Stone waste impurity removing and filtering device

By designing the filter screen and feeding mechanism, the problem of material accumulation in the stone waste filtration device was solved, realizing efficient batch filtration and automated material addition, thus improving filtration efficiency and convenience.

CN223761485UActive Publication Date: 2026-01-06NANZHAO COUNTY QINGSHAN BUILDING MATERIALS CO LTD
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Patent Information

Application Number
CN202520060055.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-10
Publication Date
2026-01-06
Estimated Expiration
2035-01-10

AI Technical Summary

Technical Problem

In existing stone waste filtration devices, the material is added all at once, which leads to accumulation, affects filtration efficiency, and manual addition is inconvenient.

Method used

A filter screen and feeding mechanism were designed. The rotating motor drives the rotating shaft and top block, and with the elasticity of the spring, the box shakes to avoid clogging of the filter holes. The motor drives the push block and baffle to move, so as to input materials in batches.

Benefits of technology

It improves filtration efficiency, avoids filter pore clogging, simplifies the material addition process, and enhances the automation level of the filtration device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The stone waste impurity removing and filtering device comprises a box body, the bottom of the box body is fixedly connected with a discharging opening, the outer side of the box body is connected with two symmetrically-distributed connecting bases in a sliding mode, the lower ends of the connecting bases are fixedly connected with supporting rods, and the supporting rods are connected with the discharging opening in a sliding mode. A plurality of filter screens which are uniformly distributed are slidably connected into the box body, a connecting rod is fixedly connected between every two adjacent filter screens, and the lower end of one filter screen is in contact with a supporting block. According to the stone waste filtering device, stone waste can be filtered through the effect of the designed filter screen, in the filtering process, through the effect of the rotating motor, the output end of the rotating motor can drive the rotating shaft and the ejector block to rotate, the ejector block rotates to extrude and push the fixed block, then the box body can be driven to move, and the elastic effect of the spring is matched; shaking of the box body in the vertical direction can be achieved, blockage of the filtering holes during filtering can be avoided, and the filtering efficiency can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of filtration device technology, specifically a stone waste removal and filtration device. Background Technology

[0002] Stone waste refers to the waste and byproducts generated during the mining, processing, and use of stone. These wastes mainly originate from byproducts generated during stone production and use, including waste and residues from stone cutting, grinding, and processing, as well as discarded stone materials generated during use. Stone waste removal and filtration devices play a crucial role in the filtration and separation of calcium carbonate desulfurizing agents, helping to improve the quality and purity of the desulfurizing agent while reducing its environmental impact.

[0003] In the existing technology, during the filtration of stone waste, the raw material to be filtered is usually added into the device all at once. This causes a large amount of material to accumulate and affects the filtration efficiency. Manual addition is also quite troublesome, so improvements are needed. Utility Model Content

[0004] The purpose of this utility model is to provide a stone waste removal and filtration device that solves the problem of inconvenience in adding materials in stages.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a stone waste impurity removal and filtration device, comprising a box body, a discharge port fixedly connected to the bottom of the box body, two symmetrically distributed connecting seats slidably connected to the outside of the box body, a support rod fixedly connected to the lower end of the connecting seats, a plurality of evenly distributed filter screens slidably connected inside the box body, a connecting rod fixedly connected between adjacent filter screens, a support block contacting the lower end of one of the filter screens, the support block being fixedly connected to the box body, a magnetic cap adsorbed on the upper end of the connecting seats, a fixed box fixedly connected to the left end of the box body, a filtration mechanism provided on the box body, and a feeding mechanism provided on the fixed box.

[0006] Preferably, the lower end of the magnetic cover contacts a pull rod, which is fixedly connected to the filter screen. The pull rod design facilitates the removal of the filter screen.

