Anchoring part anti-pulling experiment clamp device for external wall thermal insulation integrated system
By designing a combination of a layered splicing traction handle mechanism, a side auxiliary clamping mechanism, and a bottom protective buffer mechanism, the convenience and safety issues of the anchor pull-out test fixture device during the testing process are solved, achieving fast and reliable connection and convenient handling.
Patent Information
- Application Number
- CN202423150640.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The existing anchor pull-out test fixture lacks an auxiliary limiting structure, which prevents the anchor from being quickly snapped into place during the test, reducing its ease of use.
An anchor pull-out test fixture device was designed, which includes a layered splicing traction handle mechanism, a side auxiliary clamping mechanism, and a bottom protective buffer mechanism. The device achieves a fast and reliable connection through the combination of a supporting triangular plate, a supporting cylinder, a splicing card box, a clamping inner groove, a reinforcing arc block, a clamping slider, a connecting top ring, and a traction bolt. The device's convenience and safety are improved by using an auxiliary handle and a protective rubber sleeve.
The convenience and safety of the anchor pull-out test fixture device have been improved, ensuring rapid connection during the testing process and convenient handling of the device, while preventing collision damage.
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Figure CN223808243U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to experimental apparatus technical field, concretely is a kind of anchorage device for external wall thermal insulation integrated system anchorage resistance experiment clamp device. BACKGROUND
[0002] After construction, anchorage (including anchor rod and anchor cable) has certain concealment, and its working and stress state cannot be directly observed, and it is necessary to detect and evaluate anchorage resistance, and as the most direct and effective method for detecting anchorage resistance, anchorage resistance detection test (acceptance test) needs to use corresponding clamp device in the process of using detection device to pull anchorage.
[0003] However, the anchorage resistance experiment clamp device lacks corresponding auxiliary limiting structure during use, which prevents the anchorage from being quickly clamped with the detection device during detection, thereby reducing the convenience of using the anchorage resistance experiment clamp device. UTILITY MODEL CONTENT
[0004] The utility model provides a kind of anchorage device for external wall thermal insulation integrated system anchorage resistance experiment clamp device, can effectively solve the problem of anchorage resistance experiment clamp device in the above background technology, which lacks corresponding auxiliary limiting structure during use, prevents the anchorage from being quickly clamped with the detection device during detection, thereby reducing the convenience of using the anchorage resistance experiment clamp device.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: a kind of anchorage device for external wall thermal insulation integrated system anchorage resistance experiment clamp device, including hollow hydraulic press main body, the hollow hydraulic press main body bottom is provided with layered splicing traction pull handle mechanism;
[0006] The layered splicing traction pull handle mechanism includes support triangular plate, support cylinder, splicing card box, clamping inner groove, reinforcing arc block, clamping sliding block, connecting top ring and traction bolt;
[0007] The bottom surface of the hollow hydraulic press main body is fixedly connected with the support triangular plate, the bottom surface of the support triangular plate is embedded with support cylinders at the triangular position, the bottom surface of the support triangular plate is provided with a splicing card box at the position corresponding to the side surface of the support cylinder, a clamping inner groove is formed in the middle of the bottom end of the splicing card box, a reinforcing arc block is clamped at the position corresponding to the end of the clamping inner groove on the bottom surface of the splicing card box, a clamping sliding block is slidably clamped at one end of the clamping inner groove, a connecting top ring is fixedly connected to the middle of the top end of the splicing card box, and a traction bolt is threadedly inserted and installed in the connecting top ring and the hollow hydraulic press main body.
[0008] Preferably, the plurality of support cylinder bottom surfaces are parallel to each other, the top surface of the reinforcing arc-shaped block is flush with the inner bottom surface of the splicing card box, and the inner walls of the two side sliding grooves of the clamping sliding block are tightly and slidably fitted with the inner walls of the clamping inner grooves.
[0009] Preferably, the support triangular plate is provided with a side auxiliary clamping mechanism in the middle of one side thereof.
[0010] The side auxiliary clamping mechanism comprises a mounting top plate, a connecting side piece, an auxiliary pull handle, a placed rubber block and a buckle circular groove.
