Automatic loading spiral drum ultrasonic cleaning machine
By introducing screw conveying and automatic loading mechanisms into the ultrasonic cleaning machine, the problem of material not being able to enter and exit automatically and the oil cannot be separated automatically is solved, and the cleaning efficiency and effect are improved.
Patent Information
- Application Number
- CN202510756449.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-09
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2045-06-09
AI Technical Summary
The existing ultrasonic cleaning machines have problems such as material not being able to enter and exit automatically, poor contact with the material and cleaning liquid, and the oil on the top of the cleaning liquid cannot be separated automatically, which affects the cleaning efficiency and effect.
A screw conveying mechanism, driving mechanism, movable barrier mechanism, liquid control mechanism, automatic feeding mechanism and oil guidance mechanism are designed to realize automatic rolling of materials, in and out of the materials and automatic separation of oil, and improve the contact effect between materials and cleaning liquid and cleaning efficiency.
It realizes automatic inlet and outlet of materials and automatic separation of oil, improves cleaning efficiency and cleaning effect, and reduces manual operation time.
Smart Images

Figure CN120243547B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of ultrasonic cleaning machines, and more specifically, relates to a spiral drum type ultrasonic cleaning machine with automatic loading. Background Art
[0002] The high-frequency vibrations generated by ultrasound can form tiny bubbles in the liquid, which remove surface oil, debris and oxide layers through the cavitation effect. It is particularly suitable for cleaning complex parts such as screws and nuts. Compared with manual or chemical cleaning, ultrasonic cleaning is faster and more uniform, and does not damage the workpiece surface. It is suitable for batch processing and can significantly improve the cleaning efficiency and quality of industrial production.
[0003] The ultrasonic cleaning machines currently used still have the following problems:
[0004] 1. The material to be cleaned generally cannot automatically enter the ultrasonic cleaning machine, and the material after ultrasonic cleaning generally cannot be automatically discharged, which increases the loading and unloading time and affects the cleaning efficiency of the material;
[0005] 2. The material usually cannot roll automatically in the ultrasonic cleaning machine, resulting in poor contact between the material and the cleaning liquid, which reduces the cleaning effect of the material;
[0006] 3. There is usually a layer of oil floating on the top of the cleaning fluid, which cannot be automatically discharged, increasing the time for subsequent oil separation. Summary of the Invention
[0007] The disclosed embodiment relates to a spiral drum ultrasonic cleaning machine with automatic loading, which has a spiral conveying mechanism, a driving mechanism, a movable blocking mechanism, a liquid control mechanism, an automatic loading mechanism and an oil guiding mechanism; the spiral fins drive the material in the circular mesh tube to automatically roll from left to right, thereby improving the contact effect between the material and the cleaning liquid; realizing automatic feeding and automatic discharge of the material, thereby improving the cleaning efficiency of the material; the oil on the top of the cleaning liquid can automatically enter the two rows of oil guide holes, and then be discharged through two rows of inclined bends and two oil guide pipes, thereby realizing automatic separation of the oil in the cleaning liquid; solving the problems of the material being unable to automatically enter and discharge, the poor contact effect between the material and the cleaning liquid, and the inability to automatically discharge the oil on the top of the cleaning liquid.
[0008] The present invention provides a spiral drum type ultrasonic cleaning machine with automatic loading, comprising: a cleaning shell; a row of oil guide holes are respectively provided on the front and rear sides of the cleaning shell, and a discharge inclined plate is fixedly installed on the right side of the cleaning shell; an ultrasonic generator is fixedly installed on the inner bottom side of the cleaning shell; a spiral conveying mechanism is installed inside the cleaning shell; a driving mechanism is installed on the cleaning shell, and the driving mechanism is used to rotate the spiral conveying mechanism; a movable blocking mechanism is installed on the cleaning shell; liquid control mechanisms are respectively installed on the front and rear sides of the cleaning shell, and two groups of the liquid control mechanisms are used to control the liquid level height inside the cleaning shell; an automatic loading mechanism is installed on the left side of the cleaning shell; oil guide mechanisms are respectively installed on the front and rear sides of the cleaning shell, and the two groups of the oil guide mechanisms are used to separate the oil in the cleaning shell.
