Ore drawing shuttle groove with leak-proof function

By introducing baffle plates and counterweights into the ore discharge shuttle, the problem of ore falling during skip loading was solved, achieving leak prevention and improving safety and production efficiency.

CN223865567UActive Publication Date: 2026-02-03YUXI MINING
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Patent Information

Application Number
CN202520167981.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-02-03
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

When the skip is loading ore, the chain gate of the existing ore discharge shuttle cannot effectively and promptly cut off the ore supply, resulting in a large amount of ore falling into the shaft, causing problems such as cleaning difficulties, ore falling and injury, and skip jumping.

Method used

A ore discharge shuttle with anti-leakage function was designed, including a body, a baffle plate, a baffle plate rotating shaft, a counterweight connecting rod, and a counterweight. The ore is blocked in time by the rotation of the baffle plate and the gravity of the counterweight to prevent it from falling.

Benefits of technology

It effectively prevents ore from falling, improves cleaning difficulties and safety hazards, and enhances the safety and efficiency of the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an ore drawing shuttle groove with an anti-leakage function. The ore drawing shuttle groove comprises a body, the slag baffle is arranged at the output end of the body; and the slag baffle rotating shaft is fixedly installed in the slag baffle, balancing weight connecting rods are fixedly installed at the two ends of the slag baffle rotating shaft, balancing weights are arranged at the bottoms of one ends of the balancing weight connecting rods, and the slag baffle rotating shaft is rotationally connected to the interiors of the two sides of the output end of the body. According to the ore drawing shuttle groove with the leakage-proof function, the body, the slag blocking plate, the slag blocking plate rotating shaft, the balancing weight connecting rod, the balancing weight and other structures are matched with one another, after ore drawing is finished, the slag blocking plate can block ore in time, the ore is prevented from falling off, and the problem that in the production process, the slag blocking plate is prone to falling off is effectively solved. Ore falls into an ore drawing shuttle groove, so that cleaning is difficult, people are hurt due to falling of the ore, and the skip skips.
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Description

Technical Field

[0001] This utility model relates to the field of mining technology, and in particular to a ore discharge shuttle with anti-leakage function. Background Technology

[0002] The ore feed shuttle is a key piece of equipment in the mining transportation system. It is mainly used to transport ore from the ore bin or pass to the skip or other transport containers. The ore feed shuttle is usually set at an incline and uses the ore's own gravity to achieve downward transport. It generally includes the trough body, the ore feeding control device (such as the chain gate), the leak prevention mechanism, etc. During operation, the skip is lowered to the bottom of the shuttle, the operator opens the chain gate, and the ore slides down the shuttle into the skip. When the skip is full, the chain gate is closed and the feeding stops.

[0003] However, during skip loading operations, the chain gate cannot effectively cut off the ore supply in a timely manner, causing a large amount of ore to fall into the shaft, resulting in a large accumulation of ore in the shaft, making cleaning difficult, causing ore to fall and injure people, and skip jumping.

[0004] Therefore, it is necessary to provide a ore discharge shuttle with anti-leakage function to solve the above-mentioned technical problems. Utility Model Content

[0005] This utility model provides a ore discharge shuttle with anti-leakage function, which solves the problem that the chain gate cannot cut off the ore supply in a timely and effective manner, which easily causes the ore to fall into the shaft.

[0006] To solve the above-mentioned technical problems, this utility model provides a ore discharge shuttle with anti-leakage function, comprising:

[0007] ontology;

[0008] A slag baffle plate is disposed at the output end of the main body;

[0009] A slag-blocking plate rotating shaft is fixedly installed inside the slag-blocking plate. A counterweight connecting rod is fixedly installed at both ends of the slag-blocking plate rotating shaft, and a counterweight is provided at the bottom of one end of the counterweight connecting rod.

[0010] Preferably, the slag baffle plate is rotatably connected to the interior of both sides of the output end of the main body.

[0011] Preferably, the ore discharge shuttle with anti-leakage function is characterized in that it further includes a placement component and a connecting frame. The placement component is disposed at the bottom of one end of the counterweight connecting rod. The placement component includes a placement plate, a pressure plate, a threaded rod, and a nut. The threaded rod is fixedly installed on the top of the placement plate. The pressure plate is disposed on the outer side of the threaded rod. The nut is threadedly connected to the outer side of the threaded rod. The connecting frame is fixedly installed on the top of the threaded rod.

[0012] Preferably, the counterweight is disposed on the top of the placement plate and located on the outer side of the threaded rod.

[0013] Preferably, the bottom of the nut abuts against the top of the pressure plate, and a connecting rod is fixedly installed inside the connecting frame, the connecting rod being rotatably connected to the inside of one end of the counterweight connecting rod.

