A fine ore-forming model of granite type uranium deposit

By using a special PCB board and a current repeater to control the sliding of magnetic blocks, combined with electronically controlled glass and color temperature sensor detection, the problem of existing models being unable to adapt to different landforms, soil layers, and light and shadow distortions has been solved, thus achieving efficient simulation of a fine mineralization model.

CN116564173BActive Publication Date: 2026-01-09NUCLEAR IND 230 RES INST
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310589409.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-24
Publication Date
2026-01-09
Estimated Expiration
2043-05-24

AI Technical Summary

Technical Problem

Existing mineralization models are difficult to adapt to different landforms and soil layers, and the lack of spectral detection leads to distortion of the projected images, making it difficult to simulate accurate soil layer height maps.

Method used

A special PCB board and current repeater are used to control the energization of fine magnetic blocks to generate magnetism, which pushes the cast iron plate to slide. Combined with electrically controlled glass and color temperature sensor to detect light and shadow, soil layer simulation is achieved through modular board and fine display cloth.

Benefits of technology

It achieves detailed simulation of soil layers in different landforms, reduces the influence of light, and improves mineralization effect and image accuracy.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116564173B_ABST
    Figure CN116564173B_ABST
Patent Text Reader

Abstract

The application discloses a kind of granite type uranium ore fine ore-forming model, it is related to simulation experiment relevant field, including model table, the model table top frame inside is equipped with model display component, the model table transverse plate top bolt installation has operating panel, through the special PCB and current relay control fine magnetic block energization magnetism and promote cast iron plate sliding in magnetic separation cylinder inside, to make it drive rubber column and modularization board and fine display cloth carry out displacement, to make fine display cloth in the ore-forming appearance change deformation simulation action by the modularization of setting modularization board;By projection piece, the ore-forming image is projected to the surface of electric control glass, the projection light of projection piece is focused at color temperature sensor by condenser and light uniform cover at this time, and the light shadow is detected using color temperature sensor, and then by controlling electric control glass energization and forming transparent state, the projection image of projection piece is projected on fine display cloth through electric control glass and realizes the simulation imaging of ore-forming soil layer.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the field of simulation experiment, and particularly relates to a fine metallogenic model for granite type uranium deposit. BACKGROUND

[0002] The granite type uranium deposit refers to a uranium deposit which is produced in a granite body, a contact zone outside the granite body or a superimposed sedimentary basin above the granite body, has a genetic connection with the granite and a similar mineralization type; on the basis of the metallogenic model research, the prospecting model is a high generalization of the favorable geological conditions, effective prospecting techniques and various direct or simple metallogenic information which are necessary for discovering a specific type of deposit.

[0003] Most of the existing metallogenic models adopt a fixed structure glue injection model, which is not convenient for the granite type uranium deposit with different landforms and soil layers in the simulation research; meanwhile, some existing technologies lack spectrum detection of the projection light and shadow in the metallogenic simulation projection process, so that the projection image is prone to distortion due to the influence of light; meanwhile, it is difficult for the existing technologies to simulate the height map of the soil layer, so that the metallogenic effect is poor. SUMMARY

[0004] Therefore, in order to solve the above problems, the present application provides a fine metallogenic model for granite type uranium deposit.

[0005] The present application is realized by constructing a fine metallogenic model for granite type uranium deposit, which comprises a model table, a model display assembly is arranged in the top frame of the model table, an operation panel is bolted on the top of the horizontal plate of the model table, a projection member for projection is rotatably arranged on the top front side of the operation panel, wherein the projection member is specifically composed of an adjusting frame and a projector, and the model display assembly and the projection member are electrically connected with the operation panel.

[0006] The model display assembly comprises a model forming frame, the model forming frame is fixedly installed in the top frame of the model table through bolt members, a special PCB board for fine control is fixedly installed on the inner rear wall of the model forming frame, a fixed front frame is fixedly installed at the front end of the model forming frame through bolt members, a metallogenic display member is arranged on the inner side of the fixed front frame, a fixed net is adhered and fixed on the front side of the inner wall of the model forming frame, and a fine adjusting member is slidingly connected to the fixed net.

