CN215056106U - Geotechnical engineering reconnaissance is with enclosing fender device - Google Patents

Geotechnical engineering reconnaissance is with enclosing fender device Download PDF

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Publication number
CN215056106U
CN215056106U CN202121599814.3U CN202121599814U CN215056106U CN 215056106 U CN215056106 U CN 215056106U CN 202121599814 U CN202121599814 U CN 202121599814U CN 215056106 U CN215056106 U CN 215056106U
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China
Prior art keywords
groove
draw
geotechnical engineering
connecting plate
block
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CN202121599814.3U
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Chinese (zh)
Inventor
邓正权
王明伟
张淑杰
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Harbin Construction Engineering Research And Design Institute Co ltd
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Harbin Construction Engineering Research And Design Institute Co ltd
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Abstract

The utility model discloses a geotechnical engineering reconnaissance is with enclosing fender device encloses that baffle mechanism is the inserted bar of conical shape structure through the bottom and fixes in the working area, the connecting plate has been placed to the inside fluting of right flank that encloses baffle mechanism, the inside through key-type connection and the dwang of connecting plate, include: draw-in groove an and draw-in groove b, its two one-to-one is seted up the right flank inside of connecting plate, the top intercommunication of draw-in groove a has draw-in groove b, and the regulating block, its block slide and place enclose inside the left end of baffle mechanism, the inside through bearing of right-hand member front flank of regulating block is connected with the regulation pole. This geotechnical engineering reconnaissance is with enclosing fender device is provided with draw-in groove an and draw-in groove b, and through a plurality of draw-in groove an and draw-in groove b's setting, the regulating block later stage of being convenient for inserts the draw-in groove an of different positions, and the baffle mechanism that encloses that consequently is convenient for two are placed in different high positions carries out concatenation work to it is applicable to unevenness's region to enclose baffle mechanism.

