A trough-type ultrasonic cleaning machine device for cylinder barrel processing
By setting up a barrier rod, lift plate, support plate and blower duct in the tank ultrasonic cleaning machine device for cylinder processing, the problem of impurities and oil contact again after the cylinder workpiece is cleaned is solved, the cleaning quality is improved and automatic unloading is realized.
Patent Information
- Application Number
- CN202510414246.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-03
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2045-04-03
AI Technical Summary
During the cleaning of the cylinder workpiece, impurities and oil are suspended on the cleaning liquid surface, causing the workpiece to contact again when it is removed after the cleaning is completed, reducing the cleaning quality.
A groove-type ultrasonic cleaning machine device including a barrier rod, a lift plate, a stud plate and a blower duct is designed. The blowing duct continuously blows the impurities and oil suspended on the liquid surface toward the inner wall of the cleaning tank to prevent the workpiece from coming into contact with these impurities when it is removed.
It effectively reduces the contact between the cylinder workpiece with suspended impurities and oil when removing the cleaning liquid, improves the cleaning quality, and realizes the effect of automatic unloading.
Smart Images

Figure CN119909981B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cleaning devices, and particularly to a tank-type ultrasonic cleaning machine device for cylinder barrel processing. Background Art
[0002] During the later maintenance of oil pipelines such as oil cylinder barrels, overall cleaning is required to remove impurities and oil on the cylinder barrel workpieces.
[0003] Currently, the cylinder barrel workpiece is usually placed in an ultrasonic cleaning tank and submerged below the cleaning liquid level for ultrasonic cleaning;
[0004] However, during the cleaning process of the cylinder barrel workpiece, the detached impurities and oil will suspend above the cleaning liquid level. When the cylinder barrel workpiece is removed from the cleaning liquid after cleaning, it will come into contact with the impurities and oil suspended on the cleaning liquid surface, resulting in the surface of the cylinder barrel workpiece being contaminated with impurities and oil again, thus reducing the cleaning quality of the cylinder barrel workpiece. Summary of the Invention
[0005] The present invention provides a tank-type ultrasonic cleaning machine device for cylinder barrel processing, which can reduce the possibility of re-contact with suspended impurities and oil when the cylinder barrel workpiece is removed from the cleaning liquid, and improve the cleaning quality of the cylinder barrel workpiece. The specific solution is as follows:
[0006] A tank-type ultrasonic cleaning machine device for cylinder barrel processing includes a cleaning tank, and further includes a blocking rod, a lifting plate, a material supporting plate and a blowing pipe; the blocking rod has at least two and is vertically installed in the cleaning tank; the lifting plate is slidably installed between multiple blocking rods; wherein, the lifting plate can move up and down in the vertical direction; the material supporting plate has two and is inclinedly installed on one side of the lifting plate, the included angle between the material supporting plate and the blocking rod is less than ninety degrees, and this included angle interval is used for placing the cylinder barrel workpiece; the blowing pipe is hinged to the end of the material supporting plate away from the lifting plate through a support plate, and the blowing pipe is always above the liquid level of the cleaning liquid; wherein, the air outlet part of the blowing pipe faces the liquid level of the cleaning liquid, and is used to blow the suspended matter on the liquid level of the cleaning liquid towards and gather it at the inner wall of the cleaning tank on the side of the blocking rod away from the blowing pipe.
[0007] Further, the cleaning tank further includes a cleaning chamber and a impurity storage chamber. The side of the blocking rod adjacent to the blowing pipe is the cleaning chamber, and the other side of the blocking rod is the impurity storage chamber; wherein, the suspended matter on the liquid level of the cleaning liquid gathers above the impurity storage chamber.
[0008] Further, a lead screw threadedly engaged with the lifting plate is rotatably installed in the cleaning tank; a motor is further installed at the bottom end of the cleaning tank, and the output end of the motor is sleeved with the lead screw.
