Two-dimensional geological simulation test control system

By using an adjusting screw to adjust the height of the top pressure mechanism in a two-dimensional geological simulation test control system, the problem of time-consuming hydraulic cylinder adjustment in the prior art is solved, rapid pressurization or decompression is achieved, and operational efficiency is improved.

CN223449509UActive Publication Date: 2025-10-17CHONGQING FEIANTE TECH CO LTD
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Patent Information

Application Number
CN202422796527.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-18
Publication Date
2025-10-17
Estimated Expiration
2034-11-18

AI Technical Summary

Technical Problem

In the prior art, multiple hydraulic cylinders need to be adjusted during the simulation of geological pressure, which is time-consuming and cannot be adjusted quickly.

Method used

A two-dimensional geological simulation test control system was designed. The height of the top pressure mechanism was adjusted by rotating the adjusting screw to achieve rapid pressurization or decompression. The control system included a supporting mechanism, a top pressure mechanism, an adjusting mechanism, and a side pressure mechanism. The structure was simple and easy to operate.

Benefits of technology

It realizes rapid adjustment in the process of simulating geological pressure, reduces operation time and improves operation efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of similar simulation tests, in particular to a two-dimensional geological simulation test control system which comprises two supporting mechanisms, a base, a top pressing mechanism, an adjusting mechanism and a side pressing mechanism, the side pressing mechanism is fixedly connected with the corresponding supporting mechanism, the top pressing mechanism is movably connected with the two supporting mechanisms, and the adjusting mechanism is arranged on the base. The two sides of the base are fixedly connected with the corresponding supporting mechanisms respectively, the adjusting mechanism comprises a fixing frame, a fixing plate, two sliding rods and an adjusting screw rod, the adjusting screw rod adjusts the height of the jacking mechanism on the lower side of the fixing frame in a threaded rotation mode, so that the effect of rapid pressurization or decompression is achieved, and the device is simple in design structure, convenient to operate and high in practicability. The problems that in the geological pressure simulation process, a plurality of hydraulic cylinders need to be adjusted, consumed time is long, and rapid adjustment cannot be achieved are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of similar simulation test, especially to two -dimensional geological simulation test control system. BACKGROUND

[0002] Two -dimensional geological simulation test control system aims at through computer simulation technology, two -dimensional modeling and simulation analysis are carried out to geological structure, can integrate multiple geological data, including geological, geophysical prospecting, drilling information, and provide data integration, management, spatial analysis and visualization function.

[0003] In the prior art, the patent (CN204882116U) proposes a loading device of similar simulation test frame, including loading mechanism, force transmission mechanism, the force transmission mechanism is composed of bearing beam, force transmission steel column, force transmission beam, the force transmission beam is arranged at the top of similar simulation test frame, the force transmission beam top is uniformly provided with force transmission steel column, the force transmission steel column top is bearing beam, the both ends of bearing beam are respectively provided with loading mechanism, the loading mechanism includes loading screw rod, loading spring and loading nut, the lower end of loading screw rod is fixed on the base of similar simulation test frame, the loading nut is located on the upper end of loading screw rod, the bearing beam is sleeved on the loading screw rod, the loading nut is downward pressure to bearing beam through loading spring, the device is reliable in performance, simple in structure, convenient to maintain, and is suitable for simulating the similar simulation experiment of mine stope under various conditions.

[0004] But in the prior art, the simulation geological pressure process needs to adjust multiple hydraulic cylinders, and the time consumed is long, and rapid adjustment cannot be realized. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a two -dimensional geological simulation test control system, solve the problem that the simulation geological pressure process needs to adjust multiple hydraulic cylinders in prior art, and the time consumed is long, and rapid adjustment cannot be realized.

[0006] In order to achieve the above object, the utility model provides a two -dimensional geological simulation test control system, including two support mechanism, base, top pressure mechanism, adjusting mechanism and side pressure mechanism, side pressure mechanism with corresponding support mechanism fixed connection, and located corresponding support mechanism's one side, top pressure mechanism with two support mechanism swing joint, and located two support mechanism's inside, the both sides of base are fixed with corresponding support mechanism respectively Connection, and are located corresponding support mechanism's one side respectively, adjusting mechanism includes fixed frame, fixed plate, two slide rods and adjusting screw rod, adjusting screw rod's lower extreme with top pressure mechanism rotation connection, and located top pressure mechanism's upside, adjusting screw rod's circumferential side with fixed plate rotation connection, and located fixed plate's inside, two slide rods's lower extreme all with top pressure mechanism fixed connection, and located top pressure mechanism's top, fixed plate with fixed frame fixed connection, and located fixed frame's top, the both sides of fixed frame are fixed with corresponding support mechanism respectively Connection, and located corresponding support mechanism's upper end.

