Waste separating device for ceramsite production
By designing a sliding plate to control the up-and-down movement of the rotating rod in the waste separation device for abrasive production, the problem of screen clogging was solved, ensuring the screening and separation speed and improving work efficiency.
Patent Information
- Application Number
- CN202422635006.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-10-30
AI Technical Summary
Existing abrasive production waste separation devices are prone to screen blockage during the screening process due to the irregular shape of waste particles and improper screen adjustment, which affects screening efficiency.
Design a waste separation device for abrasive production. The rotating rod moves up and down by moving a sliding plate, causing the rotating plate to rotate. The through rod is embedded in the screen to prevent waste particles from clogging and to ensure the screen can separate at a normal speed.
It effectively prevents waste particles from getting stuck and clogging in the mesh, maintains the normal screening and separation speed of the screen, and avoids reduced work efficiency due to mesh clogging.
Smart Images

Figure CN223517995U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of precious bead sand processing technology, and specifically relates to a precious bead sand production waste separation device. BACKGROUND
[0002] Precious bead sand is also called fused corundum, ceramic sand, precious bead sand, and scientific name 'fused ceramic sand', has the advantages of high temperature resistance, no fragmentation, no dust, spherical, high air permeability, etc., is a very similar spherical refractory material particle made of high-quality bauxite as raw material through processes such as electric melting, granulation and screening, and in the processing process, some solid tailings that do not meet the specifications of the final product will inevitably be produced, and these tailings are mainly composed of fibrous materials such as aluminum silicate fiber or high-aluminum fiber and particulate materials such as precious bead sand and precious bead sand powder. Although these waste materials are considered waste when they are produced, they can be recycled after being separated by modern technology and equipment.
[0003] The prior art precious bead sand production waste separation device is prone to cause the waste materials to block the mesh holes of the screen during the screening process due to the irregular shape of the waste material particles having multiple contact points or improper tension adjustment of the screen mesh, and when the mesh holes are blocked more and more, the separation speed of the screen is affected, and the work efficiency is delayed. UTILITY MODEL CONTENTS
[0004] The utility model discloses a kind of precious bead sand production waste separation devices, by up and down moving sliding plate, it can control rotary lever up and down movement, so that rotary plate rotates, and through rod can be embedded to screen mesh and be blocked, prevent waste material particles from being engaged and blocked in mesh hole, ensure that the normal screening separation speed of screen, avoid because mesh hole is blocked and reduce work efficiency.
[0005] The technical scheme adopted by the utility model is as follows:
[0006] A kind of precious bead sand production waste separation device, including the second screen frame fixedly assembled in the upper of V-shaped groove, the upper of second screen frame is fixedly assembled with first screen frame, the both sides of first screen frame are fixedly connected with fixed column in symmetrical mode, first screen frame is fixedly connected with V-shaped groove by fixed column, the bottom of first screen frame and second screen frame is fixedly connected with several partitions in equidistant mode, screen mesh is fixedly assembled between two the partitions, the bottom of screen mesh is mirror-symmetrically rotatably connected with rotary plate, the both sides of rotary plate are rotatably connected with gyro wheel in symmetrical mode, the one side of rotary plate is fixedly connected with through rod in array mode for being movably embedded with screen mesh, the top of V-shaped groove and second screen frame and located below gyro wheel are symmetrically movably assembled with rotary lever, the outer wall of rotary lever is rotatably connected with sleeve ring one in symmetrical mode, and sleeve ring one is slidably connected with fixed column.
[0007] The rotating plate is fixedly connected with a cross rod on the side away from the through rod.
[0008] One end of the cross rod is fixedly assembled with a magnetic block, and the top of the cross rod is fixedly connected with an embedding rod one.
[0009] The outer wall of the rotating rod is movably sleeved with a sleeve ring two, and the two sleeve ring twos are fixedly connected through a connecting rod.
[0010] The outer side of the fixed column is slidably connected with a sliding plate, and one end of the sleeve ring two is fixedly connected with the sliding plate.
[0011] One side of the rotating rod is fixedly connected with a sleeve plate used for movably embedding with the embedding rod one.
[0012] One end of the rotating rod is fixedly connected with an embedding rod two, and one end of the second screen frame and the V-shaped groove is fixedly connected with an embedding plate used for movably embedding with the embedding rod two.
[0013] The technical effect achieved by the utility model is that the sliding plate can be moved up and down to control the rotating rod to move up and down, so that the rotating plate rotates, the through rod can be embedded into the screen to block it, waste particles are prevented from being clamped and blocked in the mesh, the normal screening and separating speed of the screen is ensured, and the work efficiency is prevented from being reduced due to mesh blockage. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is the overall appearance view of the waste separating device provided by the embodiment of the utility model;
[0015] Figure 2 is the structure split view of the waste separating device provided by the embodiment of the utility model;
[0016] Figure 3 is Figure 2 the enlarged view of A in FIG.