[0007] Preferably, the filtering mechanism includes a mounting base, with the mounting base fixedly connected to the outer side of the connecting base. A rotary motor is fixedly connected to the upper end of the mounting base, and a rotating shaft is fixedly connected to the outer side of the output end of the rotary motor. The rotating shaft and the connecting base are rotatably connected via bearings. A top block is fixedly connected to the upper end of the rotating shaft, and a fixing block contacts the upper end of the top block. The fixing block is fixedly connected to the housing. A slider is fixedly connected to the outer side of the housing, and the slider is slidably connected to the connecting base. A fixing rod is slidably sleeved inside the slider, and the fixing rod is fixedly connected to the connecting base. A spring is provided on the outer side of the fixing rod. This filtering mechanism facilitates the filtration of waste materials.

[0008] Preferably, one end of the spring is fixedly connected to the connecting seat, and the other end of the spring is fixedly connected to the slider. The spring is designed so that its force can be applied to the slider.

[0009] Preferably, the feeding mechanism includes a drive motor. The drive motor is fixedly connected to the left end of the fixed box. The output end of the drive motor is rotatably connected to the fixed box. A screw is fixedly connected to the outer side of the output end of the drive motor. The screw is rotatably connected to the fixed box via a bearing. A push block is threadedly connected to the outer side of the screw. The push block is slidably connected to the fixed box. A ball bearing is movably fitted inside the push block and is movably connected to the fixed box. A guide rod is fixedly connected inside the fixed box and is slidably connected to the push block. A push rod is fixedly connected to the right end of the push block, and a baffle is fixedly connected to the right end of the push rod. The baffle is slidably connected to the fixed box. By designing the feeding mechanism, raw materials can be fed in batches.

[0010] Preferably, the push block has a guide groove inside, and a guide rod is slidably connected inside the guide groove. By designing the guide groove, the push block can slide along the guide rod.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] 1. This utility model uses a filter screen to filter stone waste. During the filtration process, the output of the rotating motor drives the rotating shaft and top block to rotate. The rotation of the top block can squeeze and push the fixed block, thereby moving the box. Combined with the elasticity of the spring, the box can sway in the vertical direction, which can avoid the clogging of the filter holes during filtration and improve the filtration efficiency.

[0013] 2. This utility model, through the design of a fixed box, can store the material to be screened. Through the action of the motor, the output end of the motor can drive the push block to move. The push block can drive the push rod and the baffle to move, which can separate the baffle from the fixed box. As the push block moves, the material inside the fixed box can be pushed into the box for screening. The material can be input in stages, avoiding the impact of excessive material input at one time on the filtration work. Attached Figure Description

[0014] Figure 1 This is a perspective view of the overall structure of this utility model;

[0015] Figure 2 This utility model Figure 1 A partial three-dimensional sectional view of the structure;

[0016] Figure 3 This utility model Figure 2 Enlarged view of point A;

[0017] Figure 4 This utility model Figure 2 The front sectional view of the fixed box.

[0018] In the diagram: 1. Box body; 2. Discharge port; 3. Connecting seat; 4. Support rod; 5. Filter screen; 6. Connecting rod; 7. Support block; 8. Filtering mechanism; 9. Feeding mechanism; 10. Magnetic cover; 11. Pull rod; 12. Fixed box; 81. Mounting seat; 82. Rotary motor; 83. Rotating shaft; 84. Top block; 85. Fixed block; 86. Slider; 87. Fixed rod; 88. Spring; 91. Drive motor; 92. Screw; 93. Push block; 94. Ball bearing; 95. Push rod; 96. Baffle; 97. Guide rod; 98. Guide groove. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figure 1 , Figure 2A stone waste removal and filtration device includes a housing 1. A discharge port 2 is fixedly connected to the bottom of the housing 1. Two symmetrically distributed connecting seats 3 are slidably connected to the outside of the housing 1. A support rod 4 is fixedly connected to the lower end of the connecting seats 3. Multiple uniformly distributed filter screens 5 are slidably connected inside the housing 1. A connecting rod 6 is fixedly connected between two adjacent filter screens 5. The lower end of one of the filter screens 5 contacts a support block 7, which is fixedly connected to the housing 1. A magnetic cover 10 is adsorbed on the upper end of the connecting seat 3. A pull rod 11 is contacted on the lower end of the magnetic cover 10, which is fixedly connected to the filter screen 5. The pull rod 11 is designed to facilitate the removal of the filter screen 5. A fixed box 12 is fixedly connected to the left end of the housing 1. A filtration mechanism 8 is provided on the housing 1, and a feeding mechanism 9 is provided on the fixed box 12.

