleeved on the outer surface of the screw rod 30, an arc-shaped shielding long plate 32 is fixedly arranged on the threaded plate 31 in cooperation with the fixing rod, and the arc-shaped shielding long plate 32 is fixedly connected to the extension plate 16, and a lifting groove 33 for the extension plate 16 to pass through is opened on the outer wall of the dustproof cylinder 15, a vertical traction rod 34 is fixedly arranged in the dustproof cylinder 15, and the threaded plate 31 is slidably sleeved on the vertical traction rod 34, and the screw rod 30 is threadedly sleeved on the outer surface of the screw rod 30, and the threaded plate 31 is threadedly sleeved on the vertical traction rod 34, and the screw rod 30 is threadedly sleeved on the threaded plate 31. The bottom end of the rod 30 passes through the dustproof cylinder 15 and is fixedly provided with a manual turntable 35. The screw rod 30 is manually rotated to drive the threaded plate 31 to rise and fall vertically on the screw rod 30, thereby driving the arc-shaped shielding long plate 32 and the extension plate 16 to rise and fall. The extension plate 16 rises and falls in the lifting groove 33, and the arc-shaped shielding long plate 32 is a large-sized arc plate, which blocks the lifting groove 33. The arc-shaped shielding long plate 32 always blocks the lifting groove 33 to prevent the lifting groove 33 from being exposed, causing the dustproof cylinder 15 to communicate with the outside world. The internal design components of the dustproof cylinder 15 provide good dustproof protection.

[0043] See also Fig. 9 The rotating assembly includes a round rod 36 fixed to the bottom end of the clamping cylinder 18, a setting groove is opened in the support plate 17, a bearing 37 is arranged in the setting groove, the round rod 36 passes through the setting groove and is connected to the bearing 37, the round rod 36 at the bottom end of the clamping cylinder 18 passes through the bearing 37, the bearing 37 is designed to ensure that the bearing 37 can rotate, so that the clamping cylinder 18 rotates, the outer surface of the round rod 36 is engraved with an external thread, and the bottom thread of the round rod 36 is provided with a secondary nut, and the round rod 36 is threaded as a whole, and the secondary nut is screwed in to cooperate with the secondary nut, and the secondary nut finally presses against the bottom surface of the support plate 17 to complete the fixation of the clamping cylinder 18 in the rear direction of rotation, and the clamping cylinder 18 is contact-supported on the support plate 17.

[0044] See also Fig.11 A secondary fixing platform 46 is fixedly arranged on the outer surface of the dustproof cylinder 15, and a secondary screw rod 47 is passed through the horizontal slide groove 2. The secondary fixing platform 46 is threaded on the secondary screw rod 47, and a dust cover 48 is arranged between the secondary fixing platform 46 and the inner wall of the horizontal slide groove 2. There are two dust covers 48, and one end of the secondary screw rod 47 is connected to a rotating disk, and the other end of the secondary screw rod 47 is sleeved with a secondary bearing fixed to the inner wall of the horizontal slide groove 2, and the secondary bearing is located in the dust cover 48. This design ensures that the dustproof cylinder 15 is easy to move horizontally, and the adjusted position is more consistent with the position where the pipeline needs to be installed later.

[0045] See also Figure 9-10 The rotating clamping member includes a threaded rod 38 that threads through the inside of the clamping cylinder 18, a secondary manual turntable 39 is fixedly provided at the top of the threaded rod 38, and the bottom of the threaded rod 38 is in the shape of a T-shaped round head. A fixed platform 40 is fixedly provided at the top of the arc-shaped clamping plate 19, and a T-shaped rotating groove 41 is opened inside the fixed platform 40. The bottom of the threaded rod 38 is rotatably arranged inside the T-shaped rotating groove 41, and a plurality of telescopic rods 42 are fixedly provided on the arc-shaped clamping plate 19 and between the top of the clamping cylinder 18. The threaded rod 38 is manually rotated, and the bottom of the threaded rod 38 generates idle rotation in the T-shaped rotating groove 41 inside the fixed platform 40, and the threaded rod 38 is manually rotated to move vertically up and down, which eventually drives the fixed platform 40 to descend, and eventually drives the arc-shaped clamping plate 19 to descend, and the pipe inserted into the clamping cylinder 18 is clamped in cooperation with the arc-shaped clamping plate 19.

[0046] A method for using an earthquake-resistant support and hanger structure comprises the following steps:

[0047] Step 1: First, install the cylinder 3 connected to the horizontal moving part and the buffer telescopic part and the top circular plate 43 thereon, and finally install the top circular plate 43 indirectly on the supporting platform 1, and the top circular plate 43 is installed on the top of the wall, and finally the connected supporting platform 1 is suspended.

