Integrated box-type equipment for preparing gold tailing-based composite material
By using a partition structure made of gold tailings-based composite material and a thermal sensor in the box-type equipment, the problems of easy loosening of the wire fixing structure and damage to the insulation layer were solved, realizing the wire temperature monitoring and alarm functions, and improving the installation efficiency and equipment stability of electrical equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHINA CONSTR THIRD ENG BUREAU GRP CO LTD
- Filing Date
- 2026-01-28
- Publication Date
- 2026-05-01
AI Technical Summary
The existing wire fixing structure is rigid, which makes the connection end easy to loosen and the insulation layer to be damaged when the wire is pulled by external force. Moreover, it is impossible to detect the loose connection end and the insulation layer damage in time, so it is impossible to stop the damage in time.
The box-type equipment, made of gold tailings-based composite material, has an internal partition structure, including a mounting frame, a transmission thread seat, a transmission component, and a limiting component. It uses an elastic liquid reservoir and a thermally conductive sensing rod to detect the temperature of the wires through I-shaped rubber parts and thermal sensors, issuing timely alarms to prevent wire damage and increase the stability of the wire fixation.
It enables real-time monitoring and alarm of wire temperature, avoids wire damage, improves the speed and stability of electrical equipment installation, reduces the occurrence of accidents, and ensures the stable operation of box-type equipment.
Smart Images

Figure CN121965320A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of electrical equipment installation technology, specifically to an integrated box-type equipment for preparing gold tailings-based composite materials. Background Technology
[0002] Distribution cabinets are essential key electrical equipment in modern power systems, especially in industrial, commercial, and large civil buildings. You can think of it as the "heart" or "transportation hub" of the power system—it is responsible for receiving high-voltage electrical energy from the power grid or power generation equipment, and through its internal sophisticated distribution, protection, and control devices, safely, orderly, and reliably transmitting the electrical energy to various end-user devices.
[0003] In the application of power distribution cabinets, various wire fixing structures are used to assist in the centralized installation of electrical equipment. However, the existing wire fixing structures are rigid fixations. When the wires are pulled by external forces, the internally fixed wires have no buffer margin, which can easily lead to loose connections and damaged insulation layers. Furthermore, it is impossible to detect loose wire connections and damaged insulation layers in time, and it is impossible to stop the damage in time.
[0004] For example, patent document CN111682405B discloses a power distribution cabinet with a cable telescopic device. The cabinet has a receiving cavity with an opening on one side. The cabinet door is hinged to the cabinet body to close the receiving cavity. A cable telescopic device is provided at the cable inlet at the lower end of the receiving cavity. The cable telescopic device includes a rotating main shaft, a rotating grooved wheel, and an outer sleeve. The rotating main shaft is connected to the rotating grooved wheel. The outer circle of the rotating grooved wheel has a threaded groove for feeding and receiving cables. The rotating grooved wheel is fitted into the outer sleeve. The inner wall of the outer sleeve covers the threaded groove to form a threaded hole.
[0005] Taking the aforementioned power distribution cabinet as an example, the wire extension device is a rigid fixed structure. When the wire is pulled by external force, the internally fixed wire has no buffer margin, which can easily lead to loose connections and damaged insulation. Furthermore, it is impossible to detect the loose connections and damaged insulation in time, thus failing to stop the damage in time. Summary of the Invention
[0006] The purpose of this invention is to provide an integrated box-type device for preparing gold tailings-based composite materials, so as to solve the problems raised in the prior art.
[0007] To achieve the above objectives, the present invention provides the following technical solution: an integrated box-type equipment for preparing gold tailings-based composite materials, comprising a main housing, wherein the main housing has an internal partition structure, the partition structure comprising an installation frame, a transmission threaded seat, a transmission assembly, and four limiting components, the transmission assembly comprising a connecting seat three and a connecting seat four, wherein multiple elastic liquid storage bladders one are fixedly installed on one side of the connecting seat three, each elastic liquid storage bladder one having a heat-conducting sensing rod inside, and one end of each elastic liquid storage bladder one being connected to an I-shaped rubber component, wherein two pressurizing components are installed on one side of the connecting seat four, and a driving component is provided on the outer side of the connecting seat three, wherein the installation frame has an installation groove one and an installation groove two respectively opened at both ends, and multiple support frames are fixedly installed inside the main housing.