[0009] In at least some embodiments, the spiral conveying mechanism includes: a mounting frame A, a circular mesh tube, spiral fins and a circular gear ring; there are two mounting frames A, and the two mounting frames A are fixedly mounted on the cleaning shell; the circular mesh tube is rotatably mounted on the two mounting frames A; the spiral fins are fixedly mounted on the inner wall of the circular mesh tube; there are two circular gear rings, and the two circular gear rings are fixedly mounted on the outer wall of the circular mesh tube.
[0010] In at least some embodiments, the driving mechanism includes: a mounting frame B, a double-headed motor and a driving gear; the mounting frame B is fixedly mounted on the cleaning shell; the double-headed motor is fixedly mounted on the mounting frame B; there are two driving gears, and the two driving gears are fixedly mounted on the output shaft of the double-headed motor, and the two driving gears are meshed with two circular gear rings.
[0011] In at least some embodiments, the movable blocking mechanism includes: a movable blocking plate, a rubber sealing ring A and a pushing plate; there are two movable blocking plates, and the two movable blocking plates are slidably installed on the cleaning shell, and a feed slot hole is provided on the movable blocking plate on the left; there are two rubber sealing rings A, and the two rubber sealing rings A are installed on the two movable blocking plates; the pushing plate is fixedly installed on the movable blocking plate on the left.
[0012] In at least some embodiments, the movable blocking mechanism also includes: a circular connecting rod and a multi-purpose bracket; there are two circular connecting rods, and the two circular connecting rods are fixedly installed on the inner side of the two movable blocking plates; there are two multi-purpose brackets, and the two multi-purpose brackets are fixedly installed on the outer walls of the two circular connecting rods.
[0013] In at least some embodiments, the liquid control mechanism includes: a rectangular frame, an electric telescopic rod and a rectangular control panel; the rectangular frame is fixedly mounted on the cleaning shell; the electric telescopic rod is fixedly mounted on the rectangular frame; the rectangular control panel is slidably mounted inside the rectangular frame, and the rectangular control panel is also fixedly connected to the output shaft of the electric telescopic rod.
[0014] In at least some embodiments, the liquid control mechanism further includes: a rubber sealing ring B and a tilt control frame; the rubber sealing ring B is mounted on a rectangular control plate; the tilt control frame is fixedly mounted on the inner side of the rectangular control plate, and the inner end of the tilt control frame is inserted into the multi-purpose bracket.
[0015] In at least some embodiments, the automatic loading mechanism includes: a material storage box, an inclined loading tube and a rectangular limiting plate; the material storage box is fixedly installed on the left side of the cleaning shell; the inclined loading tube is fixedly installed on the right side of the material storage box, and the right side of the inclined loading tube is in contact with the movable blocking plate on the left side; the rectangular limiting plate is slidably installed on the inclined loading tube.
[0016] In at least some embodiments, the automatic feeding mechanism further includes: a circular mounting shaft, a limiting ring and a coil spring; the circular mounting shaft is fixedly mounted on the bottom of the rectangular limiting plate, and the circular mounting shaft passes through the inclined feeding tube, and the bottom of the circular mounting shaft contacts the pushing plate; the limiting ring is fixedly mounted on the outside of the circular mounting shaft; the coil spring is sleeved on the outside of the circular mounting shaft, and the coil spring is located between the inclined feeding tube and the limiting ring.
[0017] In at least some embodiments, the oil guiding mechanism includes: an inclined bend pipe and an oil guiding pipe; the inclined bend pipes are provided in a row, and a row of inclined bend pipes is fixedly mounted on the cleaning shell, and the inner ends of a row of inclined bend pipes are concentrically arranged with a row of oil guiding holes; the oil guiding pipe is fixedly mounted at the bottom of a row of inclined bend pipes, and a pipe connector is provided at the left end of the oil guiding pipe.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. When the double-headed motor of the present invention is working, the two driving gears drive the two circular gear rings to rotate; when the circular mesh tube rotates under the action of the two driving gears and the two circular gear rings, the spiral fins drive the material in the circular mesh tube to automatically roll from left to right, thereby improving the contact effect between the material and the cleaning liquid.
[0020] 2. When the output shafts of the two electric telescopic rods are halfway retracted, the cleaning liquid level in the cleaning housing moves downward, causing the cleaning liquid level to be lower than the circular mesh tube. When the output shafts of the two electric telescopic rods are fully retracted, the two tilt control frames squeeze the two multi-purpose brackets upward, creating a gap between the bottoms of the two movable blocking plates and the cleaning housing, thereby achieving automatic discharge of materials after ultrasonic cleaning.
