CN215004723U - Side slope anchor rod uplift test device - Google Patents
Side slope anchor rod uplift test device Download PDFInfo
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- CN215004723U CN215004723U CN202121581319.XU CN202121581319U CN215004723U CN 215004723 U CN215004723 U CN 215004723U CN 202121581319 U CN202121581319 U CN 202121581319U CN 215004723 U CN215004723 U CN 215004723U
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- anchor rod
- pair
- slope
- jack
- side slope
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Abstract
The utility model discloses a slope anchor rod uplift test device, which comprises a slope support anchor rod, wherein an uplift structure is arranged on the slope support anchor rod; the anti-pulling structure comprises: the device comprises a plurality of reference beams, an adjusting structure, a through jack, an anchorage device, an oil pump, an oil pipe and a display assembly; a plurality of benchmark roof beams are installed on the side slope, adjust structural installation on the side slope, and it is inside that the structure is located a plurality of benchmark roof beams to adjust, and the jack of punching is installed on adjusting the structure, and the side slope support stock passes and adjusts structure and jack of punching, and the ground tackle is installed on the side slope support stock, and the ground tackle is located the jack top of punching, the utility model relates to a side slope stock resistance to plucking technical field has solved traditional mode and has not been convenient for set up loading equipment on slope, and jack and stock are not necessarily at an axis, lead to the experimental data inaccurate, and the problem that the side slope security also can not obtain the guarantee.
Description
Technical Field
The utility model relates to a side slope stock resistance to plucking technical field specifically is side slope stock resistance to plucking test device.
Background
In order to test the anti-pulling performance of the slope engineering anchor rod, the anchor rod needs to be subjected to an anti-pulling test. The existing anchor rod and the test device are provided with a loading platform, and the steel bar penetrates through the hollow jack. The traditional mode is inconvenient for building loading equipment on a slope, and a jack and an anchor rod are not necessarily in the same axis, so that the problems that test data is inaccurate and the safety of the slope cannot be guaranteed are caused.
SUMMERY OF THE UTILITY MODEL
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the slope anchor rod uplift test device comprises a slope support anchor rod, wherein an uplift structure is arranged on the slope support anchor rod;
the anti-pulling structure comprises: the device comprises a plurality of reference beams, an adjusting structure, a through jack, an anchorage device, an oil pump, an oil pipe and a display assembly;
the side slope supporting anchor rod penetrates through the adjusting structure and the through jack, the anchor is installed on the side slope supporting anchor rod and located above the through jack, the oil pump is placed on one side of the side slope, one end of the oil pipe is connected with the oil pump, the other end of the oil pipe is connected with the through jack, and the display assembly is located on the plurality of reference beams.
Preferably, the adjusting structure comprises: the anchor rod support, a pair of arc-shaped sliding blocks, a pair of supporting rods, a disc, a pair of arc-shaped sliding grooves and a pair of bolts;
the anchor rod support is installed on the side slope, and the rectangle through-hole has been seted up to wall about the anchor rod support, and a pair of arc spout is located the anchor rod support, and a pair of arc slider is installed inside the anchor rod support, and a pair of bolt one end is installed respectively on a pair of arc slider, and a pair of bolt other end passes a pair of arc spout respectively, and a pair of bracing piece is installed respectively on a pair of arc slider, and the disc is installed on a pair of bracing piece, and the center of the disc jack is installed on the disc, and the through-hole has been seted up at the disc center.
Preferably, the display module includes: an adjustable gauge stand and a displacement gauge;
the adjustable gauge stand is installed on one of many reference beams, and the displacement meter is installed on adjustable gauge stand.
Preferably, the oil pump is provided with a support body for supporting.
Preferably, a sealing ring for sealing is arranged between the oil pipe and the through jack.
Preferably, the through jack and the slope support anchor rod are on the same axis.
Advantageous effects
The utility model provides a side slope stock resistance to plucking test device. The method has the following beneficial effects: the present case mainly adopts the resistance to plucking structure, simple structure, and the simple operation can realize 0-90 degrees regulation according to the slope angle, guarantees that stock and jack are on same axis, and the stock axial is drawn, and the experimental numerical value of survey is more accurate, has solved traditional mode and has not been convenient for set up loading equipment in slope, and jack and stock are not necessarily in an axis, lead to the experimental data inaccurate, the problem that the slope security also can not be ensured.
Drawings
Fig. 1 is the utility model discloses side slope stock resistance to plucking test device's main structure sketch map of looking.