[0008] Preferably, multiple vertical partitions are fixedly installed inside the main housing of the equipment, and doors are installed on both sides of the main housing of the equipment.
[0009] Preferably, the transmission assembly includes a transmission threaded rod threaded through a transmission threaded seat. The transmission threaded seat is disposed inside a mounting groove and fixedly connected to a mounting frame. One end of the transmission threaded rod is rotatably connected to a power adapter. A sliding push block is rotatably mounted on the outside of the power adapter. The sliding push block is disposed inside the mounting frame. The outer wall of the sliding push block is in close contact with the mounting frame. Connecting seats are fixedly connected to both sides of the sliding push block.
[0010] Preferably, one end of the power adapter is rotatably connected to a connecting seat one, the connecting seat one is fixedly connected to a connecting seat three, two connecting plates are fixedly connected to one side of the connecting seat three, the connecting plates are inserted into the mounting frame, one end of the connecting plate is fixedly connected to a connecting seat four, and rotating rings are rotatably installed on both outer ends of the connecting seat four and on the outer side of the connecting seat six.
[0011] Preferably, the elastic liquid storage bladder is fixedly connected to the mounting frame, the thermally conductive sensing rod is fixedly inserted into the connecting seat, a liquid guiding groove is provided on one side of the thermally conductive sensing rod, the liquid guiding groove is opened on the mounting frame, one end of the liquid guiding groove is connected to the mounting groove, the mounting groove is opened at the top of the mounting frame, the I-shaped rubber component corresponds one-to-one with the mounting groove, the I-shaped rubber component is disposed inside the mounting groove and fixedly connected to the mounting frame.
[0012] Preferably, the drive assembly includes a forward and reverse motor and a gearbox fixedly mounted on the outer side of a connecting seat. The output end of the forward and reverse motor is fixedly connected to the input end of the gearbox. A drive screw is fixedly connected to the output end of the gearbox. One end of the drive screw is rotatably connected to the inner wall of the connecting seat. A second connecting seat is threaded onto the outer side of the drive screw.
[0013] Preferably, an electric push rod and two limiting sleeves are fixedly installed on one side of the connecting seat two. A sliding sleeve connecting rod is slidably inserted inside the limiting sleeve. A temperature sensor is fixedly connected between the two sliding sleeve connecting rods. The piston end of the electric push rod is fixedly connected to the temperature sensor. The detection end of the temperature sensor extends into the interior of the connecting seat three.
[0014] Preferably, the limiting component includes a mounting vertical plate, on both sides of which a rubber pad and a trapezoidal plate are fixedly connected. Three telescopic rods are provided at the top and bottom of the trapezoidal plate. A connecting seat five is fixedly connected between two adjacent telescopic rods. The connecting seat five is fixedly connected to the mounting frame. Four square slots are provided on the outer side of the mounting frame, and the mounting vertical plate corresponds to each square slot.
[0015] Preferably, the pressurization assembly includes two pistons fixedly connected to one side of the connecting seat, a support box is sleeved on the outside of the pistons, an elastic liquid storage bladder is fixedly connected to one end of the piston inside the support box, a flow guide box is fixedly connected to one end of the elastic liquid storage bladder, the outer wall of the flow guide box is fixedly connected to the support box, a hydraulic telescopic rod is fixedly inserted through the flow guide box, a limit rod is fixedly connected to the piston end of the hydraulic telescopic rod, and the limit rod is inserted through one side wall of the support box.
[0016] Preferably, a circular slot is provided on the outer side of the support frame, wherein two of the support frames are disposed inside the mounting frame, and the two support frames are respectively fitted onto the outer side of the two support boxes, and the circular slot is disposed on one side of the limiting rod.
