Mica waste residue filtering and recycling equipment
By designing a mica waste residue filtration and recycling equipment, and utilizing the crushing, decomposition, and turning mechanism of the drum and arc-shaped screen plate, the problem of continuous and efficient cleaning and dismantling of mica waste residue was solved, thereby improving the recycling efficiency and quality of mica waste residue.
Patent Information
- Application Number
- CN202422096810.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-08-28
AI Technical Summary
Existing technologies lack recycling equipment capable of continuously and efficiently cleaning and dismantling mica waste residue.
A mica waste residue filtration and recycling device was designed, which includes a washing mechanism, a dismantling mechanism and a sedimentation mechanism. It uses a drum and an arc screen plate for crushing and decomposition, and a flipping mechanism to achieve efficient cleaning and transfer of mica waste residue.
It achieves efficient cleaning and crushing of mica waste residue, a continuous and stable recycling process, improves the utilization rate of mica waste residue, and ensures that the material quality and particle size meet the recycling and processing standards.
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Figure CN223789178U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to mica paper processing and manufacturing technical field, concretely is a kind of mica waste residue filtering and recycling equipment. BACKGROUND
[0002] Mica paper product is one of the most widely used ways of mica, and the broken mica sheet after crushing in thermodynamics, chemistry or water power is used as raw material to be made into pulp and papermaking, mica paper often has most of the performance of sheet mica products, and the thickness is uniform, the dielectric strength fluctuation range is small, the corona starting voltage is high and stable, and it is widely used in insulation materials in industry, such as cable and large mechanical and electrical equipment. With the development of electrical industry, the demand for mica is increasing. But mica resources are becoming less and less, especially large-diameter sheet mica is becoming more and more scarce. The effective way to solve this contradiction is to improve the utilization rate of mica itself, such as improving the utilization rate of mica paper residue and waste materials.
[0003] And there are two main ways to produce mica paper waste: in the process of mica paper making, because of process, raw materials, equipment and other reasons, a certain amount of unqualified waste or damaged material is usually inevitable, and even if the qualified mica paper product is cut and formed, there will be a lot of edge waste.
[0004] This kind of mica waste actually has a lot of utilization space, and how to recycle it as material that can be used for processing again generally needs to be cleaned and disassembled and broken down, so that the mica purity, quality and particle size of the raw material meet the recycling processing standards, and the existing technology lacks a processing equipment that can continuously and efficiently complete the above-mentioned mica waste recycling pretreatment process. UTILITY MODEL CONTENT
[0005] The technical problem to be solved by the utility model is that the existing technology lacks a recycling equipment that can continuously and efficiently clean and disassemble mica waste.
[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is:
[0007] The utility model provides a kind of mica waste residue filtering recovery equipment, including flushing mechanism and disassembly mechanism, the flushing mechanism side is connected with disassembly mechanism, and flushing mechanism below is provided with deposition mechanism;The disassembly mechanism includes the arc screen plate of two ends flush and middle part is set up to the downward convex, be provided with the drum for breaking up and decomposing flaky mica waste residue on the arc screen plate, spiral protrusion is provided on the drum;Rolling shaft is provided at the both ends of the drum, and the rolling shaft is rotatably connected with linear motor by passing the straight slot being arranged in the side of drum;The flushing mechanism includes filter screen plate being obliquely arranged in the side of arc screen plate, and the filter screen plate is provided with turnover mechanism for turning over filter screen plate to the above of arc screen plate at one end close to disassembly mechanism.
[0008] As further improvement of the above scheme, the turnover mechanism includes rotating shaft being arranged on filter screen plate close to one end of disassembly mechanism, and turnover buckle is provided at the other end of filter screen plate;One end of traction rope is connected with turnover buckle, and steering stop lever is provided above arc screen plate, after sliding steering by passing steering stop lever upside, the other end of traction rope is wound on winding rope roller.
[0009] As further improvement of the above scheme, the number of turnover buckle and traction rope is two, and swing handle is provided at one side of winding rope roller;Rotary motor is drivingly connected with one end of rotating shaft.
[0010] As further improvement of the above scheme, the flushing mechanism further includes flushing mechanism being arranged above higher side of oblique filter screen plate, side plate is provided at both sides of filter screen plate, and stop block is provided on the upper surface of filter screen plate close to one end of disassembly mechanism.
[0011] As further improvement of the above scheme, the deposition mechanism includes deposition groove being arranged directly below filter screen plate, and inclined separation slope is provided at the bottom of deposition groove, and discharge port is provided at the bottom of separation slope of deposition groove.
[0012] As further improvement of the above scheme, the disassembly mechanism below is provided with feeding mechanism, and the feeding mechanism includes conveying belt being arranged directly below arc screen plate.
