A triple filtration device for workpiece release agent

CN224613307UActive Publication Date: 2026-08-11CHONGQING PINGBO MACHINERY
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-12
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提高一种工件脱模剂的三重过滤设备,解决了无法对过滤网进行清理的问题

Benefits of technology

[0011]本实用新型的一种工件脱模剂的三重过滤设备包括水箱、安装组件和辅助组件,所述安装组件包括连接板、滑动槽体、第一过滤网、第二过滤网、第三过滤网、升降气缸、升降板、清理刷、搅动构件和卡接构件,所述搅动构件包括搅动轴、搅动扇叶和驱动电机,所述卡接构件包括转动轴和卡接块,所述辅助组件包括进料阀、进料管和出料构件,所述出料构件包括出料阀和出料管,所述连接板与所述水箱固定连接,并位于所述水箱内部,所述滑动槽体与所述连接板固定连接,并位于所述连接板的一侧,所述第一过滤网与所述滑动槽体滑动连接,所述第二过滤网与所述滑动槽体滑动连接,所述第三过滤网与所述滑动槽体滑动连接,并位于所述滑动槽体的内侧,所述升降气缸与所述连接板固定连接,并位于所述连接板的一侧,所述升降板与所述升降气缸的输出端连接,所述清理刷与所述升降板固定连接,并位于所述升降板的一侧,所述排料构件与所述水箱连接,所述卡接构件与所述连接板连接,在使用时,通过所述辅助组件将需要过滤的脱模剂导入进所述水箱中,在启动所述搅动构件,所述搅动构件对脱模剂进行搅动,加快脱模剂的流动,提高过滤效率,通过所述第一过滤网、所述第二过滤网和所述第三过滤网对脱模剂进行过滤,三重过滤保障了对脱模剂中的杂质过滤干净,在启动所述升降气缸,所述升降气缸驱动所述升降板来回升降,所述升降板带动所述清理刷移动,所述清理刷对所述第一过滤网、所述第二过滤网和所述第三过滤网上的杂质进行清理,防止发生堵塞,过滤完成后的脱模剂通过所述辅助组件排出,使用完成后断开所述卡接块对所述第一过滤网、所述第二过滤网和所述第三过滤网卡接,将所述第一过滤网、所述第二过滤网和所述第三过滤网从所述滑动槽体中抽出,便于过滤网进行清洗,从而解决了无法对过滤网进行清理的问题。

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Abstract

This utility model relates to the field of mold release agent filtration technology, specifically to a triple filtration device for workpiece mold release agents. The mold release agent to be filtered is introduced into the inlet tank via an auxiliary component. Then, an agitator is activated, stirring the mold release agent to accelerate its flow and improve filtration efficiency. The mold release agent is filtered through a first, second, and third filter screen. This triple filtration ensures that impurities in the mold release agent are thoroughly removed. A lifting cylinder drives a lifting plate to move back and forth, which in turn moves a cleaning brush to clean impurities from the first, second, and third filter screens, preventing blockage. The filtered mold release agent is then discharged through the auxiliary component, thus solving the problem of not being able to clean the filter screens.
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Description

Technical Field

[0001] This utility model relates to the field of mold release agent filtration technology, and in particular to a triple filtration device for workpiece mold release agent. Background Technology

[0002] Release agents play a crucial role in mold manufacturing and molding processes. They enable workpieces to be easily demolded from the mold, ensuring a smooth surface, clear and complete contours, and extending the mold's lifespan. However, during use, release agents inevitably remain in the product, which may not only affect subsequent processing and performance but also adversely impact the product's appearance and quality.

[0003] Filtration and recycling of mold release agents also helps reduce production costs. During production, the amount of mold release agent used is often substantial. Direct discharge or disposal not only wastes resources but may also increase the cost of wastewater treatment. Filtration and recycling removes metallic impurities from the mold release agent, allowing for effective recovery and reuse, thereby reducing mold release agent consumption and saving production costs.

[0004] However, during the use of existing workpiece release agent filtration equipment, metal impurities easily clog the filter screen, making it impossible to clean the filter screen, resulting in reduced filtration efficiency and inconvenience in use. Utility Model Content

[0005] The purpose of this invention is to improve a triple filtration device for workpiece release agents, solving the problem of the inability to clean the filter screen.

