Sand table simulation device and use method thereof

By designing a display and recycling mechanism for the sand table simulation device, the problems of high cost and weak display capabilities of existing sand table equipment are solved, enabling convenient display and recycling of sand and gravel, and improving the effectiveness of the equipment.

CN120977181APending Publication Date: 2025-11-18SICHUAN STEPHANIE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202511362861.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-23
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing sand table equipment is expensive to manufacture and cannot be easily adjusted. It is difficult to pile up sand and gravel, resulting in weak display capabilities. Furthermore, sand and gravel can easily bury items, affecting the usability.

Method used

A sand table simulation device including a display mechanism and a recycling mechanism was designed. The device uses spraying components, vibration components and moving components to spread, wet and recycle sand and gravel, and uses a filtration component to filter and recycle the sand and gravel for reuse.

Benefits of technology

It enables convenient display and recycling of sand and gravel, improves the display effect and the wide applicability of the equipment, and reduces the difficulty of maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of sand table equipment, in particular to a sand table simulation device and a use method thereof.The sand table simulation device comprises a display mechanism, the display mechanism comprises an outer frame, two movable frames, a fixed frame, a supporting frame, a spraying component, a vibration component and a movable component, and the outer surfaces of the two sides of the outer frame are fixedly connected with guide rails; the two movable frames are arranged on the tops of the two guide rails respectively, and a rotating strip is rotationally connected between the opposite outer surfaces of the two movable frames. During use, the extension pipe is connected with an existing water resource supply device, the existing projection device is installed through the fixing frame, and meanwhile used grit is dyed to be white, so that the service life of the projection device is prolonged, and the service life of the projection device is prolonged. A certain amount of white grit can be stored through the material collecting frame, the material collecting frame with the grit can be placed on the top of the placing frame, then the white grit is conveniently spread to the top of the supporting belt, and then the driving motor is controlled to be started, so that the driving motor is matched with the linkage wheel and the linkage belt to drive the corresponding supporting roller to rotate.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of sand table equipment, and particularly relates to a sand table simulation device and a use method thereof. BACKGROUND

[0002] A sand table is a model made of sand and the like according to a topographic map, and is divided into a topographic sand table, a building sand table, an electronic sand table and the like, and is mainly used for commanding officers to study terrain and combat plans and to practice tactics.

[0003] However, in the prior art, the existing sand table is mostly made into a fixed structure for the purpose of achieving a perfect effect, and the actual manufacturing cost of the fixed structure sand table is high, and the structure of the sand table cannot be conveniently adjusted according to actual display requirements, so that the actual use of the existing teaching sand table is not good, and for the sand table using sand to display, it is difficult to accumulate sand into a specific shape, the actual display ability is weak, and the accumulated sand is easy to bury and hide the objects, which is not convenient for repairing the sand table, affects the subsequent use, and the actual use effect of the existing teaching sand table is not good. SUMMARY

[0004] The application aims to provide a sand table simulation device and a use method thereof, which can conveniently build a content simulation according to actual use conditions, and is convenient for repairing and subsequent reuse.

[0005] The technical scheme adopted by the application is as follows: a sand table simulation device comprises a display mechanism, the display mechanism comprises an outer frame, two moving frames, a fixed frame, a supporting frame, a spraying part, a vibrating part and a moving part, the outer frame is provided with guide rails on the outer surfaces of both sides, the two moving frames are arranged on the top of the two guide rails, a rotating strip is rotatably connected between the opposite outer surfaces of the two moving frames, the fixed frame is fixedly connected to the outer surface of one side of the outer frame, the supporting frame is fixedly connected to the inner bottom surface of the outer frame, three supporting rollers are rotatably connected between the inner side walls of the two ends of the supporting frame, a supporting belt is sleeved between the outer surfaces of the three supporting rollers, the spraying part is arranged on the two moving frames, the vibrating part is arranged on the supporting frame, and the moving part is arranged on the outer frame. The recovery mechanism comprises a bottom frame, an extension frame, a blocking frame, a first filtering component and a second filtering component, the bottom frame is fixedly connected to the inner bottom surface of the outer frame, the inner bottom surface of the bottom frame is fixedly connected with a liquid collecting frame, two material collecting frames are slidingly inserted into the outer surface of one side of the bottom frame, the extension frame is fixedly connected to the outer surface of one side of the bottom frame, the inner surface wall of one side of the extension frame is provided with a first discharge port and a second discharge port, the first discharge port and the second discharge port are communicated with the inner bottom surface of the bottom frame, the outer surface of one side of the extension frame is provided with a mounting port, the inner surface wall of one side of the extension frame is rotatably connected with a threaded pipe, the threaded pipe is internally threadedly connected with a push rod, one end of the push rod is rotatably connected with a moving frame, the moving frame is slidingly inserted into the first discharge port, the blocking frame is fixedly connected to the top of the extension frame, the first filtering component is arranged in the mounting port, and the second filtering component is arranged on the moving frame.

[0006] The spraying component comprises an extension pipe, a rotary motor, a cylinder, a mounting rack and a spraying pipe, the extension pipe penetrates the top of the rotary strip, the rotary motor is fixedly connected to the top of one of the moving racks, and the output end of the rotary motor is fixedly connected to one end of the rotary strip, the cylinder is fixedly connected to the bottom of the rotary strip, the mounting rack is fixedly connected to the output end of the cylinder, the spraying pipe penetrates the bottom of the mounting rack, and the input end of the spraying pipe is slidingly sleeved on the outer surfaces between the two output ends of the extension pipe.

[0007] The moving component comprises a moving threaded rod, a moving worm gear, a moving worm and a moving motor, the moving threaded rod and the moving worm are rotatably arranged on the outer surface of one side of the outer frame, the moving threaded rod is threadedly connected with the corresponding moving rack, the moving worm gear is sleeved on the outer surface of the moving threaded rod, the moving worm gear is engaged with the moving worm, and the output end of the moving motor is fixedly connected to one end of the moving worm.