[0011] The mounting top plate is clamped on one side of the top surface of the support triangular plate, the connecting side piece is fixedly connected to the middle of one side of the mounting top plate, the auxiliary pull handle is fixedly connected to the middle of one side of the connecting side piece, the placed rubber block is fixedly connected to the bottom end of the connecting side piece corresponding to the position of the bottom surface of the support triangular plate, and the buckle circular groove is formed in the bottom surface of the placed rubber block.
[0012] Preferably, the mounting top plate is tightly fitted between the bottom surface of the support triangular plate, the top surface of the placed rubber block is tightly fitted between the bottom surface of the support triangular plate, and the inner diameter of the buckle circular groove is smaller than the outer diameter of the support cylinder.
[0013] Preferably, the support cylinder is provided with a bottom protection and buffering mechanism.
[0014] The bottom protection and buffering mechanism comprises a protection rubber sleeve, an anti-skid pad, a connecting circular piece and a supporting rubber sheet.
[0015] The protection rubber sleeve is tightly sleeved on the bottom of the outer side of the support cylinder, the anti-skid pad is embedded and mounted in the middle of the bottom surface of the protection rubber sleeve, the connecting circular piece is adhered to the bottom surface of the splicing card box at four corners, and the supporting rubber sheet is adhered to the bottom surface of the connecting circular piece.
[0016] Preferably, the bottom surface of the anti-skid pad is flush with the bottom surface of the supporting rubber sheet, and the supporting rubber sheet can be elastically deformed.
[0017] Compared with the prior art, the utility model has the advantages that the structure is scientific and reasonable, and the use is safe and convenient.
[0018] 1. The layered splicing traction handle mechanism is provided, the support cylinder can uniformly support the triangular part at the bottom surface of the support triangular plate, the splicing card box is clamped to the outer side of the end of the anchor through the clamping inner groove, the clamping sliding block is clamped to one side of the anchor through the clamping inner groove, the connecting top ring is connected with the internal structure of the hollow hydraulic machine body through the traction bolt, the splicing card box is pulled through the hollow hydraulic machine body cooperating with the connecting top ring and the traction bolt, and then the anchor is pulled through the splicing card box, the anchors are connected more quickly and reliably through the cooperation between the clamping structures, and the convenience of use of the anchor pull-out experiment clamp device is effectively improved.
[0019] 2. The side auxiliary clamping mechanism is provided, the placing rubber block is clamped to the side of the support triangular plate through the cooperation between the installed top plate and the connecting side piece, the support triangular plate is assisted to be pulled up through the auxiliary handle, the support triangular plate is more convenient to carry, the support cylinder is clamped to the bottom of the placing rubber block through the buckle circular groove, the support triangular plate and the support cylinder are more convenient to store, and the convenience of carrying and carrying of the experimental clamp device is effectively improved.
[0020] 3. The bottom protection and buffering mechanism is provided, the anti-skid gasket is sleeved to the bottom of the support cylinder through the protection rubber sleeve, so that the bottom end of the support cylinder is protected, the support rubber sheet is installed to the bottom of the splicing card box through the connecting circular piece, and then the bottom surface of the splicing card box is protected through the support rubber sheet, so that damage to surrounding objects caused by collision of the clamp device during placement and carrying is effectively prevented, and the use safety of the clamp device is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0021] The accompanying drawings provide a further understanding of the present application and constitute a part of the specification, which together with the embodiments of the present application serve to explain the present application, and do not constitute a limitation on the present application.
[0022] In the drawings:
[0023] Figure 1 is a structural schematic view of the present application;
[0024] Figure 2 is a structural schematic view of the layered splicing traction handle mechanism of the present application;
[0025] Figure 3 is a structural schematic view of the side auxiliary clamping mechanism of the present application;
[0026] Figure 4 is a structural schematic view of the bottom protection and buffering mechanism of the present application;
[0027] In the drawings, 1 is a hollow hydraulic machine body;
[0028] 2. Layered splicing traction handle mechanism; 201. Supporting triangular plate; 202. Supporting cylinder; 203. Splicing card box; 204. Snap-fit inner groove; 205. Reinforcing arc block; 206. Snap-fit slider; 207. Connecting top ring; 208. Traction bolt;
[0029] 3. Side auxiliary clamping mechanism; 301. Mounting top plate; 302. Connecting side piece; 303. Auxiliary pull handle; 304. Placing rubber block; 305. Buckle groove;
[0030] 4. Bottom protective buffer mechanism; 401. Protective rubber sleeve; 402. Anti-slip pad; 403. Connecting disc; 404. Supporting sheet. Detailed Implementation
[0031] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.