[0006] To achieve the above objectives, this utility model improves a triple filtration device for a workpiece release agent, comprising a water tank, an installation assembly, and auxiliary components. The installation assembly includes a connecting plate, a sliding groove, a first filter screen, a second filter screen, a third filter screen, a lifting cylinder, a lifting plate, a cleaning brush, a stirring component, and a snap-fit ​​component. The connecting plate is fixedly connected to the water tank and located inside the water tank. The sliding groove is fixedly connected to the connecting plate and located on one side of the connecting plate. The first filter screen is slidably connected to the sliding groove, the second filter screen is slidably connected to the sliding groove, and the third filter screen is slidably connected to the sliding groove and located inside the sliding groove. The lifting cylinder is fixedly connected to the connecting plate and located on one side of the connecting plate. The lifting plate is connected to the output end of the lifting cylinder. The cleaning brush is fixedly connected to the lifting plate and located on one side of the lifting plate. The discharge component is connected to the water tank, and the snap-fit ​​component is connected to the connecting plate. During use, the release agent to be filtered is introduced into the water tank through the auxiliary component. The agitator is then activated, stirring the release agent to accelerate its flow and improve filtration efficiency. The release agent is filtered through the first, second, and third filter screens; this triple filtration ensures that impurities in the release agent are thoroughly removed. The lifting cylinder is then activated, driving the lifting plate to move back and forth. The lifting plate moves the cleaning brush, which cleans impurities from the first, second, and third filter screens to prevent clogging. The filtered release agent is discharged through the auxiliary component. After use, the locking block is disconnected from the first, second, and third filter screens, allowing them to be pulled out of the sliding groove for easy cleaning, thus solving the problem of not being able to clean the filter screens.

[0007] The agitating component includes an agitating shaft, agitating blades, and a drive motor. The agitating shaft is rotatably connected to the water tank and passes through the water tank. The agitating blades are fixedly connected to the agitating shaft and are sleeved on the agitating shaft. The drive motor is fixedly connected to the water tank, and the output end of the drive motor is connected to the agitating shaft.

[0008] The snap-fit ​​component includes a rotating shaft and a snap-fit ​​block. The rotating shaft is rotatably connected to the connecting plate and is located on one side of the connecting plate. The snap-fit ​​block is fixedly connected to the rotating shaft and is sleeved on the rotating shaft.

[0009] The auxiliary components include a feed valve, a feed pipe, and a discharge component. The feed valve is connected to the water tank and is located on one side of the water tank. The feed pipe is connected to the feed valve and is located on one side of the feed valve. The discharge component is connected to the water tank.

[0010] The discharge component includes a discharge valve and a discharge pipe. The discharge valve is connected to the water tank and is located on one side of the water tank. The discharge pipe is connected to the discharge valve and is located on one side of the discharge valve.

[0011] This utility model discloses a triple filtration device for a workpiece release agent, comprising a water tank, an installation assembly, and auxiliary components. The installation assembly includes a connecting plate, a sliding groove, a first filter screen, a second filter screen, a third filter screen, a lifting cylinder, a lifting plate, a cleaning brush, an agitating component, and a locking component. The agitating component includes an agitating shaft, agitating blades, and a drive motor. The locking component includes a rotating shaft and a locking block. The auxiliary components include a feed valve, a feed pipe, and a discharge component. The discharge component includes a discharge valve and a discharge pipe. The connecting plate is fixedly connected to the water tank. Located inside the water tank, the sliding groove is fixedly connected to the connecting plate and located on one side of the connecting plate. The first filter screen is slidably connected to the sliding groove, the second filter screen is slidably connected to the sliding groove, and the third filter screen is slidably connected to the sliding groove and located inside the sliding groove. The lifting cylinder is fixedly connected to the connecting plate and located on one side of the connecting plate. The lifting plate is connected to the output end of the lifting cylinder, and the cleaning brush is fixedly connected to the lifting plate and located on one side of the lifting plate. The discharge component is connected to the water tank, and the snap-fit ​​component is connected to the connecting plate. During use, the release agent to be filtered is introduced into the water tank through the auxiliary component. The stirring component is then activated, agitating the release agent to accelerate its flow and improve filtration efficiency. The release agent is filtered through the first, second, and third filter screens; this triple filtration ensures that impurities in the release agent are thoroughly removed. The lifting cylinder is then activated, driving the lifting plate to move back and forth. The lifting plate moves the cleaning brush, which cleans impurities from the first, second, and third filter screens to prevent clogging. The filtered release agent is discharged through the auxiliary component. After use, the snap-fit ​​component is disconnected from the first, second, and third filter screens, allowing them to be pulled out of the sliding groove for easy cleaning, thus solving the problem of not being able to clean the filter screens. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of the triple filtration device for the workpiece release agent according to the first embodiment of this utility model.