[0008] The vibration component comprises four supporting rods, a vibration rack and three vibration motors, the four supporting rods are slidingly inserted into the top of the supporting rack, the outer surface of each supporting rod is slidingly sleeved with a supporting spring, the vibration rack is fixedly connected between the top ends of the four supporting rods, and the three vibration motors are fixedly connected to the bottom of the vibration rack.

[0009] The driving motor is fixedly connected to the inner surface wall of one side of the supporting rack, the output end of the driving motor is sleeved with a connecting wheel, the outer surface of one of the supporting rollers is also sleeved with a connecting wheel, and the outer surfaces between the two connecting wheels are sleeved with a connecting belt.

[0010] The support frame top is fixedly connected with two side plates through bolts, one side of one of the side plates is threadedly connected with an adjusting rod, the bottom end of the adjusting rod is rotatably connected with a pressing plate, the inside bottom surface of the outer frame is fixedly connected with a placing rack, and the outer surface of the support belt is sleeved with elastic limiting strips near the two side edges.

[0011] The first filter component includes a side frame and a filter plate, the side frame is inserted into the installation port, the outer surface of one side of the side frame is attached to the inner surface wall of one side of the extension frame, the filter plate is rotatably arranged between the inner side walls of the two ends of the side frame, one end of the filter plate extends to the outside of the extension frame, and the outer surface of one side of the side frame is threadedly connected with a positioning bolt.

[0012] The second filter component includes two fixed strips, a rotating strip, a plurality of rotating frames, a material guide frame, a rotating gear and a rotating rack, the two fixed strips are fixedly connected to the outer surface of one side of the moving frame, the rotating strip is rotatably connected between the outer surfaces of the two fixed strips, the plurality of rotating frames are fixedly connected to the top of the rotating strip, the inner surface wall of one side of each rotating frame is rotatably connected with a cover frame, the outer surface of each cover frame is sleeved with a first bevel gear, the inside of each cover frame is rotatably connected with a filter pipe, the outer surface of each filter pipe is sleeved with a second bevel gear, the inside of each rotating frame is rotatably connected with a third bevel gear, each third bevel gear is meshed with the corresponding first bevel gear and second bevel gear, the top end of each third bevel gear is fixedly connected with a linkage bevel gear, a linkage shaft is rotatably connected between the tops of the plurality of rotating frames, the outer surface of the linkage shaft is sleeved with a plurality of synchronous bevel gears, each synchronous bevel gear is meshed with the corresponding linkage bevel gear, the rotating gear is sleeved on the outer surface of the rotating strip, the rotating rack is fixedly connected to the outer surface of the other side of the extension frame and is meshed with the rotating gear, and the material guide frame is fixedly connected between the outer surfaces of the plurality of rotating frames and is in communication with the interiors of the plurality of cover frames.

[0013] The inner side walls of the two ends of the bottom frame are provided with moving grooves, the outer surfaces of the two sides of the moving frame extend into the interiors of the corresponding moving grooves, the outer surface of the other side of the extension frame is fixedly connected with a material collecting strip, the interiors of the second material discharging port and the two material collecting frames are in communication, the outer surface of one of the rotating frames is fixedly connected with an adjusting motor, the output end of the adjusting motor is fixedly connected with one end of the linkage shaft, the outer surfaces of each rotating frame are provided with liquid discharging pipes in communication, the liquid discharging pipes and the interiors of the corresponding filter pipes are in communication, a liquid guide pipe is provided in communication between the bottoms of the plurality of rotating frames, a liquid guide pipe is also provided in communication between the tops of the plurality of rotating frames, and a material guide plate is fixedly connected between the inner side walls of the two ends of the bottom frame.

[0014] A method for using a sand table simulation device, comprising the following steps: S1, display processing: through the extension pipe and the existing water resource supply equipment connection, through the fixed frame to install the existing projection equipment, at the same time, the sand used is dyed white, through the aggregate frame, a certain amount of white sand can be stored, the aggregate frame containing sand can be placed on the top of the placing frame, and then the white sand can be spread on the top of the supporting belt, then the control starts the driving motor, the driving motor cooperates with the linkage wheel and the linkage belt to drive the corresponding supporting roller to rotate, and then the rotating supporting roller drives the supporting belt to rotate, so that the white sand spread on the top of the supporting belt can be laid flat under the extrusion of the pressing plate, and according to the actual use requirement, the white sand laid flat can be stacked in different height structures on the top, until the white sand installation display effect fills the top of the supporting belt, at this time, the existing projection equipment is controlled to project the required content on the top of the white sand, and then the stacked white sand can demonstrate the display content more stereoscopically, improve the actual display effect, and at the same time, the existing water resource supply equipment injects water resources into the extension pipe, so that the injected water resources can be sprayed on the laid white sand through the spraying pipe, the control starts the moving motor, the moving motor cooperates with the moving worm and the moving worm gear to drive the moving screw rod to rotate, and then the rotating moving screw rod can move the adjusting moving frame, and then the moving frame can carry out the wetting treatment on the specified area in the moving process, so that the white sand after wetting can be more conveniently plasticized, and then the actual display teaching effect is improved; S2, recycling treatment: through two liquid guide pipes and the existing solution circulating device is connected, and then can be injected into the high temperature solution to multiple rotating frame inside circulation, when the need to support the top of the dry white sand recovery treatment, by rotating screw pipe, the screw pipe with push rod can be moved to the bottom frame under the position limit of the moving groove, while the moving frame blocks the first discharge port, at this time the dry white sand can be injected into the side frame through the extension frame, and then through the filter plate can be filtered white sand, the filtered white sand can be injected into two material collecting frame to collect and process, at the same time after filtering, by rotating the filter plate using angle, and then can conveniently filter out foreign matter, when the need to support the top of the wet white sand recovery treatment, by rotating the screw pipe, and then the moving frame is moved out of the first discharge port, while the moving frame can separate the space inside the extension frame, so that the wet white sand can flow into the cover frame through the moving frame, the material collecting strip and the guide frame, adjust the moving frame to the side of the blocking frame, and then control the start of the rotating motor, the rotating motor can rotate the rotating strip using angle, so that the spray pipe can be sprayed to the inside of the blocking frame, so that the water resources can be injected into the cover frame, at this time, by controlling the start of the adjusting motor, the adjusting motor drives the third bevel gear to rotate through the connecting shaft, synchronous bevel gear and connecting bevel gear, so that the rotating third bevel gear can synchronously drive the corresponding second bevel gear and first bevel gear to rotate, and then the corresponding cover frame and filter pipe can be synchronously rotated in opposite directions, at this time, the heavier wet white sand injected into the cover frame can be closely attached to the inner wall of the cover frame and rotate, while the excess water will be discharged into the liquid collecting frame through the filter pipe and the liquid discharge pipe, under the action of high temperature solution, the water remaining in the white sand will be fully discharged, finally the white sand in the cover frame becomes dry, by rotating the adjusting screw pipe, the moving frame returns to its original position, in the process, under the position limit of the rotating rack, the rotating gear can rotate the rotating frame using angle through the rotating rack, so that the dry white sand in the cover frame can be injected into the material collecting frame through the guide plate, and then the equipment can be conveniently recycled and reused, and the actual use effect of the equipment is improved.