[0017] Figure 4 is Figure 2 the enlarged view of B in FIG.
[0018] Figure 5 is Figure 2 the enlarged view of C in FIG.
[0019] In the drawings, the components represented by each reference numeral are listed as follows:
[0020] 1, first screen frame; 101, second screen frame; 102, V-shaped groove; 103, fixed column; 104, partition; 105, screen; 106, sliding plate; 107, rotating rod; 108, connecting rod; 109, rotating plate; 110, through rod; 111, roller; 112, cross bar; 113, embedded rod one; 114, magnetic block; 115, embedded plate; 116, embedded rod two; 117, cover plate; 118, collar one; 119, collar two. DETAILED DESCRIPTION
[0021] In order to make the purpose and advantages of the utility model more clear and obvious, the following will be combined with examples to specifically explain the utility model. It should be understood that the following text is only used to describe one or several specific embodiments of the utility model, and does not strictly limit the protection scope of the utility model specifically requested.
[0022] As Figures 1-3 shown, a kind of pearl sand production waste separation device, including the second screen frame 101 fixedly assembled in the upper V-shaped groove 102, the upper of second screen frame 101 is fixedly assembled with first screen frame 1, the both sides of first screen frame 1 are fixedly connected with fixed column 103 in symmetry, first screen frame 1 is fixedly connected with V-shaped groove 102 by fixed column 103, the bottom of first screen frame 1 and second screen frame 101 is fixedly connected with several partition 104 at equal distance, screen 105 is fixedly assembled between two partition 104, the bottom of screen 105 is mirror-symmetrically rotatably connected with rotating plate 109, the both sides of rotating plate 109 are rotatably connected with roller 111 in symmetry, the side of rotating plate 109 is fixedly connected with through rod 110 for being inlaid with screen 105 movably, the top of V-shaped groove 102 and second screen frame 101 and below roller 111 both sides are movably assembled with rotating rod 107 in symmetry.
[0023] According to the above structure, first screen frame 1, second screen frame 101 vibrate and screen to the size of waste particle, fine particle eventually falls into V-shaped groove 102, when rotating rod 107 is moved upwards, rotating rod 107 extrudes roller 111, roller 111 makes rotating plate 109 rotate and rise, so that through rod 110 can be inlaid screen 105, and the fertilizer particles jammed in screen hole are poked out, in normal state, rotating plate 109 is assembled at the bottom of partition 104, rotating plate 109 is perpendicular to ground, and will not hinder the leakage of screen 105.
[0024] Refer to the attached Figures 2-5The rotating plate 109 is fixedly connected with a cross rod 112 on the side away from the through rod 110, one end of the cross rod 112 is fixedly assembled with a magnetic block 114, the top of the cross rod 112 is fixedly connected with an embedding rod one 113, the outer wall of the rotating rod 107 is symmetrically rotatably connected with a sleeve ring one 118, the sleeve ring one 118 is slidably connected with the fixed column 103, the outer wall of the rotating rod 107 movably sheathes a sleeve ring two 119, the two sleeve ring twos 119 are fixedly connected through the connecting rod 108, the outer side of the fixed column 103 is slidably connected with a sliding plate 106, one end of the sleeve ring two 119 is fixedly connected with the sliding plate 106, one side of the rotating rod 107 is fixedly connected with a sleeve plate 117 used for movably embedding with the embedding rod one 113, one end of the rotating rod 107 is fixedly connected with an embedding rod two 116, the second screen frame 101 and the V-shaped groove 102 are both fixedly connected with an embedding plate 115 used for rotatably embedding with the embedding rod two 116.
[0025] According to the above structure, in the normal state, the two rotating plates 109 are adsorbed with each other through the magnetic block 114 at one end of the cross rod 112 when the rotating plate 109 is perpendicular to the ground, since the rotating rod 107 can rotate, the sleeve plate 117 can rotate and embed with the embedding rod one 113, so that the two rotating plates 109 are further fixed, preventing the rotating plate 109 from shaking when the vibrating screen material is vibrated, when it is needed to dredge the screen 105, first rotate the rotating rod 107 to make the embedding rod two 116 separate from the embedding plate 115, the sleeve plate 117 separates from the embedding rod one 113, the sliding plate 106 is slid upward, while the sliding plate 106 slides on the outer wall of the fixed column 103, the rotating rod 107 is driven upward through the sleeve ring two 119, the rotating rod 107 drives the rotating rod 107 at the top of the second screen frame 101 to move upward together, so that the rotating plate 109 below the first screen frame 1 and the second screen frame 101 can be simultaneously rotated upward to dredge the screen 105; the sliding plate 106 can be controlled to move upward and downward, so that the rotating plate 109 is rotated, the through rod 110 can be embedded into the screen 105 to dredge or block, preventing waste particles from being clamped and blocked in the mesh, ensuring the normal screening and separating speed of the screen 105, and avoiding the reduction of work efficiency due to the mesh blockage.
