Cleaning equipment
By designing automated cleaning equipment and employing multiple cleaning components and mechanisms, the problem of low cleaning efficiency of raw materials in diamond wire production has been solved, achieving a highly efficient and automated cleaning process, and reducing labor intensity and process complexity.
Patent Information
- Application Number
- CN202423183852.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-23
AI Technical Summary
In existing technologies, the cleaning efficiency of raw materials for diamond wire production is low, the labor intensity is high, the cleaning process is cumbersome, and manual handling and cleaning are required.
A cleaning device was designed, including a feeding mechanism, a receiving mechanism, a conveying mechanism, a cleaning mechanism, a moving mechanism, and a discharging mechanism, to achieve automated handling and cleaning. It adopts multiple cleaning components such as acid washing, water washing, and ultrasonic cleaning, combined with a spraying and turning mechanism to improve cleaning efficiency.
It has enabled automated cleaning of production raw materials, reduced manual labor intensity, improved cleaning efficiency and effect, and reduced the complexity of the cleaning process for production raw materials.
Smart Images

Figure CN223669810U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of diamond wire processing technology, and in particular to a cleaning device. Background Technology
[0002] During the processing of diamond wire, electroplating is required. During electroplating, impurities are released from the diamond wire. The raw materials used for electroplating absorb these impurities, and after repeated absorption, the surface of the raw materials becomes covered with impurities, thus affecting the electroplating process of the diamond wire.
[0003] Therefore, it is necessary to clean the surface impurities of the raw materials to improve the electroplating efficiency. In existing technologies, acid pickling is commonly used to clean the raw materials. However, the cleaning process requires manual handling and cleaning of the raw materials, resulting in excessive labor intensity for workers, low cleaning efficiency, and cumbersome procedures.
[0004] Therefore, how to improve the cleaning efficiency of raw materials is a technical problem that urgently needs to be solved by those skilled in the art. Utility Model Content
[0005] In order to overcome the shortcomings of the existing technology, the purpose of this application is to provide a cleaning device with higher cleaning efficiency.
[0006] To achieve the above objectives, this application adopts the following technical solution:
[0007] A cleaning device is disclosed for cleaning raw materials used in the production of diamond wire. The cleaning device includes a feeding mechanism, a receiving mechanism, a first conveying mechanism, a cleaning mechanism, a moving mechanism, and a discharging mechanism. The feeding mechanism is used to place and discharge the raw materials. The receiving mechanism is at least partially located below the feeding mechanism and is used to receive the raw materials. The first conveying mechanism is at least partially located below the feeding mechanism and is used to support and convey the receiving mechanism. The cleaning mechanism is located to one side of the first conveying mechanism to receive the receiving mechanism and clean the raw materials. The moving mechanism has a degree of freedom of movement and is capable of moving the receiving mechanism so that the receiving mechanism moves into or out of the cleaning mechanism. The discharging mechanism is located on the side of the cleaning mechanism away from the first conveying mechanism to receive the raw materials within the receiving mechanism.
[0008] Furthermore, the cleaning mechanism includes a first cleaning component and a second cleaning component. The first cleaning component is located on one side of the first conveying mechanism and is used for pickling the raw materials. The second cleaning component is located on the side of the first cleaning component away from the first conveying mechanism and is used for washing the raw materials with water.
[0009] Further, the first cleaning assembly comprises at least one pickling tank and at least one first rinsing tank. Each first rinsing tank is matched with at least one pickling tank, and all pickling tanks are located between the at least one first rinsing tank and the first conveying mechanism.
[0010] Further, the second cleaning assembly comprises at least one ultrasonic cleaning tank and at least one second rinsing tank. The at least one ultrasonic cleaning tank is located between the at least one second rinsing tank and the first cleaning assembly.
[0011] Further, the cleaning device further comprises a spraying mechanism located between the first cleaning assembly and the first conveying mechanism. The spraying mechanism is configured to spray the production raw materials in the containing mechanism.
[0012] Further, the cleaning device further comprises a turnover mechanism located between the cleaning mechanism and the discharging mechanism. The turnover mechanism is configured to turn over the containing mechanism and convey the production raw materials to the discharging mechanism.