[0015] In summary, due to the adoption of the above technical scheme, the beneficial effects of the present application are: (1) The present application, in use, is connected with the existing water resource supply equipment through the extension pipe, the existing projection equipment is installed through the fixing frame, the used sand is dyed white, a certain amount of white sand can be stored through the collecting frame, the collecting frame containing sand can be placed on the top of the placing rack, and then the white sand can be conveniently spread on the top of the supporting belt, the driving motor is started and controlled, the driving motor cooperates with the connecting wheel and the connecting belt to drive the corresponding supporting roller to rotate, the rotating supporting roller drives the supporting belt to rotate, the white sand spread on the top of the supporting belt can be laid flat under the extrusion of the pressing plate, and according to the actual use requirement, the white sand can be laid flat on the top of the white sand and stacked in different height structures until the white sand installation display effect fills the top of the supporting belt, at this time, the existing projection equipment is controlled to project the required content on the top of the white sand, and then the stacked white sand can more stereoscopically demonstrate the display content, improve the actual display effect, and the existing water resource supply equipment injects water resources into the extension pipe, the injected water resources can be sprayed on the laid white sand through the spraying pipe, the moving motor is started and controlled, the moving motor cooperates with the moving worm and the moving worm gear to drive the moving threaded rod to rotate, the rotating moving threaded rod moves the adjusting moving rack, and then the moving rack can moisten the specified area during the moving process, and then the white sand after being moistened can be more conveniently plasticized, and the actual display teaching effect is improved.

[0016] (2) In the application, when in use, through the connection of two liquid guide pipes with the existing solution circulating equipment, the high-temperature solution can be circulated and injected into multiple rotating frames; when it is necessary to recover and process the dry white sand gravel on the top of the support belt, the rotating threaded pipe is rotated, so that the threaded pipe cooperates with the push rod to move the moving frame into the bottom frame under the position limitation of the moving groove, and at the same time, the moving frame blocks the first discharge port; at this time, the dry white sand gravel can be injected into the side frame through the extension frame, and then the white sand gravel can be filtered through the filter plate; after filtering, the white sand gravel can be injected into the two material collecting frames through the second discharge port for centralized collection and processing; after filtering, the angle of the rotating filter plate is used to conveniently filter and discharge foreign matters; when it is necessary to recover and process the wet white sand gravel on the top of the support belt, the rotating threaded pipe is rotated to move the moving frame out of the first discharge port, and at the same time, the moving frame can separate the space in the extension frame, so that the wet white sand gravel can flow into the cover frame through the moving frame, the material collecting strip and the guide frame; the moving frame is adjusted and moved to the side of the blocking frame, and then the rotating motor is controlled and started to rotate and adjust the angle of the rotating strip, so that the spraying direction of the spraying pipe can be towards the inside of the blocking frame, and then the water resources sprayed can inject the white sand gravel into the cover frame; at this time, the adjusting motor is controlled and started to drive the third bevel gear to rotate through the cooperation of the connecting shaft, the synchronous bevel gear and the connecting bevel gear, so that the rotating third bevel gear can synchronously drive the corresponding second bevel gear and first bevel gear to rotate, and then the corresponding cover frame and filter pipe can synchronously and reversely rotate; at this time, the relatively heavy wet white sand gravel injected into the cover frame can closely follow the rotation of the inner wall of the cover frame, and the excess water resources will be discharged into the liquid collecting frame through the filter pipe and the liquid discharge pipe; under the action of the high-temperature solution, the water resources remaining in the white sand gravel will be fully discharged, so that the white sand gravel in the cover frame becomes dry; the moving frame is restored to the original position by rotating the adjusting threaded pipe; in this process, under the position limitation of the rotating rack, the rotating gear can cooperate with the rotating strip to rotate and adjust the angle of the rotating frame, so that the dry white sand gravel in the cover frame can be injected into the material collecting frame through the guide plate, and then the equipment can conveniently recover and reuse the white sand gravel, and the actual use effect of the equipment is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a first perspective view of the application; Figure 2 It is a second perspective view of the application; Figure 3 It is a first perspective view of the application; Figure 4 It is a cross-sectional view of the display mechanism of the application; Figure 5 It is a Figure 4Zoomed-in view of section A; Figure 6 Zoomed-in view of section B; Figure 4 Figure 7 Zoomed-in view of section C; Figure 4 Figure 8 Zoomed-in view of section D; Figure 4 Figure 9 Zoomed-in view of section E; Figure 4 Figure 10 First perspective view of the recycling mechanism according to the present application; Figure 11 Zoomed-in view of section F; Figure 10 Figure 12 Second perspective view of the recycling mechanism according to the present application; Figure 13 Zoomed-in view of section G. Figure 12