Description

Geotechnical engineering reconnaissance is with enclosing fender device
Technical Field
The utility model relates to a geotechnical engineering reconnaissance technical field specifically is a geotechnical engineering reconnaissance is with enclosing fender device.
Background
The foundation condition can be known in time by carrying out stage geotechnical investigation, damage caused by damage of reasons such as gene natural weather and the like is avoided, the periphery needs to be enclosed when the geotechnical investigation is carried out, and the existing enclosing device still has some problems when in use;
the patent name disclosed as 'CN 210370145U' is 'a portable enclosure device for geotechnical engineering investigation', which solves the problems that the existing enclosure device for geotechnical engineering investigation is often heavy and inconvenient to carry, and the enclosure device is assembled according to the field situation when the geotechnical investigation of a new place is started, and is disassembled until the geotechnical investigation is finished, so that the problem is very troublesome;
therefore, the retaining device for geotechnical engineering investigation can well solve the problems.
Disclosure of Invention
An object of the utility model is to provide a geotechnical engineering reconnaissance is with enclosing fender device to enclose fender device on solving the existing market that above-mentioned background art provided because the position of splicing mechanism is fixed when the concatenation is used, if the installation area is unevenness's state like this, can influence the problem of enclosing the concatenation work between the fender device.
In order to achieve the above object, the utility model provides a following technical scheme: a baffle enclosing device for geotechnical engineering investigation is characterized in that a baffle enclosing mechanism is fixed in a working area through an inserted bar with the bottom end in a conical structure;
a connecting plate is arranged in a groove in the inner part of the right side surface of the baffle enclosing mechanism, and the inner part of the connecting plate is connected with the rotating rod through a through key;
the method comprises the following steps:
the clamping grooves a and the clamping grooves b are correspondingly arranged in the inner part of the right side surface of the connecting plate one by one, and the clamping grooves b are communicated above the clamping grooves a;
the adjusting block is clamped and slidably placed inside the left end of the baffle enclosing mechanism, and an adjusting rod is connected to the inside of the front side face of the right end of the adjusting block in a penetrating mode through a bearing.
Preferably, the upper end and the lower end of the rotating rod are connected with the inner bearing of the right side face of the baffle mechanism, and the rotating rod can drive the connecting plate to rotate.
Through the setting of above-mentioned structure to the dwang rotates to different position, is convenient for a plurality of baffle mechanisms of enclosing carry out many contained angles concatenation between.
Preferably, the inside block of the left end upper surface of regulating block is connected with the lug, and the bottom of lug is connected with the inside of regulating block through reset spring a to the lug is connected with draw-in groove b block.
Through the arrangement of the structure, after the lug is clamped in the clamping groove b, the adjusting block can be stably inserted into the clamping groove a for clamping connection, and falling is avoided.
Preferably, the bottom end of the bump is fixed with one end of the connecting rope through a screw, and the other end of the connecting rope is fixed with the adjusting rod through a screw.
Through the arrangement of the structure, the lifting and the position of the bump can be controlled when the connecting rope is pulled.
Preferably, an accommodating groove and a through groove are formed in the inner portion of the left side face of the enclosing baffle mechanism, an adjusting block is connected to the inner portion of the accommodating groove in a clamping and sliding mode, and one end of the adjusting block is connected with the inner portion of the enclosing baffle mechanism through a return spring b.
Through the arrangement of the structure, the adjusting block can slide in the accommodating groove, and two baffle mechanisms are convenient to splice well.
Preferably, a through groove is formed in the front side of the accommodating groove, and an adjusting rod penetrates through the through groove.
Through the arrangement of the structure, the adjusting rod slides in the through groove, and the adjusting rod can drive the adjusting block to move.
Compared with the prior art, the beneficial effects of the utility model are that: the enclosure device for geotechnical engineering investigation;
(1) the adjustable baffle mechanism is provided with a plurality of clamping grooves a and a plurality of clamping grooves b, and the plurality of clamping grooves a and a plurality of clamping grooves b are arranged, so that the adjusting block can be conveniently inserted into the clamping grooves a at different positions in the later stage, and the two baffle mechanisms placed at different height positions can be conveniently spliced, so that the baffle mechanism is suitable for uneven areas, and the application range of the baffle mechanism is enlarged;
(2) be fixed with the dwang, be convenient for drive the connecting plate through setting up of dwang and rotate, the connecting plate rotation of consequently being convenient for is to different directions to in a plurality of concatenations that enclose and carry out different angles between the baffle mechanism, satisfy different user demands.
Drawings
FIG. 1 is a schematic view of the main sectional structure of the present invention;
FIG. 2 is a schematic view of the main sectional structure of the adjusting block of the present invention;
FIG. 3 is a schematic view of a cross-sectional view of the adjusting block of the present invention;
FIG. 4 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
fig. 5 is an enlarged schematic view of the structure at B in fig. 1 according to the present invention.
In the figure: 1. a fence mechanism; 2. inserting a rod; 3. a connecting plate; 4. an adjusting block; 5. a clamping groove a; 6. a clamping groove b; 7. adjusting a rod; 8. connecting ropes; 9. a bump; 10. a return spring a; 11. a containing groove; 12. a return spring b; 13. a through groove; 14. rotating the rod.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. 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.
Referring to fig. 1-5, the present invention provides a technical solution: a barrier device for geotechnical engineering investigation is characterized in that a barrier mechanism 1 is fixed in a working area through an inserted bar 2 with the bottom end in a conical structure, a connecting plate 3 is placed in a groove in the inner portion of the right side face of the barrier mechanism 1, and the inner portion of the connecting plate 3 is connected with a rotating bar 14 through a through key;
as shown in the attached drawing 1, a plurality of baffle devices are moved into a working area, and then are spliced for use after reaching the working area, if the working area is uneven, as shown in the attached drawing 1, an inserted bar 2 at the bottom of a baffle mechanism 1 is inserted into the working area;
the method comprises the following steps: draw-in groove a5 and draw-in groove b6, inside the right flank of connecting plate 3 was seted up to its two one-to-one, draw-in groove a 5's top intercommunication has draw-in groove b6, regulating block 4, inside its block was slided and is placed at the left end of enclosing baffle mechanism 1, the inside through bearing of right-hand member leading flank of regulating block 4 is connected with regulation pole 7, the upper and lower both ends of dwang 14 all are connected with the inside bearing of right flank of enclosing baffle mechanism 1, and dwang 14 can drive connecting plate 3 and rotate.
As shown in fig. 2-4, the adjusting rod 7 of the other left side of the baffle mechanism 1 is rotated, so that the adjusting rod 7 winds and winds the connecting rope 8 when rotating, the connecting rope 8 pulls the bump 9, the bump 9 enters the adjusting block 4 and extrudes the return spring a10, the return spring a10 accumulates force, the adjusting rod 7 is pulled rightwards, the adjusting rod 7 slides in the through groove 13, and the adjusting rod 7 drives the adjusting block 4 to move rightwards to extrude the return spring b12 to accumulate force.
The inside block of left end upper surface of regulating block 4 is connected with lug 9, and the bottom of lug 9 is connected with the inside of regulating block 4 through reset spring a10, and lug 9 is connected with draw-in groove b6 block, the bottom of lug 9 and the one end fix with screw of being connected rope 8, and the other end of being connected rope 8 and regulation pole 7 fix with screw, the inside storage tank 11 and logical groove 13 of having seted up of left side face that encloses baffle mechanism 1, and the inside block sliding connection of storage tank 11 has regulating block 4, and the one end of regulating block 4 is connected with the inside that encloses baffle mechanism 1 through reset spring b12, the front side of storage tank 11 is provided with logical groove 13, and the inside of leading to groove 13 runs through and is provided with regulation pole 7.
Then the left side of another baffle mechanism 1 is attached to the right side of one baffle mechanism 1, the inserting rod 2 at the bottom end of the other baffle mechanism 1 is inserted into a working area, then the adjusting rod 7 is moved leftwards, so that the adjusting rod 7 inserts the left end of the adjusting block 4 into the clamping groove a5 at the corresponding position, as shown in figure 2, the adjusting rod 7 is loosened, the adjusting rod 7 rotates reversely, and then the lug 9 automatically moves upwards and is inserted into the corresponding clamping groove b6 through the accumulated force of the return spring a10, so that the two baffle mechanisms 1 are conveniently spliced and fixed, as shown in figure 5, the connecting plate 3 can be driven to rotate through the arrangement of the rotating rod 14, thereby the splicing use of different included angles between the two baffle mechanisms 1 is facilitated, different use requirements are met, and meanwhile, through the arrangement of a plurality of clamping grooves a5 with unequal intervals, so that a plurality of baffle mechanisms 1 of enclosing carry out the concatenation of not co-altitude position, be convenient for use in unevenness's region.
The working principle is as follows: when the retaining device for geotechnical engineering investigation is used, firstly, an inserted bar 2 at the bottom of a retaining plate mechanism 1 is inserted into a working area, so that an adjusting rod 7 winds and winds a connecting rope 8 when rotating, meanwhile, the adjusting rod 7 is pulled rightwards, and the adjusting rod 7 drives an adjusting block 4 to move rightwards to extrude and store force on a return spring b 12;
then the left side of another baffle mechanism 1 is attached to the right side of one baffle mechanism 1, then the adjusting rod 7 is loosened, the connecting plate 3 can be driven to rotate through the rotating rod 14, and meanwhile, the plurality of baffle mechanisms 1 are spliced at different height positions through the arrangement of the plurality of clamping grooves a5 at unequal intervals, so that the baffle mechanisms can be conveniently used in an uneven area.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (6)