[0013] Further, the cleaning device further comprises a second conveying mechanism connected with the first conveying mechanism. The second conveying mechanism is located between the cleaning mechanism and the turnover mechanism. The second conveying mechanism is configured to convey the containing mechanism to the first conveying mechanism.
[0014] Further, the first conveying mechanism and the second conveying mechanism are both in the form of a conveyor belt.
[0015] Further, the feeding mechanism comprises a feeding hopper, a first oscillation assembly and a third conveying assembly. The feeding hopper is configured to place the production raw materials. The first oscillation assembly is configured to vibrate the feeding hopper. The third conveying assembly is connected with the feeding hopper, and one end of the third conveying assembly is located above the first conveying mechanism.
[0016] Further, the discharging mechanism comprises a discharging hopper, a second oscillation assembly and a fourth conveying assembly. The discharging hopper is configured to receive the production raw materials in the containing mechanism. The second oscillation assembly is configured to vibrate the discharging hopper. The fourth conveying assembly is connected with the discharging hopper and is configured to output the production raw materials.
[0017] The above cleaning device can automatically carry and clean the production raw materials during the cleaning process, thereby eliminating the need for manual carrying and cleaning by workers, and improving the cleaning efficiency of the production raw materials. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 FIG. 1 is a schematic diagram of the overall structure of the cleaning device of the present application;
[0019] Figure 2 FIG. 2 is a schematic diagram of the specific structure of the cleaning device of the present application;
[0020] Figure 3Structure diagram of a cleaning mechanism of a cleaning device.
[0021] 100, cleaning device; 11, feeding mechanism; 111, feeding hopper; 112, third conveying assembly; 113, first oscillating assembly; 12, containing mechanism; 13, first conveying mechanism; 14, cleaning mechanism; 141, first cleaning assembly; 1411, pickling tank; 1412, first rinsing tank; 142, second cleaning assembly; 1421, second rinsing tank; 1422, ultrasonic cleaning tank; 143, draining tank; 15, moving mechanism; 16, discharging mechanism; 161, discharging hopper; 162, fourth conveying assembly; 163, second oscillating assembly; 17, spraying mechanism; 18, overturning mechanism; 19, second conveying mechanism. DETAILED DESCRIPTION
[0022] In order to make personnel in the art better understand the scheme of the present application, the technical scheme in the specific embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application.
[0023] It should be noted that the terms “first”, “second” and the like used in the specification and claims of the present application do not indicate any order, number or importance, but are only used to distinguish different components. Similarly, the terms “one” or “a” and the like do not indicate a quantity limitation, but indicate the existence of at least one. “Multiple” or “several” indicates at least two. Unless otherwise indicated, the terms “front”, “back”, “left”, “right”, “lower” and / or “upper” and the like are used for convenience only and are not intended to be limiting to a particular position or spatial orientation. The terms “include” or “contain” and the like mean that the elements or objects appearing before “include” or “contain” cover the elements or objects listed after “include” or “contain” and their equivalents, and do not exclude other elements or objects. The terms “connected” or “connected” and the like are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect.
[0024] The singular forms “a”, “said” and “the” used in the specification and the appended claims are intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the term “and / or” used herein means and includes any or all possible combinations of one or more associated listed items.
[0025] As Figure 1 and Figure 2As shown, the present application provides a cleaning device 100 for cleaning production raw materials (not shown in the figure). In some embodiments, the production raw materials can be nickel beads or nickel sheets, which can release nickel ions during the electroplating process of the diamond wire to achieve the electroplating process of the diamond wire. The present application takes nickel beads as an example. The impurities will be decomposed during the electroplating process of the diamond wire, and the decomposed impurities will adhere to the surface of the nickel beads, thereby reducing the efficiency of the nickel beads in decomposing nickel ions, and further reducing the electroplating efficiency of the diamond wire. Therefore, the cleaning device 100 is needed to clean the nickel beads to improve the electroplating efficiency of the nickel beads.
[0026] In order to clearly illustrate the technical solutions of the present application, the following terms are defined as follows: Figure 1 As shown in the front, rear, upper, lower, left, right.