[0007] Preferably, the fixed net is composed of a frame, a cross-shaped net fixed on the inner side and a horizontal pipe fixed on the inner side of the cross-shaped net, and the horizontal pipe is provided with a limiting block for limiting the fine adjusting member.

[0008] Preferably, the ore-forming display piece comprises: an electric control glass, the electric control glass is clamped and fixed inside the fixed front frame; an electric controller, the electric controller for control is fixed on the right end of the electric control glass through a cable; and a fine display cloth, the fine display cloth is elastically adhered to the rear side of the inner wall of the fixed front frame.

[0009] Preferably, the ore-forming display piece further comprises: a detection piece, the electric control glass and the fine display cloth are provided with the detection piece at the top notch; and a detection electric plate, the detection electric plate is fixed at the rear end of the detection piece by soldering.

[0010] Preferably, the electric controller and the detection electric plate are connected with a special PCB board through cables respectively, and the top notch of the electric control glass is provided with a coating for sealing.

[0011] Preferably, the detection piece comprises: an isolation shell, the detection electric plate is fixed at the front side of the isolation shell by welding; and a color temperature sensor, the color temperature sensor is fixed at the front side of the detection electric plate by soldering for detection.

[0012] Preferably, the detection piece further comprises: a condenser, the color temperature sensor is fixed and clamped at the front side of the condenser for condensation; and a light uniformity cover, the condenser is clamped and fixed inside the light uniformity cover.

[0013] Preferably, the color temperature sensor is electrically connected with the detection electric plate.

[0014] Preferably, the fine adjustment piece comprises: a magnetic isolation cylinder, the magnetic isolation cylinder is slidably clamped in the horizontal pipe in the middle of the fixed net; a fine magnetic block, the fine magnetic block is embedded in the inner rear wall of the magnetic isolation cylinder; and a current relay, the current relay is fixed at the rear end of the fine magnetic block by soldering through an electric pin.

[0015] Preferably, the fine adjustment piece further comprises: a cast iron plate, the cast iron plate is slidably arranged on the inner wall of the magnetic isolation cylinder; a rubber column, the rubber column is elastically fixed at the front end of the cast iron plate; and a modular plate, the modular plate is fixed and installed at the front end of the rubber column.

[0016] Preferably, the current relay is fixed at the front end of a special PCB board through soldering by an electric pin, and the soldering points arranged on the special PCB board are in a modular matrix shape.

[0017] The present application has the following advantages: the present application provides a fine ore-forming model of a granite type uranium mine by improvement, compared with the same type of equipment, the present application has the following improvements:

[0018] The fine metallogenic model of the granite type uranium deposit is characterized in that the fine magnetic block is powered to generate magnetism through the special PCB and the current relay to push the cast iron plate to slide in the magnetic isolation cylinder, so that the rubber column, the modularized plate and the fine display cloth are driven to displace, so that the fine display cloth in the metallogenic display piece is deformed and simulated to act through the modularized plate, the image of the metallogenic display piece is projected to the surface of the electric control glass through the projection piece, the projection light of the projection piece is focused on the color temperature sensor through the condenser and the light uniform cover, the light image is detected by the color temperature sensor, the electric control glass is powered to form the transparent state, the projection image of the projection piece is projected on the fine display cloth through the electric control glass to realize the simulated imaging of the metallogenic soil layer. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 is the structural schematic diagram of the application;

[0020] Figure 2 is the three-dimensional half-section structural schematic diagram of the model display assembly of the application;

[0021] Figure 3 is the three-dimensional structural schematic diagram of the fixed net of the application;

[0022] Figure 4 is the three-dimensional structural schematic diagram of the fixed net of the application; Figure 2 is the three-dimensional structural schematic diagram of the fixed net of the application;

[0023] Figure 5 is the three-dimensional structural schematic diagram of the fine adjustment piece of the application;

[0024] Figure 6 is the three-dimensional exploded structural schematic diagram of the metallogenic display piece of the application;

[0025] Figure 7 is the three-dimensional exploded structural schematic diagram of the detection piece of the application.