[0018] Markings in the figure: 1, display mechanism; 101, outer frame; 102, guide rail; 103, moving threaded rod; 104, moving motor; 105, moving worm; 106, moving frame; 107, rotating motor; 108, rotating bar; 109, extension pipe; 110, air cylinder; 111, spraying pipe; 112, mounting frame; 113, fixed frame; 114, support frame; 115, support roller; 116, support belt; 117, elastic limiting bar; 118, driving motor; 119, vibrating frame; 120, support spring; 121, vibrating motor; 122, adjusting rod; 123, pressing plate; 124, side plate; 125, placing frame; 2, recycling mechanism; 201, bottom frame; 202, extension frame; 203, blocking frame; 204, side frame; 205, filter plate; 206, moving frame; 207, material collecting bar; 208, fixed bar; 209, rotating bar; 210, rotating frame; 211, blocking frame; 212, filter pipe; 213, material guiding frame; 214, liquid guiding pipe; 215, adjusting motor; 216, linkage shaft; 217, synchronous bevel gear; 218, third bevel gear; 219, rotating gear; 220, rotating rack; 221, threaded pipe; 222, push rod; 223, liquid collecting frame; 224, material guiding plate; 225, material collecting frame. DETAILED DESCRIPTION

[0019] In order to make the objectives, technical solutions, and advantages of the present application clearer, the present application is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.​​​​​​

[0020] Embodiments, see Figures 1-3 A sand table simulation device is composed of a display mechanism 1 and a recycling mechanism 2.