[0027] Specifically, the cleaning device 100 includes a feeding mechanism 11, a containing mechanism 12, a first conveying mechanism 13, a cleaning mechanism 14, a moving mechanism 15 and a discharging mechanism 16. The feeding mechanism 11 is used to place and output production raw materials. The containing mechanism 12 is at least partially located below the feeding mechanism 11, and the containing mechanism 12 is used to receive the production raw materials output by the feeding mechanism 11. The first conveying mechanism 13 is at least partially located below the feeding mechanism 11, and the first conveying mechanism 13 is used to carry and convey the containing mechanism 12. The cleaning mechanism 14 is located on one side of the first conveying mechanism 13, and the cleaning mechanism 14 is used to receive the containing mechanism 12 and clean the production raw materials. The moving mechanism 15 has a moving degree of freedom, and the moving mechanism 15 is used to move the containing mechanism 12 so that the containing mechanism 12 can move into or out of the cleaning mechanism 14. The discharging mechanism 16 is located on the side of the cleaning mechanism 14 away from the first conveying mechanism 13, and the discharging mechanism 16 is used to receive the production raw materials in the containing mechanism 12. It should be noted that the feeding mechanism 11 is placed with production raw materials to be cleaned, and the discharging mechanism 16 receives cleaned production raw materials.
[0028] Through the above arrangement, the feeding mechanism 11 can output the production raw materials into the containing mechanism 12, and then the first conveying mechanism 13 can convey the containing mechanism 12 to the side close to the cleaning mechanism 14. The moving mechanism 15 can clamp the containing mechanism 12 on the first conveying mechanism 13 and can drive the containing mechanism 12 to move into or out of the cleaning mechanism 14, so that the cleaning mechanism 14 can clean the production raw materials in the containing mechanism 12. After cleaning, the moving mechanism 15 can move the containing mechanism 12 to the discharging mechanism 16, and the discharging mechanism 16 can receive the cleaned production raw materials. Through the above steps, the automatic handling, cleaning and collection of production raw materials can be realized, so that manual handling and cleaning of production raw materials by workers can be avoided, and production fatigue of workers due to excessive labor intensity can be avoided, thereby improving the overall cleaning efficiency of production raw materials.
[0029] In this application, the cleaning mechanism 14 is arranged along the left and right direction of the cleaning equipment 100. In some embodiments, the moving mechanism 15 is a robotic arm with a degree of freedom of movement along the left and right direction of the cleaning equipment 100, and the robotic arm can grip the receiving mechanism 12 located on the first conveying mechanism 13, and can drive the receiving mechanism 12 to move into or out of the cleaning mechanism 14, thereby realizing the cleaning of the production raw materials.
[0030] It should be noted that the transfer of the receiving mechanism 12 between the first conveying mechanism 13 and the cleaning mechanism 14 can also be achieved in other ways. For example, the first conveying mechanism 13 can directly send the receiving mechanism 12 into the cleaning mechanism 14; or, a push rod can be provided at one end of the first conveying mechanism 13 near the cleaning mechanism 14, and the push rod can push the receiving mechanism 12 on the first conveying mechanism 13 into the cleaning mechanism 14.
[0031] It should be noted that the transfer between the receiving mechanism 12 and the cleaning mechanism 14 and the discharging mechanism 16 can also be achieved in other ways, which will be described in detail below and will not be repeated here.
[0032] like Figure 3 As shown, in one embodiment, the cleaning mechanism 14 includes a first cleaning component 141 and a second cleaning component 142. Specifically, the first cleaning component 141 is located on one side of the first conveying mechanism 13, and is used to receive the receiving mechanism 12 and acid wash the production raw materials. With this configuration, the first cleaning component 141 can receive the receiving mechanism 12 on the first conveying mechanism 13 and acid wash the production raw materials inside the receiving mechanism 12, thereby cleaning the impurities attached to the surface of the production raw materials and achieving cleaning of the production raw materials. The manner in which the receiving mechanism 12 moves from the first conveying mechanism 13 to the first cleaning component 141 is the same as the manner in which the receiving mechanism 12 moves from the first conveying mechanism 13 to the cleaning mechanism 141 described above, and will not be repeated here.