[0014] Preferably, the interior of both ends of the placement plate is provided with sliding grooves, and the bottom ends of the pressure plate are fixedly installed with limiting plates.

[0015] Preferably, the limiting plate is slidably connected to the inner side of the groove.

[0016] Compared with related technologies, the ore discharge shuttle with anti-leakage function provided by this utility model has the following beneficial effects:

[0017] This utility model provides a ore discharge shuttle with anti-leakage function. Through the cooperation of the main body, slag baffle plate, slag baffle plate rotating shaft, counterweight connecting rod and counterweight, etc., the slag baffle plate can block the ore in time after the ore discharge is completed, preventing the ore from falling. It effectively improves the situation of ore falling from the ore discharge shuttle during the production process, which causes cleaning difficulties, ore falling and injury, and skip jumping. Attached Figure Description

[0018] Figure 1 A schematic diagram of the structure of a first embodiment of a ore discharge shuttle with anti-leakage function provided by this utility model;

[0019] Figure 2 for Figure 1 The diagram shown illustrates the workflow during operation.

[0020] Figure 3 A schematic diagram of the structure of a second embodiment of a ore discharge shuttle with anti-leakage function provided by this utility model;

[0021] Figure 4 for Figure 3 The diagram shows the connection frame structure.

[0022] Figure 5 for Figure 3 The diagram shows the structure of the counterweight block.

[0023] The following are the labels in the diagram: 1. Main body, 2. Slag baffle plate, 3. Slag baffle plate pivot, 4. Counterweight connecting rod, 5. Counterweight, 6. Placement component, 61. Placement plate, 62. Pressure plate, 63. Threaded rod, 64. Nut, 7. Connecting frame, 71. Connecting rod, 8. Slide groove, 81. Limiting plate. Detailed Implementation

[0024] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0025] First Embodiment

[0026] Please refer to the following: Figure 1 , Figure 2 ,in, Figure 1 A schematic diagram of the structure of a first embodiment of a ore discharge shuttle with anti-leakage function provided by this utility model; Figure 2 for Figure 1 The diagram shows the working process. A ore discharge shuttle with anti-leakage function includes: a body 1;

[0027] Slag baffle 2, the slag baffle 2 is disposed at the output end of the main body 1;

[0028] The slag-blocking plate rotating shaft 4 is fixedly installed inside the slag-blocking plate 2. Both ends of the slag-blocking plate rotating shaft 4 are fixedly installed with counterweight connecting rods 4, and a counterweight 5 is provided at the bottom of one end of the counterweight connecting rod 4.

[0029] The slag baffle plate shaft 4 is rotatably connected to the interior of both sides of the output end of the main body 1.

[0030] Body 1 is a ore discharge shuttle.

[0031] The working principle of the ore discharge shuttle with anti-leakage function provided by this utility model is as follows:

[0032] When the linkage mechanism needs to be opened, the skip of the inclined shaft hoist is lowered to directly below the main body 1 to start the ore loading operation; the operator opens the ore discharge chain gate, and the ore slides down the chute. The thrust F of the ore sliding down is used to push the baffle plate 2 to open in the direction of B; at the same time, the baffle plate shaft 3 below the chute rotates clockwise along point O to raise the counterweight 5.

[0033] When the linkage mechanism needs to be stopped, after the skip is loaded with ore, the operator lowers the ore discharge chain gate, and the ore stops sliding down; the slag baffle 2 loses its thrust F, and the slag baffle shaft 3 rotates counterclockwise around point O by the gravity G of the counterweight block 5; the slag baffle shaft 3 drives the slag baffle 2 to close in the direction D to prevent ore from falling into the chute; the skip can continue to lift.

[0034] Compared with related technologies, the ore discharge shuttle with anti-leakage function provided by this utility model has the following beneficial effects:

[0035] The structure, consisting of body 1, slag baffle 2, slag baffle shaft 3, counterweight connecting rod 4, and counterweight 5, works together to block the ore in time after the ore discharge is completed, preventing the ore from falling. This effectively improves the situation where ore falls from the ore discharge chute during the production process, causing cleaning difficulties, ore falling and injury, and skip jumping.

[0036] Second Embodiment

[0037] Please refer to the following: Figure 3 , Figure 4 and Figure 5 Based on the first embodiment of this application which provides a ore discharge shuttle with anti-leakage function, the second embodiment of this application proposes another ore discharge shuttle with anti-leakage function. The second embodiment is merely a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the separate implementation of the first embodiment.

