CN215525780U - Geotechnical engineering test device - Google Patents

Geotechnical engineering test device Download PDF

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Publication number
CN215525780U
CN215525780U CN202121172507.7U CN202121172507U CN215525780U CN 215525780 U CN215525780 U CN 215525780U CN 202121172507 U CN202121172507 U CN 202121172507U CN 215525780 U CN215525780 U CN 215525780U
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China
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plate
mounting plate
rod
mounting
support plate
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CN202121172507.7U
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Chinese (zh)
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田梅青
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Suqian College
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Suqian College
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Abstract

The utility model discloses a geotechnical engineering test device, which comprises a device body, wherein the middle part of a vertical support plate is provided with a cross-shaped chute, the top end of a transverse support plate is provided with a first mounting plate, one end of the first mounting plate is provided with a T-shaped slide rod, one end of the T-shaped slide rod is provided with a threaded hole, a positioning screw rod is arranged inside the threaded hole, one end of the first mounting plate is provided with a second mounting plate, one side of the top end of the transverse support plate is provided with a lifting rod, the outer side of the lifting rod is provided with a positioning rod, one end of the lifting rod is provided with a mounting base, the other side of the top end of the transverse support plate is provided with a support rod, one side of the first mounting plate and one side of the second mounting plate are provided with an elastic rubber pad, two sides of the first mounting plate and the second mounting plate are both provided with a protective baffle plate, the effect of the lifting rod on supporting the mounting plate is increased, and the support rod can support the second mounting plate, and the elastic rubber pad is added to facilitate the connection between the first mounting plate and the second mounting plate.

Description

Geotechnical engineering test device
Technical Field
The utility model relates to the technical field of geotechnical engineering test equipment, in particular to a geotechnical engineering test device.
Background
The phenomenon that the rock mass landslide and the soil slope lose the original stability and one part of the soil body slides relative to the other part of the soil body is called landslide. Because the slope of soil slope surface, under soil body dead weight and other stress effects, whole soil body all has the trend of sliding from the eminence to low, in order to judge the condition of soil slope, generally simulate the scene through the landslide model test case, test in order to make reasonable judgement and just go corresponding measure. The indoor similar model test is a commonly used research method for geotechnical slope engineering problems, and has the advantages of saving manpower and material resources and the like because the main parameters of a test object can be flexibly set according to the research needs, the leading factors of the researched problems are highlighted, the size is reduced compared with the prototype, and the like, and the method has the important function in slope engineering research.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
In order to overcome the defects of the prior art, the geotechnical engineering test device is provided, and is used for solving the problems that a traditional device body is inconvenient to mount and use by a first mounting plate; the traditional device body lacks a supporting structure and is inconvenient for connecting the first mounting plate and the second mounting plate; the traditional device body is lack of a sample buffer structure and a reinforcing structure, and is inconvenient for mounting and dismounting a storage frame, so that the purposes of increasing a cross-shaped chute and a T-shaped sliding rod, facilitating mounting of a mounting plate and increasing a positioning screw rod to position and fix the mounting plate are achieved; the lifting rod is added to support the mounting plate, the supporting rod is added to support the mounting plate II, and the elastic rubber pad is added to facilitate connection between the mounting plate I and the mounting plate II; the buffer plate is added to buffer the sample, and the reinforcing rod and the magnetic plate are added to reinforce the buffer plate; and the magnetic strip is added, so that the storage frame can be conveniently mounted and dismounted.