[0033] More specifically, the second cleaning component 142 is located on the side of the first cleaning component 141 away from the first conveying mechanism 13. The second cleaning component 142 can receive the receiving mechanism 12 and wash the production raw materials. With this configuration, the second cleaning mechanism 14 receives the receiving mechanism 12 and the production raw materials after being cleaned by the first cleaning component 141, and can wash the production raw materials, enabling the second cleaning mechanism 14 to perform a secondary cleaning of the production raw materials. This improves the cleaning degree of the production raw materials by the cleaning equipment 100, thereby increasing the cleanliness of the production raw materials.
[0034] Specifically, after the production raw material is cleaned by the first cleaning assembly 141, the moving mechanism 15 can clamp the containing mechanism 12 in the first cleaning assembly 141 and drive the containing mechanism 12 to move to the second cleaning assembly 142, so that the second cleaning assembly 142 can perform secondary cleaning on the production raw material.
[0035] In some embodiments, the moving mechanism 15 is provided with one, after the production raw material is cleaned by the first cleaning assembly 141, the moving mechanism 15 can clamp the containing mechanism 12 and drive the containing mechanism 12 to move to the second cleaning assembly 142, so that the second cleaning assembly 142 can perform secondary cleaning on the production raw material in the containing mechanism 12, and after the second cleaning assembly 142 finishes cleaning the production raw material, the moving mechanism 15 clamps the containing mechanism 12 and delivers it to the discharging mechanism 16.
[0036] In other embodiments, the moving mechanism 15 is provided with multiple, each first cleaning assembly 141 and second cleaning assembly 142 corresponds to a moving mechanism 15, after the production raw material is cleaned by the first cleaning assembly 141, the moving mechanism 15 corresponding to the first cleaning assembly 141 can clamp the containing mechanism 12 and move to the second cleaning assembly 142 through the moving mechanism 15. After the second cleaning assembly 142 finishes cleaning the production raw material, the moving mechanism 15 corresponding to the second cleaning assembly 142 can clamp the containing mechanism 12 and deliver it to the discharging mechanism 16.
[0037] As an optional implementation, the first cleaning assembly 141 includes an acid pickling tank 1411 and a first rinsing tank 1412. The acid pickling tank 1411 is provided with acid pickling liquid, which can decompose impurities attached to the surface of the production raw material. The first rinsing tank 1412 is used to clean the acid pickling liquid remaining on the containing mechanism 12 and the production raw material, and also used to clean the impurities remaining and attached to the production raw material, so as to improve the cleaning degree of the production raw material by the cleaning device 100.
[0038] Specifically, the acid pickling tank 1411 and the first rinsing tank 1412 are each provided with at least one. In this way, the production raw material in the containing mechanism 12 can be pickled by at least one acid pickling tank 1411 and rinsed by at least one first rinsing tank 1412, thereby improving the cleaning degree of the production raw material.
[0039] More specifically, each first rinsing tank 1412 cooperates with at least one acid pickling tank 1411. That is, the production raw material in the containing mechanism 12 can enter the first rinsing tank 1412 after passing through at least one acid pickling tank 1411. In this way, the production raw material can be prevented from being eroded by long-term immersion in acid pickling liquid, thereby facilitating the improvement of the service life of the production raw material.
[0040] In the embodiment, all the acid washing tanks 1411 are located between the at least one first rinsing tank 1412 and the first conveying mechanism 13. In this way, in the cleaning process of the production raw material by the first cleaning assembly 141, the at least one first rinsing tank 1412 is located after the cleaning process of all the acid washing tanks 1411, so as to avoid the residual acid washing liquid on the containing mechanism 12 and the production raw material from entering the second cleaning assembly 142, thereby avoiding the pollution of the acid washing liquid to the second cleaning assembly 142 and the damage of the second cleaning assembly 142, and further improving the service life of the second cleaning assembly 142.
[0041] In some embodiments, the acid washing liquid is sulfamic acid liquid, which can decompose the impurities attached to the production raw material, thereby achieving the cleaning function of the production raw material.
[0042] In some embodiments, the first rinsing tank 1412 can spray clean water, and the production raw material can be rinsed by the spraying of the clean water.