[0048] Step 2: Then, a buffer connection is performed through the buffer telescopic member, which has a certain buffering effect when the support platform 1 is suspended, and the buffer telescopic member is a movable connection, and the buffer telescopic member cooperates with the movable shaft 5 and the movable block 6. The bottom of the buffer telescopic member is movably connected to the cylinder 3, and the inclination of the buffer telescopic member can be manually adjusted. Finally, the inclination of the U-shaped seat 7 and the connecting plate 9 at the top of the buffer telescopic member is adjusted. After the inclination range of the connecting plate 9 is adjusted, it better corresponds to the square block 12, and is correspondingly installed on the square block 12 with screws;

[0049] Step 3: The designed spring 13 is used to ensure the buffering and anti-seismic effect. The designed buffer telescopic member plays a supporting and buffering role. The overall anti-seismic support and hanger has been fixed and installed. Through the design of the lifting component, the extension plate 16 and the support plate 17 are driven to rise, and the clamping cylinder 18 is driven to rise and fall, so that the height of the clamping cylinder 18 meets the height of the subsequent pipeline installation;

[0050] Step 4: Finally, in conjunction with the design of the rotating assembly, ensure that the clamping cylinder 18 can produce manually adjustable rotation, so that the orientation angle of the clamping cylinder 18 can be effectively adjusted, and the orientation position of the clamping cylinder 18 is more in line with the orientation of the subsequent pipeline installation.

[0051] During specific work, through the design of the horizontal moving part, the cylinder 3 connected to the horizontal moving part and the buffer telescopic part and the top circular plate 43 thereon are installed, and finally the top circular plate 43 is indirectly installed on the supporting platform 1, and the top circular plate 43 is installed on the top of the wall, and finally the connected supporting platform 1 is suspended.

[0052] Through the buffering telescopic parts that are set up for buffering connection, it has a certain buffering effect when the suspended support platform 1 is played, and the buffering telescopic parts are movable connections. The buffering telescopic parts cooperate with the movable shaft 5 and the movable block 6. The bottom of the buffering telescopic parts is movably connected to the cylinder 3. The inclination of the buffering telescopic parts can be manually adjusted, and finally the inclination of the U-shaped seat 7 and the connecting plate 9 on the top of the buffering telescopic parts can be adjusted. The total number of buffering telescopic parts is three, forming a triangle. The inclination range of the connecting plates 9 in three directions is adjusted to better correspond to the square block 12, and is correspondingly installed on the square block 12, and cooperates with screws. The designed spring 13 ensures the buffering and anti-seismic effect. The designed buffering telescopic parts play a supporting buffering and anti-seismic role.

[0053] The overall anti-seismic support and hanger bracket has been fixed and installed. Secondly, through the design of the lifting component, the extension plate 16 and the support plate 17 are driven to rise, and the clamping cylinder 18 is driven to rise and fall, so that the height of the clamping cylinder 18 meets the height of the subsequent pipeline installation. Secondly, with the design of the rotating component, it is ensured that the clamping cylinder 18 can produce manual adjustment rotation, so that the orientation angle of the clamping cylinder 18 can be effectively adjusted, and the orientation position of the clamping cylinder 18 is more in line with the orientation of the subsequent pipeline installation. The overall design is simple. The overall anti-seismic support and hanger bracket is installed first, and then the required pipelines are installed. It is avoided to install the pipeline first, and then lift the anti-seismic support and hanger bracket and the installed pipeline to the top of the wall for installation. The whole installation is simpler and its installation efficiency is improved.

[0054] The upper and lower horizontal plates 20 are better corresponding to the top and bottom surfaces of the supporting platform 1. The threaded column 21 passes through the through groove 22, and the bottom thread of the threaded column 21 is inserted into the nut 23. Tighten the nut 23 to complete the fixation of the horizontal moving part. The spring three 29 is wrapped as a whole in the interior of the auxiliary dustproof bellows 45, which plays a supporting and dustproof role, and avoids direct contact with the outside world. It has a good dustproof and rust-proof effect. Manually rotate the screw rod 30 to drive the threaded plate 31 to rise and fall vertically on the screw rod 30, and drive the arc-shaped shielding long plate 32 and the extension plate 16 to rise and fall. The extension plate 16 rises and falls in the lifting groove 33, and the arc-shaped shielding long plate 32 is a large-sized arc plate, which blocks the lifting groove 33, and the arc-shaped shielding long plate 32 is a large-sized arc plate. The long shielding plate 32 always shields the lifting groove 33 to prevent the lifting groove 33 from being exposed, causing the dustproof cylinder 15 to communicate with the outside world. The internal design components of the dustproof cylinder 15 provide good dust protection. The round rod 36 is threaded as a whole and is screwed in with the secondary nut. The secondary nut finally presses against the bottom surface of the support plate 17 to complete the fixation of the clamping cylinder 18 in the reverse direction after rotation. The threaded rod 38 is manually rotated, and the bottom of the threaded rod 38 produces idle rotation in the T-shaped rotating groove 41 inside the fixed platform 40. The threaded rod 38 is manually rotated to perform vertical lifting and lowering movements, which eventually drives the fixed platform 40 to descend, and finally drives the arc-shaped clamping plate 19 to descend, and the pipe inserted into the clamping cylinder 18 is clamped with the arc-shaped clamping plate 19.