[0017] Compared with the prior art, the beneficial effects of the present invention are: 1. When this application is used, the wire structure exchanges heat with the liquid inside the I-shaped rubber component. The heat-conducting sensing rod exchanges heat with the liquid inside the I-shaped rubber component to reflect the wire temperature. The temperature of multiple wires can be detected at regular intervals. The temperature sensor detection structure feeds back to the control equipment in the box-type equipment. When a wire overheats due to overload operation, poor contact of the overload operation line, aging or damage of the wire insulation layer, etc., the control equipment issues an alarm to avoid damage to the box-type equipment caused by wire damage, reduce sudden shutdown of the box-type equipment, ensure the stability of the box-type equipment operation, and can quickly locate the overheated wire, which facilitates the maintenance of the box-type equipment.
[0018] 2. When using this application, multiple wires can be pre-fixed to the inside of the main housing of the equipment according to preset positions, avoiding the situation where wires fall into gaps during the operation of connecting electrical equipment by the staff, and improving the speed of the staff to install and connect electrical equipment. The I-shaped rubber parts expand and wrap around the outside of the wires to fix the wires, changing the wire fixation from two points to three points, reducing the possibility of the wires becoming detached from the electrical equipment when subjected to accidental force. The partition structure increases the stability of the electrical equipment connected to each other through the wires, reducing the occurrence of accidents. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the partition structure of the present invention; Figure 3 This is a cross-sectional view of the mounting frame of the present invention; Figure 4 This is a schematic diagram of the structure of the power adapter of the present invention; Figure 5 This is a partial structural schematic diagram of the connector three of the present invention; Figure 6 This is a schematic diagram of the structure of the connecting seat three of the present invention; Figure 7 This is a schematic diagram of the connection structure between the connector three and the temperature sensor of the present invention; Figure 8 This is a schematic diagram of the separation structure of the mounting frame and the I-shaped rubber in this invention; Figure 9 This is a schematic diagram of the structure of the connector four of the present invention; Figure 10 This is a cross-sectional view of the support box of the present invention; Figure 11 This is a schematic diagram of the structure for installing the vertical plate of the present invention; Figure 12 This is a partial structural diagram of the mounting frame of the present invention; Figure 13 This is a schematic diagram of the support frame of the present invention.
[0020] Numbering on the map: 1. Main housing; 2. Partition structure; 21. Mounting frame; 22. Transmission threaded seat; 23. Mounting slot one; 24. Mounting slot two; 25. Transmission threaded rod; 26. Sliding push block; 27. Power adapter; 28. Connecting seat one; 29. Forward and reverse motor; 210. Gearbox; 211. Drive screw; 212. Connecting seat two; 213. Connecting seat three; 215. Temperature sensor; 217. Limiting sleeve; 218. Sleeve connecting rod; 219. Electric push rod; 220. Elastic liquid reservoir one; 221. Thermal conductive sensor rod; 2 22. Liquid diversion channel; 223. Mounting slot three; 224. I-shaped rubber component; 225. Connecting plate; 226. Connecting seat four; 227. Rotating ring; 228. Trapezoidal plate; 229. Mounting vertical plate; 230. Rubber pad; 231. Telescopic rod; 232. Connecting seat five; 233. Square groove; 234. Connecting seat six; 235. Piston; 236. Support box; 237. Elastic liquid storage bladder two; 238. Diversion box; 239. Hydraulic telescopic rod; 240. Limiting rod; 3. Separating vertical plate; 4. Support frame; 5. Circular slot. Detailed Implementation
[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0022] Example: Figures 1-13 As shown, the present invention provides an integrated box-type equipment for preparing gold tailings-based composite materials, including a main box body 1. The main box body 1 has a partition structure 2 inside. The partition structure 2 includes a mounting frame 21, a transmission thread seat 22, a transmission component, and four limiting components. The transmission component includes a connecting seat 3 213 and a connecting seat 4 226. Multiple elastic liquid storage bladders 1 220 are fixedly installed on one side of the connecting seat 3 213. A heat-conducting sensing rod 221 is installed inside the elastic liquid storage bladder 1 220. One end of the elastic liquid storage bladder 1 220 is connected to an I-shaped rubber component 224. Two pressurizing components are installed on one side of the connecting seat 4 226. A driving component is provided on the outside of the connecting seat 3 213. The mounting frame 21 has a mounting groove 1 23 and a mounting groove 24 at both ends. Multiple support frames 4 are fixedly installed inside the main box body 1.