(II) technical scheme
The utility model is realized by the following technical scheme: the utility model provides a geotechnical engineering test device which comprises a device body, wherein a transverse support plate is arranged at the bottom end of the device body, a vertical support plate is arranged at one end of the transverse support plate, a cross-shaped chute is arranged in the middle of the vertical support plate, a first mounting plate is arranged at the top end of the transverse support plate, a T-shaped slide rod is arranged at one end of the first mounting plate, a threaded hole is formed at one end of the T-shaped slide rod, a positioning screw rod is arranged inside the threaded hole, a second mounting plate is arranged at one end of the first mounting plate, a lifting rod is arranged at one side of the top end of the transverse support plate, a positioning rod is arranged outside the lifting rod, a mounting base is arranged at one end of the lifting rod, a support rod is arranged at the other side of the top end of the transverse support plate, and inserting grooves are formed at one ends of the first mounting plate and the second mounting plate, one side of the first mounting plate and the second mounting plate is provided with an elastic rubber pad, two ends of the elastic rubber pad are provided with insertion rods, two sides of the first mounting plate and two sides of the second mounting plate are provided with first protective baffles, one end of the second mounting plate is provided with a buffer plate, one end of the top end of the buffer plate is provided with a positioning groove, two sides of the top end of the buffer plate are provided with second protective baffles, two sides of the buffer plate are provided with fixing plates, middle portions of the transverse supporting plate and the fixing plates are provided with reinforcing holes, reinforcing rods are arranged inside the reinforcing holes, one ends of the reinforcing holes and the reinforcing rods are provided with magnetic plates, one end of the transverse supporting plate is provided with a storage frame, one side of the storage frame is provided with a fixing clamping groove, and one ends of the transverse supporting plate and the storage frame are provided with magnetic stripes.
Furthermore, the vertical supporting plate and the transverse supporting plate are connected through screws, the first mounting plate and the vertical supporting plate are connected through a T-shaped sliding rod and a cross-shaped sliding groove in a clamping mode, and the positioning screw rod is connected with the threaded hole through a clamping mode.
Furthermore, the lifting rod is connected with the transverse supporting plate through a screw, the positioning rod is connected with the lifting rod through a clamping block, the mounting base is connected with the lifting rod through a clamping block, and the mounting plate I is connected with the mounting base through a screw.
Furthermore, the supporting rod is connected with the transverse supporting plate through a screw, and the mounting plate II is connected with the supporting rod through a screw.
Furthermore, the first mounting plate and the second mounting plate are connected with the elastic rubber pad through the insertion rod and the insertion groove in a clamping mode, and the first mounting plate and the second mounting plate are connected with the first protective baffle through screws.
Further, the constant head tank is used with the buffer board in a matched mode, the second mounting plate is connected with the constant head tank through a clamping, and the second protective baffle is connected with the buffer board through a screw.
Further, fixed plate and buffer plate pass through the screwed connection, fixed plate and horizontal backup pad pass through reinforcing hole and reinforcing bar block and are connected, reinforcing hole and reinforcing bar all pass through the block with the magnetic sheet and are connected.
Further, cooperation is used between fixed slot and the storage frame, horizontal backup pad and storage frame all pass through the block with the magnetic stripe and are connected, buffer board and fixed slot pass through the block and connect.
(III) advantageous effects
Compared with the prior art, the utility model has the following beneficial effects:
1) in order to solve the problems that the traditional device body is inconvenient to install the first mounting plate and use the first mounting plate, the design provides that the bottom end of the device body is provided with a transverse supporting plate, one end of the transverse supporting plate is provided with a vertical supporting plate, the middle parts of the vertical supporting plates are provided with cross-shaped chutes, the top end of the transverse supporting plate is provided with a first mounting plate, one end of the first mounting plate is provided with a T-shaped sliding rod, one end of the T-shaped sliding rod is provided with a threaded hole, a positioning screw rod is arranged inside the threaded hole, one end of the first mounting plate is provided with a second mounting plate, the problem that the traditional device body is inconvenient to install the first mounting plate is solved, and the mounting plate I not convenient for carry out the in service problem, have the mounting plate I of being convenient for of increasing cross spout and T shape slide bar and install, and increase positioning screw to the mounting plate together to fix a position fixed effect beneficial effect.