[0013] Compared with prior art, the utility model has the beneficial effects that:
[0014] 1, can realize efficient cleaning to flaky mica waste residue, and the water flow of inclination can be quickly washed and separates the impurity dirt on the surface of waste residue, then immediately enter between drum with spiral protrusion and arc screen plate, and carry out comprehensive and fast breaking up and decomposing operation, and the whole process is continuous and stable and efficient.
[0015] 2、Through the deposition tank mica waste residue is more thoroughly recycled, part of the particle size is small and through the filter screen plate is washed by the flow to the flushing mechanism below the mica waste residue, can be in the deposition tank settlement cluster.
[0016] 3、Through the turnover mechanism can realize the batch link transport of mica waste residue, and the transport operation is also very convenient and reliable, some mica fragments adhered to the surface of the filter screen plate can also be shaken down after colliding with the steering stop bar when the turnover mechanism turns over, the transport of materials is more thorough. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the three-dimensional structure layout schematic view of the utility model.
[0018] Figure 2 It is the upper view structure schematic view of the utility model.
[0019] Figure 3 It is Figure 2 The cross-sectional structure schematic view of A-A.
[0020] The text annotation in the figure represents: 1, flushing mechanism;2, disassembly mechanism;3, turnover mechanism;4, deposition mechanism;5, feeding mechanism;11, flushing nozzle;12, filter screen plate;13, side plate;14, stop block;21, arc-shaped sieve plate;22, roller;23, spiral protrusion;24, roller shaft;25, straight slot;26, linear motor;27, retaining edge;31, rotating shaft;32, rotating motor;33, turnover buckle;34, traction rope;35, steering stop bar;36, winding rope roller;37, rocking handle;41, deposition tank;42, separation slope;43, discharge port;51, conveyor belt. DETAILED DESCRIPTION
[0021] In order to make those skilled in the art better understand the technical scheme, the utility model is described in detail below in combination with examples, and the description in this part is only exemplary and explanatory, and should not have any limiting effect on the protection scope of the utility model.
[0022] For example, Figures 1-3As shown in the figure, the specific scheme of the embodiment is: a mica waste residue filtering and recycling equipment, which comprises a flushing mechanism 1 and a disassembling mechanism 2, the flushing mechanism 1 is connected with the disassembling mechanism 2 on one side, and a sedimentation mechanism 4 is arranged below the flushing mechanism 1; the disassembling mechanism 2 comprises an arc-shaped sieve plate 21 which is flush at both ends and is provided with a downward protrusion in the middle, a roller 22 for crushing and decomposing flaky mica waste residue is arranged on the arc-shaped sieve plate 21, and a spiral protrusion 23 is arranged on the roller 22; a roller shaft 24 is arranged at both ends of the roller 22, and the roller shaft 24 is rotationally connected with a linear motor 26 by penetrating a straight groove 25 arranged on the side of the roller 22; the flushing mechanism 1 comprises a filter screen plate 12 which is arranged obliquely on one side of the arc-shaped sieve plate 21, and a turnover mechanism 3 is arranged at one end of the filter screen plate 12 close to the disassembling mechanism 2.
[0023] As shown in the figure, Figures 1-3 As a preferred mode of the above embodiment, the turnover mechanism 3 comprises a rotating shaft 31 arranged on the filter screen plate 12 close to one end of the disassembling mechanism 2, and a turnover buckle 33 is arranged at the other end of the filter screen plate 12; one end of a traction rope 34 is connected with the turnover buckle 33, a steering stop lever 35 is arranged above the arc-shaped sieve plate 21, and the other end of the traction rope 34 is wound on a rope winding roller 36 after sliding and steering through the upper side of the steering stop lever 35.
[0024] As shown in the figure, Figures 1-3 As a preferred mode of the above embodiment, the number of the turnover buckle 33 and the traction rope 34 is two, and a rocking handle 37 is arranged on one side of the rope winding roller 36; one end of the rotating shaft 31 is transmissionally connected with a rotating motor 32.
[0025] As shown in the figure, Figures 1-3 As a preferred mode of the above embodiment, the flushing mechanism 1 further comprises a flushing mechanism 1 arranged above the higher side of the inclined filter screen plate 12, side plates 13 are arranged on both sides of the filter screen plate 12, and a stop block 14 is arranged on the upper surface of the filter screen plate 12 close to one end of the disassembling mechanism 2.
[0026] As shown in the figure, Figures 1-3 As a preferred mode of the above embodiment, the sedimentation mechanism 4 comprises a sedimentation groove 41 arranged directly below the filter screen plate 12, an inclined separation slope 42 is arranged at the bottom of the sedimentation groove 41, and a discharge port 43 is arranged at the bottom of the separation slope 42.