[0014] Figure 2 This is a schematic diagram showing the connection between the snap-fit ​​block and the rotating shaft of the triple filtration device for the workpiece release agent according to the first embodiment of this utility model.

[0015] Figure 3 This is a schematic diagram of the triple filtration device for the workpiece release agent according to the second embodiment of this utility model.

[0016] In the diagram: 101-Water tank, 102-Connecting plate, 103-Sliding trough, 104-First filter screen, 105-Second filter screen, 106-Third filter screen, 107-Lifting cylinder, 108-Lifting plate, 109-Cleaning brush, 110-Agitating shaft, 111-Agitating fan blade, 112-Drive motor, 113-Rotating shaft, 114-Snap-fit ​​block, 201-Feed valve, 202-Feed pipe, 203-Discharge valve, 204-Discharge pipe. Detailed Implementation

[0017] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.

[0018] The first embodiment of this application is as follows:

[0019] Please see Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of the overall structure of the triple filtration device for the workpiece release agent according to the first embodiment of this utility model. Figure 2 This is a schematic diagram of the connection between the locking block and the rotating shaft of the triple filtration device for the workpiece release agent according to the first embodiment of this utility model. The triple filtration device for the workpiece release agent includes a water tank 101, an installation component, and an auxiliary component. The installation component includes a connecting plate 102, a sliding groove 103, a first filter screen 104, a second filter screen 105, a third filter screen 106, a lifting cylinder 107, a lifting plate 108, a cleaning brush 109, an agitator, and a locking component. The agitator includes an agitator shaft 110, an agitator blade 111, and a drive motor 112. The locking component includes a rotating shaft 113 and a locking block 114. The aforementioned solution solves the problem of not being able to clean the filter screen.

[0020] In this specific embodiment, during use, the release agent to be filtered is introduced into the water tank 101 through the auxiliary component. Then, the agitator is activated, stirring the release agent to accelerate its flow and improve filtration efficiency. The release agent is filtered through the first filter screen 104, the second filter screen 105, and the third filter screen 106. This triple filtration ensures that impurities in the release agent are thoroughly removed. Finally, the lifting cylinder 107 is activated, driving the lifting plate 108 to move back and forth. The lifting plate 108 then moves the cleaning brush 109. The cleaning brush 109 cleans impurities on the first filter screen 104, the second filter screen 105, and the third filter screen 106 to prevent clogging. After filtration, the release agent is discharged through the auxiliary component. After use, the snap-fit ​​block 114 is disconnected to snap the first filter screen 104, the second filter screen 105, and the third filter screen 106 out of the sliding groove 103, making it easier to clean the filter screens and thus solving the problem of not being able to clean the filter screens.

[0021] The connecting plate 102 is fixedly connected to the water tank 101 and located inside the water tank 101. The sliding groove 103 is fixedly connected to the connecting plate 102 and located on one side of the connecting plate 102. The first filter screen 104 is slidably connected to the sliding groove 103. The second filter screen 105 is slidably connected to the sliding groove 103. The third filter screen 106 is slidably connected to the sliding groove 103 and located inside the sliding groove 103. The lifting cylinder 107 is fixedly connected to the connecting plate 102 and located on one side of the connecting plate 102. The lifting plate 108 is fixedly connected to the lifting cylinder 107. The output end of 07 is connected, the cleaning brush 109 is fixedly connected to the lifting plate 108 and located on one side of the lifting plate 108, the discharge component is connected to the water tank 101, the snap-fit ​​component is connected to the connecting plate 102, the connecting plate 102 is located inside the water tank 101, the sliding groove 103 is located on one side of the connecting plate 102, the sliding groove 103 and the connecting plate 102 have multiple components, the first filter screen 104, the second filter screen 105 and the third filter screen 106 are respectively connected to the sliding groove 103, the lifting cylinder 107 is located on one side of the connecting plate 102, the lifting plate 107... 8 is fixed at the output end of the lifting cylinder 107. The cleaning brush 109 is located on one side of the lifting plate 108. In use, the mold release agent to be filtered is introduced into the water tank 101 through the auxiliary component. When the agitator is activated, it agitates the mold release agent, accelerates its flow, and improves filtration efficiency. The mold release agent is filtered through the first filter screen 104, the second filter screen 105, and the third filter screen 106. This triple filtration ensures that impurities in the mold release agent are thoroughly filtered out. When the lifting cylinder 107 is activated, it drives the lifting plate 108 to move up and down. 108 drives the cleaning brush 109 to move, and the cleaning brush 109 cleans the impurities on the first filter screen 104, the second filter screen 105 and the third filter screen 106 to prevent clogging. After filtration, the release agent is discharged through the auxiliary component. After use, the snap-fit ​​block 114 is disconnected to snap the first filter screen 104, the second filter screen 105 and the third filter screen 106, and the first filter screen 104, the second filter screen 105 and the third filter screen 106 are pulled out from the sliding groove 103, which facilitates the cleaning of the filter screens, thereby solving the problem of not being able to clean the filter screens.