[0021] In addition, when the output shafts of the two electric telescopic rods are extended, the cleaning fluid level in the cleaning shell moves upward; when the output shafts of the two electric telescopic rods are extended, the oil on the top of the cleaning fluid can automatically enter the two rows of oil guide holes, and then be discharged through two rows of inclined elbows and two oil guide pipes, thereby realizing the automatic separation of oil in the cleaning fluid.
[0022] 3. The arrangement of the material storage box of the present invention plays a role in placing the materials to be cleaned; when the two movable blocking plates move upward, the feed slot can gradually overlap with the right end of the inclined feeding pipe, so that the materials to be cleaned automatically enter the circular mesh tube through the inclined feeding pipe and the feed slot, realizing automatic feeding;
[0023] In addition, when the two movable blocking plates move upward, the pushing plate can push the rectangular limit plate and the circular mounting shaft to move upward; when the two movable blocking plates move downward, the rectangular limit plate automatically resets downward under the action of the coil spring, thereby limiting the material in the inclined feeding pipe, ensuring that no material gets stuck between the right end of the inclined feeding pipe and the movable blocking plate on the left. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0025] The drawings described below only relate to some embodiments of the present invention, rather than limiting the present invention.
[0026] In the attached figure:
[0027] Figure 1 Shows a schematic diagram of the three-dimensional structure of the present invention;
[0028] Figure 2 The present invention is shown Figure 1 Schematic diagram of the bottom perspective structure;
[0029] Figure 3 Shows a schematic structural diagram of the spiral conveying mechanism of the present invention;
[0030] Figure 4 The present invention is shown Figure 1 Schematic diagram of the local enlarged structure of area A in the middle;
[0031] Figure 5 Shows a structural schematic diagram of the movable blocking mechanism of the present invention;
[0032] Figure 6 Shows a schematic structural diagram of the liquid control mechanism of the present invention;
[0033] Figure 7 The present invention is shown Figure 1 Schematic diagram of the longitudinal central section structure;
[0034] Figure 8 The present invention is shown Figure 7 Schematic diagram of the local enlarged structure of area B in the middle;
[0035] Figure 9 Shows a structural schematic diagram of the automatic feeding mechanism of the present invention;
[0036] Figure 10 The present invention is shown Figure 1 Schematic diagram of the transverse central section structure;
[0037] Figure 11 The present invention is shown Figure 10 Schematic diagram of the local enlarged structure of the middle C area;
[0038] Figure 12 The present invention is shown Figure 7 Schematic diagram of the locally enlarged structure of area D in the middle.
[0039] List of reference numerals:
[0040] 100, cleaning shell; 101, discharge inclined plate; 1001, oil guide hole;
[0041] 200. Ultrasonic generator;
[0042] 300, spiral conveying mechanism; 301, mounting frame A; 302, circular mesh tube; 303, spiral fin; 304, circular gear ring;
[0043] 400, driving mechanism; 401, mounting frame B; 402, double-headed motor; 403, driving gear;
[0044] 500, movable blocking mechanism; 501, movable blocking plate; 5011, feed slot; 502, rubber sealing ring A; 503, push plate; 504, circular connecting rod; 505, multi-purpose bracket;
[0045] 600, liquid control mechanism; 601, rectangular frame; 602, electric telescopic rod; 603, rectangular control panel; 604, rubber sealing ring B; 605, tilt control frame;
[0046] 700, automatic feeding mechanism; 701, storage box; 702, inclined feeding tube; 703, rectangular limiting plate; 704, circular mounting shaft; 705, limiting ring; 706, coil spring;
[0047] 800, oil guide mechanism; 801, inclined elbow; 802, oil guide pipe; 8021, pipe connector. DETAILED DESCRIPTION
[0048] In order to make the purpose, scheme and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of specific embodiments of the present invention. Unless otherwise specified, the terms used herein have the common meanings in the art. The same reference numerals in the drawings represent the same components.