[0021] Specifically described as follows: See Figures 4-9The display mechanism 1 comprises an outer frame 101, two moving frames 106, a fixed frame 113, a supporting frame 114, a spraying part, a vibrating part and a moving part, the outer frame 101 is provided with guide rails 102 on the outer surfaces of two sides, the two moving frames 106 are arranged on the top of the two guide rails 102 respectively, the moving frames 106 are rotatably connected with rotating strips 108 between the opposite outer surfaces, the fixed frame 113 is fixedly connected with the outer surface of one side of the outer frame 101, the supporting frame 114 is fixedly connected with the inner bottom surface of the outer frame 101, three supporting rollers 115 are rotatably connected between the inner side walls of the two ends of the supporting frame 114, a supporting belt 116 is sleeved between the outer surfaces of the three supporting rollers 115, the spraying part is arranged on the two moving frames 106, the vibrating part is arranged on the supporting frame 114, the moving part is arranged on the outer frame 101, the spraying part comprises an extension pipe 109, a rotating motor 107, a gas cylinder 110, a mounting frame 112 and a spraying pipe 111, the extension pipe 109 penetrates the top of the rotating strip 108, the rotating motor 107 is fixedly connected with the top of one of the moving frames 106, and the output end of the rotating motor 107 is fixedly connected with one end of the rotating strip 108, the gas cylinder 110 is fixedly connected with the bottom of the rotating strip 108, the mounting frame 112 is fixedly connected with the output end of the gas cylinder 110, the spraying pipe 111 penetrates the bottom of the mounting frame 112, and the input end of the spraying pipe 111 is sleeved on the outer surfaces between the two output ends of the extension pipe 109, the moving part comprises a moving threaded rod 103, a moving worm wheel, a moving worm 105 and a moving motor 104, the moving threaded rod 103 and the moving worm 105 are rotatably arranged on the outer surface of one side of the outer frame 101, the moving threaded rod 103 is threadedly connected with the corresponding moving frame 106, the moving worm wheel is sleeved on the outer surface of the moving threaded rod 103, the moving worm wheel is engaged with the moving worm 105, the moving motor 104 is fixedly connected with the outer surface of one side of the outer frame 101, and the output end of the moving motor 104 is fixedly connected with one end of the moving worm 105, the vibrating part comprises four supporting rods, a vibrating frame 119 and three vibrating motors 121, the four supporting rods are slidably inserted into the top of the supporting frame 114, the supporting rods are slidably sleeved with supporting springs 120 on the outer surfaces, the vibrating frame 119 is fixedly connected between the top ends of the four supporting rods, the three vibrating motors 121 are fixedly connected with the bottom of the vibrating frame 119, a driving motor 118 is fixedly connected with the inner surface wall of one side of the supporting frame 114, the output end of the driving motor 118 is sleeved with a driving wheel, the outer surface of one of the supporting rollers 115 is also sleeved with a driving wheel, and the outer surfaces between the two driving wheels are sleeved with a driving belt, the top of the supporting frame 114 is fixedly connected with two side plates 124 through bolts, one side of the outer surface of one of the side plates 124 is threadedly connected with an adjusting rod 122, the bottom end of the adjusting rod 122 is rotatably connected with a pressing plate 123, the inner bottom surface of the outer frame 101 is fixedly connected with a placing frame 125, the outer surface of the supporting belt 116 is sleeved with elastic limiting strips 117 near the edges of the two sides, the extension pipe 109 is connected with an existing water resource supply device, the existing projection device is installed through the fixed frame 113,Meanwhile, the sand used is dyed white, and a certain amount of white sand can be stored through the aggregate frame 225. The aggregate frame 225 containing sand can be placed on the top of the placing rack 125, so as to facilitate the spreading of white sand on the top of the supporting belt 116. Then, the driving motor 118 is controlled to start, so that the driving motor 118 drives the corresponding supporting roller 115 to rotate through the cooperation of the linkage wheel and the linkage belt. Then, the rotating supporting roller 115 drives the supporting belt 116 to rotate, so that the white sand spread on the top of the supporting belt 116 can be flattened under the extrusion of the pressing plate 123. Meanwhile, according to actual use requirements, the white sand can be stacked in different height structures on the top of the flattened white sand, until the white sand is filled on the top of the supporting belt 116 to achieve the installation and display effect. At this time, the existing projection equipment is controlled to project the required content on the top of the white sand, so that the stacked white sand can demonstrate the display content more stereoscopically, improve the actual display effect, and at the same time, the existing water supply equipment is used to inject water into the extension pipe 109, so that the injected water can be sprayed on the flattened white sand through the spraying pipe 111. The moving motor 104 is controlled to start, so that the moving motor 104 drives the moving screw rod 103 to rotate through the cooperation of the moving worm gear 105 and the moving worm wheel. Then, the rotating moving screw rod 103 drives the moving frame 106 to move, so that the moving frame 106 can perform the wetting treatment on the specified area during the movement, and the white sand after wetting can be more conveniently plasticized. Please refer to Figures 10-13The recycling mechanism 2 comprises a bottom frame 201, an extension frame 202, a blocking frame 203, a first filtering component and a second filtering component. The bottom frame 201 is fixedly connected to the inner bottom surface of the outer frame 101. The inner bottom surface of the bottom frame 201 is fixedly connected with a liquid collecting frame 223. Two material collecting frames 225 are slidingly inserted into the outer surface of one side of the bottom frame 201. The extension frame 202 is fixedly connected to the outer surface of one side of the bottom frame 201. The inner surface wall of one side of the extension frame 202 is provided with a first discharging opening and a second discharging opening. The first discharging opening and the second discharging opening are in communication with the inner bottom surface of the bottom frame 201. The outer surface of one side of the extension frame 202 is provided with a mounting opening. The inner surface wall of one side of the extension frame 202 is rotatably connected with a threaded pipe 221. The threaded pipe 221 is internally and threadedly connected with a push rod 222. One end of the push rod 222 is rotatably connected with a moving frame 206. The moving frame 206 is slidingly inserted into the first discharging opening. The blocking frame 203 is fixedly connected to the top of the extension frame 202. The first filtering component is arranged in the mounting opening. The second filtering component is arranged on the moving frame 206. The first filtering component comprises a side frame 204 and a filtering plate 205. The side frame 204 is inserted into the mounting opening. The outer surface of one side of the side frame 204 is attached to the inner surface wall of one side of the extension frame 202. The filtering plate 205 is rotatably arranged between the inner side walls of the two ends of the side frame 204. One end of the filtering plate 205 extends to the outside of the extension frame 202. The outer surface of one side of the side frame 204 is threadedly connected with a positioning bolt. The second filtering component comprises two fixed bars 208, a rotating bar 209, a plurality of rotating frames 210, a material guiding frame 213, a rotating gear 219 and a rotating rack 220. The two fixed bars 208 are fixedly connected to the outer surface of one side of the moving frame 206. The rotating bar 209 is rotatably connected between the outer surfaces of the two fixed bars 208. The plurality of rotating frames 210 are fixedly connected to the top of the rotating bar 209. The inner surface wall of one side of each rotating frame 210 is rotatably connected with a blocking frame 211. The outer surface of each blocking frame 211 is sleeved with a first bevel gear. The inner surface of each blocking frame 211 is rotatably connected with a filtering pipe 212. The outer surface of each filtering pipe 212 is sleeved with a second bevel gear. The inner top surface of each rotating frame 210 is rotatably connected with a third bevel gear 218. Each third bevel gear 218 is engaged with the corresponding first bevel gear and second bevel gear. The top end of each third bevel gear 218 is fixedly connected with a linkage bevel gear. The top of the plurality of rotating frames 210 is rotatably connected with a linkage shaft 216. The outer surface of the linkage shaft 216 is sleeved with a plurality of synchronous bevel gears 217. Each synchronous bevel gear 217 is engaged with the corresponding linkage bevel gear. The rotating gear 219 is sleeved to the outer surface of the rotating bar 209. The rotating rack 220 is fixedly connected to the outer surface of the other side of the extension frame 202 and engaged with the rotating gear 219. The material guiding frame 213 is fixedly connected between the outer surfaces of the plurality of rotating frames 210 and in communication with the inner surfaces of the plurality of blocking frames 211. The inner side walls of the two ends of the bottom frame 201 are provided with moving grooves. The outer surfaces of the two sides of the moving frame 206 extend into the corresponding moving grooves. The outer surface of the other side of the extension frame 202 is fixedly connected with a material collecting strip 207.The second discharge port and the two material collecting frames 225 are in communication, one side of each rotating frame 210 is fixedly connected with an adjusting motor 215, the output end of the adjusting motor 215 is fixedly connected with one end of a connecting shaft 216, the outer surface of each rotating frame 210 is provided with a liquid discharge pipe in communication, the liquid discharge pipe and the corresponding filter pipe 212 are in communication, the bottoms of the plurality of rotating frames 210 are provided with liquid guide pipes 214 in communication, the tops of the plurality of rotating frames 210 are also provided with liquid guide pipes 214 in communication, the inner side walls between the two ends of the bottom frame 201 are fixedly connected with guide plates 224, the two liquid guide pipes 214 are connected with the existing solution circulating equipment, so that the high-temperature solution can be circulated and injected into the plurality of rotating frames 210, when the dry white sand on the top of the support belt 116 needs to be recovered, the rotating screw pipe 221 is rotated, the screw pipe 221 cooperates with the push rod 222 to move the moving frame 206 to the inside of the bottom frame 201 under the position limitation of the moving groove, and the moving frame 206 blocks the first discharge port, at this time, the dry white sand can be injected into the side frame 204 through the extension frame 202, and then the white sand can be filtered through the filter plate 205, the filtered white sand can be injected into the two material collecting frames 225 through the second discharge port for centralized collection and treatment, and after filtering, the rotating filter plate 205 is used to conveniently filter and discharge foreign matters, when the wet white sand on the top of the support belt 116 needs to be recovered, the rotating screw pipe 221 is rotated, and then the moving frame 206 is moved out of the first discharge port, the moving frame 206 can separate the space in the extension frame 202, so that the wet white sand can flow into the cover frame 211 through the moving frame 206, the material guiding strip 207 and the material guiding frame 213, the moving frame 106 is adjusted and moved to one side of the blocking frame 203, the rotating motor 107 is controlled and started, the rotating motor 107 can rotate and adjust the angle of the rotating strip 108, so that the spraying direction of the spraying pipe 111 can be towards the inside of the blocking frame 203, so that the sprayed water can be injected into the cover frame 211, at this time, the adjusting motor 215 is controlled and started, the adjusting motor 215 drives the third bevel gear 218 to rotate through the connecting shaft 216, the synchronous bevel gear 217 and the connecting bevel gear, so that the rotating third bevel gear 218 can synchronously drive the corresponding second bevel gear and first bevel gear to rotate, and then the corresponding cover frame 211 and filter pipe 212 can be synchronously and reversely rotated, at this time, the heavier wet white sand injected into the cover frame 211 can closely follow the rotation of the inner wall of the cover frame 211, and the excess water can be discharged into the liquid collecting frame 223 through the filter pipe 212 and the liquid discharge pipe, under the action of the high-temperature solution, the water remaining in the white sand can be fully discharged, and finally the white sand in the cover frame 211 becomes dry, the moving frame 206 is restored to the original position by rotating the adjusting screw pipe 221, and in this process, under the position limitation of the rotating rack 220,The rotation gear 219 can cooperate with the rotating rod 209 to rotate the rotating frame 210 to adjust the use angle, so that the dried white sand in the cover frame 211 can be injected into the material collecting frame 225 through the guide plate 224, and the device can be used for recycling the white sand.