[0009] Further, a toggle plate is mounted on the lifting plate through a torsion spring shaft, and the toggle plate is located outside any one of the material supporting plates; a mounting rod is vertically mounted in the cleaning tank, and the whole mounting rod is located on the side of the blocking rod away from the air blowing pipe; a notch plate is mounted on the side of the mounting rod facing the toggle plate, and the whole notch plate is above the liquid level of the cleaning liquid; wherein, the notch plate is in pressing fit with one end adjacent to the toggle plate.
[0010] Further, the notch plate further includes a straight plate portion located above the notch portion thereof; wherein, the straight plate portion is in pressing fit with one end adjacent to the toggle plate.
[0011] Further, a toggle rod is mounted at one end of the toggle plate adjacent to the air blowing pipe, and the toggle rod is always in contact with the surface of the support plate for mounting the air blowing pipe.
[0012] Further, a liquid filling box is mounted on the lifting plate and located in the impurity storage cavity; the length of the liquid filling box is the same as the width of the cleaning tank, and the side surface of the liquid filling box is in contact with the inner wall of the cleaning tank; an opening is formed at the top of the liquid filling box, and an opening is also formed on the length surface of the liquid filling box in contact with the inner wall of the cleaning tank; an oil storage box is mounted outside the cleaning tank, and an inlet communicating with the inside of the cleaning tank is formed at the top of the oil storage box, and the inlet is above the liquid level of the cleaning liquid.
[0013] Further, a communication port communicating with the inside of the cleaning tank is formed at the bottom of the oil storage box.
[0014] Further, an opening is also formed at the bottom of the liquid filling box; a sliding cover for blocking this opening is slidably mounted at the bottom of the liquid filling box; a spring is mounted between the sliding cover and the liquid filling box; a wedge plate is vertically mounted on the inner wall of the cleaning tank.
[0015] Further, a visual window is mounted on the side surface of the oil storage box.
[0016] Compared with the prior art, the present invention can at least achieve the following beneficial effects:
[0017] Through the arrangement of the air blowing pipe, by continuously blowing air through the air blowing pipe, impurities and oil floating on the liquid surface directly above the cylinder workpiece are collected at the inner wall of the cleaning tank on the side of the blocking rod away from the air blowing pipe;
[0018] After the cylinder workpiece is cleaned, the cylinder workpiece will not carry the oil floating on the liquid surface when it is lifted out of the liquid surface with the lifting plate;
[0019] Meanwhile, when the lifting plate moves up to reach the top position of the blocking rod, the cylinder workpiece on the material supporting plate will lose the restraint of the blocking rod, forming an effect of automatic unloading. Description of the Drawings
[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative labor. Among them:
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention.
[0022] Figure 2 Schematic diagram of the internal structure of the cleaning tank of the present invention.
[0023] Figure 3 For the present invention Figure 2 Schematic diagram of the front view structure.
[0024] Figure 4 It is a schematic diagram of the cylinder workpiece being removed from the liquid surface after cleaning according to the present invention.
[0025] Figure 5 It is a schematic diagram of the extrusion fit between the toggle plate and the notch plate of the present invention.
[0026] Figure 6 It is a schematic diagram of the extrusion fit between the toggle plate and the straight plate portion of the present invention.
[0027] Figure 7 For the present invention Figure 6 Schematic diagram of the axial structure.
[0028] Figure 8 It is a schematic diagram of the axial structure of the liquid-filling box of the present invention.
[0029] Figure 9 It is a schematic diagram of the extrusion fit between the sliding cover and the wedge plate of the present invention.
[0030] Figure 10 For the present invention Figure 9 Schematic diagram of the continuous upward movement of the middle liquid box.