2) In order to solve the problems that a traditional device body lacks of a supporting structure and is inconvenient to connect and use between a first mounting plate and a second mounting plate, the design provides that one side of the top end of a transverse supporting plate is provided with a lifting rod, the outer side of the lifting rod is provided with a positioning rod, one end of the lifting rod is provided with a mounting base, the other side of the top end of the transverse supporting plate is provided with a supporting rod, one ends of the first mounting plate and the second mounting plate are respectively provided with an inserting groove, one sides of the first mounting plate and the second mounting plate are respectively provided with an elastic rubber pad, the two ends of the elastic rubber pads are respectively provided with an inserting rod, and the two sides of the first mounting plate and the second mounting plate are respectively provided with a protective baffle plate, so that the traditional device body lacks of a supporting structure and is inconvenient to connect and use between the first mounting plate and the second mounting plate, the lifting rod is added to support the mounting plates together, and the supporting rod plays a role in supporting the second mounting plate, and the elastic rubber pad is added, so that the beneficial effects of connection between the first mounting plate and the second mounting plate are facilitated.
3) In order to solve the problems that a traditional device body lacks a sample buffering structure and a reinforcing structure and is inconvenient for mounting and dismounting a storage frame, the design provides that one end of a mounting plate II is provided with a buffer plate, one end of the top end of the buffer plate is provided with a positioning groove, two sides of the top end of the buffer plate are respectively provided with a protective baffle II, two sides of the buffer plate are respectively provided with a fixed plate, the middle parts of a transverse supporting plate and the fixed plates are respectively provided with a reinforcing hole, a reinforcing rod is arranged inside the reinforcing hole, one ends of the reinforcing hole and the reinforcing rod are respectively provided with a magnetic plate, one end of the transverse supporting plate is provided with the storage frame, one side of the storage frame is provided with a fixed clamping groove, and one ends of the transverse supporting plate and the storage frame are respectively provided with a magnetic stripe design, so that the problems that the traditional device body lacks a sample buffering structure and a reinforcing structure and is inconvenient for mounting and dismounting the storage frame are solved, the buffer plate is added to buffer the sample, and the reinforcing rod and the magnetic plate are added to reinforce the buffer plate; and the magnetic strip is added, so that the storage frame is convenient to mount and dismount.
Drawings
FIG. 1 is a schematic view of the structure of the device body of the present invention.
Fig. 2 is a schematic view of the vertical support plate structure of the present invention.
Fig. 3 is a schematic view of the structure of the mounting plate of the present invention.
Fig. 4 is a schematic structural view of the elastic rubber pad of the present invention.
FIG. 5 is a schematic view of the structure of the buffer plate of the present invention.
FIG. 6 is a schematic diagram of the structure of the memory box of the present invention.
1-the device body; 2-a transverse support plate; 3-vertical supporting plates; 4-a cross-shaped chute; 5, mounting a first plate; 6-T-shaped sliding rods; 7-a threaded hole; 8-positioning a screw rod; 9-mounting a second plate; 10-a lifting rod; 11-a positioning rod; 12-mounting a base; 13-a support bar; 14-a plug groove; 15-elastic rubber pad; 16-a plug rod; 17-a first protective baffle; 18-a buffer plate; 19-a positioning groove; 20-a second protective baffle; 21-fixing the plate; 22-reinforcement holes; 23-reinforcing rods; 24-a magnetic plate; 25-a storage box; 26-fixed card slot; 27-magnetic strip.
Detailed Description
In the technical scheme:
4-cross-shaped sliding grooves, 5-mounting plate I, 6-T-shaped sliding rods, 8-positioning screws, 9-mounting plate II, 10-lifting rods, 11-positioning rods, 13-supporting rods, 15-elastic rubber pads, 18-buffer plates, 23-reinforcing rods, 24-magnetic plates, 25-storage frames and 27-magnetic strips are essential innovative components.
The device comprises a device body 1, a transverse supporting plate 2, a vertical supporting plate 3, a threaded hole 7, a mounting base 12, an insertion groove 14, an insertion rod 16, a protective baffle I17, a protective baffle I19, a positioning groove 20, a protective baffle II 21, a fixing plate 22, a reinforcing hole 26 and a fixing clamping groove 26, wherein the device body is an indispensable connecting component for realizing the technical scheme of the utility model.
