CN223061663U - Inclined strut bearing capacity detection test device - Google Patents

Inclined strut bearing capacity detection test device Download PDF

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Publication number
CN223061663U
CN223061663U CN202422240001.5U CN202422240001U CN223061663U CN 223061663 U CN223061663 U CN 223061663U CN 202422240001 U CN202422240001 U CN 202422240001U CN 223061663 U CN223061663 U CN 223061663U
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China
Prior art keywords
bearing capacity
base column
diagonal brace
test device
outer box
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CN202422240001.5U
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Chinese (zh)
Inventor
廖翔
李晓柱
汪彪
夏敬波
张杰青
谢昭宇
熊宗海
顾东明
张峰
李泽卫
吴彪
刘堰陵
莫云
马真文
常晓菲
何城博
陈宇
谢目沙
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Hubei Daoze Geotechnical Engineering Co ltd
China University of Geosciences Wuhan
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Hubei Daoze Geotechnical Engineering Co ltd
China University of Geosciences Wuhan
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Priority to CN202422240001.5U priority Critical patent/CN223061663U/en
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Abstract

本实用新型涉及斜撑承载力检测设备技术领域,公开了一种斜撑承载力检测试验装置,包括基柱、位于基柱一侧底部的内箱以及位于基柱一侧顶部的支撑杆,所述内箱包括:设置在基柱底部下方的地基,且地基的内部设置有斜撑主体;设置在内箱一端的固定板,且内箱的内部设置有液压千斤顶;设置在液压千斤顶伸缩端的外箱。本实用新型通过伸缩槽可对调节杆与支撑杆之间进行调节,并通过定位栓可对调节杆与支撑杆之间进行限位,通过卡槽可将外箱与斜撑主体的一端相互卡合,通过液压千斤顶和外箱对斜撑主体进行施压,并通过位移传感器可检测斜撑主体是否移动,从而检测出斜撑的最大承载力,对斜撑承载力的检测试验精度更高。

The utility model relates to the technical field of diagonal brace bearing capacity detection equipment, and discloses a diagonal brace bearing capacity detection test device, including a base column, an inner box located at the bottom of one side of the base column, and a support rod located at the top of one side of the base column, the inner box including: a foundation arranged below the bottom of the base column, and a diagonal brace body arranged inside the foundation; a fixed plate arranged at one end of the inner box, and a hydraulic jack arranged inside the inner box; and an outer box arranged at the telescopic end of the hydraulic jack. The utility model can adjust the adjustment rod and the support rod through a telescopic groove, and limit the adjustment rod and the support rod through a positioning bolt, and can engage the outer box with one end of the diagonal brace body through a card slot, and can apply pressure to the diagonal brace body through the hydraulic jack and the outer box, and can detect whether the diagonal brace body moves through a displacement sensor, thereby detecting the maximum bearing capacity of the diagonal brace, and the detection test accuracy of the diagonal brace bearing capacity is higher.