Fig. 2 is the utility model discloses side slope stock resistance to plucking test device's local enlarged structure schematic diagram of main vision.
In the figure: 1-side slope support anchor rod; 2-a reference beam; 3-a center-penetrating jack; 4-an anchorage device; 5-an oil pump; 6-oil pipe; 7-anchor rod support; 8-arc slide block; 9-a support bar; 10-a disc; 11-arc chute; 12-a bolt; 13-adjustable gauge stand; 14-a displacement meter; 15-a support; 16-sealing ring.
Detailed Description
Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example (b): referring to fig. 1-2, the slope anchor rod uplift test device comprises the following main components: the slope support anchor rod comprises a slope support anchor rod 1, wherein a pulling-resistant structure is arranged on the slope support anchor rod 1;
it should be noted that, when the slope support anchor rod 1 needs to be subjected to a pulling-resistant test, the pulling-resistant structure on the slope support anchor rod 1 can be used for the test.
In the specific implementation process, the anti-pulling structure comprises: the device comprises a plurality of reference beams 2, an adjusting structure, a through jack 3, an anchorage 4, an oil pump 5, an oil pipe 6 and a display assembly;
a plurality of benchmark roof beams 2 are installed on the side slope, adjust the structural installation on the side slope, it is inside that the structure is located a plurality of benchmark roof beams 2 to adjust the structure, punch jack 3 installs on adjusting the structure, side slope support stock 1 passes and adjusts structure and punch jack 3, anchorage device 4 installs on side slope support stock 1, anchorage device 4 is located 3 tops of punch jack, oil pump 5 places in side slope one side, 6 one end of oil pipe and oil pump 5 link to each other, 6 other ends of oil pipe and 3 links to each other of punch jack, the display module is located a plurality of benchmark roof beams 2.
It should be noted that, the plurality of reference beams 2 are fixed on the side slope, the adjusting structure is fixed on the side slope, the angle of the through jack 3 is adjusted, the side slope support anchor rod 1 penetrates through the adjusting structure and the through jack 3, the anchor 4 is installed on the side slope support anchor rod 1, the anchor 4 is located above the through jack 3, the oil pump 5 on one side of the side slope is powered on, the oil pump 5 starts to work after receiving an electric signal, the oil pump 5 supplies oil to the through jack 3 through the oil pipe 6, the through jack 3 jacks the anchor 4 upwards, and the anti-pulling test result of the side slope support anchor rod 1 can be checked through the display components on the plurality of reference beams 2.
In the implementation process, further, the adjusting structure comprises: the anchor rod support 7, a pair of arc-shaped sliding blocks 8, a pair of supporting rods 9, a circular disc 10, a pair of arc-shaped sliding grooves 11 and a pair of bolts 12;
the anchor rod support 7 is installed on the side slope, rectangular through holes have been seted up to anchor rod support 7 upper and lower wall, a pair of arc spout 11 is located anchor rod support 7, a pair of arc slider 8 is installed inside anchor rod support 7, a pair of bolt 12 one end is installed respectively on a pair of arc slider 8, a pair of bolt 12 other end passes a pair of arc spout 11 respectively, a pair of bracing piece 9 is installed respectively on a pair of arc slider 8, disc 10 is installed on a pair of bracing piece 9, the center of piercing jack 3 is installed on disc 10, the through-hole has been seted up at disc 10 center.
It should be noted that, the anchor rod support 7 is fixed on the slope, a pair of bolts 12 are loosened, the pair of bolts 12 can move in the pair of arc-shaped sliding grooves 11, the other ends of the pair of bolts 12 are installed on the pair of arc-shaped sliding blocks 8, the pair of arc-shaped sliding blocks 8 can move in the pair of arc-shaped sliding grooves 11, the disc 10 is installed on the pair of arc-shaped sliding blocks 8 through the pair of support rods 9, the disc 10 can be adjusted in the pair of arc-shaped sliding grooves 11 by 0-90 degrees, and when the appropriate angle is adjusted, the pair of bolts 12 are tightened to fix the anchor rod.
In one embodiment, the display device further comprises: an adjustable gauge stand 13 and a displacement gauge 14;
an adjustable gauge stand 13 is mounted on one of the multiple reference beams 2, and a displacement gauge 14 is mounted on the adjustable gauge stand 13.
It should be noted that, the displacement meter 14 is installed on the adjustable gauge stand 13, so that the angle adjustment of the displacement meter 14 can be realized, and the displacement meter 14 is used for checking when the anti-pulling test of the slope support anchor rod 1 is performed.