[0031] The reference numerals are as follows:
[0032] 001, cylinder workpiece; 002, cleaning liquid; 003, suspended matter; 004, ultrasonic device;
[0033] 100, cleaning tank; 101, cleaning chamber; 102, storage chamber;
[0034] 200, blocking rod; 201, lifting plate; 201a, screw rod; 201b, motor; 202, supporting plate; 203, blowing pipe;
[0035] 300, Toggle Plate; 301, Mounting Rod; 302, Notch Plate; 302a, Straight Plate Portion; 303, Toggle Rod
[0036] 400, Liquid Filling Box; 401, Oil Storage Box; 402, Inlet; 403, Communication Port; 404, Slide Cover; 405, Spring; 406, Wedge Plate Detailed Implementation Manner
[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0038] Please first refer to Figure 1 As shown, the present invention provides a tank - type ultrasonic cleaning machine device for cylinder barrel processing, including a cleaning tank 100, with cleaning liquid 002 injected inside it for cleaning the cylinder barrel workpiece 001. In this application, an ultrasonic device 004 used in conjunction with the cleaning tank 100 is also included, that is, the two form an ultrasonic cleaning machine. Among them, the ultrasonic device 004 is composed of an ultrasonic generator, an ultrasonic transducer, a transducer mounting box, a cable, etc. The ultrasonic device 004 is installed on the outer wall of the cleaning tank 100, and the ultrasonic method is bottom vibration formed by a vibration plate installed at the bottom of the cleaning tank 100. The vibration plate is required to be made of high - quality stainless steel plate. The above are all well - known technologies and will not be elaborated further;
[0039] Refer to Figure 2 and Figure 3As shown, differently, it further includes a blocking rod 200, a lifting plate 201, a material supporting plate 202, and a blowing air pipe 203; the blocking rod 200 has at least two and is vertically installed in the cleaning tank 100; the lifting plate 201 is slidably installed between multiple blocking rods 200; wherein, the lifting plate 201 can move up and down in the vertical direction; the material supporting plate 202 has two and is inclinedly installed on one side of the lifting plate 201, the included angle between the material supporting plate 202 and the blocking rod 200 is less than ninety degrees, and this included angle interval is used to place the cylinder workpiece 001, and the part of the material supporting plate 202 in contact with the cylinder workpiece 001 can be made of rubber padding to protect the surface of the cylinder workpiece 001 and improve the placement stability of the cylinder workpiece 001; the blowing air pipe 203 is connected to an external blower (not shown in the figure, which is a well-known technology and will not be elaborated), and the blowing air pipe 203 is hinged to one end of the material supporting plate 202 far from the lifting plate 201 through a support plate, and the connection part between the support plate and the material supporting plate 202 is connected through a torsion spring shaft to keep the support plate in a vertical state; at the same time, the blowing air pipe 203 is always above the liquid level of the cleaning liquid 002; wherein, the air outlet part of the blowing air pipe 203 faces the liquid level of the cleaning liquid 002, and when the blowing air pipe 203 blows continuously, it is used to blow the suspended matter 003 on the liquid level of the cleaning liquid 002 to the inner wall of the cleaning tank 100 on the side of the blocking rod 200 far from the blowing air pipe 203 and gather there;
[0040] During operation: As Figure 2 and Figure 3 shown, place the cylinder workpiece 001 to be cleaned on the material supporting plate 202. Under the action of gravity, the side of the cylinder workpiece 001 abuts against the blocking rod 200, thereby forming the placement of the cylinder workpiece 001. Then, by moving the lifting plate 201 downward, the cylinder workpiece 001 can be synchronously moved downward and located in the cleaning liquid, and at this time, the cylinder workpiece 001 can be ultrasonically cleaned;
[0041] During the cleaning process of the cylinder workpiece 001, as Figure 3 shown, by continuously blowing air through the blowing air pipe 203, the impurities and oil liquid suspended on the liquid surface directly above the cylinder workpiece 001 can be made to gather towards the inner wall of the cleaning tank 100 on the side of the blocking rod 200 far from the blowing air pipe 203. That is to say, at this time, there are fewer suspended matters 003 on the liquid surface of the liquid above the cylinder workpiece 001, and it is always in a relatively clean state;
[0042] After the cleaning of the cylinder workpiece 001 is completed, as Figure 3 and Figure 4As shown, the lifting plate 201 can move upward to drive the cleaned cylinder workpiece 001 to move upward synchronously. First, since the liquid level above the cylinder workpiece 001 is relatively clean at this time, the cylinder workpiece 001 will not carry impurities and oil floating on the liquid surface after moving out of the liquid. Second, when the lifting plate 201 reaches the top position of the blocking rod 200, the cylinder workpiece 001 on the material supporting plate 202 will lose the restraint of the blocking rod 200 and can slide down to the external conveyor belt (shown in the figure but not labeled) due to its own gravity, forming an automatic unloading effect.