[0032] Example: Figures 1-4 As shown, this utility model provides a technical solution, a clamping device for pull-out test of anchors in an integrated external wall insulation system, including a hollow hydraulic press body 1, and a layered splicing traction handle mechanism 2 is provided at the bottom of the hollow hydraulic press body 1.
[0033] The layered splicing traction handle mechanism 2 includes a supporting triangular plate 201, a supporting cylinder 202, a splicing card box 203, a snap-fit inner groove 204, a reinforcing arc block 205, a snap-fit slider 206, a connecting top ring 207, and a traction bolt 208.
[0034] The hollow hydraulic press body 1 is fixedly connected with a support triangular plate 201 on the bottom surface, support cylinders 202 are embedded and installed at the triangular positions on the bottom surface of the support triangular plate 201, splice clamping boxes 203 are arranged at the positions of the side surfaces of the support cylinders 202 on the bottom surface of the support triangular plate 201, clamping inner grooves 204 are formed in the middle of the inner bottom ends of the splice clamping boxes 203, reinforcing arc-shaped blocks 205 are clamped at the end positions of the clamping inner grooves 204 on the inner bottom surfaces of the splice clamping boxes 203, clamping sliding blocks 206 are slidingly clamped at one end inside the clamping inner grooves 204, connecting top rings 207 are fixedly connected with the top ends of the splice clamping boxes 203, traction bolts 208 are installed in the hollow hydraulic press body 1 through threads penetrating the connecting top rings 207, the bottom surfaces of the plurality of support cylinders 202 are parallel to each other, the top surfaces of the reinforcing arc-shaped blocks 205 are flush with the inner bottom surfaces of the splice clamping boxes 203, the sliding grooves on the two sides of the clamping sliding blocks 206 are tightly slidingly attached to the inner walls of the clamping inner grooves 204, the bottom triangular positions of the support triangular plate 201 are uniformly supported by the support cylinders 202, the splice clamping boxes 203 are clamped to the outer sides of the end portions of the anchoring pieces through the clamping inner grooves 204, the clamping sliding blocks 206 are clamped to one side of the anchoring pieces through the clamping inner grooves 204, the connecting top rings 207 and the internal structures of the hollow hydraulic press body 1 are connected with each other through the traction bolts 208, the splice clamping boxes 203 are pulled by the hollow hydraulic press body 1 in cooperation with the connecting top rings 207 and the traction bolts 208, and then the anchoring pieces are pulled for testing through the splice clamping boxes 203, the anchoring piece monitoring devices are connected more quickly and reliably through the mutual cooperation of the clamping structures, and the convenience of use of the anchoring piece pull-out experiment clamp device is effectively improved.
[0035] The support triangular plate 201 is provided with a side surface auxiliary clamping mechanism 3 on one side thereof;
[0036] The side surface auxiliary clamping mechanism 3 comprises an installation top plate 301, a connecting side piece 302, an auxiliary pull handle 303, a placed rubber block 304 and a buckle circular groove 305.
[0037] The middle part of one side of the top surface of the supporting triangular plate 201 is clamped with a mounting top plate 301, the middle part of one side of the mounting top plate 301 is fixedly connected with a connecting side sheet 302, the middle part of one side of the connecting side sheet 302 is fixedly connected with an auxiliary pull handle 303, the bottom end of the connecting side sheet 302 is fixedly connected with a rubber block 304 at the position corresponding to the bottom surface of the supporting triangular plate 201, a buckle circular groove 305 is formed in the bottom surface of the rubber block 304 at equal intervals, the bottom surface of the mounting top plate 301 is closely attached to the top surface of the supporting triangular plate 201, the top surface of the rubber block 304 is closely attached to the bottom surface of the supporting triangular plate 201, the inner diameter of the buckle circular groove 305 is smaller than the outer diameter of the supporting cylinder 202, the rubber block 304 is clamped to the side surface of the supporting triangular plate 201 through the cooperation between the mounting top plate 301 and the connecting side sheet 302, the supporting triangular plate 201 is assisted to be pulled through the auxiliary pull handle 303, the supporting triangular plate 201 is more convenient to carry, the supporting cylinder 202 is clamped to the bottom of the rubber block 304 through the buckle circular groove 305, the supporting triangular plate 201 and the supporting cylinder 202 are more convenient to be stored, and the convenience of carrying and carrying of the experimental clamp device is effectively improved.