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Example 1
As shown in figures 1-6, a geotechnical engineering test device comprises a device body 1, wherein a transverse support plate 2 is arranged at the bottom end of the device body 1, a vertical support plate 3 is arranged at one end of the transverse support plate 2, a cross-shaped sliding groove 4 is formed in the middle of each vertical support plate 3, a first mounting plate 5 is arranged at the top end of each transverse support plate 2, a T-shaped sliding rod 6 is arranged at one end of each first mounting plate 5, a threaded hole 7 is formed at one end of each T-shaped sliding rod 6, a positioning screw rod 8 is arranged inside each threaded hole 7, a second mounting plate 9 is arranged at one end of each first mounting plate 5, the transverse support plates 2 and the vertical support plates 3 play a supporting role, the first mounting plates 5 can be conveniently mounted through the cross-shaped sliding grooves 4 and the T-shaped sliding rods 6, and test operation can be conveniently carried out through the first mounting plates 5 and the second mounting plates 9, the mounting plate I5 is reinforced through a threaded hole 7 and a positioning screw rod 8, a lifting rod 10 is arranged on one side of the top end of the transverse supporting plate 2, a positioning rod 11 is arranged on the outer side of the lifting rod 10, a mounting base 12 is arranged at one end of the lifting rod 10, a supporting rod 13 is arranged on the other side of the top end of the transverse supporting plate 2, inserting grooves 14 are formed in one ends of the mounting plate I5 and the mounting plate II 9, an elastic rubber pad 15 is arranged on one side of the mounting plate I5 and the mounting plate II 9, inserting rods 16 are arranged at two ends of the elastic rubber pad 15, a first protective baffle 17 is arranged on two sides of the mounting plate I5 and the mounting plate II 9, the lifting rod 10 is used for supporting the mounting plate I5, the lifting rod 10 is fixed through the positioning rod 11, the lifting rod 10 is convenient to mount through the mounting base 12, and the mounting plate II 9 is supported through the supporting rod 13, the mounting structure is characterized in that the elastic rubber pad 15 is convenient to mount through the inserting groove 14 and the inserting rod 16, the mounting plate I5 and the mounting plate II 9 are convenient to use through the elastic rubber pad 15, the protection effect is achieved through the protective baffle I17, the buffer plate 18 is arranged at one end of the mounting plate II 9, the positioning groove 19 is arranged at one end of the top end of the buffer plate 18, the protective baffle II 20 is arranged on each of two sides of the top end of the buffer plate 18, the fixing plates 21 are arranged on two sides of the buffer plate 18, the reinforcing holes 22 are arranged in the middle portions of the transverse supporting plate 2 and the fixing plates 21, the reinforcing rods 23 are arranged inside the reinforcing holes 22, the magnetic plates 24 are arranged at one ends of the reinforcing holes 22 and the reinforcing rods 23, the buffering effect is achieved through the buffer plate 18, the buffer plate 18 is convenient to use through the positioning groove 19, the protection effect is achieved through the protective baffle II 20, and the buffer plate 18 is convenient to fix through the fixing plates 21, play reinforced effect to buffer board 18 through reinforcing hole 22 and reinforcing rod 23, consolidate reinforcing rod 23 through magnetic sheet 24, the one end of horizontal backup pad 2 is provided with storage frame 25, one side of storage frame 25 is provided with fixed slot 26, the one end of horizontal backup pad 2 and storage frame 25 all is provided with magnetic stripe 27, plays the effect of storage through storage frame 25, is convenient for buffer board 18 to fix through fixed slot 26, consolidates storage frame 25 through magnetic stripe 27.