[0022] The use method of the sand table simulation device provided by the embodiment of the application is described in detail below, and the use method comprises the following steps: Step one, display processing: connect the extension pipe 109 with the existing water resource supply equipment, install the existing projection equipment through the fixing frame 113, dye the sand used into white, store a certain amount of white sand in the material collecting frame 225, place the material collecting frame 225 containing sand on the top of the placing frame 125, spread the white sand on the top of the supporting belt 116, control the driving motor 118 to drive the corresponding supporting roller 115 to rotate through the connecting wheel and the connecting belt, then drive the supporting belt 116 to rotate through the rotating supporting roller 115, and spread the white sand on the top of the supporting belt 116, and press the white sand through the pressing plate 123, and according to the actual use requirement, stack the white sand on the top of the white sand in different heights, until the white sand is filled on the top of the supporting belt 116, then control the existing projection equipment to project the required content on the top of the white sand, cooperate with the stacked white sand to demonstrate the display content more stereoscopically, improve the actual display effect, and inject water into the extension pipe 109 through the existing water resource supply equipment, and spray the water on the white sand through the spraying pipe 111, control the moving motor 104 to drive the moving screw rod 103 to rotate through the moving worm 105 and the moving worm gear, then drive the moving screw rod 103 to move the moving frame 106, and then the moving frame 106 can be wetted in the moving process, and the white sand can be plasticized more conveniently, and the actual display teaching effect is improved. Step two, recycling: through two liquid guide pipes 214 and the existing solution circulating device is connected, and then can be recycled to the inside of the plurality of rotating frame 210 injection high temperature solution, when the need to support the top of the dry white sand belt 116 recovery processing, by rotating screw pipe 221, the screw pipe 221 with the push rod 222 can be moved to the bottom frame 201 inside the mobile frame 206 under the position limit, at the same time, the mobile frame 206 blocks the first discharge port, at this time, the dry white sand can be injected into the side frame 204 through the extension frame 202, and then the filtered through the filter plate 205, the filtered white sand can be injected into two material collection frame 225 for centralized collection and processing, at the same time, after filtering, by rotating the filter plate 205 using angle, in turn, can be convenient to filter out foreign matter, when the need to support the top of the wet white sand belt 116 recovery processing, by rotating screw pipe 221, in turn, the mobile frame 206 is moved out of the first discharge port, at the same time, the mobile frame 206 can be extended frame 202 inside space separation, in turn, the wet white sand can flow to the inside of the cover frame 211 through the mobile frame 206, the material collection strip 207 and the guide frame 213, the moving frame 106 is adjusted to move to the side of the blocking frame 203, in turn, by controlling the start of the rotating motor 107, the rotating motor 107 can rotate the adjusting rotating strip 108 using angle, in turn, the spraying pipe 111 can be sprayed to the inside of the blocking frame 203, in turn, the sprayed water resources can be injected into the cover frame 211, at this time, by controlling the start of the adjusting motor 215, the adjusting motor 215 cooperates with the connecting shaft 216, the synchronous bevel gear 217 and the connecting bevel gear to drive the third bevel gear 218 to rotate, in turn, the rotating third bevel gear 218 can synchronously drive the corresponding second bevel gear and first bevel gear to rotate, in turn, the corresponding cover frame 211 and filter pipe 212 can be synchronously rotated in opposite directions, at this time, the heavier wet white sand injected into the cover frame 211 can be closely attached to the inner wall of the cover frame 211 and rotate, at the same time, the excess water resources will be discharged into the liquid collection frame 223 through the filter pipe 212 and the liquid discharge pipe, under the action of high temperature solution, the water resources remaining in the white sand will be fully discharged, finally, the white sand in the cover frame 211 becomes dry, by rotating the adjusting screw pipe 221, the mobile frame 206 returns to the original position, in the process, under the position limit of the rotating rack 220, the rotating gear 219 can cooperate with the rotating strip 209 to rotate and adjust the angle of the rotating frame 210, in turn, the dry white sand in the cover frame 211 can be injected into the material collection frame 225 through the guide plate 224, in turn, the equipment can be convenient for recycling white sand, and improve the actual use effect of the equipment.

[0023] The above merely describes preferred embodiments of the present application, and is not used to limit the present application, any modification, equivalent replacement and improvement within the spirit and principle of the present application should be included in the protection scope of the present application.