[0038] The bottom end of the supporting cylinder 202 is provided with a bottom protection buffering mechanism 4.
[0039] The bottom protection buffering mechanism 4 comprises a protection rubber sleeve 401, an anti-skid pad 402, a connecting circular sheet 403 and a supporting rubber sheet 404.
[0040] The bottom of the outer side of the supporting cylinder 202 is closely sleeved with the protection rubber sleeve 401, the middle part of the bottom surface of the protection rubber sleeve 401 is embeddedly mounted with the anti-skid pad 402, the connecting circular sheet 403 is adhered at the bottom surface of the splicing clamping box 203 at four corners, the supporting rubber sheet 404 is adhered to the bottom surface of the connecting circular sheet 403, the bottom surface of the anti-skid pad 402 is flush with the bottom surface of the supporting rubber sheet 404, the supporting rubber sheet 404 can be elastically deformed, the anti-skid pad 402 is sleeved to the bottom of the supporting cylinder 202 through the protection rubber sleeve 401, so that the bottom end of the supporting cylinder 202 is protected, the supporting rubber sheet 404 is mounted to the bottom of the splicing clamping box 203 through the connecting circular sheet 403, so that the bottom surface of the splicing clamping box 203 is protected through the supporting rubber sheet 404, and damage of surrounding objects caused by collision of the clamp device during placement and carrying is effectively prevented, and the use safety of the clamp device is effectively improved.
[0041] The working principle and use process of the utility model: in the actual application process, in the process of needing to detect the anchorage, the bottom surface of the supporting triangular plate 201 is uniformly supported through the supporting cylinder 202, then the splicing clamping box 203 is clamped to the outer side of the end of the anchorage through the clamping inner groove 204, and the clamping sliding block 206 is clamped to one side of the anchorage through the clamping inner groove 204, so that the bottom surface of the anchorage is closely attached to the top surface of the reinforcing arc-shaped block 205 and the clamping sliding block 206.
[0042] Then the connection top ring 207 is connected with the internal structure of the hollow hydraulic press body 1 through the traction bolt 208, and finally the splicing card box 203 is pulled through the cooperation of the hollow hydraulic press body 1, the connection top ring 207 and the traction bolt 208, and then the anchor is pulled through the splicing card box 203. The mutual cooperation between the clamping structures makes the connection between the anchor monitoring devices more rapid and reliable, effectively improving the convenience of using the anchor pull-out test fixture device;
[0043] When the support cylinder 202 is disassembled and stored after the experiment is completed, the placing rubber block 304 is clamped to the side of the support triangular plate 201 through the cooperation between the installed top plate 301 and the connected side piece 302, and then the support triangular plate 201 is assisted to pull through the auxiliary pull handle 303, so that the support triangular plate 201 is more convenient to carry, and then the support cylinder 202 is clamped to the bottom of the placing rubber block 304 through the buckle circular groove 305, so that the support triangular plate 201 and the support cylinder 202 are more convenient to store, and the convenience of carrying the experimental fixture device is effectively improved.
[0044] When the bottom of the support cylinder 202 and the splicing card box 203 needs to be protected, the anti-skid gasket 402 is sleeved to the bottom of the support cylinder 202 through the protection rubber sleeve 401, so as to realize the protection of the bottom end of the support cylinder 202, and then the support rubber sheet 404 is installed to the bottom of the splicing card box 203 through the connected circular sheet 403, so as to protect the bottom surface of the splicing card box 203, thereby effectively preventing the fixture device from colliding with the surrounding objects during placement and carrying, and effectively improving the use safety of the fixture device.