[0043] Referring to Figure 2 and Figure 3 As shown, the cleaning tank 100 further includes a cleaning chamber 101 and a miscellaneous storage chamber 102. The side of the blocking rod 200 adjacent to the air blowing pipe 203 is the cleaning chamber 101, and the other side of the blocking rod 200 is the miscellaneous storage chamber 102. A sewage discharge valve pipe (not shown in the figure) is also connected to the bottom of the cleaning tank 100 adjacent to the miscellaneous storage chamber 102, and the opening and closing of the sewage discharge valve pipe are used to replace the liquid inside the cleaning tank 100. Among them, the air blowing direction of the air blowing pipe 203 is towards the miscellaneous storage chamber 102, so that the suspended matter 003 on the liquid surface of the cleaning liquid 002 gathers above the miscellaneous storage chamber 102.
[0044] Referring to Figure 2 and Figure 7 As shown, in order to realize the vertical lifting movement of the lifting plate 201; for this purpose, a lead screw 201a that is threadedly engaged with the lifting plate 201 is also rotatably installed in the cleaning tank 100; a motor 201b is installed at the bottom end of the cleaning tank 100, and the output end of the motor 201b is sleeved with the lead screw 201a;
[0045] During operation: The forward and reverse rotation of the lead screw 201a is controlled by the action of the motor 201b. Since the lead screw 201a is threadedly engaged with the lifting plate 201, the lead screw 201a can control the lifting plate 201 to move up and down in the vertical direction.
[0046] Referring to Figure 5 and Figure 7 As shown, a toggle plate 300 is also installed on the lifting plate 201 through a torsion spring shaft. The toggle plate 300 is located outside any one of the material supporting plates 202; a mounting rod 301 is vertically installed in the cleaning tank 100. The whole mounting rod 301 is located on the side of the blocking rod 200 away from the air blowing pipe 203; a notch plate 302 is installed on the side of the mounting rod 301 facing the toggle plate 300. The whole notch plate 302 is above the liquid surface of the cleaning liquid 002; among them, the notch plate 302 is in extrusion fit with the end adjacent to the toggle plate 300;
[0047] During operation: when the lifting plate 201 and the cleaned cylinder workpiece 001 move upward and are located above the liquid level of the cleaning liquid 002, the lifting plate 201 drives the toggle plate 300 to be located above the liquid level; during the upward movement of the lifting plate 201, one end (short side) of the toggle plate 300 thereon will contact and form an extrusion fit with the bottom end of the notched plate 302, so that the toggle plate 300 is forced to deflect clockwise with the torsion spring axis as the rotation axis, so that the other end (long side) thereof is tilted upward and lifts one end of the cylinder workpiece 001, that is, at this time, the cylinder workpiece 001 is in an overall tilted state;
[0048] First, the cleaning liquid 002 remaining inside the cylinder workpiece 001 will be poured out when it is tilted, so as to ensure that the cylinder workpiece 001 is relatively dry and easy to collect, and also reduce the situation where the cleaning liquid 002 is output together with the cylinder workpiece 001 and causes loss;
[0049] Secondly, when the short side of the toggle plate 300 enters the notch of the notch plate 302, the short side loses the squeeze with the notch plate 302, so that the toggle plate 300 is quickly reset under the action of the torsion spring shaft, and the cylinder workpiece 001 with one end lifted loses the support force formed by the toggle plate 300 and quickly falls on the supporting plate 202 to reset. During this reset process, the cylinder workpiece 001 can shake off the cleaning liquid 002 attached to its outer surface to further ensure its dryness.