[0026] Among them, the model table is 1, the model display assembly is 2, the operation panel is 3, the projection piece is 4, the model forming frame is 21, the special PCB is 22, the fixed front frame is 23, the metallogenic display piece is 24, the fixed net is 25, the fine adjustment piece is 26, the electric control glass is 241, the electric controller is 242, the fine display cloth is 243, the detection piece is 244, the detection electric plate is 245, the isolation shell is 2441, the color temperature sensor is 2442, the condenser is 2443, the light uniform cover is 2444, the magnetic isolation cylinder is 261, the fine magnetic block is 262, the current relay is 263, the cast iron plate is 264, the rubber column is 265, and the modularized plate is 266. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings Figures 1-7The principles and advantages of the present application will be described with reference to the following examples, which are intended to illustrate the present application and not to limit its scope. The present application is more particularly described in the following paragraphs with reference to the accompanying drawings. The advantages and features of the present application will become more fully apparent from the following description and appended claims. It should be understood that the drawings are simplified schematic illustrations of the embodiments of the present application and are not precise representations of the structures described herein.

[0028] It should be noted that when a component is referred to as being "on" another component, it can be directly on the other component or intervening components can also be present. When a component is referred to as being "connected" to another component, it can be directly connected to the other component or intervening components can also be present. When a component is referred to as being "disposed on" another component, it can be directly disposed on the other component or intervening components can also be present. The terms "vertical", "horizontal", "left", "right", and similar terms as used herein are for illustrative purposes only.

[0029] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0030] Embodiment One:

[0031] Referring to Figures 1-7 The fine ore-forming model of the granite type uranium mine comprises a model table 1, a model display assembly 2 is arranged inside the top frame of the model table 1, a database is arranged inside the model table 1, an operation panel 3 is bolted on the top of the horizontal plate of the model table 1, a projection piece 4 for projection is rotatably arranged on the top front side of the operation panel 3, the projection piece 4 is composed of an adjusting frame and a projector, and the model display assembly 2 and the projection piece 4 are electrically connected with the operation panel 3.

[0032] The model display assembly 2 comprises a model forming frame 21, the model forming frame 21 is fixedly installed in the top frame of the model table 1 through bolted pieces, a special PCB board 22 for fine control is fixedly installed on the inner rear wall of the model forming frame 21, a fixed front frame 23 is fixedly installed at the front end of the model forming frame 21 through bolted pieces, a mineralization display piece 24 is arranged on the inner side of the fixed front frame 23, a fixed net 25 is fixedly adhered to the front side of the inner wall of the model forming frame 21, and a fine adjusting piece 26 is slidingly clamped in the fixed net 25.

[0033] The fixed net 25 is composed of a frame and a cross net fixed on the inner side and a horizontal pipe fixed on the side of the cross net, and the horizontal pipe is provided with a limiting block for limiting the fine adjustment part 26.

[0034] The fine adjustment part 26 comprises a magnetic isolation cylinder 261, the magnetic isolation cylinder 261 is clamped and slid on the horizontal pipe at the side of the fixed net 25, a fine magnetic block 262 is embedded on the inner back wall of the magnetic isolation cylinder 261, a current relay 263 is welded and fixed on the rear end of the fine magnetic block 262 through an electric pin, a cast iron plate 264 is slidably arranged on the inner wall of the magnetic isolation cylinder 261, a rubber column 265 is elastically fixed on the front end of the cast iron plate 264, and a modular plate 266 is fixedly installed on the front end of the rubber column 265.

[0035] The current relay 263 is welded and fixed on the front end of the special PCB 22 through an electric pin, and the soldering points arranged on the special PCB 22 are in a modular matrix shape.