[0049] Example: Please refer to Figures 1 to 12 As shown: The present invention provides a spiral drum ultrasonic cleaning machine with automatic loading, comprising: a cleaning shell 100; a row of oil guide holes 1001 are respectively provided on the front and rear sides of the cleaning shell 100, and a discharge inclined plate 101 is fixedly installed on the right side of the cleaning shell 100; an ultrasonic generator 200 is fixedly installed on the inner bottom side of the cleaning shell 100; a spiral conveying mechanism 300 is installed inside the cleaning shell 100; a driving mechanism 400 is installed on the cleaning shell 100, and the driving mechanism 400 is used to rotate the spiral conveying mechanism 300; a movable blocking mechanism 500 is installed on the cleaning shell 100; liquid control mechanisms 600 are respectively installed on the front and rear sides of the cleaning shell 100, and two groups of liquid control mechanisms 600 are used to control the liquid level height inside the cleaning shell 100; an automatic loading mechanism 700 is installed on the left side of the cleaning shell 100; oil guide mechanisms 800 are respectively installed on the front and rear sides of the cleaning shell 100, and the two groups of oil guide mechanisms 800 are used to separate the oil in the cleaning shell 100.
[0050] In the embodiment of the present disclosure, Figure 3 and Figure 4 As shown, the spiral conveying mechanism 300 includes: a mounting frame A301, a circular mesh tube 302, a spiral fin 303 and a circular gear ring 304; there are two mounting frames A301, and the two mounting frames A301 are fixedly mounted on the cleaning housing 100; the circular mesh tube 302 is rotatably mounted on the two mounting frames A301; the spiral fin 303 is fixedly mounted on the inner wall of the circular mesh tube 302; there are two circular gear rings 304, and the two circular gear rings 304 are fixedly mounted on the outer wall of the circular mesh tube 302;
[0051] The drive mechanism 400 includes: a mounting frame B401, a double-headed motor 402, and a drive gear 403; the mounting frame B401 is fixedly mounted on the cleaning housing 100; the double-headed motor 402 is fixedly mounted on the mounting frame B401; there are two drive gears 403, which are fixedly mounted on the output shaft of the double-headed motor 402 and meshed with the two circular gear rings 304;
[0052] Its specific function is: because the circular mesh tube 302 is rotatably mounted on two mounting frames A301, and the two circular gear rings 304 are fixedly mounted on the outer wall of the circular mesh tube 302, and the two driving gears 403 are meshed and connected with the two circular gear rings 304, when the double-headed motor 402 is working, the two driving gears 403 drive the two circular gear rings 304 to rotate; and because the spiral fins 303 are fixedly mounted on the inner wall of the circular mesh tube 302, and the ultrasonic generator 200 is fixedly mounted on the inner bottom side of the cleaning shell 100, when the circular mesh tube 302 rotates under the action of the two driving gears 403 and the two circular gear rings 304, the spiral fins 303 drive the material in the circular mesh tube 302 to automatically roll from left to right, thereby improving the contact effect between the material and the cleaning liquid.
[0053] In the embodiment of the present disclosure, Figure 5 、 Figure 6 、 Figure 8 and Figure 12 As shown, the movable blocking mechanism 500 includes: a movable blocking plate 501, a rubber sealing ring A502 and a pushing plate 503; there are two movable blocking plates 501, and the two movable blocking plates 501 are slidably mounted on the cleaning housing 100, and a feeding slot 5011 is provided on the movable blocking plate 501 on the left; there are two rubber sealing rings A502, and the two rubber sealing rings A502 are mounted on the two movable blocking plates 501; the pushing plate 503 is fixedly mounted on the movable blocking plate 501 on the left; the movable blocking mechanism 500 also includes: a circular connecting rod 504 and a multi-purpose bracket 505; there are two circular connecting rods 504, and the two circular connecting rods 504 are fixedly mounted on the inner sides of the two movable blocking plates 501; there are two multi-purpose brackets 505, and the two multi-purpose brackets 505 are fixedly mounted on the outer walls of the two circular connecting rods 504;
[0054] The liquid control mechanism 600 includes a rectangular frame 601, an electric telescopic rod 602, and a rectangular control panel 603. The rectangular frame 601 is fixedly mounted on the cleaning housing 100. The electric telescopic rod 602 is fixedly mounted on the rectangular frame 601. The rectangular control panel 603 is slidably mounted within the rectangular frame 601 and is fixedly connected to the output shaft of the electric telescopic rod 602. The liquid control mechanism 600 also includes a rubber sealing ring B604 and a tilt control frame 605. The rubber sealing ring B604 is mounted on the rectangular control panel 603. The tilt control frame 605 is fixedly mounted on the inner side of the rectangular control panel 603, and the inner end of the tilt control frame 605 is inserted into the multi-purpose bracket 505.