[0050] It is worth noting that the present application uses the cylinder workpiece 001 / pipe fitting with openings at both ends as an example, and it can also be used for the cylinder workpiece 001 with an opening at one end. It is only necessary to set the toggle plate 300 on the side away from the opening of the cylinder workpiece 001. When the toggle plate 300 is lifted, the opening of the cylinder workpiece 001 is at the lower end to form liquid pouring.
[0051] Reference Figure 6 As shown, the notch plate 302 further includes a straight plate portion 302a located above the notch portion thereof; wherein the straight plate portion 302a is pressed and matched with one end of the adjacent toggle plate 300;
[0052] During operation: after one end (short side) of the toggle plate 300 passes through the notch portion of the notch plate 302, it will contact and squeeze the straight plate portion 302a of the notch plate 302, thereby squeezing the toggle plate 300 to deflect clockwise around the torsion spring shaft connected to it again, so that the long side of the toggle plate 300 is tilted, thereby lifting the cylinder workpiece 001 placed on the supporting plate 202 again, and tilting the cylinder workpiece 001 again, so that the cylinder workpiece 001 is always in a tilted state while moving up with the lifting plate 201, so that the cylinder workpiece 001 forms an angle for the cleaning liquid 002 to flow, thereby accelerating the separation of the liquid inside and on the surface of the cylinder workpiece 001;
[0053] At the same time, ifFigure 6 and Figure 4 As shown, when the lifting plate 201 is about to reach the top of the blocking rod 200, during the upward movement of the toggling plate 300, its short side will disengage from the notch plate 302 / straight plate portion 302a, causing the cylinder workpiece 001 on the material supporting plate 202 to lose the supporting force formed by the toggling plate 300 again and reset. The cylinder workpiece 001 resets from the inclined state to the horizontal placement state. When the lifting plate 201 reaches the top of the blocking rod 200, the reset cylinder workpiece 001 on the material supporting plate 202 can roll onto the external conveyor belt along its own movement trajectory, thereby forming the output of the cylinder workpiece 001 after cleaning.
[0054] Referring to Figure 6 and Figure 7 As shown, a toggle rod 303 is also installed at one end of the toggling plate 300 adjacent to the air blowing pipe 203, and the toggle rod 303 is always in contact with the surface of the support plate for installing the air blowing pipe 203;
[0055] During operation: On the basis that one short side of one end of the toggling plate 300 is in contact with the straight plate portion 302a, one long side of one end of the toggling plate 300 will drive the toggle rod 303 to deflect synchronously. While the toggle rod 303 deflects, it will drive the support plate for supporting the air blowing pipe 203 to deflect, so that the air outlet portion of the air blowing pipe 203 faces the upper surface of the inclined cylinder workpiece 001, and the cleaning liquid 002 on the surface of the cylinder workpiece 001 is blown away by the continuous airflow of the air blowing pipe 203, making the cylinder workpiece 001 relatively dry as a whole, reducing the possibility of the cleaning liquid 002 on the surface of the cylinder workpiece 001 being carried out of the cleaning tank 100, and at the same time, the relatively dry cylinder workpiece 001 is also convenient for subsequent conveying and processing.