[0023] Specifically, such as Figure 1The main housing 1 of the equipment has multiple vertical partitions 3 fixedly installed inside, which divide the interior of the main housing 1 into multiple installation spaces. Different electrical equipment is installed in the installation spaces. The electrical equipment is arranged according to functional zones. Through structural design, the equipment can be centrally installed, wired and managed. It has the dual advantages of material resource utilization and equipment integrated deployment, reducing the occurrence of collisions between electrical equipment during maintenance. Doors are installed on both sides of the main housing 1. The electrical equipment can be operated by closing and opening the doors.
[0024] Specifically, such as Figure 1 , Figure 2 , Figure 3 and Figure 4 In the transmission assembly, the transmission threaded rod 25 is threaded through the transmission threaded seat 22. The transmission threaded seat 22 is located inside the mounting groove 23 and is fixedly connected to the mounting frame 21. Rotating the transmission threaded rod 25 causes it to rotate and move. Controlling the rotation direction of the transmission threaded rod 25 controls its forward or backward movement. A sliding push block 26 is rotatably mounted on the outside of the power adapter 27 rotatably connected to one end of the transmission threaded rod 25. The sliding push block 26 is located inside the mounting frame 21, and its outer wall is in close contact with the mounting frame 21. Therefore, the sliding push block 26 moves horizontally back and forth inside the mounting frame 21. The two connecting seats 234 fixedly connected to both sides of the sliding push block 26 move back and forth synchronously.
[0025] One end of the power adapter 27 is rotatably connected to the connecting seat 28 and the connecting seat 213. During the forward and backward movement of the transmission threaded rod 25, the power adapter 27 pushes the connecting seat 28 to move forward and backward, and the connecting seat 213 moves synchronously. The two connecting plates 225 fixedly connected to one side of the connecting seat 21 are both mounted on the mounting frame 21. The temperature sensor 215 moves synchronously with the connecting seat 213. The two connecting plates 225 are fixedly connected to the connecting seat 226, and the connecting seat 226 moves synchronously. Rotating rings 227 are rotatably installed on both outer ends of the connecting seat 226 and on the outer side of the connecting seat 234. The rotating rings 227 move forward and backward synchronously.
[0026] Specifically, such as Figure 3 , Figure 6 , Figure 7 and Figure 8Multiple elastic liquid storage bladders 220 fixedly installed on one side of the connecting seat 3 213 are each equipped with a heat-conducting sensing rod 221. One end of the elastic liquid storage bladder 220 is fixedly connected to the mounting frame 21, and the heat-conducting sensing rod 221 is fixedly inserted into the connecting seat 3 213. The heat-conducting sensing rod 221 and the connecting seat 3 213 move back and forth. During the back and forth movement of the connecting seat 3 213, the elastic liquid storage bladder 220 contracts and expands. The liquid guide groove 222 provided on one side of the heat-conducting sensing rod 221 is opened in the mounting frame. On 21, the mounting groove 223, which is connected to one end of the liquid guide channel 222, is opened on the top of the mounting frame 21. The I-shaped rubber part 224 corresponds to the mounting groove 223 one by one. The I-shaped rubber part 224 is set inside the mounting groove 223 and is fixedly connected to the mounting frame 21. Therefore, the elastic liquid storage bladder 220 is connected to the I-shaped rubber part 224 through the liquid guide channel 222. The I-shaped rubber part 224, the liquid guide channel 222 and the elastic liquid storage bladder 220 cooperate to form a liquid storage cavity.