[0045] Finally, it should be noted that: the above is only a preferred example of the present application and does not limit the present application. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions for part of the technical features. Any modification, equivalent substitution, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A kind of anchor anti-pulling experimental clamp device for external wall insulation integrated system, including hollow hydraulic press main body (1), it is characterized by: The hollow hydraulic press body (1) is provided with a layered splicing traction handle mechanism (2) at the bottom; The layered splicing traction handle mechanism (2) comprises a supporting triangular plate (201), a supporting cylinder (202), a splicing clamping box (203), a clamping inner groove (204), a reinforcing arc block (205), a clamping sliding block (206), a connecting top ring (207) and a traction bolt (208); The supporting triangular plate (201) is fixedly connected to the bottom surface of the hollow hydraulic press body (1), supporting cylinders (202) are embedded and installed at the bottom surface triangular portions of the supporting triangular plate (201), splicing clamping boxes (203) are arranged at the positions of the side surfaces of the supporting cylinders (202) on the bottom surface of the supporting triangular plate (201), clamping inner grooves (204) are formed in the middle of the inner bottom ends of the splicing clamping boxes (203), reinforcing arc blocks (205) are clamped at the end portions of the clamping inner grooves (204) on the inner bottom surfaces of the splicing clamping boxes (203), clamping sliding blocks (206) are slidably clamped at one end inside the clamping inner grooves (204), connecting top rings (207) are fixedly connected to the middle of the top ends of the splicing clamping boxes (203), and traction bolts (208) are threadedly installed inside the hollow hydraulic press body (1) and the connecting top ring (207).
2. The anchorage anti-pulling experimental fixture device for the external wall insulation integrated system according to claim 1, characterized in that, The bottom surfaces of the plurality of supporting cylinders (202) are parallel to each other, the top surface of the reinforcing arc block (205) is flush with the inner bottom surface of the splicing clamping box (203), and the inner walls of the sliding grooves on the two sides of the clamping sliding block (206) are in close sliding fit with the inner walls of the clamping inner groove (204).
3. The anchorage anti-pulling experimental fixture device for the external wall thermal insulation integrated system according to claim 1, characterized in that, The supporting triangular plate (201) is provided with a side surface auxiliary clamping mechanism (3) on one side in the middle; The side surface auxiliary clamping mechanism (3) comprises an installation top plate (301), a connecting side piece (302), an auxiliary handle (303), a placed rubber block (304) and a buckling circular groove (305); The installation top plate (301) is clamped on one side in the middle of the top surface of the supporting triangular plate (201), the connecting side piece (302) is fixedly connected to one side in the middle of the installation top plate (301), the auxiliary handle (303) is fixedly connected to one side in the middle of the connecting side piece (302), the placed rubber block (304) is fixedly connected to the bottom end of the connecting side piece (302) at a position corresponding to the bottom surface of the supporting triangular plate (201), and the buckling circular groove (305) is formed in the bottom surface of the placed rubber block (304) at equal intervals.
4. The anchorage anti-pulling experimental fixture device for the external wall thermal insulation integrated system according to claim 3, characterized in that, The installation top plate (301) is in close fit with the top surface of the supporting triangular plate (201), the top surface of the placed rubber block (304) is in close fit with the bottom surface of the supporting triangular plate (201), and the inner diameter of the buckling circular groove (305) is smaller than the outer diameter of the supporting cylinder (202).
5. The anchorage anti-pulling experimental fixture device for the external wall thermal insulation integrated system according to claim 1, characterized in that, The supporting cylinder (202) is provided with a bottom protection buffering mechanism (4) at the bottom end; The bottom protection buffering mechanism (4) comprises a protection rubber sleeve (401), an anti-skid gasket (402), a connecting circular piece (403) and a supporting rubber piece (404). The support cylinder (202) is tightly sleeved with a protective rubber sleeve (401) outside the bottom, a non-slip pad (402) is embedded and installed in the middle of the bottom surface of the protective rubber sleeve (401), and a connecting disc (403) is adhered to each corner of the bottom surface of the splicing card box (203), and a support rubber sheet (404) is adhered to the middle of the bottom surface of the connecting disc (403).
6. The anchorage anti-pulling experimental fixture device for the external wall thermal insulation integrated system according to claim 5, characterized in that, The bottom surface of the non-slip pad (402) and the bottom surface of the support rubber sheet (404) are flush with each other, and the support rubber sheet (404) can be elastically deformed.