[0036] The working principle of the fine mineralization model of the granite type uranium mine based on the first embodiment is as follows:

[0037] Firstly, when the device is used, the device is placed in a working area, then the device is connected with an external power supply, and the device is provided with power required for working;

[0038] Secondly, the staff inputs the ore body data into the database in the model table 1 through the operation panel 3, programs the special PCB 22, inputs the electric energy into the fine magnetic block 262 through the special PCB 22 and the current relay 263, so that the fine magnetic block 262 is electrified to generate a magnetic field, and the fine magnetic block 262 forms an opposite magnetic field with the cast iron plate 264, so that the fine magnetic block 262 pushes the cast iron plate 264 to slide in the magnetic isolation cylinder 261, so that the cast iron plate 264 drives the rubber column 265 and the modular plate 266 to synchronously displace when the cast iron plate 264 is displaced, so that the modular plate 266 drives the fine display cloth 243 in the mineralization display part 24 to displace, and the fine display cloth 243 in the mineralization display part 24 is deformed to simulate the soil layer through the modular modular plate 266.

[0039] Embodiment two:

[0040] Please refer to Figures 1-7 Compared with the first embodiment, the fine mineralization model of the granite type uranium mine further comprises a mineralization display part 24, the mineralization display part 24 comprises an electric control glass 241, the electric control glass 241 is clamped and fixed in the fixed front frame 23, an electric controller 242 for control is fixed on the right end of the electric control glass 241 through a cable, a fine display cloth 243 is elastically adhered to the inner wall rear side of the fixed front frame 23, a detection part 244 is arranged at the top slot of the electric control glass 241 and the fine display cloth 243, and a detection electric plate 245 is fixed on the rear end of the detection part 244 through soldering.

[0041] The electric controller 242 and the detection electric plate 245 are connected with the special PCB 22 through cables respectively, and the top notch of the electric control glass 241 is provided with a coating for sealing.

[0042] The detection piece 244 comprises an isolation shell 2441, the isolation shell 2441 is welded and fixed on the front side of the detection electric plate 245, a color temperature sensor 2442 for detection is welded and fixed on the front side of the detection electric plate 245, a condenser 2443 for condensation is clamped and fixed on the front side of the color temperature sensor 2442, the condenser 2443 is clamped and fixed inside a light homogenizer 2444, and the color temperature sensor 2442 is electrically connected with the detection electric plate 245.

[0043] In the embodiment, the following steps are performed:

[0044] In the process of simulating the fine mineralization, the staff first controls the projection piece 4 through the operation panel 3, at this time, the projection piece 4 projects the mineralization image to the surface of the electric control glass 241, at this time, the projection light of the projection piece 4 is focused on the color temperature sensor 2442 through the condenser 2443 and the light homogenizer 2444, and the color temperature sensor 2442 is used to detect the light image, when the color spectrum of the light image is detected to be not deviated, the electric control glass 241 is controlled to be powered on, so that the electric control glass 241 forms a transparent state, the projection image of the projection piece 4 is projected on the fine display cloth 243 through the electric control glass 241, and the angle of the fine display cloth 243 is adjusted by the fine adjustment piece 26 to realize the simulation imaging of the mineralization soil layer.

[0045] The granite type uranium mine fine mineralization model is provided by improvement, the fine magnetic block 262 is powered on to generate magnetism through the special PCB 22 and the current relay 263, so that the cast iron plate 264 is pushed to slide inside the magnetic isolation cylinder 261, so that the rubber column 265, the modular plate 266 and the fine display cloth 243 are driven to displace, so that the fine display cloth 243 in the mineralization display piece 24 is deformed and simulated through the set modular modular plate 266; the mineralization image is projected to the surface of the electric control glass 241 through the projection piece 4, at this time, the projection light of the projection piece 4 is focused on the color temperature sensor 2442 through the condenser 2443 and the light homogenizer 2444, and the color temperature sensor 2442 is used to detect the light image, and then the electric control glass 241 is powered on to form a transparent state, the projection image of the projection piece 4 is projected on the fine display cloth 243 through the electric control glass 241 to realize the simulation imaging of the mineralization soil layer.

[0046] The above shows and describes the basic principles and main features of the present application and the advantages of the present application, and the standard parts used in the present application can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, the specific connection mode of each part adopts the conventional means such as bolt rivet, welding in the prior art, the mechanical parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.