[0022] Secondly, the agitator shaft 110 is rotatably connected to the water tank 101 and passes through the water tank 101; the agitator blade 111 is fixedly connected to the agitator shaft 110 and sleeved on the agitator shaft 110; the drive motor 112 is fixedly connected to the water tank 101, the output end of the drive motor 112 is connected to the agitator shaft 110, the agitator shaft 110 passes through the water tank 101, the agitator blade 111 is sleeved on the agitator shaft 110, the drive motor 112 is located outside the water tank 101, when the drive motor 112 is started, the drive motor 112 drives the agitator shaft 110 to rotate, the agitator shaft 110 drives the agitator blade 111 to rotate, the agitator blade 111 agitates the release agent, accelerates the flow of the release agent, and improves the filtration efficiency.

[0023] Then, the rotating shaft 113 is rotatably connected to the connecting plate 102 and is located on one side of the connecting plate 102; the snap-fit ​​block 114 is fixedly connected to the rotating shaft 113 and is sleeved on the rotating shaft 113. The rotating shaft 113 is located on the upper side of the connecting plate 102. The snap-fit ​​block 114 is sleeved on the rotating shaft 113, and the first filter screen 104, the second filter screen 105, and the third filter screen 106 are snapped together by the snap-fit ​​block 114 to prevent the first filter screen 104, the second filter screen 105, and the third filter screen 106 from being snapped together. The filter screen 105 and the third filter screen 106 slide in the sliding groove 103. After use, the locking block 114 is pushed, and the locking block 114 rotates on the connecting plate 102 through the rotating shaft 113, disengaging the locking block 114 from the first filter screen 104, the second filter screen 105 and the third filter screen 106, and pulling the first filter screen 104, the second filter screen 105 and the third filter screen 106 out of the sliding groove 103 for easy cleaning.

[0024] When using the triple filtration device for the workpiece release agent in this embodiment, the release agent to be filtered is introduced into the water tank 101 through the auxiliary component. The drive motor 112 is then started, driving the agitator shaft 110 to rotate. The agitator shaft 110 drives the agitator blades 111 to rotate, agitating the release agent and accelerating its flow, thus improving filtration efficiency. The release agent is filtered through the first filter screen 104, the second filter screen 105, and the third filter screen 106. This triple filtration ensures that impurities in the release agent are thoroughly filtered out. Then, the lifting cylinder 107 is started, driving the lifting plate 108 to move up and down. The lifting plate 108 drives the cleaning... The brush 109 moves to clean impurities on the first filter screen 104, the second filter screen 105, and the third filter screen 106, preventing clogging. After filtration, the release agent is discharged through the auxiliary component. After use, the locking block 114 is pushed, and the locking block 114 rotates on the connecting plate 102 via the rotating shaft 113, disengaging the locking block 114 from the first filter screen 104, the second filter screen 105, and the third filter screen 106. This allows the first filter screen 104, the second filter screen 105, and the third filter screen 106 to be pulled out of the sliding groove 103, facilitating cleaning of the filter screens and solving the problem of not being able to clean the filter screens.