[0007] Wherein, each support mechanism includes bottom block, support block and support frame, the lower end of the support frame is fixedly connected with the support block and located above the support block, the support block is fixedly connected with the bottom block and located above the bottom block.

[0008] Wherein, the base includes a reinforcing frame and a seat body, the seat body is fixedly connected with the reinforcing frame and located inside the reinforcing frame, the two ends of the reinforcing frame are respectively fixedly connected with the corresponding support frames and respectively located inside the corresponding support frames.

[0009] Wherein, the top pressure mechanism includes a mounting plate, a plurality of top pressure cylinders and a top pressure plate, the top pressure plate is fixedly connected with each top pressure cylinder and located at the lower end of each top pressure cylinder, the upper end of each top pressure cylinder is fixedly connected with the mounting plate and located at the lower side of the mounting plate, the mounting plate is rotationally connected with the adjusting screw rod and located at the lower end of the adjusting screw rod.

[0010] Wherein, the side pressure mechanism includes a resisting plate, a plurality of side pressure cylinders and a plurality of side pressure pads, each side pressure pad is respectively fixedly connected with the corresponding side pressure cylinder and respectively located at one end of the corresponding side pressure cylinder, each side pressure cylinder is fixedly connected with one of the support frames and located outside one of the support frames, the resisting plate is fixedly connected with the other support frame and located inside the other support frame.

[0011] The utility model discloses a two -dimensional geological simulation test control system, set up the height of the top pressure mechanism downside of the fixed frame through the screw rotation mode adjustment of the adjusting screw, to realize the effect of quick pressure or pressure reduction, the design simple, convenient operation has solved the problem that needs to adjust multiple hydraulic cylinders in the simulation geological pressure process, the time consumed is longer, can not realize the quick adjustment. BRIEF DESCRIPTION OF DRAWINGS

[0012] In order to more clearly illustrate the technical scheme in the embodiment of the application or prior art, below will be to the embodiment or prior art description needed to use the drawing briefly introduced.

[0013] Figure 1 It is the overall structure schematic diagram of two -dimensional geological simulation test control system of the utility model.

[0014] Figure 2 It is the front view of two -dimensional geological simulation test control system of the utility model.

[0015] Figure 3 It is the side view of two -dimensional geological simulation test control system of the utility model.

[0016] Figure 4 It is the A-A line section view of two -dimensional geological simulation test control system of the utility model. Figure 3

[0017] 101-support mechanism, 102-base, 103-top pressure mechanism, 104-adjusting mechanism, 105-side pressure mechanism, 106-fixed frame, 107-fixed plate, 108-slid rod, 109-adjusting screw, 110-bottom block, 111-supporting block, 112-supporting frame, 113-strengthening frame, 114-seat, 115-mounting plate, 116-top pressure cylinder, 117-top pressure plate, 118-pressing plate, 119-side pressure cylinder, 120-side pressure pad. DETAILED DESCRIPTION

[0018] The embodiment of the utility model is described in detail below, the example of the embodiment is shown in the drawing, the embodiment described below by referring to the drawing is exemplary, and it is used to explain the utility model, and can not be understood as the limitation of the utility model.

[0019] Please refer to Figures 1-4 Among them, Figure 1 It is the overall structure schematic diagram of two -dimensional geological simulation test control system of the utility model, Figure 2 It is the front view of two -dimensional geological simulation test control system of the utility model, Figure 3 It is the side view of two -dimensional geological simulation test control system of the utility model, Figure 4 It is the A-A line section view of two -dimensional geological simulation test control system of the utility model,​Figure 3 A-A line section view of the figure.

[0020] The utility model provides a two -dimensional geological simulation test control system, including two support mechanism 101, base 102, top pressure mechanism 103, adjusting mechanism 104 and side pressure mechanism 105, adjusting mechanism 104 includes fixed frame 106, fixed plate 107, two slide bars 108 and adjusting screw rod 109, every support mechanism 101 includes bottom block 110, support block 111 and support frame 112, the base 102 includes reinforcing frame 113 and seat body 114, top pressure mechanism 103 includes mounting plate 115, a plurality of top pressure cylinder 116 and top pressure plate 117, side pressure mechanism 105 includes the board 118 of holding, a plurality of side pressure cylinder 119 and a plurality of side pressure pad 120.