Description

Inclined strut bearing capacity detection test device
Technical Field
The utility model relates to the technical field of diagonal brace bearing capacity detection equipment, in particular to a diagonal brace bearing capacity detection test device.
Background
Along with the rapid development of the economy in China, the quality of engineering construction also becomes one of the hot spots of concern, a large number of diagonal bracing structures can be used in the foundation pit engineering and geotechnical engineering construction processes, and the bearing capacity of the diagonal bracing needs to be detected through a bearing capacity test device in the construction process.
At present, most of the bearing capacity of the diagonal brace is directly tested through weight pressing, and the bearing capacity of the diagonal brace cannot be accurately tested, so that the effect of the test on the diagonal brace is poor, and the test on the diagonal brace is inconvenient.
Disclosure of utility model
The utility model aims to provide a diagonal brace bearing capacity detection test device for solving the problems in the background technology.
In order to achieve the purpose, the technical scheme is that the diagonal bracing bearing capacity detection test device comprises a base column and an inner box, wherein a foundation is arranged below the base column, the base column penetrates through and is installed inside the foundation, a diagonal bracing main body is arranged on one side of the foundation, which corresponds to the base column horizontally, a fixing plate is fixedly connected to the top end of the inner box, a hydraulic jack is arranged inside the inner box, an outer box is arranged at the telescopic end of the hydraulic jack, and the outer box is sleeved on the outer side of the inner box.
Preferably, the support rod is arranged on the base column, the adjusting rod is arranged on the outer side of the support rod, the telescopic groove is formed in the adjusting rod, a positioning bolt penetrating through the telescopic groove is arranged at one end of the top of the adjusting rod, the fixing block is arranged at the top of the outer box, and the displacement sensor is arranged on one side of the fixing block.
Preferably, one end of the fixing plate is connected with one end of the inner box in a welded mode, the fixing plate is detachably connected with the base column through a fixing bolt, and the hydraulic jack is detachably connected with the inner box through the fixing bolt.
Preferably, the fixed plate is detachably connected with the base column through a fixed bolt, the hydraulic jack is detachably connected with the inner box through a fixed bolt, the inner ends of the outer box and the inner box are provided with stepped annular fixed grooves, the two sets of stepped annular fixed grooves are corresponding, and the thicknesses of the base and the top plate of the inner box and the outer box are 10cm.
Preferably, the one end of outer incasement portion is provided with the draw-in groove, and the size of draw-in groove and the terminal surface phase-match of bracing main part, the bracing main part passes through the draw-in groove and can dismantle with the outer case and be connected, the other end of outer incasement portion is provided with the movable groove, and the inner wall of movable groove is equipped with the gyro wheel.
Preferably, the bottom inside the base column is provided with a hydraulic system, and the top inside the base column is provided with a control module.
Preferably, one side of the supporting block is welded with one side of the base column, and the bottom end of the supporting block is welded with the top end of the mounting plate.
Preferably, one end of the supporting rod is connected with the base column in a welded mode, the adjusting rod is movably connected with the supporting rod through a telescopic groove, and a threaded hole matched with the positioning bolt is formed in the top of the adjusting rod.
Preferably, the displacement sensor is detachably connected with the fixed block through a fixed bolt, one end of the displacement sensor is provided with a detection rod, and one end of the detection rod is in welded connection with the adjusting rod.
Compared with the prior art, the utility model has the beneficial effects that:
According to the utility model, the adjusting rod and the supporting rod can be adjusted through the telescopic groove, the adjusting rod and the supporting rod can be limited through the positioning bolt, the outer box and one end of the diagonal brace main body can be mutually clamped through the clamping groove, the diagonal brace main body is pressed through the hydraulic jack and the outer box, whether the diagonal brace main body moves or not can be detected through the displacement sensor, so that the maximum bearing capacity of the diagonal brace is detected, and the detection test precision of the bearing capacity of the diagonal brace is higher.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required for the description of the embodiments will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present application, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art. Like elements or portions are generally identified by like reference numerals throughout the several figures. In the drawings, elements or portions thereof are not necessarily drawn to scale.
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a cross-sectional view of the present utility model.
Fig. 3 is a bottom view of the present utility model.
The device comprises a base column 1, a mounting plate 101, a supporting block 102, an inner box 201, a fixing plate 202, a hydraulic jack 203, an outer box 204, an inclined strut main body 205, a foundation 3, a supporting rod 301, an adjusting rod 302, a telescopic groove 303, a positioning bolt 304, a fixing block 305 and a displacement sensor.
Detailed Description
The utility model is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the utility model easy to understand.