Wherein, the vertical supporting plate 3 is connected with the horizontal supporting plate 2 through screws, the mounting plate I5 is connected with the vertical supporting plate 3 through a T-shaped sliding rod 6 and a cross-shaped sliding groove 4 in a clamping manner, the positioning screw 8 is connected with a threaded hole 7 in a clamping manner, so that the mounting plate I5 can be conveniently mounted, the lifting rod 10 is connected with the horizontal supporting plate 2 through screws, the positioning rod 11 is connected with the lifting rod 10 in a clamping manner, the mounting base 12 is connected with the lifting rod 10 in a clamping manner, the mounting plate I5 is connected with the mounting base 12 through screws, so that the lifting rod 10 can be conveniently mounted, the supporting rod 13 is connected with the horizontal supporting plate 2 through screws, the mounting plate II 9 is connected with the supporting rod 13 through screws, so that the supporting rod 13 can be conveniently mounted, the mounting plate I5 and the mounting plate II 9 are both connected with an elastic rubber pad 15 through a splicing rod 16 and a splicing groove 14 in a clamping manner, the mounting plate I5 and the mounting plate II 9 are both connected with the protective baffle I17 through screws, so that the mounting plate II 9 can be conveniently used, the positioning groove 19 and the buffer plate 18 are matched for use, the second mounting plate 9 is connected with the positioning groove 19 through clamping, the second protective baffle 20 is connected with the buffer plate 18 through screws, so that the buffer plate 18 can be conveniently used, the fixing plate 21 and the buffer plate 18 are connected through screws, the fixing plate 21 and the transverse support plate 2 are connected through a reinforcing hole 22 and a reinforcing rod 23 in a clamping way, the reinforcing holes 22 and the reinforcing rods 23 are connected with the magnetic plate 24 in a clamping manner, so that the buffer plate 18 is conveniently reinforced, the fixed clamping slot 26 and the storage frame 25 are matched for use, the transverse supporting plate 2 and the storage frame 25 are connected with the magnetic strip 27 through clamping, the buffer board 18 and the fixing slot 26 are connected by a snap fit, so that the storage frame 25 can be conveniently installed.
Example 2
As shown in fig. 5, in the present invention, one end of the mounting plate two 9 is provided with a buffer plate 18, one end of the top end of the buffer plate 18 is provided with a positioning groove 19, two sides of the top end of the buffer plate 18 are provided with a second protective baffle 20, fixing plates 21 are respectively arranged at both sides of the buffer plate 18, reinforcing holes 22 are respectively arranged at the middle parts of the transverse supporting plate 2 and the fixing plates 21, a reinforcing rod 23 is arranged inside the reinforcing hole 22, one end of each of the reinforcing hole 22 and the reinforcing rod 23 is provided with a magnetic plate 24, the buffer plate 18 plays a role of buffering, the buffer plate 18 is convenient to use through the positioning groove 19, the second protective baffle 20 plays a protective role, the fixing plate 21 is convenient for the buffer plate 18 to fix, the buffer plate 18 is reinforced by the reinforcing holes 22 and the reinforcing rods 23, and the reinforcing rods 23 are reinforced by the magnetic plates 24.
In the geotechnical engineering test device, in the using process, the positioning rod 11, the handheld positioning screw rod 8 and the T-shaped sliding rod 6 move upwards along the cross-shaped sliding chute 4, the lifting rod 10 stretches, the elastic rubber pad 15 contracts and sequentially fastens the positioning screw rod 8 and the positioning rod 11, so that the inclination angle of the mounting plate I5 is adjusted, a sample is placed at the top end of the mounting plate I5, the sample rolls on the buffer plate 18 along the mounting plate I5 and the mounting plate II 9 and then enters the storage frame 25 along the buffer plate 18, the elastic rubber pad 15 is convenient for connection between the mounting plate I5 and the mounting plate II 9, meanwhile, the protective baffle I17 and the protective baffle II 20 prevent the sample from rolling off, the storage frame 25 is pulled, the magnetic strip 27 is separated, the buffer plate 18 is separated from the fixed clamping groove 26, so that the sample is subjected to centralized processing, and the supporting rod 13 enhances the stability of the mounting plate II 9, the reinforcing rod 23 is engaged with the inside of the reinforcing hole 22, and the magnetic plate 24 reinforces the reinforcing rod 23 to facilitate the reinforcement and detachment of the buffer plate 18.
The above-described embodiments are merely illustrative of the preferred embodiments of the present invention and do not limit the spirit and scope of the present invention. Various modifications and improvements of the technical solutions of the present invention may be made by those skilled in the art without departing from the design concept of the present invention, and the technical contents of the present invention are all described in the claims.