1. A barrier device for geotechnical engineering investigation is characterized in that a barrier mechanism (1) is fixed in a working area through an inserted bar (2) with the bottom end in a conical structure;
a connecting plate (3) is arranged in a groove in the inner part of the right side surface of the baffle enclosing mechanism (1), and the inner through key of the connecting plate (3) is connected with the rotating rod (14);
it is characterized by comprising:
the clamping grooves a (5) and the clamping grooves b (6) are correspondingly formed in the inner portion of the right side face of the connecting plate (3) one by one, and the clamping grooves b (6) are communicated above the clamping grooves a (5);
the adjusting block (4) is clamped and slidably placed inside the left end of the baffle enclosing mechanism (1), and an adjusting rod (7) penetrates through a bearing and is connected inside the front side face of the right end of the adjusting block (4).
2. The fender device is used in geotechnical engineering reconnaissance of claim 1, characterized in that: the upper end and the lower end of the rotating rod (14) are connected with the inner bearing of the right side face of the baffle mechanism (1), and the rotating rod (14) can drive the connecting plate (3) to rotate.
3. The fender device is used in geotechnical engineering reconnaissance of claim 1, characterized in that: the inside block of the left end upper surface of regulating block (4) is connected with lug (9), and the bottom of lug (9) is connected with the inside of regulating block (4) through reset spring a (10), and lug (9) and draw-in groove b (6) block are connected.
4. The fender device is used in geotechnical engineering reconnaissance of claim 3, characterized in that: the bottom end of the bump (9) is fixed with one end of the connecting rope (8) through a screw, and the other end of the connecting rope (8) is fixed with the adjusting rod (7) through a screw.
5. The fender device is used in geotechnical engineering reconnaissance of claim 1, characterized in that: the interior of the left side face of the baffle mechanism (1) is provided with a containing groove (11) and a through groove (13), the inside of the containing groove (11) is connected with an adjusting block (4) in a clamping and sliding mode, and one end of the adjusting block (4) is connected with the interior of the baffle mechanism (1) through a return spring b (12).
6. The fender device is used in geotechnical engineering reconnaissance of claim 5, characterized in that: a through groove (13) is formed in the front side of the accommodating groove (11), and an adjusting rod (7) penetrates through the through groove (13).
CN202121599814.3U 2021-07-14 2021-07-14 Geotechnical engineering reconnaissance is with enclosing fender device Active CN215056106U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121599814.3U CN215056106U (en) 2021-07-14 2021-07-14 Geotechnical engineering reconnaissance is with enclosing fender device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121599814.3U CN215056106U (en) 2021-07-14 2021-07-14 Geotechnical engineering reconnaissance is with enclosing fender device

Publications (1)

Publication Number Publication Date
CN215056106U true CN215056106U (en) 2021-12-07

Family

ID=79220770

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121599814.3U Active CN215056106U (en) 2021-07-14 2021-07-14 Geotechnical engineering reconnaissance is with enclosing fender device

Country Status (1)

Country Link
CN (1) CN215056106U (en)

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