[0021] For this specific embodiment, the side pressure mechanism 105 is fixedly connected with the corresponding support mechanism 101, the top pressure mechanism 103 is movably connected with the two support mechanisms 101, the two sides of the base 102 are fixedly connected with the corresponding support mechanisms 101, the lower end of the adjusting screw rod 109 is rotatably connected with the top pressure mechanism 103, the lateral side of the adjusting screw rod 109 is rotatably connected with the fixed plate 107, the lower ends of the two slide bars 108 are fixedly connected with the top pressure mechanism 103, the fixed plate 107 is fixedly connected with the fixed frame 106, the two sides of the fixed frame 106 are fixedly connected with the corresponding support mechanisms 101, the lower end of the support frame 112 is fixedly connected with the support block 111, the support block 111 is fixedly connected with the bottom block 110, the seat body 114 is fixedly connected with the reinforcing frame 113, the two ends of the reinforcing frame 113 are fixedly connected with the corresponding support frames 112, the top pressure plate 117 is fixedly connected with each top pressure cylinder 116, the upper end of each top pressure cylinder 116 is fixedly connected with the mounting plate 115, the mounting plate 115 is rotatably connected with the adjusting screw rod 109, each side pressure pad 120 is fixedly connected with the corresponding side pressure cylinder 119, each side pressure cylinder 119 is fixedly connected with one of the support frames 112, the holding board 118 is fixedly connected with the other support frame 112, and the adjusting screw rod 109 is arranged to adjust the height of the top pressure mechanism 103 under the fixed frame 106 by screw rotation, thereby achieving the effect of rapid pressurization or depressurization. The design is simple in structure and easy to operate, and solves the problems of long time consumption and inability to achieve rapid adjustment during the simulation of geological pressure.

[0022] The side pressing mechanism 105 is located on one side of the corresponding support mechanism 101, the top pressing mechanism 103 is located on the inner side of the two support mechanisms 101, the two sides of the base 102 are respectively located on one side of the corresponding support mechanism 101, the lower end of the adjusting screw 109 is located on the upper side of the top pressing mechanism 103, the circumferential side of the adjusting screw 109 is located on the inner side of the fixed plate 107, the lower ends of the two slide rods 108 are both located above the top pressing mechanism 103, the fixed plate 107 is located above the fixed frame 106, and the two sides of the fixed frame 106 are located on the upper end of the corresponding support mechanism 101.

[0023] Secondly, the lower end of the support frame 112 is located above the support block 111, the support block 111 is located above the bottom block 110, the seat body 114 is located on the inner side of the reinforcing frame 113, the two ends of the reinforcing frame 113 are respectively located on the inner side of the corresponding support frame 112, the upper side of the seat body 114 has a groove for placing the object to be pressed, and the inner side of the fixed plate 107 in contact with the adjusting screw 109 has a thread matched with the adjusting screw 109, so that when the adjusting screw 109 rotates, relative movement is generated, and since the fixed plate 107 is fixed above the fixed frame 106, the height of the mounting plate 115 can be adjusted by rotating the adjusting screw 109, thereby realizing the functions of rapid pressure increase and pressure decrease.

[0024] Meanwhile, the top pressing plate 117 is located at the lower end of each top pressing cylinder 116, the upper end of each top pressing cylinder 116 is located at the lower side of the mounting plate 115, the mounting plate 115 is located at the lower end of the adjusting screw 109, each side pressing pad 120 is located at one end of the corresponding side pressing cylinder 119, each side pressing cylinder 119 is located at the outer side of one of the support frames 112, the abutting plate 118 is located at the inner side of the other support frame 112, the side pressing cylinder 119 and the top pressing cylinder 116 can generate pressure to press the object to be tested placed on the upper side of the seat body 114, the plurality of side pressing pads 120 and the corresponding side pressing cylinder 119 press the object from the side, and the plurality of top pressing cylinders 116 and the top pressing plate 117 press the object downward, thereby simulating the pressure resistance of the object under different pressure conditions. In actual use, as the depth of the ground increases, the downward pressure on the object increases, at which time the pressure of each top pressing cylinder 116 on the top pressing plate 117 needs to be adjusted, the worker rotates the adjusting screw 109 to make the adjusting screw 109 threadedly rotate with the fixed plate 107, thereby driving the movement of the mounting plate 115. Since the two slide rods 108 correct and limit the movement track of the mounting plate 115, the pressure at each position of the top pressing plate 117 is ensured to be the same, thereby achieving the pressure simulation test of the object.