[0047] The above description of disclosed embodiments enables one of ordinary skill in the art to make or use the application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A granite type uranium ore fine ore forming model, comprising a model table (1), a model display assembly (2) is arranged inside the top frame of the model table (1), an operation panel (3) is bolted on the top of the horizontal plate of the model table (1), a projection member (4) for projection is rotatably arranged on the top front side of the operation panel (3), wherein, The projection device (4) is specifically composed of an adjusting frame and a projector, and the model display assembly (2) and the projection device (4) are electrically connected with the operation panel (3); The model display assembly (2) comprises a model forming frame (21), which is fixedly installed in the top frame of the model table (1) through bolt members; a special PCB (22), which is fixedly installed on the rear wall of the model forming frame (21) and used for fine control; a fixed front frame (23), which is fixedly installed at the front end of the model forming frame (21) through bolt members; a mineralization display device (24), which is arranged on the inner side of the fixed front frame (23); a fixed net (25), which is fixedly arranged on the front side of the inner wall of the model forming frame (21); and a fine adjustment device (26), which is slidingly arranged in the middle side of the fixed net (25). The mineralization display device (24) comprises an electric control glass (241), which is fixedly arranged in the inner side of the fixed front frame (23); an electric controller (242), which is fixedly arranged at the right end of the electric control glass (241) through a cable and used for control; a fine display cloth (243), which is elastically fixedly arranged on the rear side of the inner wall of the fixed front frame (23); a detection device (244), which is arranged at the top slot of the electric control glass (241) and the fine display cloth (243); and a detection electric plate (245), which is fixedly arranged at the rear end of the detection device (244) through soldering. The detection device (244) comprises an isolation shell (2441), which is fixedly arranged at the front side of the detection electric plate (245) through soldering; a color temperature sensor (2442), which is fixedly arranged at the front side of the detection electric plate (245) through soldering and used for detection; a condenser lens (2443), which is fixedly arranged at the front side of the color temperature sensor (2442) and used for condensation; and a light uniformity cover (2444), in which the condenser lens (2443) is fixedly arranged, and the color temperature sensor (2442) is electrically connected with the detection electric plate (245); The fine adjustment device (26) comprises a magnetic isolation cylinder (261), which is slidingly arranged at the horizontal pipe of the middle side of the fixed net (25); a fine magnetic block (262), which is embedded in the inner rear wall of the magnetic isolation cylinder (261); and a current relay (263), which is fixedly arranged at the rear end of the fine magnetic block (262) through an electric pin.

2. The fine ore-forming model of the granite type uranium deposit according to claim 1, characterized in that: The fixed net (25) is composed of a frame, a cross net fixedly arranged on the inner side and a horizontal pipe fixedly arranged on the middle side of the cross net, and the horizontal pipe is provided with a limiting block for limiting the fine adjustment device (26).

3. The fine ore-forming model of the granite type uranium deposit according to claim 1, characterized in that: The electric controller (242) and the detection electric plate (245) are connected with the special PCB (22) through cables respectively, and the electric control glass (241) is provided with a coating for sealing at the top notch.

4. The fine ore-forming model of the granite type uranium deposit according to claim 1, characterized in that: The fine adjustment part (26) further comprises a cast iron plate (264), the inner wall of the magnetic isolation cylinder (261) is slidably provided with the cast iron plate (264); a rubber column (265), the front end of the cast iron plate (264) is elastically fixed with the rubber column (265); a modular plate (266), the front end of the rubber column (265) is fixedly installed with the modular plate (266).

5. The fine ore-forming model of the granite type uranium deposit according to claim 1, characterized in that: The rear end of the current relay (263) is fixedly welded with the front end of the special PCB (22) through an electric pin, and the soldering points arranged on the special PCB (22) are in a modular matrix shape.

Citation Information

Patent Citations

  • Modular entity dynamic sand table

    CN212906764U

  • Three dimension forming system and sand table system for same

    JP2007003715A