In the description of the present utility model, it should be noted that the directions or positional relationships indicated by the terms "upper", "lower", "inner", "outer", "front", "rear", "both ends", "one end", "the other end", etc. are based on the directions or positional relationships shown in the drawings, are merely for convenience of describing the present utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific direction, be configured and operated in the specific direction, and thus should not be construed as limiting the present utility model. Furthermore, the terms "first," "second," and the like, are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present utility model, unless explicitly stated or limited otherwise, the terms "mounted," "configured to," "connected," and the like are to be construed broadly as, for example, "connected" may be fixedly connected, may be detachably connected, or integrally connected, may be mechanically connected or electrically connected, may be directly connected or indirectly connected through an intermediate medium, and may be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, an embodiment of a diagonal brace bearing capacity detection test device provided by the utility model comprises a base column 1, an inner box 2 positioned at the bottom of one side of the base column 1 and a supporting rod 3 positioned at the top of one side of the base column 1, wherein the inner box 2 comprises a foundation 205 arranged below the bottom of the base column 1, a diagonal brace main body 204 is arranged in the foundation 205, the diagonal brace main body 204 is embedded in the foundation 205, a fixing plate 201 is arranged at one end of the inner box 2, a hydraulic jack 202 is arranged in the inner box 2, an outer box 203 is arranged at the telescopic end of the hydraulic jack 202, the hydraulic jack 202 is conveniently connected with one end of the diagonal brace main body 204 through the outer box 203, so that a pressure detection test is conveniently carried out on the diagonal brace main body 204, and the outer box 203 can be driven to move through the hydraulic jack 202, so that the pressure detection is carried out on the diagonal brace main body 204.
Referring to fig. 1 and 2, a mounting plate 101 is arranged at the bottom of a base column 1, supporting blocks 102 are arranged at two ends of one side of the top of the mounting plate 101, so that the base column 1 can be supported by the supporting blocks 102, the base column 1 can be used more stably, an adjusting rod 301 is arranged at the outer side of a supporting rod 3, a telescopic groove 302 is arranged in the adjusting rod 301, the adjusting rod 301 and the supporting rod 3 can be adjusted by the telescopic groove 302, a positioning bolt 303 penetrating into the telescopic groove 302 is arranged at one end of the top of the adjusting rod 301, the adjusting rod 301 and the supporting rod 3 can be limited by the positioning bolt 303, the initial use position of a displacement sensor 305 can be conveniently adjusted, a fixed block 304 is arranged at the top of an outer box 203, one side of the fixed block 304 is provided with the displacement sensor 305, whether a diagonal brace main body 204 moves or not can be detected by the displacement sensor 305, namely, the thicknesses of a base and a top plate of the inner box 2 and the outer box 203 are 10cm, the thickness is determined by a plurality of forming tests, and the mounting and static load tests are not deformed.
Referring to fig. 2 and 3, one end of a fixing plate 201 is welded with one end of an inner box 2, the fixing plate 201 is detachably connected with a base column 1 through a fixing bolt, the fixing plate 201 is fixedly installed with the base column 1 through the fixing bolt, a hydraulic jack 202 is detachably connected with the inner box 2 through the fixing bolt, the hydraulic jack 202 is installed inside the inner box 2, one end inside an outer box 203 is provided with a clamping groove, a diagonal brace main body 204 is detachably connected with the outer box 203 through the clamping groove, the outer box 203 is clamped with one end of the diagonal brace main body 204 through the clamping groove, the other end of the outer box 203 is provided with a connecting block, a telescopic end of the hydraulic jack 202 is connected with the outer box 203 through the connecting block, the outer box 203 can be driven to be regulated through the hydraulic jack 202, the bottom end inside the base column 1 is provided with a hydraulic system, the hydraulic jack can be pressurized and depressurized, the top inside the base column 1 is provided with a control module, the test device can be controlled and used, one side of the supporting block 102 is welded with one side of the base column 1, the bottom end of the supporting block 102 is welded with the top of the mounting plate 101, the supporting effect is achieved, the base column 1 can be supported through the supporting block 102, the detection effect of the test device is better, one end of the supporting rod 3 is welded with the base column 1, the adjusting rod 301 is movably connected with the supporting rod 3 through the telescopic groove 302, the telescopic adjustment can be carried out between the adjusting rod 301 and the supporting rod 3 through the telescopic groove 302, the top of the adjusting rod 301 is provided with a threaded hole matched with the positioning bolt 303, the limiting and adjusting effect is achieved, the adjustment can be carried out between the positioning bolt 303 and the adjusting rod 301, the limiting between the adjusting rod 301 and the supporting rod 3 can be carried out, the initial use position of the displacement sensor 305 can be limited, the displacement sensor 305 is detachably connected with the fixed block 304 through the fixing bolt, so that the displacement sensor 305 is mounted on one side of the fixed block 304, one end of the displacement sensor 305 is provided with a detection rod, one end of the detection rod is connected with the adjusting rod 301 in a welding manner, the displacement sensor 305 can be connected with one end of the adjusting rod 301, whether the inclined strut main body 205 moves or not can be detected conveniently, and therefore the maximum bearing capacity of the inclined strut can be detected accurately.
Before the test device is used, the test device is arranged at a proper position on a foundation 205 so as to conveniently detect the bearing capacity of a diagonal brace main body 204, when the test device is used, a power supply is connected, the adjustment rod 301 and the support rod 3 can be adjusted through a telescopic groove 302, one end of the outer box 3 and one end of the diagonal brace main body 204 can be mutually clamped through a clamping groove, a spanner is used for manually rotating a positioning bolt 303, the adjustment rod 301 and the positioning bolt 303 can be adjusted through threaded holes, the positioning bolt 303 is tightly contacted with the outer side of the support rod 3, limit between the adjustment rod 301 and the support rod 3 is realized, the test device and the diagonal brace are assembled, the hydraulic jack 202 is pressurized through a hydraulic system, the diagonal brace main body 204 is pushed, and the applied thrust data is recorded, if the diagonal brace main body 204 moves, the movement of the diagonal brace main body 204 can be detected, namely, the pressurization is stopped, the maximum bearing capacity of the diagonal brace is detected, and the test device is more accurately detected, and the test device is convenient for the diagonal brace detection test.
The foregoing is merely exemplary embodiments of the present utility model, and specific structures and features that are well known in the art are not described in detail herein. It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (10)

