Oil groove machining waste chip collecting and processing device
By designing an oil tank processing waste chip collection and processing device and utilizing cleaning components and airflow recovery technology, the problem of cleaning waste chips after processing affecting efficiency is solved, and real-time waste chip collection and efficient processing are achieved.
Patent Information
- Application Number
- CN202422418421.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-08
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-10-08
AI Technical Summary
After the existing oil tank is processed, the waste chips need to be cleaned and recovered on the processing device, resulting in a decrease in processing efficiency.
A device for collecting and processing waste chips during oil tank machining is designed, including a cleaning component, a collection component, a mounting frame and a slider. The device uses an outer frame, a cleaning roller, an air pump and other components to collect waste chips in real time during the machining process, prevent splashing and recover them through airflow.
The continuous processing efficiency of oil tank processing is improved, and the waste chip retention time on the processing device is reduced by collecting and recycling waste chips in real time.
Smart Images

Figure CN223394891U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of waste chip collection, in particular to a waste chip collection and processing device for oil tank processing. Background Art
[0002] Oil baths are widely used in chemical engineering, petroleum, medicine, and biology. They are used in physical chemistry, metrology, universities, electronic instrumentation, scientific research institutions, and other fields for experiments, testing, and production. They are located in a controlled, uniform temperature environment, allowing for constant temperature testing of test samples or products. The inside of an oil bath is typically grooved, requiring machining. During this machining process, a large amount of waste debris is retained at the bottom of the bath. This waste debris needs to be recycled to conserve raw materials and improve production efficiency.
[0003] Therefore, in most of the existing oil tank processing waste collection and processing, after the oil tank processing is completed, in order to achieve the cleaning effect, the waste chips remaining in the oil tank need to be cleaned and recovered on the processing device, which increases the time the oil tank stays on the processing device and causes the continuous processing efficiency of the oil tank processing to decrease.
[0004] Therefore, in view of the fact that most of the existing oil tank processing waste collection and treatment are carried out on the processing device after the oil tank processing is completed, thereby affecting the processing efficiency, an oil tank processing waste collection and treatment device can be designed to collect waste chips throughout the entire processing process, thereby improving the utilization efficiency. Utility Model Content
[0005] In order to overcome the problem that in the process of waste chip collection, the existing oil tank processing waste chip collection and treatment are mostly carried out after the processing is completed, and the waste chips remaining in the oil tank are cleaned and recovered on the processing device, which increases the time that the oil tank stays on the processing device, resulting in a decrease in the continuous processing efficiency of the oil tank processing.
[0006] The technical solution of the utility model is: a device for collecting and processing waste chips during oil tank processing, comprising a cleaning component, a collection component, a mounting frame, and a slider; the mounting component comprises an outer frame for preventing waste chips from splashing; the front and rear ends of the outer frame are fixedly connected to a first guide plate for guiding the waste chips retained in the oil tank; the inner side of the first guide plate is fixedly connected to a cleaning comb for scraping off the waste chips; the upper end of the outer frame is provided with a mounting port for installing the remaining components; the upper ends of the front and rear ends of the mounting port are both installed with a dual-axis motor; the outer frame and the first guide plate are used to prevent waste chips from splashing, so as to improve the efficiency and effect of collection.
[0007] Preferably, a cleaning component is provided to clean larger oil tank processing waste chips; a collecting component is provided to recycle smaller oil tank processing waste chips and collect them in a centralized manner; and a mounting frame and a slider are provided to facilitate the installation of the device and drive its movement for easy cleaning of waste chips.
[0008] Preferably, a first mounting head is mounted on the rotating shafts of the two dual-axis motors via a coupling; a cleaning roller is provided at the lower end of each of the two cleaning combs; waste debris is cleaned by the cleaning roller, and the cleaning comb is used to clean the waste debris remaining on the cleaning roller.
[0009] Preferably, a second mounting head is installed on both side ends of the two cleaning rollers; a transmission belt is provided on the first mounting head and the second mounting head; a mounting joint for positioning is installed on the outer side of the second mounting head; the cleaning rollers are driven by a dual-axis motor, a first mounting head, a second mounting head and a transmission belt to facilitate cleaning of waste debris.
[0010] Preferably, a collection assembly for collecting waste chips is installed on the cleaning assembly; the collection assembly includes a movable base; the front and rear ends of the movable base are fixedly connected with a second guide plate for assisting in guiding the waste chips; the two side ends of the movable base are installed with a suction pipe for absorbing small waste chips; the lower end of the suction pipe is provided with an air guide hole for air introduction; the waste chips are collected by the second guide plate in conjunction with the cleaning roller, and the air guide hole and the suction pipe are used to cooperate with the airflow to drive the small waste chips to move for easy recycling.