Claims

1. A sand table simulation device, characterized in that, include: The display mechanism (1) includes an outer frame (101), two movable frames (106), a fixed frame (113), a support frame (114), a spray component, a vibration component, and a movable component. Guide rails (102) are fixedly connected to both outer surfaces of the outer frame (101). The two movable frames (106) are respectively set on the top of the two guide rails (102). A rotating bar (108) is rotatably connected between the outer surfaces of the two movable frames (106). The fixed frame (114) is... 3) The support frame (114) is fixedly connected to the outer surface of one side of the outer frame (101), and is fixedly connected to the bottom surface inside the outer frame (101). Three support rollers (115) are rotatably connected between the inner sidewalls of both ends of the support frame (114). A support belt (116) is sleeved between the outer surfaces of the three support rollers (115). The spraying component is set on two movable frames (106), the vibration component is set on the support frame (114), and the movable component is set on the outer frame (101); and The recycling mechanism (2) includes a base frame (201), an extension frame (202), a baffle frame (203), a first filter component, and a second filter component. The base frame (201) is fixedly connected to the bottom surface inside the outer frame (101). A liquid collection frame (223) is fixedly connected to the bottom surface inside the base frame (201). Two material collection frames (225) are slidably inserted into the outer surface of one side of the base frame (201). The extension frame (202) is fixedly connected to the outer surface of one side of the base frame (201). A first discharge port and a second discharge port are opened on the inner surface wall of one side of the extension frame (202). The second discharge port is connected to the bottom frame (201). An installation port is provided on the outer surface of one side of the extension frame (202). A threaded tube (221) is rotatably connected to the inner wall of one side of the extension frame (202). A push rod (222) is threadedly connected inside the threaded tube (221). A movable frame (206) is rotatably connected to one end of the push rod (222). The movable frame (206) is slidably inserted into the first discharge port. The baffle (203) is fixedly connected to the top of the extension frame (202). The first filter component is set inside the installation port, and the second filter component is set on the movable frame (206).

2. The sand table simulation device as described in claim 1, characterized in that: The spraying component includes an extension pipe (109), a rotary motor (107), a cylinder (110), a mounting bracket (112), and a spray pipe (111). The extension pipe (109) passes through the top of the rotating bar (108). The rotary motor (107) is fixedly connected to the top of one of the movable brackets (106), and the output end of the rotary motor (107) is fixedly connected to one end of the rotating bar (108). The cylinder (110) is fixedly connected to the bottom of the rotating bar (108). The mounting bracket (112) is fixedly connected to the output end of the cylinder (110). The spray pipe (111) passes through the bottom of the mounting bracket (112), and the input end of the spray pipe (111) is slidably sleeved between the outer surfaces of the two output ends of the extension pipe (109).

3. The sand table simulation device as described in claim 2, characterized in that: The moving component includes a moving threaded rod (103), a moving worm gear, a moving worm (105), and a moving motor (104). The moving threaded rod (103) and the moving worm (105) are both rotatably mounted on the outer surface of one side of the outer frame (101). The moving threaded rod (103) is threadedly connected to the corresponding moving frame (106). The moving worm gear is sleeved on the outer surface of the moving threaded rod (103). The moving worm gear and the moving worm (105) mesh with each other. The moving motor (104) is fixedly connected to the outer surface of one side of the outer frame (101). The output end of the moving motor (104) is fixedly connected to one end of the moving worm (105).

4. A sand table simulation device as described in claim 3, characterized in that: The vibration component includes four support rods, a vibration frame (119), and three vibration motors (121). The four support rods are slidably inserted into the top of the support frame (114), and a support spring (120) is slidably sleeved on the outer surface of each support rod. The vibration frame (119) is fixedly connected between the tops of the four support rods, and the three vibration motors (121) are fixedly connected to the bottom of the vibration frame (119).

5. A sand table simulation device as described in claim 4, characterized in that: A drive motor (118) is fixedly connected to the inner wall of one side of the support frame (114). A connecting wheel is sleeved on the output end of the drive motor (118). A connecting wheel is also sleeved on the outer surface of one of the support rollers (115). A connecting belt is sleeved between the outer surfaces of the two connecting wheels.

6. A sand table simulation device as described in claim 5, characterized in that: The top of the support frame (114) is fixedly connected to two side plates (124) by bolts. One of the side plates (124) has an adjusting rod (122) threadedly connected to one side of its outer surface. The bottom of the adjusting rod (122) is rotatably connected to a pressure plate (123). The bottom of the inner frame (101) is fixedly connected to a placement rack (125). The outer surface of the support belt (116) is fitted with elastic limiting strips (117) near the two side edges.

7. A sand table simulation device as described in claim 6, characterized in that: The first filter component includes a side frame (204) and a filter plate (205). The side frame (204) is inserted into the mounting port, and the outer surface of one side of the side frame (204) and the inner surface wall of one side of the extension frame (202) are attached. The filter plate (205) is rotatably disposed between the inner side walls of both ends of the side frame (204). One end of the filter plate (205) extends to the outside of the extension frame (202). A positioning bolt is threaded onto the outer surface of one side of the side frame (204).

8. A sand table simulation device as described in claim 7, characterized in that: The second filter component includes two fixed strips (208), a rotating strip (209), multiple rotating frames (210), a guide frame (213), a rotating gear (219), and a rotating rack (220). The two fixed strips (208) are fixedly connected to the outer surface of one side of the movable frame (206). The rotating strip (209) is rotatably connected between the outer surfaces of the two fixed strips (208). The multiple rotating frames (210) are fixedly connected to the top of the rotating strip (209). A cover frame (211) is rotatably connected to the inner wall of one side of each rotating frame (210). A first bevel gear is fitted on the outer surface of each cover frame (211). A filter tube (212) is rotatably connected inside each cover frame (211). A second bevel gear is fitted on the outer surface of each filter tube (212). A third bevel gear is rotatably connected to the top surface inside each rotating frame (210). 218), each of the third bevel gears (218) meshes with the corresponding first bevel gear and second bevel gear, and each of the third bevel gears (218) has a connecting bevel gear fixedly connected to its top end. A connecting shaft (216) is rotatably connected between the tops of the multiple rotating frames (210). Multiple synchronous bevel gears (217) are sleeved on the outer surface of the connecting shaft (216). Each synchronous bevel gear (217) meshes with the corresponding connecting bevel gear. A rotating gear (219) is sleeved on the outer surface of the rotating bar (209). The rotating rack (220) is fixedly connected to the outer surface of the other side of the extension frame (202), and the rotating rack (220) meshes with the rotating gear (219). The guide frame (213) is fixedly connected between the outer surfaces of the multiple rotating frames (210), and the interior of the guide frame (213) is connected to the interior of the multiple shielding frames (211).