1. The diagonal bracing bearing capacity detection test device is characterized by comprising a base column (1) and an inner box (2), wherein a foundation (205) is arranged below the base column (1), the base column (1) is installed inside the foundation (205) in a penetrating mode, a diagonal bracing main body (204) is arranged on one side, corresponding to the base column (1), of the foundation (205) horizontally, a fixing plate (201) is fixedly connected to the top end of the inner box (2), a hydraulic jack (202) is arranged inside the inner box (2), an outer box (203) is arranged at the telescopic end of the hydraulic jack (202), and the outer box (203) is sleeved on the outer side of the inner box (2).
2. The diagonal bracing bearing capacity detection test device according to claim 1, wherein the bottom of the base column (1) is provided with a mounting plate (101), and two ends of one side of the top of the mounting plate (101) are provided with supporting blocks (102).
3. The diagonal bracing bearing capacity detection test device according to claim 1, wherein the support rod (3) is arranged on the base column (1), an adjusting rod (301) is arranged on the outer side of the support rod (3), a telescopic groove (302) is formed in the adjusting rod (301), a positioning bolt (303) penetrating into the telescopic groove (302) is arranged at one end of the top of the adjusting rod (301), a fixing block (304) is arranged at the top of the outer box (203), and a displacement sensor (305) is arranged on one side of the fixing block (304).
4. The diagonal bracing bearing capacity detection test device according to claim 1, wherein the fixing plate (201) is detachably connected with the base column (1) through a fixing bolt, the hydraulic jack (202) is detachably connected with the inner box (2) through a fixing bolt, stepped annular fixing grooves are formed in one ends of the inner box (203) and the inner box (2), the two sets of stepped annular fixing grooves correspond to each other, and the thicknesses of the base plates and the top plates of the inner box (2) and the outer box (203) are 10cm.
5. The device for detecting and testing the bearing capacity of the diagonal brace of claim 1, wherein a clamping groove is formed in one end of the inner portion of the outer box (203), the size of the clamping groove is matched with the end face of the diagonal brace main body (204), the diagonal brace main body (204) is detachably connected with the outer box (203) through the clamping groove, a movable groove is formed in the other end of the inner portion of the outer box (203), and rollers are arranged on the inner wall of the movable groove.
6. The diagonal bracing bearing capacity detection test device according to claim 1, wherein a connecting block is arranged at the other end of the outer box (203), and the telescopic end of the hydraulic jack (202) is connected with the outer box (203) through the connecting block.
7. The diagonal bracing bearing capacity detection test device according to claim 2, wherein a hydraulic system is arranged at the bottom end of the inside of the base column (1), and a control module is arranged at the top end of the inside of the base column (1).
8. The diagonal bracing bearing capacity detection test device according to claim 2, wherein one side of the supporting block (102) is welded with one side of the base column (1), and the bottom end of the supporting block (102) is welded with the top end of the mounting plate (101).
9. The diagonal bracing bearing capacity detection test device according to claim 3, wherein one end of the supporting rod (3) is welded with the base column (1), the adjusting rod (301) is movably connected with the supporting rod (3) through a telescopic groove (302), and a threaded hole matched with the positioning bolt (303) is formed in the top of the adjusting rod (301).
10. The device for detecting and testing the bearing capacity of the diagonal brace according to claim 3, wherein the displacement sensor (305) is detachably connected with the fixed block (304) through a fixed bolt, a detection rod is arranged at one end of the displacement sensor (305), and one end of the detection rod is welded with the adjusting rod (301).
CN202422240001.5U 2024-09-12 2024-09-12 Inclined strut bearing capacity detection test device Active CN223061663U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422240001.5U CN223061663U (en) 2024-09-12 2024-09-12 Inclined strut bearing capacity detection test device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422240001.5U CN223061663U (en) 2024-09-12 2024-09-12 Inclined strut bearing capacity detection test device

Publications (1)

Publication Number Publication Date
CN223061663U true CN223061663U (en) 2025-07-04

Family

ID=96202808

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422240001.5U Active CN223061663U (en) 2024-09-12 2024-09-12 Inclined strut bearing capacity detection test device

Country Status (1)

Country Link
CN (1) CN223061663U (en)

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