[0021] Please see Figure 1 , Figure 2 , Figure 3 The filter mechanism 8 includes a mounting base 81. The mounting base 81 is fixedly connected to the outer side of the connecting base 3. A rotating motor 82 is fixedly connected to the upper end of the mounting base 81. A rotating shaft 83 is fixedly connected to the outer side of the output end of the rotating motor 82. The rotating shaft 83 and the connecting base 3 are rotatably connected through a bearing. A top block 84 is fixedly connected to the upper end of the rotating shaft 83. A fixing block 85 contacts the upper end of the top block 84. The fixing block 85 is fixedly connected to the housing 1. A slider 86 is fixedly connected to the outer side of the housing 1. The slider 86 is slidably connected to the connecting base 3. A fixing rod 87 is slidably sleeved inside the slider 86. The fixing rod 87 is fixedly connected to the connecting base 3. A spring 88 is provided on the outer side of the fixing rod 87. One end of the spring 88 is fixedly connected to the connecting base 3, and the other end of the spring 88 is fixedly connected to the slider 86. By designing the spring 88, the force of the spring 88 can act on the slider 86. By designing the filter mechanism 8, it is convenient to filter waste materials.

[0022] Please see Figure 1 , Figure 2 , Figure 4The feeding mechanism 9 includes a drive motor 91. The drive motor 91 is fixedly connected to the left end of the fixed box 12. The output end of the drive motor 91 is rotatably connected to the fixed box 12. A screw 92 is fixedly connected to the outer side of the output end of the drive motor 91. The screw 92 is rotatably connected to the fixed box 12 through a bearing. A push block 93 is threadedly connected to the outer side of the screw 92. The push block 93 is slidably connected to the fixed box 12. A ball bearing 94 is movably sleeved inside the push block 93. The ball bearing 94 is movably connected to the fixed box 12. The connection is as follows: a guide rod 97 is fixedly connected inside the fixed box 12. The guide rod 97 is slidably connected to the push block 93. A guide groove 98 is opened inside the push block 93. The guide rod 97 is slidably connected inside the guide groove 98. By designing the guide groove 98, the push block 93 can slide along the guide rod 97. A push rod 95 is fixedly connected to the right end of the push block 93. A baffle 96 is fixedly connected to the right end of the push rod 95. The baffle 96 is slidably connected to the fixed box 12. By designing the feeding mechanism 9, the raw materials can be fed in batches.

[0023] The specific implementation process of this utility model is as follows: In use, the material to be filtered is first added into the fixed box 12, and then the drive motor 91 is started. The output end of the drive motor 91 drives the screw 92 to rotate, so that the push block 93 makes a threaded motion. The push block 93 slides along the guide rod 97. At the same time, the push block 93 drives the ball 94 to roll. The push block 93 drives the push rod 95 and the baffle 96 to move, so that the baffle 96 separates from the fixed box 12. At this time, the material inside the fixed box 12 will be pushed out of the fixed box 12 by the push block 93 and the material will enter the box 1. Then the drive motor 91 reverses so that the baffle 96 closes the fixed box 12 again. The material can be controlled to be input in batches, so as to avoid the material being added too much at once and affecting the filtration work.