[0011] Preferably, a screening plate for preventing waste chips from being scattered is installed at the upper end of the movable base; an air guide tube is provided at the upper end of the screening plate; an air pump is installed at the upper end of the air guide tube; a mounting pipe is installed at the upper end of the air pump; a storage tank for collecting waste chips is installed at the rear end of the mounting pipe; the waste chips are moved by the air flow through the air guide tube and the air pump, and the screening plate is used to prevent larger waste chips from being retained.
[0012] Preferably, mounting brackets are provided at both side ends of the collection component; a limiting slot is provided at one side end of the mounting bracket; the mounting bracket and the mounting joint are arranged to be slidingly connected through the limiting slot; a power motor is installed at the front end of the mounting bracket; the moving direction of the cleaning component and the collection component is determined by the mounting bracket, and installation and removal are facilitated.
[0013] Preferably, a threaded rod is installed on the rotating shaft of the power motor through a coupling; a slider is slidably connected to the inner side of the mounting frame; a connecting head is installed on one end of the slider; the slider and the mounting joint are set to be rotatably connected through a rotating joint through the connecting head; a threaded hole is opened on the inner side of the slider; the slider and the threaded rod are set to be clearance fit through the threaded hole; the slider is driven to move by the power motor and the threaded rod, so as to facilitate the movement of the cleaning component and the collection component through the connecting head and the mounting joint.
[0014] Beneficial effects of the utility model:
[0015] 1. A guide frame is provided to install and move the oil tank waste chips to the cleaning table, so that the cleaning disc and the air flow pump can be used to drive the oil tank waste chips to be moved and recovered. This solves the problem that in the process of waste chip collection, the waste chips remaining in the oil tank are cleaned and recovered on the processing device after the processing is completed. This increases the time the oil tank stays on the processing device, resulting in a decrease in the continuous processing efficiency of the oil tank processing. This can improve the use effect of the entire oil tank processing waste chip collection and treatment device;
[0016] 2. By arranging an outer frame, a cleaning roller, a mounting frame and a slider, the mounting frame can be used to determine the moving direction of the cleaning component and the collecting component, and the installation and removal are convenient. The power motor and the threaded rod drive the slider to move, thereby driving the cleaning component and the collecting component to move through the connecting head and the mounting joint, so that the outer frame and the first guide plate can prevent waste chips from splashing. The cleaning roller is driven by the dual-axis motor, the first mounting head, the second mounting head and the transmission belt, so that the cleaning roller can clean the waste chips, and the cleaning comb can be used to clean the waste chips remaining on the cleaning roller, thereby improving the use effect of the entire oil tank processing waste chip collection and treatment device to a certain extent.
[0017] 3. By setting up an outer frame, a movable base and an air pump, waste chips can be collected through the second guide plate in conjunction with the cleaning roller, and the air guide holes and the suction pipe are used to cooperate with the air flow to drive the movement of small waste chips for easy recovery. The air guide pipe and the air pump are used to drive the movement of waste chips through the air flow, and the sieve plate is used to prevent larger waste chips from being retained, thereby improving the efficiency and effect of the entire oil tank processing waste chip collection and treatment device. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 Shown is a schematic diagram of the structure of an oil tank processing waste chip collection and processing device of the utility model;
[0019] Figure 2 Shown is a partial cross-sectional structural schematic diagram of a cleaning component of an oil tank processing waste chip collection and treatment device of the present invention;
[0020] Figure 3 Shown is a partial cross-sectional structural schematic diagram of a collection component of an oil tank processing waste chip collection and treatment device of the present invention;
[0021] Figure 4 Shown is a schematic diagram of the structure of a mounting frame for collecting and processing waste chips from oil tank processing according to the present invention.