[0043] In other embodiments, the first rinsing tank 1412 contains clean water, and the containing mechanism 12 and the production raw material can be immersed in the clean water for cleaning. In addition, the clean water in the first rinsing tank 1412 can be overflowed and circulated, so as to avoid the excessive mixing of the acid washing liquid and the impurities in the first rinsing tank 1412, thereby reducing the cleaning efficiency of the first rinsing tank 1412, and further improving the overall cleaning degree of the production raw material by the first cleaning assembly 141.
[0044] In some embodiments, the containing mechanism 12 is a titanium basket. The titanium basket has high stability, so that the containing mechanism 12 will not be corroded by the acid washing liquid and damaged, thereby improving the stability of the support and transportation of the production raw material by the containing mechanism 12.
[0045] As an optional implementation, the second cleaning assembly 142 includes a second rinsing tank 1421 and an ultrasonic cleaning tank 1422. The ultrasonic cleaning tank 1422 is used for ultrasonic cleaning of the production raw material, so that the impurities attached to the production raw material can be stripped from the production raw material after being impacted by the ultrasonic waves, thereby improving the cleaning degree of the production raw material. The second rinsing tank 1421 is used for cleaning the impurities attached to the production raw material, and the second rinsing tank 1421 is also used for cleaning the impurities attached to the production raw material, thereby improving the cleaning degree of the production raw material by the cleaning device 100.
[0046] Specifically, the number of the ultrasonic cleaning tank 1422 is set to at least one. In this way, multiple ultrasonic cleaning tanks 1422 can perform multiple ultrasonic cleaning of the production raw material, thereby improving the cleaning efficiency of the production raw material by the second cleaning assembly 142.
[0047] More specifically, the ultrasonic cleaning tank 1422 is located between the second rinsing tank 1421 and the first cleaning assembly 141. In this way, the cleaning liquid in the ultrasonic cleaning tank 1422 can be prevented from remaining on the production materials, thereby improving the cleaning degree of the production materials by the cleaning device 100.
[0048] In some embodiments, the ultrasonic cleaning tank 1422 contains cleaning liquid, and an ultrasonic wave generator (not shown in the figure) is arranged in the ultrasonic cleaning tank 1422. The ultrasonic wave generator can output ultrasonic waves in the cleaning liquid, so that the impurities attached to the production materials can be stripped from the production materials after being impacted by the ultrasonic waves. In some embodiments, the ultrasonic wave generator is a swept-frequency ultrasonic wave power generator. The swept-frequency ultrasonic wave power generator can output uniform ultrasonic waves, thereby avoiding the occurrence of cleaning dead angles caused by uneven ultrasonic waves, and thereby improving the cleaning efficiency of the production materials by the ultrasonic cleaning tank 1422.
[0049] In the present application, the working principle of the second rinsing tank 1421 is consistent with that of the first rinsing tank 1412, and the working principle of the second rinsing tank 1421 will not be described here.
[0050] As an optional implementation, the cleaning mechanism 14 further includes a draining tank 143. The draining tank 143 is located between the second cleaning assembly 142 and the discharging mechanism 16. When the moving mechanism 15 moves the containing mechanism 12 away from the second cleaning assembly 142, the moving mechanism 15 can stop the containing mechanism 12 above the draining tank 143, thereby draining the water in the containing mechanism 12 and the production materials, so as to prevent the water from entering the discharging mechanism 16 and causing the discharging mechanism 16 to rust, thereby improving the service life of the discharging mechanism 16.
[0051] As shown in Figure 2 As an embodiment, the cleaning device 100 further includes a spraying mechanism 17. The spraying mechanism 17 is located between the first cleaning assembly 141 and the first conveying mechanism 13, and is used to spray the production materials in the containing mechanism 12. In this way, the spraying mechanism 17 can flush and clean the dust and other impurities attached to the production materials, thereby improving the cleaning efficiency of the production materials. Moreover, the dust and other impurities can be prevented from mixing into the pickling tank 1411.
[0052] As shown in Figure 2As shown, in one embodiment, the cleaning equipment 100 further includes a flipping mechanism 18, which is located between the cleaning mechanism 14 and the discharge mechanism 16. The flipping mechanism 18 is used to receive the receiving mechanism 12, and can also be used to flip the receiving mechanism 12 and convey the production raw materials to the discharge mechanism 16. In some embodiments, the flipping mechanism 18 is a flipping table capable of rotating at least 180°, and a fixing structure for fixing the receiving mechanism 12 is installed on the flipping table, so that the receiving mechanism 12 will not fall off the flipping mechanism 18 when it flips the receiving mechanism 12. The fixing structure can be a clamp or the like driven by a cylinder, thereby fixing the receiving mechanism 12 by the flipping mechanism 18.