[0055] Although this specification is described according to implementation modes, not every implementation mode includes only one independent technical solution. This description of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment may also be appropriately combined to form other implementation modes that can be understood by those skilled in the art.

Claims

1. A seismic support and hanger structure, characterized in that: The invention comprises a support platform (1) and two top circular plates (43), wherein the support platform (1) is provided with a horizontal slide groove (2), wherein two horizontal moving members are installed in the horizontal slide groove (2), wherein a cylinder (3) is slidably arranged at the top of the horizontal moving member, wherein three movable grooves (4) are provided at the edge of the top surface of the cylinder (3), wherein movable blocks (6) are rotatably installed in the movable grooves (4) through movable shafts (5), wherein the movable blocks (6) are provided with buffer telescopic members, wherein the top of the buffer telescopic members is provided with a cylinder (3) and the top of the cylinder (3) is provided with a cylinder (3). A U-shaped seat (7) is fixedly provided at one end, a connecting plate (9) is rotatably installed in the U-shaped seat (7) via a secondary movable shaft (8), three buffer grooves (10) are provided on the bottom end surface of the top circular plate (43), a round rod (11) is fixedly provided in the buffer groove (10), a square block (12) is slidably sleeved on the round rod (11), springs (13) are fixedly provided at both ends of the square block (12), and the springs (13) are sleeved on the round rod (11). The other end of the spring one (13) is fixed on the inner end wall of the buffer groove (10), and the two ends of the square block (12) are also fixedly provided with dustproof bellows (14), and the other end of the dustproof bellows (14) is fixed on the inner end wall of the buffer groove (10), and the spring one (13) is located inside the corresponding dustproof bellows (14), and the connecting plate (9) is fixedly connected with the corresponding square block (12) by screws, and a dustproof cylinder (14) is provided in the horizontal slide groove (2). 5), a lifting assembly is provided inside the dustproof cylinder (15), an extension plate (16) extending out of the dustproof cylinder (15) is provided on the lifting assembly, a support plate (17) is fixedly provided on the other end of the extension plate (16), a clamping cylinder (18) is installed on the support plate (17) in cooperation with the rotating assembly, a sliding arc-shaped clamping plate (19) is provided inside the clamping cylinder (18), and a rotating clamping member connected to the arc-shaped clamping plate (19) is provided on the clamping cylinder (18).

2. The seismic support and hanger structure according to claim 1, characterized in that: The horizontal moving member comprises two upper and lower horizontal plates (20), a plurality of threaded columns (21) are fixedly provided at the bottom end of the upper horizontal plate (20), a through slot (22) for the threaded columns (21) to pass through is provided on the lower horizontal plate (20), and nuts (23) are matched on the threaded columns (21).

3. The seismic support and hanger structure according to claim 2, characterized in that: The buffer telescopic member comprises an upper square sleeve (24) and a lower square sleeve (25), wherein the lower square sleeve (25) is inserted into the upper square sleeve (24), a plurality of springs (44) are fixedly arranged in the upper square sleeve (24), and the other end of the springs (44) is fixedly connected to the end of the lower square sleeve (25).

4. The seismic support and hanger structure according to claim 3, characterized in that: A slot mold plate (26) is fixedly provided at the top of the upper horizontal plate (20), the cylinder (3) is located inside the slot mold plate (26), both sides of the inner wall of the slot mold plate (26) are provided with traction grooves (27), a balancing block (28) extending into the traction groove (27) is fixedly provided on the outer wall of the cylinder (3), and a plurality of buffer parts are connected between the inner wall of the slot mold plate (26) and the outer wall of the cylinder (3).

5. The seismic support and hanger structure according to claim 4, characterized in that: The buffer component comprises a fixing plate fixed on the inner wall of the opening mold plate (26) and the outer wall of the cylinder (3), a spring three (29) and an auxiliary dustproof bellows (45) are fixed between the fixing plates, and the spring three (29) is located on the inner side of the auxiliary dustproof bellows (45).