[0022] Explanation of the accompanying drawings: 3. Mounting frame; 4. Limiting groove; 5. Power motor; 6. Threaded rod; 7. Slider; 8. Connecting head; 9. Threaded hole; 101. Outer frame; 102. First guide plate; 103. Cleaning comb; 104. Mounting port; 105. Dual-axis motor; 106. First mounting head; 107. Cleaning roller; 108. Second mounting head; 109. Transmission belt; 110. Mounting joint; 201. Mobile base; 202. Second guide plate; 203. Suction pipe; 204. Air guide hole; 205. Screening plate; 206. Air guide pipe; 207. Air pump; 208. Mounting pipe; 209. Storage tank. DETAILED DESCRIPTION
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0024] See also Figure 1-Figure 4 The utility model provides an embodiment: a device for collecting and processing waste chips during oil tank processing, comprising a cleaning component, a collecting component, a mounting frame 3, and a slider 7; the mounting component comprises an outer frame 101 for preventing waste chips from splashing; the front and rear ends of the outer frame 101 are fixedly connected to a first guide plate 102 for guiding the waste chips retained in the oil tank; the inner side of the first guide plate 102 is fixedly connected to a cleaning comb 103 for scraping off the waste chips; the upper end of the outer frame 101 is provided with a mounting port 104 for mounting other components; the upper ends of the front and rear ends of the mounting port 104 are both installed with a dual-axis motor 105; the rotating shafts of the two dual-axis motors 105 are both installed with a first mounting head 106 through a coupling; two cleaning combs A cleaning roller 107 is provided at the lower end of 103; a second mounting head 108 is installed at both side ends of the two cleaning rollers 107; a transmission belt 109 is provided on the first mounting head 106 and the second mounting head 108; a mounting joint 110 for positioning is installed on the outer side of the second mounting head 108; the outer frame 101 and the first guide plate 102 are used to prevent waste from splashing to improve the collection efficiency and effect; the cleaning roller 107 is used to clean the waste, and the cleaning comb 103 is used to clean the waste remaining on the cleaning roller 107; the cleaning roller 107 is driven by the dual-axis motor 105, the first mounting head 106, the second mounting head 108 and the transmission belt 109 to facilitate the cleaning of waste.
[0025] See also Figure 3In this embodiment, a collection component for collecting waste chips is installed on the cleaning component; the collection component includes a movable base 201; the front and rear ends of the movable base 201 are fixedly connected with a second guide plate 202 for assisting in guiding waste chips; both ends of the movable base 201 are equipped with a suction pipe 203 for absorbing small waste chips; the lower end of the suction pipe 203 is provided with an air guide hole 204 for air introduction; the upper end of the movable base 201 is equipped with a sub-screen plate 205 for preventing waste chips from being scattered; the upper end of the sub-screen plate 205 is provided with Air guide tube 206; an air pump 207 is installed at the upper end of the air guide tube 206; a mounting tube 208 is installed at the upper end of the air pump 207; a storage tank 209 for collecting waste chips is installed at the rear end of the mounting tube 208; waste chips are collected by the second guide plate 202 in cooperation with the cleaning roller 107, and the air guide hole 204 and the suction tube 203 are used to cooperate with the air flow to drive the small waste chips to move for easy recycling; the air guide tube 206 and the air pump 207 are used to drive the waste chips to move through the air flow, and the screening plate 205 is used to prevent larger waste chips from being retained.
[0026] See also Figure 4 In this embodiment, mounting brackets 3 are provided on both side ends of the collecting assembly; a limiting slot 4 is provided on one side end of the mounting bracket 3; the mounting bracket 3 and the mounting joint 110 are set to be slidingly connected through the limiting slot 4; the front end of the mounting bracket 3 is installed with a power motor 5; a threaded rod 6 is installed on the rotating shaft of the power motor 5 through a coupling; a slider 7 is slidingly connected to the inner side of the mounting bracket 3; a connecting head 8 is installed on one side end of the slider 7; the slider 7 and the mounting joint 110 are set to be rotatably connected through a rotating joint through the connecting head 8; a threaded hole 9 is provided on the inner side of the slider 7; the slider 7 and the threaded rod 6 are set to a clearance fit through the threaded hole 9; the moving direction of the cleaning assembly and the collecting assembly is determined by the mounting bracket 3, and it is convenient to set up and dismantle; the slider 7 is driven to move by the power motor 5 and the threaded rod 6, so as to drive the cleaning assembly and the collecting assembly to move through the connecting head 8 and the mounting joint 110.
[0027] During installation, first, the mounting frame 3 is positioned and fixed by the universal device base to determine the moving direction of the cleaning assembly and the collection assembly. Then, the cleaning assembly, the collection assembly, and the slider 7 are connected by the connector 8 and the mounting joint 110. Finally, the slider 7 is driven to move by the power motor 5 and the threaded rod 6, thereby driving the movement of the cleaning assembly and the collection assembly.