[0038] Specifically, the second embodiment of this application provides a ore discharge shuttle with anti-leakage function, which differs in that the ore discharge shuttle with anti-leakage function further includes a placement component 6 and a connecting frame 7. The placement component 6 is disposed at the bottom of one end of the counterweight connecting rod 4. The placement component 6 includes a placement plate 61, a pressure plate 62, a threaded rod 63 and a nut 64. The threaded rod 63 is fixedly installed on the top of the placement plate 61. The pressure plate 62 is disposed on the outer side of the threaded rod 63. The nut 64 is threadedly connected to the outer side of the threaded rod 63. The connecting frame 7 is fixedly installed on the top of the threaded rod 63.

[0039] The counterweight 5 is disposed on the top of the placement plate 61 and is located on the outer side of the threaded rod 63.

[0040] The bottom of the nut 64 abuts against the top of the pressure plate 62. A connecting rod 71 is fixedly installed inside the connecting frame 7. The connecting rod 71 is rotatably connected to the inside of one end of the counterweight connecting rod 4.

[0041] The placement plate 61 has grooves 8 inside at both ends, and the pressure plate 62 has limit plates 81 fixedly installed at both ends of its bottom.

[0042] The limiting plate 81 is slidably connected to the inner side of the slide groove 8.

[0043] When the pressure plate 62 moves up and down, it can drive the limiting plate 81 to slide on the inner side of the slide groove 8, which can increase the stability of the pressure plate 62 when it moves up and down.

[0044] The counterweight 5 has an installation groove in the middle. When in use, the threaded rod 63 is inserted into the inner side of the installation groove, and the pressure plate 62 is pressed on the top of the counterweight 5, which can limit the counterweight 5 and prevent it from falling.

[0045] When in use, the connecting rod 71 rotates inside the counterweight connecting rod 4, thereby enabling the placement component 6 and the counterweight 5 to be installed at the bottom of the counterweight connecting rod 4.

[0046] Multiple counterweights are provided, allowing users to add or remove them as needed based on their specific circumstances.

[0047] The working principle of the ore discharge shuttle with anti-leakage function provided by this utility model is as follows:

[0048] During use, the user can add or remove the counterweight 5 according to the specific situation, so that the slag baffle 2 rotates more smoothly. When adding or removing, the user can rotate the nut 64, so that the nut 64 is threaded on the outer side of the threaded rod 63, and then the nut 64 and the pressure plate 62 move upward. At this time, the user can add or remove the counterweight 5. After adjusting to a suitable weight, the user rotates the nut 64 again, so that the bottom of the nut 64 drives the pressure plate 62 to move downward, thereby limiting the counterweight 5.

[0049] Compared with related technologies, the ore discharge shuttle with anti-leakage function provided by this utility model has the following beneficial effects:

[0050] By cooperating with each other, the structure of placement component 6, connecting frame 7 and connecting rod 71 can adjust the counterweight 5 on the placement component 6 according to the smoothness of the rotation of the slag baffle 2 during use, so that the device can be used more smoothly.

[0051] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A ore discharge shuttle with anti-leakage function, characterized in that, include: ontology; A slag baffle plate is disposed at the output end of the main body; A slag-blocking plate rotating shaft is fixedly installed inside the slag-blocking plate. A counterweight connecting rod is fixedly installed at both ends of the slag-blocking plate rotating shaft, and a counterweight is provided at the bottom of one end of the counterweight connecting rod.

2. The ore discharge shuttle with anti-leakage function according to claim 1, characterized in that, The slag baffle plate is rotatably connected to the interior of both sides of the output end of the main body via a rotating shaft.

3. A ore discharge shuttle with anti-leakage function according to claim 1, characterized in that, It also includes a placement component and a connecting frame. The placement component is located at the bottom of one end of the counterweight connecting rod. The placement component includes a placement plate, a pressure plate, a threaded rod, and a nut. The threaded rod is fixedly installed on the top of the placement plate. The pressure plate is located on the outer side of the threaded rod. The nut is threadedly connected to the outer side of the threaded rod. The connecting frame is fixedly installed on the top of the threaded rod.

4. A ore discharge shuttle with anti-leakage function according to claim 3, characterized in that, The counterweight is positioned on top of the placement plate and on the outer side of the threaded rod.

5. A ore discharge shuttle with anti-leakage function according to claim 4, characterized in that, The bottom of the nut abuts against the top of the pressure plate, and a connecting rod is fixedly installed inside the connecting frame. The connecting rod is rotatably connected to the inside of one end of the counterweight connecting rod.

6. A ore discharge shuttle with anti-leakage function according to claim 3, characterized in that, The placement plate has grooves inside both ends, and the pressure plate has limit plates fixedly installed at both ends of the bottom.

7. A ore discharge shuttle with anti-leakage function according to claim 6, characterized in that, The limiting plate is slidably connected to the inner side of the groove.