6. The seismic support and hanger structure according to claim 5, characterized in that: The lifting assembly comprises a screw rod (30) rotatably arranged inside the dustproof cylinder (15); a threaded plate (31) is threadedly sleeved on the outer surface of the screw rod (30); an arc-shaped shielding long plate (32) is fixedly arranged on the threaded plate (31) in cooperation with a fixing rod; the arc-shaped shielding long plate (32) is fixedly connected to the extension plate (16); a lifting groove (33) is provided on the outer wall of the dustproof cylinder (15) for the extension plate (16) to pass through; a vertical traction rod (34) is fixedly arranged inside the dustproof cylinder (15); the threaded plate (31) is slidably sleeved on the vertical traction rod (34); the bottom end of the screw rod (30) passes through the dustproof cylinder (15) and is fixedly provided with a manual turntable (35).

7. The seismic support and hanger structure according to claim 6, characterized in that: The rotating assembly comprises a round rod (36) fixed to the bottom end of the clamping cylinder (18); a setting groove is provided in the support plate (17); a bearing (37) is provided in the setting groove; the round rod (36) passes through the setting groove and is connected to the bearing (37); an external thread is engraved on the outer surface of the round rod (36); and a secondary nut is provided on the threaded sleeve at the bottom of the round rod (36).

8. The seismic support and hanger structure according to claim 7, characterized in that: A secondary fixed platform (46) is fixedly provided on the outer surface of the dustproof cylinder (15); a secondary screw rod (47) is passed through the horizontal slide groove (2); the secondary fixed platform (46) is screwed onto the secondary screw rod (47); a dust cover (48) is provided between the secondary fixed platform (46) and the inner wall of the horizontal slide groove (2); two dust covers (48) are provided; one end of the secondary screw rod (47) is connected to a rotating disk; the other end of the secondary screw rod (47) is sleeved with a secondary bearing fixed to the inner wall of the horizontal slide groove (2), and the secondary bearing is located in the dust cover (48).

9. The seismic support and hanger structure according to claim 8, characterized in that: The rotating clamping member comprises a threaded rod (38) threadedly penetrating the interior of the clamping cylinder (18); a secondary manual turntable (39) is fixedly provided at the top of the threaded rod (38); the bottom of the threaded rod (38) is in the shape of a T-shaped round head; a fixing platform (40) is fixedly provided at the top of the arc-shaped clamping plate (19); a T-shaped rotating groove (41) is provided inside the fixing platform (40); the bottom of the threaded rod (38) is rotatably arranged inside the T-shaped rotating groove (41); and a plurality of telescopic rods (42) are fixedly provided between the arc-shaped clamping plate (19) and the top of the clamping cylinder (18).

10. A method for using a seismic support and hanger structure, characterized in that: The following steps are involved: Step 1: First, the cylinder (3) connected to the horizontal moving part and the buffer telescopic part and the top circular plate (43) thereon are installed, and finally the top circular plate (43) is indirectly installed on the supporting platform (1), and the top circular plate (43) is installed on the top of the wall, and finally the connected supporting platform (1) is suspended. Step 2: Then, a buffer connection is performed through the buffer telescopic member, which has a certain buffering effect when the support platform (1) is suspended, and the buffer telescopic member is a movable connection. The buffer telescopic member cooperates with the movable shaft (5) and the movable block (6). The bottom of the buffer telescopic member is movably connected to the cylinder (3), and the inclination of the buffer telescopic member can be manually adjusted. Finally, the inclination of the U-shaped seat (7) and the connecting plate (9) at the top of the buffer telescopic member is adjusted. After the inclination range of the connecting plate (9) is adjusted, it better corresponds to the square block (12), and is correspondingly installed on the square block (12) with screws; Step 3: The designed spring 1 (13) is used to ensure the buffering and anti-seismic effect. The designed buffer telescopic member plays a supporting and buffering and anti-seismic role. The overall anti-seismic support and hanger has been fixed and installed. Through the design of the lifting component, the extension plate (16) and the support plate (17) are driven to rise, and the clamping cylinder (18) is driven to rise and fall, so that the height of the clamping cylinder (18) meets the height of the subsequent pipeline installation; Step 4: Finally, in conjunction with the design of the rotating assembly, ensure that the clamping cylinder (18) can produce manually adjustable rotation, so that the orientation angle of the clamping cylinder (18) can be effectively adjusted, and the orientation position of the clamping cylinder (18) is more consistent with the orientation of the subsequent pipeline installation.

Citation Information

Patent Citations

  • Building electromechanical anti-seismic support hanger

    CN212584432U

  • Anti-seismic support and hanger clamping mechanism

    CN218670924U

  • Apparatus for construcing quake-proof a ceiling panel

    KR101578438B1

  • Display device and method of manufacturing the same

    KR102758895B1