[0028] During collection, first, the cleaning roller 107 is driven by the dual-axis motor 105, the first mounting head 106, the second mounting head 108 and the transmission belt 109, and the outer frame 101 and the first guide plate 102 are used to prevent waste chips from splashing. Then, the cleaning comb 103 is used to clean the waste chips remaining on the cleaning roller 107, and the second guide plate 202 is used to cooperate with the cleaning roller 107 to collect waste chips. Then, the air flow is used by the air guide pipe 206 and the air pump 207 to move the waste chips, and the sieve plate 205 is used to prevent larger waste chips from being retained, and the air guide hole 204 and the suction pipe 203 are used to cooperate with the air flow to move small waste chips for easy recycling. Finally, the collected waste chips are stored in the storage tank 209.
[0029] Through the above steps, the outer frame 101 and the cleaning roller 107 are set to clean the larger oil tank processing waste chips; the movable base 201 and the air pump 207 are set to recycle the smaller oil tank processing waste chips and collect them in a centralized manner; the mounting frame 3 and the slider 7 are set to facilitate the installation of the device and drive the movement to facilitate the cleaning of waste chips, so as to solve the problem that in the process of waste chip collection, the existing oil tank processing waste chip collection and treatment mostly cleans and recycles the waste chips remaining in the oil tank on the processing device after the processing is completed, which increases the time the oil tank stays on the processing device, resulting in a decrease in the continuous processing efficiency of the oil tank processing, thereby improving the use effect of the entire oil tank processing waste chip collection and treatment device.
Claims
1. A device for collecting and processing waste chips from oil tank processing, comprising a mounting frame (3); characterized in that: The invention also includes a cleaning component, a collecting component, and a slider (7); the mounting component includes an outer frame (101) for preventing waste from splashing; the front and rear ends of the outer frame (101) are both fixedly connected to a first guide plate (102) for guiding waste retained in the oil tank; the inner side of the first guide plate (102) is fixedly connected to a cleaning comb (103) for scraping off waste; the upper end of the outer frame (101) is provided with a mounting port (104) for mounting other components; the upper ends of the front and rear ends of the mounting port (104) are both installed with a double-axis motor (105).
2. The oil tank machining waste chip collection and processing device according to claim 1, characterized in that: A first mounting head (106) is mounted on the rotating shafts of the two dual-axis motors (105) via a coupling; and a cleaning roller (107) is disposed at the lower end of each of the two cleaning combs (103).
3. The oil tank machining waste chip collection and processing device according to claim 2, characterized in that: Second mounting heads (108) are installed on both side ends of the two cleaning rollers (107); transmission belts (109) are provided on the first mounting head (106) and the second mounting head (108); and mounting joints (110) for positioning are installed on the outer sides of the second mounting head (108).
4. The oil tank machining waste chip collection and processing device according to claim 1, characterized in that: A collecting assembly for collecting waste chips is installed on the cleaning assembly; the collecting assembly includes a movable base (201); the front and rear ends of the movable base (201) are fixedly connected with second guide plates (202) for assisting in guiding waste chips; the two side ends of the movable base (201) are installed with suction pipes (203) for absorbing small waste chips; the lower end of the suction pipe (203) is provided with an air guide hole (204) for air introduction.
5. The oil tank machining waste chip collection and processing device according to claim 4, characterized in that: A screening plate (205) for preventing waste chips from being scattered is installed at the upper end of the movable base (201); an air guide tube (206) is provided at the upper end of the screening plate (205); an air pump (207) is installed at the upper end of the air guide tube (206); a mounting pipe (208) is installed at the upper end of the air pump (207); and a storage tank (209) for collecting waste chips is installed at the rear end of the mounting pipe (208).
6. The oil tank machining waste chip collection and processing device according to claim 5, characterized in that: Both end portions of the collection assembly are provided with mounting frames (3); a limiting slot (4) is provided at one end portion of the mounting frame (3); the mounting frame (3) and the mounting joint (110) are arranged in a sliding connection via the limiting slot (4); and a power motor (5) is installed at the front end portion of the mounting frame (3).
7. The oil tank machining waste chip collection and processing device according to claim 6, characterized in that: A threaded rod (6) is mounted on the rotating shaft of the power motor (5) via a coupling; a slider (7) is slidably connected to the inner side of the mounting frame (3); a connector (8) is mounted on one end of the slider (7); the slider (7) and the mounting joint (110) are rotatably connected via a rotating joint via the connector (8); a threaded hole (9) is provided on the inner side of the slider (7); and the slider (7) and the threaded rod (6) are clearance-fitted via the threaded hole (9).