Claims (8)

1.一种岩土工程试验装置,包括装置本体(1),其特征在于:所述装置本体(1)的底端设置有横向支撑板(2),所述横向支撑板(2)的一端设置有竖向支撑板(3),所述竖向支撑板(3)的中部均设置有十字形滑槽(4),所述横向支撑板(2)的顶端设置有安装板一(5),所述安装板一(5)的一端设置有T形滑杆(6),所述T形滑杆(6)的一端设置有螺纹孔(7),所述螺纹孔(7)的内部设置有定位螺杆(8),所述安装板一(5)的一端设置有安装板二(9),所述横向支撑板(2)的顶端的一侧设置有升降杆(10),所述升降杆(10)的外侧设置有定位杆(11),所述升降杆(10)的一端设置有安装底座(12),所述横向支撑板(2)的顶端的另一侧设置有支撑杆(13),所述安装板一(5)和安装板二(9)的一端均设置有插接槽(14),所述安装板一(5)和安装板二(9)的一侧设置有弹性橡胶垫(15),所述弹性橡胶垫(15)的两端均设置有插接杆(16),所述安装板一(5)和安装板二(9)的两侧均设置有防护挡板一(17),所述安装板二(9)的一端设置有缓冲板(18),所述缓冲板(18)的顶端的一端设置有定位槽(19),所述缓冲板(18)的顶端的两侧均设置有防护挡板二(20),所述缓冲板(18)的两侧均设置有固定板(21),所述横向支撑板(2)和固定板(21)的中部均设置有加固孔(22),所述加固孔(22)的内部设置有加固杆(23),所述加固孔(22)和加固杆(23)的一端均设置有磁板(24),所述横向支撑板(2)的一端设置有存储框(25),所述存储框(25)的一侧设置有固定卡槽(26),所述横向支撑板(2)和存储框(25)的一端均设置有磁条(27)。1. A geotechnical engineering test device, comprising a device body (1), characterized in that: the bottom end of the device body (1) is provided with a lateral support plate (2), one end of the lateral support plate (2) A vertical support plate (3) is provided, the middle of the vertical support plate (3) is provided with a cross-shaped chute (4), and the top of the lateral support plate (2) is provided with a mounting plate (5) One end of the mounting plate (5) is provided with a T-shaped sliding rod (6), one end of the T-shaped sliding rod (6) is provided with a threaded hole (7), and the inside of the threaded hole (7) is provided There is a positioning screw (8), one end of the first mounting plate (5) is provided with a second mounting plate (9), and one side of the top end of the lateral support plate (2) is provided with a lifting rod (10), the lifting rod (10). The outer side of the rod (10) is provided with a positioning rod (11), one end of the lifting rod (10) is provided with a mounting base (12), and the other side of the top end of the lateral support plate (2) is provided with a support rod ( 13), one end of the first mounting plate (5) and the second mounting plate (9) are provided with a plug slot (14), and one side of the mounting plate one (5) and the second mounting plate (9) are provided with Elastic rubber pads (15), both ends of the elastic rubber pads (15) are provided with plug-in rods (16), and both sides of the first mounting plate (5) and the second mounting plate (9) are provided with guards A baffle plate (17), one end of the second mounting plate (9) is provided with a buffer plate (18), and one end of the top end of the buffer plate (18) is provided with a positioning groove (19), the buffer plate (18) ) are provided with two protective baffle plates (20) on both sides of the top of the Reinforcing holes (22) are arranged in the middle of the reinforced holes (22), reinforcement rods (23) are arranged inside the reinforcement holes (22), and a magnetic plate (24) is arranged at one end of the reinforcement holes (22) and the reinforcement rods (23). ), one end of the lateral support plate (2) is provided with a storage frame (25), one side of the storage frame (25) is provided with a fixed card slot (26), the lateral support plate (2) and the storage frame One end of (25) is provided with a magnetic strip (27). 2.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述竖向支撑板(3)和横向支撑板(2)通过螺钉连接,所述安装板一(5)和竖向支撑板(3)通过T形滑杆(6)和十字形滑槽(4)卡合连接,所述定位螺杆(8)和螺纹孔(7)通过卡合连接。2. A geotechnical engineering test device according to claim 1, characterized in that: the vertical support plate (3) and the lateral support plate (2) are connected by screws, and the mounting plate one (5) and the horizontal support plate (2) are connected by screws. The vertical support plate (3) is connected by the T-shaped sliding rod (6) and the cross-shaped sliding groove (4) by snap connection, and the positioning screw (8) and the threaded hole (7) are connected by the snap connection. 