[0025] In the embodiment, the upper side of the seat body 114 has a recess for placing the object to be tested, the inner side of the fixed plate 107 in contact with the adjusting screw 109 has threads matched with the adjusting screw 109, so that when the adjusting screw 109 rotates, relative movement occurs. Since the fixed plate 107 is fixed above the fixed frame 106, the height of the mounting plate 115 can be adjusted by rotating the adjusting screw 109, thereby achieving the functions of rapid pressure increase or decrease. The side pressing cylinder 119 and the top pressing cylinder 116 can generate pressure to press the object to be tested placed on the upper side of the seat body 114, the plurality of side pressing pads 120 and the corresponding side pressing cylinder 119 press the object from the side, and the plurality of top pressing cylinders 116 and the top pressing plate 117 press the object downward, thereby simulating the pressure resistance of the object under different pressure conditions. In actual use, as the depth of the ground increases, the downward pressure on the object increases, at which time the pressure of each top pressing cylinder 116 on the top pressing plate 117 needs to be adjusted, the worker rotates the adjusting screw 109 to make the adjusting screw 109 threadedly rotate with the fixed plate 107, thereby driving the movement of the mounting plate 115. Since the two slide rods 108 correct and limit the movement track of the mounting plate 115, the pressure at each position of the top pressing plate 117 is ensured to be the same, thereby achieving the pressure simulation test of the object.

[0026] The above disclosure only shows one or more preferred embodiments of the present application, which cannot limit the scope of the present application. Those skilled in the art can understand that the implementation of all or part of the above-mentioned embodiments, and the equivalent changes made according to the claims of the present application, still belong to the scope covered by the present application.

Claims

1. A two-dimensional geological simulation test control system, comprising two support mechanisms, a base, a top pressure mechanism, and a side pressure mechanism, wherein the side pressure mechanism is fixedly connected to the corresponding support mechanism and is located on one side of the corresponding support mechanism, the top pressure mechanism is movably connected to the two support mechanisms and is located on the inner sides of the two support mechanisms, and the two sides of the base are respectively fixedly connected to the corresponding support mechanisms and are respectively located on one side of the corresponding support mechanisms, characterized in that: The cam is fixedly mounted on a support frame, and the cam is secured to a position 56° to the support frame, wherein the cam is secured on both sides of the support frame. The cam is secured on both sides of the support frame. When the cam is secured, the support frame is secured on both sides of the support frame.

2. The two-dimensional geological simulation test control system according to claim 1, characterized in that: Each of the support mechanisms includes a bottom block, a support block and a support frame. The lower end of the support frame is fixedly connected to the support block and is located above the support block. The support block is fixedly connected to the bottom block and is located above the bottom block.

3. The two-dimensional geological simulation test control system according to claim 2, characterized in that: The base includes a reinforcement frame and a seat body, the seat body is fixedly connected to the reinforcement frame and is located on the inner side of the reinforcement frame, and both ends of the reinforcement frame are respectively fixedly connected to the corresponding support frame and are respectively located on the inner side of the corresponding support frame.

4. The two-dimensional geological simulation test control system according to claim 3, characterized in that: The pushing mechanism includes a mounting plate, a plurality of pushing cylinders and a pushing plate. The pushing plate is fixedly connected to each of the pushing cylinders and is located at the lower end of each of the pushing cylinders. The upper end of each of the pushing cylinders is fixedly connected to the mounting plate and is located on the lower side of the mounting plate. The mounting plate is rotatably connected to the adjusting screw and is located at the lower end of the adjusting screw.

5. The two-dimensional geological simulation test control system according to claim 4, characterized in that: The side pressure mechanism includes a supporting plate, multiple side pressure cylinders and multiple side pressure pads, each of the side pressure pads is fixedly connected to the corresponding side pressure cylinder and is located at one end of the corresponding side pressure cylinder, each of the side pressure cylinders is fixedly connected to one of the support frames and is located on the outside of one of the support frames, and the supporting plate is fixedly connected to the other support frame and is located on the inside of the other support frame.

Citation Information

Patent Citations

  • Loading device of simulation test test stand

    CN204882116U