[0056] Referring to Figure 6 and Figure 10 As shown, a liquid filling box 400 located in the impurity storage cavity 102 is also installed on the lifting plate 201; the length of the liquid filling box 400 is the same as the width of the cleaning tank 100, and the side surface of the liquid filling box 400 is in contact with the inner wall of the cleaning tank 100; an opening is formed at the top of the liquid filling box 400, and an opening is also formed on the length surface of the liquid filling box 400 in contact with the inner wall of the cleaning tank 100; an oil storage box 401 is installed outside the cleaning tank 100, and an inlet 402 communicating with the inside of the cleaning tank 100 is formed at the top of the oil storage box 401, and the inlet 402 is located above the liquid level of the cleaning liquid 002;
[0057] During operation: The liquid filling box 400 can move up and down together with the lifting plate 201. When the lifting plate 201 moves upward, the liquid filling box 400 can move upward along the inner wall of the cleaning tank 100. When the liquid filling box 400 moves out of the liquid level of the cleaning liquid 002, the suspended matter 003 (oil / impurities) that is blown by the air blowing pipe 203 and gathered on the liquid surface at the inner wall of the cleaning tank 100 will be filled into the liquid filling box 400 when the liquid filling box 400 moves out of the cleaning liquid 002. During the continuous upward movement of the liquid filling box 400, the opening on one side length surface of the liquid filling box 400 will be connected and communicated with the inlet 402, so as to guide the liquid containing the suspended matter 003 into the oil storage box 401, realizing the automatic cleaning of the oil / impurities in the cleaning tank 100.
[0058] Refer to Figure 6 、 Figure 8 、 Figure 9 and Figure 10 As shown in
[0059] During operation: When the liquid filling box 400 moves upward, the opening at its bottom is always open. At this time, the upward movement of the liquid filling box 400 will not cause the liquid in the cleaning tank 100 to fluctuate. When the upper half of the liquid filling box 400 moves out of the liquid level, the oil / impurities gathered at the inner wall of the cleaning tank 100 will completely enter the inside of the liquid filling box 400. When the liquid filling box 400 continues to move upward, the sliding cover 404 at the bottom of the liquid filling box 400 will start to contact and squeeze the inclined surface of the wedge plate 406 at this time, so that the sliding cover 404 can compress the spring 405 and move horizontally at the bottom of the liquid filling box 400 to block the opening at its bottom. At this time, the liquid filling box 400 forms a closed container to block the oil / impurities in the liquid filling box 400. When the opening on one side length surface of the liquid filling box 400 will be connected and communicated with the inlet 402, the liquid containing the suspended matter 003 can be guided into the oil storage box 401, realizing the automatic cleaning of the oil / impurities in the cleaning tank 100; that is, the liquid filling box 400 will only fill the suspended matter 003 on the liquid surface at the inner wall of the cleaning tank 100 and transfer it to the oil storage box 401 for temporary storage, realizing the automatic cleaning of the suspended matter 003 while minimizing the fluctuation of the cleaning liquid in the cleaning tank 100.
[0060] Refer to Figure 6 As shown in
[0061] During operation, due to the provision of the communication port 403, the oil storage box 401 and the cleaning tank 100 are in a communicating state at this time, making the liquid levels of the liquid introduced into the oil storage box 401 and the liquid in the cleaning tank 100 consistent. The difference is that the oil suspension 003 introduced into the oil storage box 401 still floats above the liquid level due to the density difference and does not enter the cleaning tank 100 through the communication port 403, thereby realizing the automatic cleaning and collection of the suspension 003 on the liquid level in the cleaning tank 100 without causing the loss of the liquid in the cleaning tank 100, facilitating the continuous progress of the cleaning operation.
[0062] Furthermore, a visual window (not shown in the figure) is installed on the side of the oil storage box 401, through which the situation of the suspension 003 on the liquid level in the oil storage box 401 can be observed, facilitating the staff to know whether the cleaning liquid 002 needs to be replaced.
[0063] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention, and they should all be covered by the scope of the claims of the present invention.