[0053] In other embodiments, the flipping mechanism 18 is a robotic arm with rotational freedom, which can receive and hold the receiving mechanism 12 conveyed by the moving mechanism 15, and the robotic arm can drive the receiving mechanism 12 to flip so that the production raw materials in the receiving mechanism 12 are dumped.
[0054] In addition, the discharge mechanism 16 is located below the receiving mechanism 12 after it has been flipped over, so that the production raw materials in the receiving mechanism 12 can be poured into the discharge mechanism 16, thereby enabling the discharge mechanism 16 to collect the cleaned production raw materials.
[0055] It should be noted that the moving mechanism 15 can drive the receiving mechanism 12 to tilt, so that the raw materials produced in the receiving mechanism 12 can be poured into the discharging mechanism 16. Therefore, this application does not limit whether a tilting mechanism 18 is provided, as long as the raw materials in the receiving mechanism 12 can be poured into the discharging mechanism 16. In addition, this application uses the provision of a tilting mechanism 18 as an example for explanation.
[0056] like Figure 2 As shown, in one embodiment, the cleaning equipment 100 further includes a second conveying mechanism 19, which is connected to the first conveying mechanism 13. The second conveying mechanism 19 is located between the cleaning mechanism 14 and the tilting mechanism 18. After the tilting mechanism 18 conveys the raw materials to the discharge mechanism 16, the second conveying mechanism 19 conveys the receiving mechanism 12 to the first conveying mechanism 13. This arrangement allows the second conveying mechanism 19 to move the receiving mechanism 12 to its reset position on the first conveying mechanism 13, enabling the receiving mechanism 12 to continue receiving raw materials from the feeding mechanism 11, thereby improving the cleaning efficiency of the cleaning equipment 100.
[0057] In some embodiments, the flipping mechanism 18 includes a push plate for pushing the receiving mechanism 12. After the flipping mechanism 18 has finished flipping, the push plate can push the receiving mechanism 12 to the second conveying mechanism 19 so that the second conveying mechanism 19 can drive the receiving mechanism 12 to move.
[0058] As an optional implementation, the first conveying mechanism 13 and the second conveying mechanism 19 are both in the form of a conveyor belt. In this way, the containing mechanism 12 and the production raw material can be moved by the conveyor belt, so that the containing mechanism 12 and the production raw material do not need to be manually carried, thereby facilitating the cleaning efficiency of the cleaning device 100.
[0059] As shown in Figure 2 As an implementation, the feeding mechanism 11 includes a feeding hopper 111 and a third conveying assembly 112. The feeding hopper 111 is used to place the production raw material to be cleaned. The third conveying assembly 112 is used to convey the production raw material in the feeding hopper 111 to the containing mechanism 12.
[0060] Specifically, the third conveying assembly 112 is connected to the feeding hopper 111, and an end of the third conveying assembly 112 away from the feeding hopper 111 is located above the containing mechanism 12 on the first conveying mechanism 13. In some embodiments, the third conveying assembly 112 is a belt feeder, so that after the third conveying assembly 112 receives the production raw material output by the feeding hopper 111, the third conveying assembly 112 can convey the production raw material to the containing mechanism 12.
[0061] In this embodiment, the feeding mechanism 11 further includes a first oscillation assembly 113. The first oscillation assembly 113 acts on the feeding hopper 111 to vibrate the feeding hopper 111. In some embodiments, the first oscillation assembly 113 is an oscillation motor, which can drive the feeding hopper 111 to vibrate, thereby driving the production raw material in the feeding hopper 111 to vibrate, so as to avoid the production raw material from being blocked in the feeding hopper 111, thereby facilitating the discharging efficiency of the feeding hopper 111.
[0062] As shown in Figure 2 As an implementation, the feeding mechanism 11 includes a feeding hopper 111 and a third conveying assembly 112. The feeding hopper 111 is used to place the production raw material to be cleaned. The third conveying assembly 112 is used to convey the production raw material in the feeding hopper 111 to the containing mechanism 12.