[0024] Once the material enters the chamber 1, it is filtered and impurities removed by the filter screen 5. During the filtration process, the rotating motor 82 operates simultaneously. The output of the rotating motor 82 drives the rotating shaft 83 to rotate, which in turn drives the top block 84 to rotate. The rotation of the top block 84 presses against the fixed block 85, pushing the fixed block 85 upward. The fixed block 85 then moves the chamber 1 upward, causing the slider 86 to slide along the fixed rod 87, compressing one spring 88 and stretching the other. When the top block 84 rotates and separates from the fixed block 85, the elasticity of the spring 88 allows the chamber 1 to sway vertically, preventing clogging of the filter holes and improving filtration efficiency.

[0025] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A stone waste impurity removal filtering device comprising a box (1), characterized in that: The bottom of the box (1) is fixedly connected with a discharging port (2), the outer side of the box (1) is slidably connected with two symmetrically distributed connecting seats (3), the lower end of the connecting seat (3) is fixedly connected with a supporting rod (4), the inside of the box (1) is slidably connected with a plurality of evenly distributed filter screens (5), two adjacent filter screens (5) are jointly fixedly connected with a connecting rod (6), the lower end of one of the filter screens (5) is in contact with a supporting block (7), the supporting block (7) is fixedly connected with the box (1), the upper end of the connecting seat (3) is adsorbed with a magnetic cover (10), the left end of the box (1) is fixedly connected with a fixed box (12), the box (1) is provided with a filtering mechanism (8), and the fixed box (12) is provided with a feeding mechanism (9).

2. A stone waste impurity removal filter device according to claim 1, characterized in that: The lower end of the magnetic cover (10) is in contact with a pull rod (11), and the pull rod (11) is fixedly connected with the filter screen (5).

3. A stone waste impurity removal filter device according to claim 1, characterized in that: The filtering mechanism (8) comprises a mounting seat (81), the outer side of the connecting seat (3) is fixedly connected with the mounting seat (81), the upper end of the mounting seat (81) is fixedly connected with a rotating motor (82), the outer side of the output end of the rotating motor (82) is fixedly connected with a rotating shaft (83), the rotating shaft (83) is rotatably connected with the connecting seat (3) through a bearing, the upper end of the rotating shaft (83) is fixedly connected with a top block (84), the upper end of the top block (84) is in contact with a fixed block (85), the fixed block (85) is fixedly connected with the box (1), the outer side of the box (1) is fixedly connected with a sliding block (86), the sliding block (86) is slidably connected with the connecting seat (3), the inside of the sliding block (86) is slidably sleeved with a fixed rod (87), the fixed rod (87) is fixedly connected with the connecting seat (3), and the outer side of the fixed rod (87) is provided with a spring (88).

4. A device for filtering impurities from stone waste material according to claim 3, characterized in that: One end of the spring (88) is fixedly connected with the connecting seat (3), and the other end of the spring (88) is fixedly connected with the sliding block (86).

5. A stone waste impurity removal filter device according to claim 1, characterized in that: The feeding mechanism (9) comprises a driving motor (91), the left end of the fixed box (12) is fixedly connected with the driving motor (91), the output end of the driving motor (91) is rotatably connected with the fixed box (12), the outer side of the output end of the driving motor (91) is fixedly connected with a screw rod (92), the screw rod (92) is rotatably connected with the fixed box (12) through a bearing, the outer side of the screw rod (92) is threadedly connected with a push block (93), the push block (93) is slidably connected with the fixed box (12), the inside of the push block (93) is movably sleeved with a rolling ball (94), the rolling ball (94) is movably connected with the fixed box (12), the inside of the fixed box (12) is fixedly connected with a guide rod (97), the guide rod (97) is slidably connected with the push block (93), the right end of the push block (93) is fixedly connected with a push rod (95), the right end of the push rod (95) is fixedly connected with a baffle (96), and the baffle (96) is slidably connected with the fixed box (12).

6. A stone waste impurity removal filter device according to claim 5, characterized in that: The inside of the push block (93) is provided with a guide groove (98), and the inside of the guide groove (98) is slidably connected with a guide rod (97).