9. A sand table simulation device as described in claim 8, characterized in that: The bottom frame (201) has a moving groove on its inner sidewalls at both ends. The outer surfaces of the moving frame (206) on both sides extend into the corresponding moving groove. The outer surface of the extension frame (202) on the other side is fixedly connected to a collection strip (207). The second discharge port and the two collection frames (225) are connected inside. One of the rotating frames (210) has an adjusting motor (215) fixedly connected to one side of its outer surface. The output end of the adjusting motor (215) is fixedly connected to one end of the connecting shaft (216). Each rotating frame (210) has a drain pipe connected to its outer surface. Each drain pipe is connected to the corresponding filter pipe (212). A guide pipe (214) is connected between the bottoms of multiple rotating frames (210). A guide pipe (214) is also connected between the tops of multiple rotating frames (210). A guide plate (224) is fixedly connected between the inner sidewalls at both ends of the bottom frame (201).

10. A method of using a sand table simulation device, characterized in that, When applied to a sand table simulation device as described in claim 9, the method includes the following steps: S1. Display Processing: The existing water supply equipment is connected via an extension pipe (109), and the existing projection equipment is installed via a mounting frame (113). The sand used is dyed white, and the white sand can be stored in a collection box (225). The collection box (225) containing the sand can be placed on top of the placement frame (125), which facilitates the spreading of the white sand onto the top of the support belt (116). The drive motor (118) is started by controlling the start of the drive motor (118), which, together with the connecting wheel and the connecting belt, can drive the corresponding support roller (115) to rotate. The rotating support roller (115) can then drive the support belt (116) to rotate, so that the white sand spread on the top of the support belt (116) can be flattened under the pressure of the pressure plate (123). At the same time, according to the actual use requirements, different height structures are stacked on top of the flattened white sand until the white sand is installed. The top of the support strip (116) is filled with the display effect. At this time, the existing projection equipment is controlled to project the required content onto the top of the white gravel. In this way, the white gravel can be stacked to present the display content in a more three-dimensional way, thereby improving the actual display effect. At the same time, water resources are injected into the extension pipe (109) through the existing water supply equipment, so that the injected water resources can be sprayed onto the flat white gravel through the spray pipe (111). By controlling the start of the moving motor (104), the moving motor (104) can drive the moving threaded rod (103) to rotate in conjunction with the moving worm (105) and the moving worm wheel. Then, the rotating moving threaded rod (103) can move and adjust the moving frame (106), so that the moving frame (106) can wet the designated area during the movement. In this way, the wet white gravel can be more easily plasticized, thereby improving the actual display teaching effect. S2. Recycling: The solution is connected to the existing solution circulation equipment through two liquid guide pipes (214), which can then circulate and inject solution into multiple rotating frames (210). When it is necessary to recycle the dried white gravel on the top of the support belt (116), the threaded pipe (221) is rotated so that the threaded pipe (221) and the push rod (222) can move the moving frame (206) to the bottom frame (201) under the position restriction of the moving groove. At the same time, the moving frame (206) blocks the first discharge port. At this time, the dried white gravel can be injected into the side frame (204) through the extension frame (202), and then the white gravel can be filtered through the filter plate (205). The filtered white gravel can be injected into the second discharge port. The material is collected and processed in two collection frames (225). After filtration, the foreign matter can be easily filtered out by rotating the filter plate (205) at an angle. When it is necessary to recycle the wet white sand on the top of the support belt (116), the moving frame (206) is moved out of the first discharge port by rotating the threaded pipe (221). At the same time, the moving frame (206) can divide the internal space of the extension frame (202), so that the wet white sand can flow into the shield frame (211) through the moving frame (206), the collection strip (207) and the guide frame (213). The moving frame (106) is adjusted and moved to the side of the baffle frame (203), and the rotating motor (107) is started by controlling the rotation. The rotating motor (107) can rotate and adjust the angle of the rotating bar (108), so that the spray direction of the spray pipe (111) can be directed towards the inside of the baffle (203), thereby allowing the sprayed water to wash the white sand and gravel into the baffle (211). At this time, by controlling the start of the adjusting motor (215), the adjusting motor (215) works with the connecting shaft (216), the synchronous bevel gear (217), and the connecting bevel gear to drive the third bevel gear (218) to rotate, thereby allowing the rotating third bevel gear (218) to synchronously drive the corresponding second bevel gear and the first bevel gear to rotate, thereby allowing the corresponding baffle (211) and the filter pipe (212) to rotate synchronously in opposite directions, at which time the moisture injected into the baffle (211) The white gravel adheres tightly to the inner wall of the shielding frame (211) and rotates with it. Simultaneously, excess water is discharged through the filter pipe (212) and drain pipe into the collection frame (223). Under the action of the solution, the water remaining in the white gravel is fully discharged, ultimately drying the white gravel in the shielding frame (211). The moving frame (206) is then restored to its original position by rotating the adjusting threaded pipe (221). During this process, the rotating gear (219) works in conjunction with the rotating bar (209) to adjust the angle of the rotating frame (210), allowing the dried white gravel inside the shielding frame (211) to be injected into the collection frame (225) through the guide plate (224).This facilitates the recycling and reuse of white sand and gravel, improving the actual performance of the equipment.