In the specific implementation process, a support body 15 for supporting the oil pump 5 is further provided.
In the implementation process, a sealing ring 16 for sealing is further arranged between the oil pipe 6 and the piercing jack 3.
In the concrete implementation process, the penetrating jack 3 and the slope support anchor rod 1 are further arranged on the same axis.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. The slope anchor rod uplift test device comprises a slope support anchor rod and is characterized in that an uplift structure is arranged on the slope support anchor rod;
the anti-pulling structure comprises: the device comprises a plurality of reference beams, an adjusting structure, a through jack, an anchorage device, an oil pump, an oil pipe and a display assembly;
the side slope supporting anchor rod penetrates through the adjusting structure and the through jack, the anchor is installed on the side slope supporting anchor rod and located above the through jack, the oil pump is placed on one side of the side slope, one end of the oil pipe is connected with the oil pump, the other end of the oil pipe is connected with the through jack, and the display assembly is located on the plurality of reference beams.
2. The slope anchor rod uplift test device of claim 1, wherein the adjusting structure comprises: the anchor rod support, a pair of arc-shaped sliding blocks, a pair of supporting rods, a disc, a pair of arc-shaped sliding grooves and a pair of bolts;
the anchor rod support is installed on the side slope, and the rectangle through-hole has been seted up to wall about the anchor rod support, and a pair of arc spout is located the anchor rod support, and a pair of arc slider is installed inside the anchor rod support, and a pair of bolt one end is installed respectively on a pair of arc slider, and a pair of bolt other end passes a pair of arc spout respectively, and a pair of bracing piece is installed respectively on a pair of arc slider, and the disc is installed on a pair of bracing piece, and the center of the disc jack is installed on the disc, and the through-hole has been seted up at the disc center.
3. The slope anchor rod uplift test device according to claim 1, wherein the display assembly comprises: an adjustable gauge stand and a displacement gauge;
the adjustable gauge stand is installed on one of many reference beams, and the displacement meter is installed on adjustable gauge stand.
4. The slope anchor rod uplift test device according to claim 1, wherein a support body for supporting is arranged on the oil pump.
5. The slope anchor rod uplift test device according to claim 1, wherein a sealing ring for sealing is arranged between the oil pipe and the through jack.
6. The slope anchor rod uplift test device according to claim 1, wherein the through jack and the slope support anchor rod are on the same axis.
Priority Applications (1)
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CN202121581319.XU CN215004723U (en) | 2021-07-09 | 2021-07-09 | Side slope anchor rod uplift test device |
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CN202121581319.XU CN215004723U (en) | 2021-07-09 | 2021-07-09 | Side slope anchor rod uplift test device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114892733A (en) * | 2022-07-14 | 2022-08-12 | 浙大城市学院 | Uplift resistance measuring device and method based on anchor plate foundation of seabed slope field |
-
2021
- 2021-07-09 CN CN202121581319.XU patent/CN215004723U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114892733A (en) * | 2022-07-14 | 2022-08-12 | 浙大城市学院 | Uplift resistance measuring device and method based on anchor plate foundation of seabed slope field |
CN114892733B (en) * | 2022-07-14 | 2022-10-25 | 浙大城市学院 | Uplift resistance measuring device and method based on anchor plate foundation of seabed slope field |
JP7204160B1 (en) | 2022-07-14 | 2023-01-16 | 浙大城市学院 | Measurement device and method for pull-out resistance based on submarine slope site anchor plate foundation |
US11828037B1 (en) * | 2022-07-14 | 2023-11-28 | Zhejiang University City College | Pullout resistance measuring device and method based on anchor plate foundation of submarine slope site |
JP2024012034A (en) * | 2022-07-14 | 2024-01-25 | 浙大城市学院 | Measurement device and measurement method of extraction resistance force based on sea bottom slope site anchor plate foundation |
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GR01 | Patent grant | ||
CP01 | Change in the name or title of a patent holder |
Address after: No. 55, Hongfeng Road, Hefei Hi-tech Zone, Hefei, Anhui Province Patentee after: Anhui Construction Engineering Quality Supervision and Inspection Station Co.,Ltd. Address before: No. 55, Hongfeng Road, Hefei Hi-tech Zone, Hefei, Anhui Province Patentee before: ANHUI BUILDING ENGINEERING QUALITY SUPERVISION AND TESTING STATION |
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CP01 | Change in the name or title of a patent holder |