[0063] In some embodiments, the fourth conveying assembly 162 is a belt feeder, so that the fourth conveying assembly 162 can convey the cleaned production raw material in the discharging hopper 161, thereby facilitating the feeding of the cleaned production raw material into the cleaning process of the diamond wire.
[0064] In the embodiment, the discharging mechanism 16 further comprises a second oscillation assembly 163. The second oscillation assembly 163 acts on the feeding hopper 111 to vibrate the feeding hopper 111. In some embodiments, the second oscillation assembly 163 is an oscillation motor. The feeding hopper 161 can be driven to vibrate by the oscillation motor, so as to drive the production materials in the feeding hopper 161 to vibrate, thereby avoiding the production materials from being blocked in the feeding hopper 161, and further facilitating to improve the discharging efficiency of the feeding hopper 161.
[0065] As an optional implementation, the cleaning device 100 further comprises a weighing mechanism (not shown in the figure). The weighing mechanism is used to weigh the production materials output by the feeding hopper 111, thereby facilitating to accurately control the weight of the production materials cleaned by the cleaning device 100, avoiding the production materials cleaned by the cleaning device 100 from being too heavy to cause the cleaning device 100 to fail to operate normally, and further facilitating to improve the stability of the cleaning device 100 in cleaning the production materials. In addition, it can also avoid the production materials cleaned by the cleaning device 100 from being too light, that is, the production materials cleaned by the cleaning device 100 are too few, thereby facilitating to improve the efficiency of the cleaning device 100 in cleaning the production materials.
[0066] In some embodiments, the weighing mechanism is arranged on the third conveying assembly 112, so that the weighing assembly can weigh the production materials conveyed by the feeding hopper 111 onto the third conveying assembly 112. In some embodiments, the weighing mechanism is arranged on the first conveying mechanism 13, so that the weighing mechanism can weigh the production materials in the containing mechanism 12 located on the first conveying mechanism 13. The application is described by taking the weighing mechanism arranged on the third conveying assembly 112 as an example.
[0067] As an implementation, the cleaning device 100 further comprises an electrical control cabinet (not shown in the figure). The feeding mechanism 11, the feeding mechanism 11, the feeding mechanism 11, the moving mechanism 15, the spraying mechanism 17, the discharging mechanism 16, the overturning mechanism 18 and the weighing mechanism are all electrically connected with the electrical control cabinet. The electrical control cabinet is used to control the operation of the above-mentioned mechanisms, so as to realize the automatic control function of the cleaning device 100.
[0068] In the application, the movement of the containing mechanism 12 is driven by the moving mechanism 15.
[0069] The working principle of the cleaning device 100 is as follows:
[0070] Firstly, the production materials to be cleaned in the feeding hopper 111 are output to the third conveying assembly 112 by controlling the electrical control cabinet. When the weighing mechanism weighs enough production materials, the feeding hopper 111 stops outputting the production materials. The third conveying assembly 112 conveys the production materials into the containing mechanism 12, and then the first conveying mechanism 13 conveys the containing mechanism 12 to the spraying mechanism 17.
[0071] Then, the moving mechanism 15 can clamp the containing mechanism 12 on the first conveying mechanism 13 and drive the containing mechanism 12 to sequentially pass through the spraying mechanism 17, the first cleaning assembly 141 and the second cleaning assembly 142. The production raw material in the containing mechanism 12 is sprayed and cleaned by the spraying mechanism 17, pickled by the first cleaning assembly 141 and ultrasonically cleaned by the second cleaning assembly 142, so that the impurities attached to the production raw material can be cleaned. Then, the containing mechanism 12 is moved to the draining groove 143 by the moving mechanism 15 for draining.
[0072] Then, the moving mechanism 15 drives the containing mechanism 12 to move to the overturning mechanism 18, the overturning mechanism 18 clamps or fixes the containing mechanism 12 and then drives the containing mechanism 12 to overturn, so that the production raw material in the containing mechanism 12 can be poured into the discharge hopper 161. At this time, the overturning mechanism 18 can place the containing mechanism 12, which has poured the production raw material, on the second conveying mechanism 19. The second conveying mechanism 19 can convey the containing mechanism 12 to the first conveying mechanism 13 and make the containing mechanism 12 located below the third conveying assembly 112 far away from one end of the discharge hopper 161.