[0025] The second embodiment of this application is as follows:

[0026] Please see Figure 3 , Figure 3 This is a schematic diagram of a triple filtration device for a workpiece release agent according to the second embodiment of the present invention. Based on the first embodiment, the triple filtration device for the workpiece release agent in this embodiment further includes an auxiliary component. The auxiliary component includes a feed valve 201, a feed pipe 202, and a discharge component. The discharge component includes a discharge valve 203 and a discharge pipe 204.

[0027] In this specific embodiment, during use, the feed valve 201 is opened, and the release agent to be filtered enters the water tank 101 through the feed pipe 202 for filtration. After filtration, the discharge component is opened, and the discharge component discharges the filtered release agent.

[0028] The feed valve 201 is connected to the water tank 101 and is located on one side of the water tank 101; the feed pipe 202 is connected to the feed valve 201 and is located on one side of the feed valve 201; the discharge component is connected to the water tank 101, the feed valve 201 is located on one side of the water tank 101, and the feed pipe 202 is located on the side of the feed pipe 202 away from the water tank 101. In use, the feed valve 201 is opened, and the release agent to be filtered enters the water tank 101 through the feed pipe 202 for filtration. After filtration, the discharge component is opened, and the discharge component discharges the filtered release agent.

[0029] Secondly, the discharge valve 203 is connected to the water tank 101 and is located on one side of the water tank 101; the discharge pipe 204 is connected to the discharge valve 203 and is located on one side of the discharge valve 203. The discharge valve 203 is located on the side of the water tank 101 away from the feed valve 201, and the discharge pipe 204 is located on the side of the discharge valve 203 away from the water tank 101. After filtration, the discharge valve 203 is opened, and the filtered release agent is discharged through the discharge pipe 204.

[0030] When using the triple filtration device for the workpiece release agent of this embodiment, during use, the feed valve 201 is opened, and the release agent to be filtered enters the water tank 101 through the feed pipe 202 for filtration. After filtration, the discharge valve 203 is opened, and the filtered release agent is discharged through the discharge pipe 204.

[0031] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A triple filtration device for a workpiece release agent, comprising a water tank and auxiliary components, characterized in that: It also includes installation components; The installation assembly includes a connecting plate, a sliding groove, a first filter screen, a second filter screen, a third filter screen, a lifting cylinder, a lifting plate, a cleaning brush, an agitating component, and a snap-fit ​​component. The connecting plate is fixedly connected to the water tank and located inside the water tank. The sliding groove is fixedly connected to the connecting plate and located on one side of the connecting plate. The first filter screen is slidably connected to the sliding groove, the second filter screen is slidably connected to the sliding groove, and the third filter screen is slidably connected to the sliding groove and located inside the sliding groove. The lifting cylinder is fixedly connected to the connecting plate and located on one side of the connecting plate. The lifting plate is connected to the output end of the lifting cylinder. The cleaning brush is fixedly connected to the lifting plate and located on one side of the lifting plate. The agitating component is connected to the water tank, and the snap-fit ​​component is connected to the connecting plate.

2. The triple filtration device for the workpiece release agent as described in claim 1, characterized in that: The agitating component includes an agitating shaft, agitating blades, and a drive motor. The agitating shaft is rotatably connected to the water tank and passes through the water tank. The agitating blades are fixedly connected to the agitating shaft and are sleeved on the agitating shaft. The drive motor is fixedly connected to the water tank, and the output end of the drive motor is connected to the agitating shaft.

3. The triple filtration device for the workpiece release agent as described in claim 1, characterized in that: The snap-fit ​​component includes a rotating shaft and a snap-fit ​​block. The rotating shaft is rotatably connected to the connecting plate and is located on one side of the connecting plate. The snap-fit ​​block is fixedly connected to the rotating shaft and is sleeved on the rotating shaft.

4. The triple filtration device for the workpiece release agent as described in claim 1, characterized in that: The auxiliary components include a feed valve, a feed pipe, and a discharge component. The feed valve is connected to the water tank and is located on one side of the water tank; the feed pipe is connected to the feed valve and is located on one side of the feed valve; and the discharge component is connected to the water tank.

5. The triple filtration device for the workpiece release agent as described in claim 4, characterized in that: The discharge component includes a discharge valve and a discharge pipe. The discharge valve is connected to the water tank and is located on one side of the water tank. The discharge pipe is connected to the discharge valve and is located on one side of the discharge valve.