[0026] The working principle of the utility model is: first sieve frame 1, second sieve frame 101 carry out vibration screening to waste material particle size, fine eye particle falls into V-shaped groove 102 finally, when moving upward rotating rod 107, rotating rod 107 extrudes gyro wheel 111, gyro wheel 111 makes rotating plate 109 rotate and rise, so that through rod 110 can embed screen cloth 105, and the fertilizer particle jammed in screen cloth 105 is poked out, in normal state, rotating plate 109 is assembled at the bottom of baffle 104, and rotating plate 109 is perpendicular to the ground, and will not hinder the leakage of screen cloth 105; in normal state, when rotating plate 109 is perpendicular to the ground, two rotating plates 109 are adsorbed each other through the magnetic attraction block 114 of one end of cross bar 112, since rotating rod 107 can rotate, sleeve plate 117 can rotate and embed with embedded rod one 113, so that two rotating plates 109 are further fixed, prevent rotating plate 109 from shaking when vibrating sieve material, when needing to dredge screen cloth 105, first rotate rotating rod 107 to make embedded rod two 116 separate from embedded plate 115, sleeve plate 117 separates from embedded rod one 113, slide plate 106 is slid upward, and slide plate 106 slides on the outer wall of fixed column 103, and at the same time, rotating rod 107 is driven to move upward through sleeve ring two 119, and rotating rod 107 drives rotating rod 107 at the top of second sieve frame 101 to move upward through connecting rod 108, so that rotating plate 109 under first sieve frame 1 and second sieve frame 101 can be rotated upward simultaneously to dredge screen cloth 105.
[0027] The above only is the preferred implementation of the utility model, and it should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the principle of the utility model, still can make several improvements and refinements, and these improvements and refinements also should be regarded as the protection scope of the utility model. The structure, device and operation method not specifically described and explained in the utility model, such as no special description and limitation, are implemented according to conventional means in the field.
Claims
1. A pearl sand production waste separation device, comprising a second screen frame (101) fixedly assembled above a V-shaped groove (102), and a first screen frame (1) fixedly assembled above the second screen frame (101), characterized in that: The both sides of first screen frame (1) symmetry type fixed connection has fixed column (103), first screen frame (1) is fixedly connected with the V-shaped groove (102) through fixed column (103), the bottom of first screen frame (1) and second screen frame (101) equidistant type fixed connection has several partition (104), both the two partition (104) are fixedly connected with screen (105), the bottom of screen (105) is mirror image symmetry type rotationally connected with rotating plate (109), the both sides of rotating plate (109) symmetry type rotationally connected with gyro wheel (111), the one side of rotating plate (109) array type fixed connection has for with screen (105) active embedding's through rod (110), the top of V-shaped groove (102) and second screen frame (101) both sides and below gyro wheel (111) symmetry type active assembly has rotating rod (107), the outer wall of rotating rod (107) symmetry type rotationally connected with sleeve ring one (118), sleeve ring one (118) with fixed column (103) slidingly connected.
2. A bead sand production waste separating device according to claim 1, characterized in that: The one side of rotating plate (109) is fixedly connected with cross bar (112) away from through rod (110).
3. A bead sand production waste separating device according to claim 2, characterized in that: One end of cross bar (112) fixedly assembled with magnetic block (114), the top of cross bar (112) is fixedly connected with embedded rod one (113).
4. A bead sand production waste separating device according to claim 1, characterized in that: The outer wall of rotating rod (107) movably sheathed with sleeve ring two (119), two sleeve ring two (119) are fixedly connected through connecting rod (108).
5. A bead sand production waste separating device according to claim 4, characterized in that: The outer side of fixed column (103) is slidingly connected with sliding plate (106), one end of sleeve ring two (119) is fixedly connected with sliding plate (106).
6. A bead sand production waste separating device according to claim 3, characterized in that: The one side of rotating rod (107) equidistantly fixedly connected with sleeve plate (117) for with embedded rod one (113) active embedding.
7. A bead sand production waste separating device according to claim 1, characterized in that: One end of rotating rod (107) is fixedly connected with embedded rod two (116), one end of second screen frame (101) and V-shaped groove (102) is fixedly connected with embedded plate (115) for with embedded rod two (116) rotation embedding.