[0055] The oil guide mechanism 800 includes: an inclined curved pipe 801 and an oil guide pipe 802. The inclined curved pipes 801 are provided in a row, and the row of inclined curved pipes 801 are fixedly mounted on the cleaning housing 100. The inner ends of the row of inclined curved pipes 801 are concentrically arranged with the row of oil guide holes 1001. The oil guide pipe 802 is fixedly mounted at the bottom of the row of inclined curved pipes 801, and a pipe connector 8021 is provided at the left end of the oil guide pipe 802.
[0056] Its specific function is as follows: because the two rectangular control plates 603 are slidably mounted inside the two rectangular frames 601, and the two rectangular control plates 603 are also fixedly connected to the output shafts of the two electric telescopic rods 602, and two rubber sealing rings B604 are mounted on the two rectangular control plates 603, when the output shafts of the two electric telescopic rods 602 are retracted by half, the cleaning liquid level in the cleaning shell 100 moves downward, so that the liquid level of the cleaning liquid is lower than the circular net tube 302; and because the two multi-purpose brackets 505 are fixedly mounted on the outer walls of the two circular connecting rods 504, and the two tilting control frames 605 are fixedly mounted on the inner sides of the two rectangular control plates 603, and the inner ends of the two tilting control frames 605 are inserted into the two multi-purpose brackets 505, when the output shafts of the two electric telescopic rods 602 are fully retracted, the two tilting control frames 605 squeeze the two multi-purpose brackets 505 to move upward, so that a gap is generated between the bottom of the two movable blocking plates 501 and the cleaning shell 100, thereby realizing the automatic discharge of materials after ultrasonic cleaning;
[0057] In addition, because the two rectangular control plates 603 are slidably installed inside the two rectangular frames 601, and the two rectangular control plates 603 are also fixedly connected to the output shafts of the two electric telescopic rods 602, and the two rubber sealing rings B604 are installed on the two rectangular control plates 603, when the output shafts of the two electric telescopic rods 602 are extended, the liquid level of the cleaning liquid in the cleaning shell 100 moves upward; and because a row of oil guide holes 1001 are respectively provided on the front and rear sides of the cleaning shell 100, and two rows of inclined bends 801 are fixedly installed on the cleaning shell 100, and the two oil guide pipes 802 are fixedly installed at the bottom of the two rows of inclined bends 801, when the output shafts of the two electric telescopic rods 602 are extended, the oil on the top of the cleaning liquid can automatically enter the two rows of oil guide holes 1001, and then be discharged through the two rows of inclined bends 801 and the two oil guide pipes 802, thereby realizing automatic separation of oil in the cleaning liquid.
[0058] In the embodiment of the present disclosure, Figure 9 and Figure 11 As shown, the automatic feeding mechanism 700 includes: a material storage box 701, an inclined feeding tube 702 and a rectangular limiting plate 703; the material storage box 701 is fixedly installed on the left side of the cleaning shell 100; the inclined feeding tube 702 is fixedly installed on the right side of the material storage box 701, and the right side of the inclined feeding tube 702 contacts the movable blocking plate 501 on the left side; the rectangular limiting plate 703 is slidably installed on the inclined feeding tube 702; the automatic feeding mechanism 700 also includes: a circular mounting shaft 704, A limiting ring 705 and a coil spring 706; the circular mounting shaft 704 is fixedly mounted on the bottom of the rectangular limiting plate 703, and the circular mounting shaft 704 passes through the inclined feeding tube 702, and the bottom of the circular mounting shaft 704 contacts the pushing plate 503; the limiting ring 705 is fixedly mounted on the outside of the circular mounting shaft 704; the coil spring 706 is sleeved on the outside of the circular mounting shaft 704, and the coil spring 706 is located between the inclined feeding tube 702 and the limiting ring 705;