[0027] Specifically, such as Figure 4 , Figure 5 and Figure 7 In the drive assembly, the forward and reverse motor 29 and the gearbox 210 are both fixedly installed on the outside of the connecting seat 28. The output end of the forward and reverse motor 29 is fixedly connected to the input end of the gearbox 210. One end of the drive screw 211, which is fixedly connected to the output end of the gearbox 210, is rotatably connected to the inner wall of the connecting seat 28. The connecting seat 212 is threaded on the outside of the drive screw 211. The forward and reverse motor 29 is controlled to work and send rotational force to the gearbox 210. After the rotational force is reversed by the gearbox 210, it is applied to the drive screw 211. The drive screw 211 rotates, and the connecting seat 212 threaded on the outside of the drive screw 211 is subjected to force.
[0028] An electric push rod 219 and two limiting sleeves 217 are fixedly installed on one side of the connecting seat 212. A sliding sleeve connecting rod 218 is slidably inserted inside the limiting sleeve 217. A temperature sensor 215 is fixedly connected between the two sliding sleeve connecting rods 218. The piston end of the electric push rod 219 is fixedly connected to the temperature sensor 215. Therefore, controlling the operation of the electric push rod 219 can control the temperature sensor 215 to move back and forth. The detection end of the temperature sensor 215 extends into the connecting seat 3 213. The outer wall of the temperature sensor 215 is tightly attached to the connecting seat 3 213 and cannot rotate. The temperature sensor 215 limits the connecting seat 212 through the electric push rod 219, the sliding sleeve connecting rod 218 and the limiting sleeve 217. The connecting seat 212 cannot rotate radially along the drive screw 211. Therefore, the drive screw 211 rotates to drive the connecting seat 212 to move left and right, so that the detection end of the temperature sensor 215 aligns with different heat-conducting sensing rods 221.
[0029] Specifically, such as Figure 3 , Figure 11 and Figure 12The limiting component has rubber pads 230 and trapezoidal plates 228 fixedly connected to both sides of the vertical plate 229. The top and bottom of the trapezoidal plate 228 are provided with three telescopic rods 231. A connecting seat 232 is fixedly connected between two adjacent telescopic rods 231, and the connecting seat 232 is fixedly connected to the mounting frame 21. The outer shell of the telescopic rods 231 cannot move. Four square slots 233 are opened on the outside of the mounting frame 21. The vertical plate 229 corresponds to the square slots 233 one by one. The rubber pads 230 can move to the outside of the mounting frame 21 through the corresponding square slots 233.
[0030] Specifically, such as Figure 3 , Figure 4 , Figure 9 , Figure 10 and Figure 13 In the pressurization assembly, two pistons 235 are fixedly connected to one side of the connecting seat 226. A support box 236 is sleeved on the outside of the pistons 235. One end of the pistons 235, which is located inside the support box 236, is fixedly connected to an elastic liquid storage bladder 237. One end of the elastic liquid storage bladder 237 is fixedly connected to a flow guide box 238. The outer wall of the flow guide box 238 is fixedly connected to the support box 236. A hydraulic telescopic rod 239 is fixedly inserted through the flow guide box 238. A limit rod 240 is fixedly connected to the piston end of the hydraulic telescopic rod 239. The limit rod 240 is inserted through one side wall of the support box 236. The inlet of the hydraulic telescopic rod 239 is connected to the inside of the flow guide box 238. The elastic liquid storage bladder 237 is connected to the inside of the flow guide box 238.
[0031] A circular slot 5 is provided on the outer side of the support frame 4. Two support frames 4 are set inside the mounting frame 21. The two support frames 4 are respectively fitted on the outer side of the two support boxes 236. The support frames 4 and the support boxes 236 cooperate to support the mounting frame 21. The circular slot 5 is set on one side of the limiting rod 240. The inner diameter of the circular slot 5 is the same as the outer diameter of the limiting rod 240.