Claims
1. A tank-type ultrasonic cleaning device for cylinder processing, comprising a cleaning tank (100), characterized in that: Also includes, At least two blocking rods (200) are provided and are vertically installed in the cleaning tank (100); A lifting plate (201) is slidably mounted between the plurality of blocking rods (200); The lifting plate (201) can move up and down in a vertical direction; Two supporting plates (202) are provided and are obliquely mounted on one side of the lifting plate (201); the angle between the supporting plates (202) and the blocking rod (200) is less than ninety degrees, and the lower end of the supporting plate (202) is adjacent to the blocking rod (200); this angle interval is used for placing the cylinder workpiece (001); The blowing pipe (203) is hinged to one end of the supporting plate (202) away from the lifting plate (201) through a supporting plate, and the blowing pipe (203) is always located above the liquid surface of the cleaning liquid (002); The air outlet of the blowing pipe (203) is directed toward the liquid surface of the cleaning liquid (002), and is used to blow the suspended matter (003) on the liquid surface of the cleaning liquid (002) toward and collect it on the inner wall of the cleaning tank (100) on the side of the blocking rod (200) away from the blowing pipe (203); A toggle plate (300) is also mounted on the lifting plate (201) via a torsion spring shaft, and the toggle plate (300) is located outside any of the supporting plates (202); A mounting rod (301) is also vertically mounted in the cleaning tank (100), and the mounting rod (301) is entirely located on a side of the blocking rod (200) away from the blowing pipe (203); A notched plate (302) is installed on the side of the installation rod (301) facing the toggle plate (300), and the notched plate (302) is located above the liquid surface of the cleaning liquid (002) as a whole; The notched plate (302) is pressed and matched with one end of the adjacent toggle plate (300); The notched plate (302) further comprises a straight plate portion (302a) located above the notched portion; The straight plate portion (302a) is extruded and matched with one end of the adjacent toggle plate (300); A shifting rod (303) is also installed at one end of the shifting plate (300) adjacent to the blowing pipe (203), and the shifting rod (303) is always in contact with the surface of the support plate used to install the blowing pipe (203).
2. The tank-type ultrasonic cleaning machine for cylinder processing according to claim 1, characterized in that: The cleaning tank (100) further comprises a cleaning chamber (101) and a storage chamber (102); the side of the blocking rod (200) adjacent to the air blowing pipe (203) is the cleaning chamber (101), and the other side of the blocking rod (200) is the storage chamber (102); The suspended matter (003) on the surface of the cleaning liquid (002) is collected above the storage chamber (102).
3. The tank-type ultrasonic cleaning machine for cylinder processing according to claim 1, characterized in that: A screw rod (201a) that is threadably mounted in the cleaning tank (100) and is engaged with the lifting plate (201); A motor (201b) is also installed at the bottom end of the cleaning tank (100), and the output end of the motor (201b) is sleeved with the lead screw (201a).
4. The tank-type ultrasonic cleaning machine for cylinder processing according to claim 2, characterized in that: The lifting plate (201) is also provided with a liquid box (400) located in the storage cavity (102); The length of the liquid box (400) is consistent with the width of the cleaning tank (100), and the side surface of the liquid box (400) is in contact with the inner wall of the cleaning tank (100); The top of the liquid box (400) is formed with an opening, and the length surface of the liquid box (400) that is in contact with the inner wall of the cleaning tank (100) is also formed with an opening; An oil storage box (401) is also installed outside the cleaning tank (100), and an inlet (402) communicating with the inside of the cleaning tank (100) is formed on the top of the oil storage box (401), and the inlet (402) is located above the liquid level of the cleaning liquid (002).
5. The tank-type ultrasonic cleaning machine for cylinder processing as claimed in claim 4, characterized in that: The bottom of the oil storage box (401) is also formed with a communication port (403) that communicates with the interior of the cleaning tank (100).
6. The tank-type ultrasonic cleaning machine for cylinder processing according to claim 5, characterized in that: The bottom of the liquid-containing box (400) is also formed with an opening; A sliding cover (404) is slidably mounted on the bottom of the liquid box (400) for sealing the opening; A spring (405) is installed between the sliding cover (404) and the liquid box (400); A wedge plate (406) is also vertically mounted on the inner wall of the cleaning tank (100).
7. The tank-type ultrasonic cleaning machine for cylinder processing according to claim 4, characterized in that: A visual window is also installed on the side of the oil storage box (401).
Citation Information
Patent Citations
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