[0059] Its specific functions are as follows: because the material storage box 701 is fixedly mounted on the left side of the cleaning shell 100, it plays a role in placing the material to be cleaned; and because the inclined feeding pipe 702 is fixedly mounted on the right side of the material storage box 701, and the right side of the inclined feeding pipe 702 is in contact with the movable blocking plate 501 on the left, and the movable blocking plate 501 on the left is provided with a feeding slot 5011, when the two movable blocking plates 501 move upward, the feeding slot 5011 can gradually overlap with the right end of the inclined feeding pipe 702, so that the material to be cleaned automatically enters the circular mesh tube 302 through the inclined feeding pipe 702 and the feeding slot 5011, thereby realizing automatic feeding;
[0060] In addition, because the pushing plate 503 is fixedly mounted on the movable blocking plate 501 on the left, and the circular mounting shaft 704 is fixedly mounted on the bottom of the rectangular limiting plate 703, and the bottom of the circular mounting shaft 704 is in contact with the pushing plate 503, when the two movable blocking plates 501 move upward, the pushing plate 503 can push the rectangular limiting plate 703 and the circular mounting shaft 704 to move upward. At this time, the material in the inclined feeding tube 702 can enter the feeding slot 5011 through the front and rear sides of the circular mounting shaft 704; and because the limiting circular The ring 705 is fixedly mounted on the outside of the circular mounting shaft 704, and the coil spring 706 is sleeved on the outside of the circular mounting shaft 704, and the coil spring 706 is located between the inclined feeding tube 702 and the limiting ring 705. When the two movable blocking plates 501 move downward, the rectangular limiting plate 703 automatically resets downward under the action of the coil spring 706, which limits the material in the inclined feeding tube 702, ensuring that no material gets stuck between the right end of the inclined feeding tube 702 and the movable blocking plate 501 on the left.
[0061] The specific usage and function of this embodiment are as follows:
[0062] When the present invention is used, the staff first connects the machine to an external power source, then connects the external oil drain pipe to the two pipe connectors 8021, and then pours the material to be cleaned into the storage box 701; when the double-headed motor 402 is working, the two driving gears 403 drive the two circular gear rings 304 to rotate; when the circular mesh tube 302 rotates under the action of the two driving gears 403 and the two circular gear rings 304, the spiral fins 303 drive the material in the circular mesh tube 302 to automatically roll from left to right, thereby improving the material The contact effect between the material and the cleaning liquid; when the output shafts of the two electric telescopic rods 602 are retracted halfway, the cleaning liquid level in the cleaning shell 100 moves downward, so that the liquid level of the cleaning liquid is lower than the circular mesh tube 302; when the output shafts of the two electric telescopic rods 602 are fully retracted, the two tilt control frames 605 squeeze the two multi-purpose brackets 505 to move upward, so that a gap is generated between the bottom of the two movable blocking plates 501 and the cleaning shell 100, thereby realizing the automatic discharge of the material after ultrasonic cleaning ... When the shaft is extended, the level of the cleaning liquid in the cleaning shell 100 moves upward; when the output shafts of the two electric telescopic rods 602 are extended, the oil on the top of the cleaning liquid can automatically enter the two rows of oil guide holes 1001, and then be discharged through the two rows of inclined elbows 801 and the two oil guide pipes 802, thereby realizing the automatic separation of the oil in the cleaning liquid; when the two movable blocking plates 501 move upward, the feed slot 5011 can gradually overlap with the right end of the inclined feeding pipe 702, so that the material to be cleaned passes through the inclined feeding pipe 702 and the feed slot 5011 automatically enters the circular mesh tube 302, realizing automatic loading; when the two movable blocking plates 501 move upward, the pushing plate 503 can push the rectangular limiting plate 703 and the circular mounting shaft 704 to move upward; when the two movable blocking plates 501 move downward, the rectangular limiting plate 703 automatically resets downward under the action of the coil spring 706, which limits the material in the inclined feeding tube 702, ensuring that no material gets stuck between the right end of the inclined feeding tube 702 and the movable blocking plate 501 on the left.