[0032] In summary, the box-type equipment consists of the main housing 1, partition structure 2, partition vertical plates 3, and support frame 4. The specific working principle of the box-type equipment is as follows: Multiple partition vertical plates 3 are fixedly installed inside the main enclosure 1, dividing the interior of the main enclosure 1 into multiple installation spaces. Different electrical equipment is installed in each of these spaces, and the electrical equipment is arranged according to functional zones. The main enclosure 1 and the partition vertical plates 3 are made of high-strength silicate material extracted from gold tailings slag, which has good compressive and flexural strength. The main enclosure 1 itself is not easily deformed or damaged. Moreover, silicate is an inorganic insulating material. In contrast, traditional metal enclosures require additional insulation layers, and fiberglass enclosures are prone to aging and leakage. The box-type equipment in this application utilizes the high insulation resistance of the material itself to effectively block current conduction, reduce the risk of leakage and short circuit under high voltage conditions, and improve the safety performance of the high-voltage box from the raw material level. Furthermore, the structured design of the partitioned installation of electrical equipment realizes the functions of centralized installation, wiring, and operation and maintenance management of electrical equipment, while also having the dual advantages of material resource utilization and integrated equipment deployment. This reduces the occurrence of mutual collisions and impacts during the maintenance of electrical equipment. Doors are installed on both sides of the main enclosure 1. The electrical equipment can be operated by opening and closing the doors.
[0033] After the electrical equipment and the main housing 1 are installed, when connecting the electrical equipment with wires, a pre-sized partition structure 2 is selected according to the location of the electrical equipment. Multiple I-shaped rubber parts 224 are fixedly installed on the mounting frame 21 in the partition structure 2. Wires are threaded through the I-shaped rubber parts 224. The elastic I-shaped rubber parts 224 pre-fix the wires, and the wires can still move even when subjected to a certain force. After multiple wires are threaded through the partition structure 2, one end of the partition structure 2 with the second mounting groove 24 is inserted into the main housing 1. After the second mounting groove 24 is aligned with the two pre-set support frames 4, the partition structure 2 is inserted into the main housing 1. The two sides of the partition structure 2 are supported by the partition vertical plate 3 and the side wall of the main housing 1, and the front of the partition structure 2 is supported by the two support frames 4. This completes the pre-fixation of the partition structure 2 and multiple wires. Multiple wires can be pre-fixed into the main housing 1 according to the preset position, avoiding the situation where wires fall into gaps during the operation of connecting electrical equipment, and improving the speed of electrical equipment installation and connection.
[0034] Once the wires are connected to the electrical equipment, the operating transmission threaded rod 25 rotates and moves forward. This causes the sliding push block 26, power adapter 27, connecting seat 1 28, connecting seat 3 213, connecting plate 225, and two connecting seats 4 226 to move forward. When the rear end of the transmission threaded rod 25 is parallel to the side of the mounting frame 21, the fixing of the partition structure 2 to the main housing 1 of the equipment is completed. During the forward movement of the sliding push block 26 and connecting seat 4 226, the rotating ring 227 installed on connecting seat 6 234 and the connecting seat... The rotating ring 227 installed on the fourth 226 moves forward and contacts the adjacent trapezoidal plate 228. The mounting vertical plate 229, which is fixedly connected to the trapezoidal plate 228, can move left and right under the restriction of multiple telescopic rods 231. At this time, the four mounting vertical plates 229 move, and the four rubber pads 230 leave the interior of the mounting frame 21 through the square groove 233 and stick to the inner wall of the main housing 1 or the side wall of the partition vertical plate 3. As the transmission threaded rod 25 moves forward, the force on the rubber pads 230 increases, and the rubber pads 230 and As the friction between the inner wall of the main housing 1 or the side wall of the partition vertical plate 3 increases, the mounting frame 21 is fixedly installed inside the main housing 1. During the forward movement of the connecting seat 4 226, the connecting seat 4 226 pushes the piston 235 to move into the support box 236. At this time, the support box 236 is set inside the support frame 4 and abuts against the inner wall of the main housing 1. The piston 235 moves and squeezes the elastic reservoir 237. The hydraulic pressure inside the elastic reservoir 237 and the guide box 238 increases, and the hydraulic pressure inside the hydraulic telescopic rod 239 increases. The hydraulic telescopic rod 239 extends and pushes the limiting rod 240 into the circular slot 5 opened in the support frame 4. Under the action of the transmission component, it is only necessary to operate the transmission threaded rod 25 to rotate, so that the partition structure 2 can be firmly fixed and installed inside the main housing 1 through the two limiting rods 240, the two support frames 4 and the four rubber pads 230. Similarly, it is only necessary to rotate the transmission threaded rod 25 to complete the installation and disassembly between the partition structure 2 and the main housing 1.