3.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述升降杆(10)和横向支撑板(2)通过螺钉连接,所述定位杆(11)和升降杆(10)通过卡合连接,所述安装底座(12)和升降杆(10)通过卡合连接,所述安装板一(5)和安装底座(12)通过螺钉连接。3. A geotechnical engineering test device according to claim 1, characterized in that: the lifting rod (10) and the lateral support plate (2) are connected by screws, and the positioning rod (11) and the lifting rod ( 10) Connected by snapping, the mounting base (12) and the lifting rod (10) are connected by snapping, and the first mounting plate (5) and the mounting base (12) are connected by screws. 4.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述支撑杆(13)和横向支撑板(2)通过螺钉连接,所述安装板二(9)和支撑杆(13)通过螺钉连接。4. A geotechnical engineering test device according to claim 1, characterized in that: the support rod (13) and the lateral support plate (2) are connected by screws, and the mounting plate two (9) is connected to the support rod (13) Connected by screws. 5.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述安装板一(5)和安装板二(9)均与弹性橡胶垫(15)通过插接杆(16)和插接槽(14)卡合连接,所述安装板一(5)和安装板二(9)均与防护挡板一(17)通过螺钉连接。5. A kind of geotechnical engineering test device according to claim 1, characterized in that: the first mounting plate (5) and the second mounting plate (9) are connected with the elastic rubber pad (15) through the insertion rod (16) ) and the insertion slot (14) in a snap connection, and the first mounting plate (5) and the second mounting plate (9) are connected with the protective baffle one (17) by screws. 6.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述定位槽(19)和缓冲板(18)之间配合使用,所述安装板二(9)和定位槽(19)通过卡合连接,所述防护挡板二(20)和缓冲板(18)通过螺钉连接。6. A geotechnical engineering test device according to claim 1, characterized in that: the positioning groove (19) and the buffer plate (18) are used in cooperation, and the second mounting plate (9) and the positioning groove (19) is connected by snap-fit, and the second protective baffle plate (20) and the buffer plate (18) are connected by screws. 7.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述固定板(21)和缓冲板(18)通过螺钉连接,所述固定板(21)和横向支撑板(2)通过加固孔(22)和加固杆(23)卡合连接,所述加固孔(22)和加固杆(23)均与磁板(24)通过卡合连接。7. A geotechnical engineering test device according to claim 1, characterized in that: the fixing plate (21) and the buffer plate (18) are connected by screws, and the fixing plate (21) and the lateral support plate ( 2) The reinforcement holes (22) and the reinforcement rods (23) are connected by clamping, and both the reinforcement holes (22) and the reinforcement rods (23) are connected with the magnetic plate (24) by clamping. 8.根据权利要求1所述的一种岩土工程试验装置,其特征在于:所述固定卡槽(26)和存储框(25)之间配合使用,所述横向支撑板(2)和存储框(25)均与磁条(27)通过卡合连接,所述缓冲板(18)和固定卡槽(26)通过卡合连接。8. A geotechnical engineering test device according to claim 1, characterized in that: the fixed card slot (26) is used in conjunction with the storage frame (25), and the lateral support plate (2) is connected to the storage frame (25). The frame (25) is connected with the magnetic strip (27) by snap-fit, and the buffer plate (18) and the fixed card slot (26) are connected by snap-fit.
CN202121172507.7U 2021-05-28 2021-05-28 Geotechnical engineering test device Expired - Fee Related CN215525780U (en)

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CN202121172507.7U CN215525780U (en) 2021-05-28 2021-05-28 Geotechnical engineering test device

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