[0063] In this article, there are several points to note:
[0064] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0065] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0066] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. Automatic loading spiral drum ultrasonic cleaning machine, including: a cleaning shell; a row of oil guide holes is respectively provided on the front and rear sides of the cleaning shell, and a discharge inclined plate is fixedly installed on the right side of the cleaning shell; an ultrasonic generator is fixedly installed on the inner bottom side of the cleaning shell; it is characterized in that a screw conveying mechanism is installed inside the cleaning shell; a driving mechanism is installed on the cleaning shell, and the driving mechanism is used to rotate the screw conveying mechanism; a movable blocking mechanism is installed on the cleaning shell; liquid control mechanisms are respectively installed on the front and rear sides of the cleaning shell, and two groups of the liquid control mechanisms are used to control the liquid level height inside the cleaning shell; an automatic feeding mechanism is installed on the left side of the cleaning shell; oil guide mechanisms are respectively installed on the front and rear sides of the cleaning shell, and the two groups of the oil guide mechanisms are used to separate the oil in the cleaning shell; The spiral conveying mechanism includes: a mounting frame A, a circular mesh tube, spiral fins, and a circular gear ring; the mounting frames A are provided in total of two, and the two mounting frames A are fixedly mounted on the cleaning housing; the circular mesh tube is rotatably mounted on the two mounting frames A; the spiral fins are fixedly mounted on the inner wall of the circular mesh tube; the circular gear rings are provided in total of two, and the two circular gear rings are fixedly mounted on the outer wall of the circular mesh tube; The driving mechanism includes: a mounting frame B, a double-headed motor and a driving gear; the mounting frame B is fixedly mounted on the cleaning housing; the double-headed motor is fixedly mounted on the mounting frame B; there are two driving gears, which are fixedly mounted on the output shaft of the double-headed motor and meshed with two circular gear rings; The movable blocking mechanism includes: a movable blocking plate, a rubber sealing ring A and a push plate; there are two movable blocking plates, and the two movable blocking plates are slidably mounted on the cleaning housing, and a feed slot is opened on the left movable blocking plate; there are two rubber sealing rings A, and the two rubber sealing rings A are mounted on the two movable blocking plates; the push plate is fixedly mounted on the left movable blocking plate; The liquid control mechanism includes: a rectangular frame, an electric telescopic rod and a rectangular control plate; the rectangular frame is fixedly mounted on the cleaning housing; the electric telescopic rod is fixedly mounted on the rectangular frame; the rectangular control plate is slidably mounted inside the rectangular frame, and the rectangular control plate is also fixedly connected to the output shaft of the electric telescopic rod; The automatic feeding mechanism includes: a material storage box, an inclined feeding tube and a rectangular limiting plate; the material storage box is fixedly mounted on the left side of the cleaning shell; the inclined feeding tube is fixedly mounted on the right side of the material storage box, and the right side of the inclined feeding tube contacts the movable blocking plate on the left side; the rectangular limiting plate is slidably mounted on the inclined feeding tube; The oil guide mechanism includes: an inclined bend pipe and an oil guide pipe; the inclined bend pipes are provided in a row, and the row of inclined bend pipes is fixedly installed on the cleaning shell, and the inner ends of the row of inclined bend pipes are concentrically arranged with the row of oil guide holes; the oil guide pipe is fixedly installed at the bottom of the row of inclined bend pipes, and a pipe connector is provided at the left end of the oil guide pipe.
2. The automatic loading spiral drum ultrasonic cleaning machine according to claim 1, characterized in that: The movable blocking mechanism also includes: a circular connecting rod and a multi-purpose bracket; there are two circular connecting rods, and the two circular connecting rods are fixedly installed on the inner sides of the two movable blocking plates; there are two multi-purpose brackets, and the two multi-purpose brackets are fixedly installed on the outer walls of the two circular connecting rods.
3. The automatic loading spiral drum ultrasonic cleaning machine according to claim 2, characterized in that: The liquid control mechanism also includes: a rubber sealing ring B and a tilt control frame; the rubber sealing ring B is installed on the rectangular control plate; the tilt control frame is fixedly installed on the inner side of the rectangular control plate, and the inner end of the tilt control frame is inserted into the multi-purpose bracket.
4. The automatic loading spiral drum ultrasonic cleaning machine according to claim 1, characterized in that: The automatic feeding mechanism also includes: a circular mounting shaft, a limiting ring and a coil spring; the circular mounting shaft is fixedly mounted on the bottom of the rectangular limiting plate, and the circular mounting shaft passes through the inclined feeding tube, and the bottom of the circular mounting shaft contacts the pushing plate; the limiting ring is fixedly mounted on the outside of the circular mounting shaft; the coil spring is sleeved on the outside of the circular mounting shaft, and the coil spring is located between the inclined feeding tube and the limiting ring.
Citation Information
Patent Citations
Center shaft cleaning and derusting device for bicycle parts
CN118904813A
Drying device and method for cleaned food raw materials
CN119063417A