[0073] Finally, the fourth conveying assembly 162 outputs the cleaned production raw material in the discharge hopper 161, so that the production raw material can continue to be electroplated into the diamond wire.
[0074] It should be understood that, for those skilled in the art, improvements or changes can be made according to the above description, and all these improvements and changes shall belong to the protection scope of the claims attached to this application.
Claims
1. A cleaning apparatus (100) for cleaning a production material of a diamond wire, characterized by, The cleaning device (100) comprises: a feeding mechanism (11) for placing and outputting the production raw material; a containing mechanism (12) located at least partially below the feeding mechanism (11) for receiving the production raw material; a first conveying mechanism (13) located at least partially below the feeding mechanism (11) for carrying and conveying the containing mechanism (12); a cleaning mechanism (14) located on one side of the first conveying mechanism (13) for receiving the containing mechanism (12) and cleaning the production raw material; a moving mechanism (15) having a moving degree of freedom, capable of moving the containing mechanism (12) so as to move the containing mechanism (12) into or out of the cleaning mechanism (14); and a discharging mechanism (16) located on the side of the cleaning mechanism (14) away from the first conveying mechanism (13) for receiving the production raw material in the containing mechanism (12).
2. The cleaning device (100) according to claim 1, wherein the cleaning mechanism (14) comprises: a first cleaning assembly (141) located on one side of the first conveying mechanism (13) for pickling the production raw material; a second cleaning assembly (142) located on the side of the first cleaning assembly (141) away from the first conveying mechanism (13) for washing the production raw material.
3. The cleaning device (100) according to claim 2, wherein the first cleaning assembly (141) comprises at least one pickling tank (1411) and at least one first rinsing tank (1412), each of the first rinsing tanks (1412) is matched with at least one of the pickling tanks (1411), and all the pickling tanks (1411) are located between at least one of the first rinsing tanks (1412) and the first conveying mechanism (13).
4. The cleaning device (100) according to claim 2, wherein the second cleaning assembly (142) comprises a second rinsing tank (1421) and at least one ultrasonic cleaning tank (1422), the ultrasonic cleaning tank (1422) is located between the second rinsing tank (1421) and the first cleaning assembly (141).
5. The cleaning device (100) according to claim 2, wherein the cleaning device (100) further comprises a spraying mechanism (17) located between the first cleaning assembly (141) and the first conveying mechanism (13), the spraying mechanism (17) is used for spraying the production raw material in the containing mechanism (12).
6. The cleaning device (100) according to claim 1, wherein The cleaning device (100) further comprises a turnover mechanism (18) located between the cleaning mechanism (14) and the discharging mechanism (16), used for overturning the containing mechanism (12) and conveying the production raw materials to the discharging mechanism (16).
7. The cleaning device (100) according to claim 6, characterized in that, The cleaning device (100) further comprises a second conveying mechanism (19) connected with the first conveying mechanism (13), the second conveying mechanism (19) is located between the cleaning mechanism (14) and the turnover mechanism (18), and the second conveying mechanism (19) is used for conveying the containing mechanism (12) to the first conveying mechanism (13).
8. The cleaning device (100) according to claim 7, characterized in that, The first conveying mechanism (13) and the second conveying mechanism (19) are both in the form of a conveyor belt.
9. The cleaning device (100) according to claim 1, characterized in that, The feeding mechanism (11) comprises: a feeding hopper (111) for placing the production raw materials; a first oscillation assembly (113) acting on the feeding hopper (111) to vibrate the feeding hopper (111); a third conveying assembly (112) connected with the feeding hopper (111), one end of the third conveying assembly (112) being located above the first conveying mechanism (13).
10. The cleaning device (100) according to claim 1, characterized in that, The discharging mechanism (16) comprises: a discharging hopper (161) for receiving the production raw materials in the containing mechanism (12); a second oscillation assembly (163) acting on the discharging hopper (161) to vibrate the discharging hopper (161); a fourth conveying assembly (162) connected with the discharging hopper (161) to output the production raw materials.