[0027] As shown in the figure, Figures 1-3 As a preferred mode of the above embodiment, a feeding mechanism 5 is arranged below the disassembling mechanism 2, and the feeding mechanism 5 comprises a conveying belt 51 arranged directly below the arc-shaped sieve plate 21.
[0028] The utility model discloses a specific working principle: mica waste slag first falls on the filter screen plate 12 of the washing mechanism 1, and the washing nozzle 11 sprays clean water to the surface of mica waste slag, and along with the gravity effect, the cleaned mica waste slag gradually accumulates at the bottom of the filter screen plate 12, and then the rotating motor 32 in the turnover mechanism starts, or rotates through the shake handle 37, drives the traction rope 34 to pull the filter screen plate 12 to overturn around the pivot 31, and the cleaned mica waste slag falls on the arc screen plate 21 of the disassembling mechanism 2, and the cylinder 22 that rolls and moves in position on the two sides on the horizontal extrudes and breaks mica waste slag between the arc screen plate 21, and when the broken mica waste slag particle size is less than the screen hole aperture of the arc screen plate 21, will fall on the conveying belt 51 in the feeding mechanism 5 and be sent out this processing link.
[0029] It should be noted that in this document, the terms "comprise", "comprising", or any other variant thereof are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. In this document, specific examples are used to illustrate the principles and implementation modes of the technical solutions of the utility model, and the above examples are only used to help understand the method of the utility model and its core idea. The above-mentioned is only the preferred implementation mode of the utility model, and it should be pointed out that, due to the limited nature of the language expression, there are objectively infinite specific structures, and for ordinary skilled persons in the technical field, on the premise of not departing from the principle of the utility model, a number of improvements, refinements or changes can be made, or the above technical features can be combined in a proper way, and these improvements, refinements, changes or combinations, or the direct application of the concept and technical solutions of the utility model to other occasions without improvement, should be regarded as the protection scope of the utility model.
Claims
1. A mica waste residue filtration and recycling device, characterized in that: The system includes a rinsing mechanism (1) and a dismantling mechanism (2). The rinsing mechanism (1) is connected to the dismantling mechanism (2) on one side, and a sedimentation mechanism (4) is provided below the rinsing mechanism (1). The dismantling mechanism (2) includes an arc-shaped screen plate (21) with both ends flat and the middle protruding downward. A roller (22) for crushing and decomposing flaky mica waste residue is provided on the arc-shaped screen plate (21). A spiral protrusion (23) is provided on the roller (22). Rollers (24) are provided at both ends of the roller (22). The rollers (24) pass through a straight groove (25) provided on the side of the roller (22) and are rotatably connected to a linear motor (26). The rinsing mechanism (1) includes a filter screen plate (12) inclined on one side of the arc-shaped screen plate (21). A flipping mechanism (3) for flipping the filter screen plate (12) above the arc-shaped screen plate (21) is provided at the end of the filter screen plate (12) near the dismantling mechanism (2).
2. The mica waste residue filtration and recovery equipment according to claim 1, characterized in that: The flipping mechanism (3) includes a rotating shaft (31) on the filter screen plate (12) near one end of the disassembly mechanism (2), and a flip buckle (33) is provided at the other end of the filter screen plate (12); the flip buckle (33) is connected to one end of a traction rope (34), and a steering stop bar (35) is provided above the arc-shaped screen plate (21). After the traction rope (34) passes through the upper side of the steering stop bar (35) to achieve sliding steering, the other end is wound on the rope winding roller (36).
3. The mica waste residue filtration and recovery equipment according to claim 2, characterized in that: The number of flip buckles (33) and traction ropes (34) are two each. A crank handle (37) is provided on one side of the rope winding roller (36). A rotary motor (32) is connected to one end of the rotating shaft (31).
4. The mica waste residue filtration and recovery equipment according to claim 1, characterized in that: The rinsing mechanism (1) further includes a rinsing mechanism (1) disposed above the higher side of the inclined filter screen plate (12). Side plates (13) are provided on both sides of the filter screen plate (12), and a stop block (14) is provided on the upper surface of the filter screen plate (12) at the end near the disassembly mechanism (2).
5. The mica waste residue filtration and recovery equipment according to claim 1, characterized in that: The sedimentation mechanism (4) includes a sedimentation tank (41) located directly below the filter screen (12), the bottom of the sedimentation tank (41) is provided with an inclined separation slope (42), and the sedimentation tank (41) is provided with a discharge port (43) at the bottom of the separation slope (42).
6. The mica waste residue filtration and recovery equipment according to claim 1, characterized in that: Below the disassembly mechanism (2) is a feeding mechanism (5), which includes a conveyor belt (51) located directly below the arc-shaped screen plate (21).