[0035] During the movement of connector 3 213, elastic reservoir 1 220 contracts, and I-shaped rubber component 224 expands to wrap around the outside of the wire, fixing the wire and changing the wire from two-point fixation to three-point fixation. This reduces the possibility of the wire detaching from the electrical equipment when it is accidentally subjected to force. The separation structure 2 increases the stability of the electrical equipment connected to each other through the wire, reducing the occurrence of accidents. When the wire is subjected to a large force, the I-shaped rubber component 224 can deform to buffer the force on the wire, providing a margin for the wire to move under extreme conditions. When the wire needs to be replaced, the transmission threaded rod 25 rotates and retracts, connector 3 213 retracts, the hydraulic pressure inside the I-shaped rubber component 224 decreases, and the wire returns to the pre-fixed state. The two ends of the wire can be disassembled and pulled out for replacement. At the same time, the heat-conducting sensing rod 221 is inserted into the liquid guide groove 222, and one end of the heat-conducting sensing rod 221 contacts the liquid inside the I-shaped rubber component 224.
[0036] During the operation of the box-type equipment, the forward and reverse motor 29 is controlled to rotate forward or reverse at regular intervals, causing the connecting seat 212 and temperature sensor 215 to move left or right. The forward and reverse motor 29 pauses its operation multiple times during these cycles, allowing the temperature sensor 215 to align sequentially with multiple heat-conducting sensing rods 221 and pause on one side for a period of time. During these pauses, the electric push rod 219 is controlled to push the temperature sensor 215 forward, bringing its detection end into contact with the corresponding heat-conducting sensing rod 221. Since both the heat-conducting sensing rod 221 and the liquid inside the I-shaped rubber component 224 are heat-conducting materials, the heat-conducting sensing rod 221 can provide feedback on the wire temperature. The separating structure 2 secures the wire and prevents... While the wires are secured to the electrical equipment without being disconnected, the wire structure exchanges heat with the liquid inside the I-shaped rubber component 224. The heat-conducting sensing rod 221 and the liquid inside the I-shaped rubber component 224 reflect the wire temperature. Multiple wire temperatures can be detected at regular intervals. The temperature sensor 215 detects the structure and feeds back to the control equipment in the box-type equipment. When a wire overheats due to overload operation, poor contact during overload operation, loose connection, damaged insulation layer, aging or damage to the wire insulation layer, etc., the control equipment issues an alarm to prevent damage to the box-type equipment caused by wire damage, reduce sudden shutdown of the box-type equipment, ensure the stability of the box-type equipment operation, and quickly locate the overheated wire, facilitating the maintenance of the box-type equipment.
[0037] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
Claims
1. An integrated box-type equipment for preparing gold tailings-based composite materials, comprising a main equipment box (1), characterized in that: The main housing (1) of the equipment is provided with a partition structure (2). The partition structure (2) includes a mounting frame (21), a transmission thread seat (22), a transmission component and four limiting components. The transmission component includes a connecting seat three (213) and a connecting seat four (226). Multiple elastic liquid storage bladders one (220) are fixedly installed on one side of the connecting seat three (213). A heat-conducting sensing rod (221) is provided inside the elastic liquid storage bladder one (220). One end of the elastic liquid storage bladder one (220) is connected to an I-shaped rubber component (224). Two pressurizing components are installed on one side of the connecting seat four (226). A driving component is provided on the outside of the connecting seat three (213). The mounting frame (21) has a mounting groove one (23) and a mounting groove two (24) respectively opened at both ends. Multiple support frames (4) are fixedly installed inside the main housing (1) of the equipment.
2. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 1, characterized in that: The main housing (1) of the equipment is equipped with multiple partition vertical plates (3) fixedly installed inside, and doors are installed on both sides of the main housing (1).
3. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 1, characterized in that: The transmission assembly includes a transmission threaded rod (25) threaded through a transmission threaded seat (22). The transmission threaded seat (22) is located inside the mounting groove (23) and is fixedly connected to the mounting frame (21). One end of the transmission threaded rod (25) is rotatably connected to a power adapter (27). A sliding push block (26) is rotatably mounted on the outside of the power adapter (27). The sliding push block (26) is located inside the mounting frame (21). The outer wall of the sliding push block (26) is close to the mounting frame (21). Connecting seats (234) are fixedly connected to both sides of the sliding push block (26).
4. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 3, characterized in that: One end of the power adapter (27) is rotatably connected to a connecting seat one (28). The connecting seat one (28) is fixedly connected to a connecting seat three (213). Two connecting plates (225) are fixedly connected to one side of the connecting seat three (213). The connecting plates (225) are mounted on the mounting frame (21). One end of the connecting plate (225) is fixedly connected to a connecting seat four (226). Rotating rings (227) are rotatably installed on both outer ends of the connecting seat four (226) and on the outer side of the connecting seat six (234).
5. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 1, characterized in that: The elastic liquid storage bladder (220) is fixedly connected to the mounting frame (21). The thermally conductive sensing rod (221) is fixedly installed on the connecting seat (213). A liquid guide groove (222) is provided on one side of the thermally conductive sensing rod (221). The liquid guide groove (222) is opened on the mounting frame (21). One end of the liquid guide groove (222) is connected to the mounting groove (223). The mounting groove (223) is opened at the top of the mounting frame (21). The I-shaped rubber part (224) corresponds one-to-one with the mounting groove (223). The I-shaped rubber part (224) is set inside the mounting groove (223) and fixedly connected to the mounting frame (21).
6. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 4, characterized in that: The drive assembly includes a forward and reverse motor (29) and a gearbox (210) fixedly installed on the outside of the connecting seat (28). The output end of the forward and reverse motor (29) is fixedly connected to the input end of the gearbox (210). The output end of the gearbox (210) is fixedly connected to a drive screw (211). One end of the drive screw (211) is rotatably connected to the inner wall of the connecting seat (28). The outer side of the drive screw (211) is threaded with a connecting seat (212).
7. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 6, characterized in that: An electric push rod (219) and two limiting sleeves (217) are fixedly installed on one side of the connecting seat two (212). A sleeve connecting rod (218) is slidably inserted inside the limiting sleeve (217). A temperature sensor (215) is fixedly connected between the two sleeve connecting rods (218). The piston end of the electric push rod (219) is fixedly connected to the temperature sensor (215). The detection end of the temperature sensor (215) extends into the connecting seat three (213).
8. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 1, characterized in that: The limiting component includes a mounting vertical plate (229), on which rubber pads (230) and trapezoidal plates (228) are fixedly connected respectively on both sides. The trapezoidal plates (228) are provided with three telescopic rods (231) at the top and bottom. A connecting seat five (232) is fixedly connected between two adjacent telescopic rods (231). The connecting seat five (232) is fixedly connected to the mounting frame (21). The mounting frame (21) has four square slots (233) on its outer side. The mounting vertical plate (229) corresponds to the square slots (233) one by one.
9. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 1, characterized in that: The pressurization assembly includes two pistons (235) fixedly connected to one side of the connecting seat (226). A support box (236) is sleeved on the outside of the piston (235). An elastic reservoir (237) is fixedly connected to one end of the piston (235) inside the support box (236). A flow guide box (238) is fixedly connected to one end of the elastic reservoir (237). The outer wall of the flow guide box (238) is fixedly connected to the support box (236). A hydraulic telescopic rod (239) is fixedly inserted through the flow guide box (238). A limit rod (240) is fixedly connected to the piston end of the hydraulic telescopic rod (239). The limit rod (240) is inserted through one side wall of the support box (236).
10. The integrated box-type equipment for preparing gold tailings-based composite materials according to claim 9, characterized in that: The support frame (4) has a circular slot (5) on its outer side. Two of the support frames (4) are located inside the mounting frame (21). The two support frames (4) are respectively fitted onto the outer side of the two support boxes (236). The circular slot (5) is located on one side of the limiting rod (240).
Citation Information
Patent Citations
A power distribution cabinet with a telescopic cable device
CN111682405B