Flushing type cleaning equipment
By installing a rinsing device on the conveyor mechanism, cleaning fluid is sprayed onto the inner wall of the cup using spray pipes and nozzles, solving the problem of difficult removal of contaminants from the inner surface of the cup, achieving a more efficient cleaning effect, and improving production efficiency.
Patent Information
- Application Number
- CN202422977529.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-04
AI Technical Summary
In existing cleaning equipment, contaminants on the inner surface of the cup are difficult to remove effectively by soaking, resulting in poor cleaning effect and affecting production efficiency.
The equipment uses a rinsing cleaning method, in which cleaning solution is sprayed onto the inner wall of the cup through a spray pipe and nozzle driven by a conveyor mechanism. This spraying method replaces soaking and improves the cleaning effect.
It effectively removes contaminants from the inner wall of the cup, avoids contaminant residue, and improves cup production efficiency.
Smart Images

Figure CN223475855U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning equipment, and more specifically to a rinsing cleaning device. Background Technology
[0002] A cup body generally refers to a workpiece with an open end and a cylindrical shape, such as a glass cup, a stainless steel cup, or a ceramic cup. After the cup body is formed, it needs to be cleaned in a cleaning tank filled with cleaning fluid. A fixture is assembled onto the conveying mechanism of the cleaning equipment in an upright or inverted manner. The conveying mechanism drives the fixture and the cup body to be immersed in the cleaning fluid in the cleaning tank, thereby achieving the purpose of cleaning the cup body.
[0003] Existing cleaning equipment typically uses immersion to clean cups. This involves a conveyor mechanism immersing the cup in the cleaning solution and maintaining this immersion until the conveyor lifts the cup from the solution surface. The cup is immersed and cleaned as it moves with the conveyor. While contaminants on the outer surface of the cup are relatively easy to remove through immersion, stubborn contaminants may remain on the inner surface due to structural limitations. This necessitates returning the cleaned cups for re-cleaning, impacting production efficiency.
[0004] In view of this, it is necessary to improve the existing cup cleaning equipment to solve the above problems. Utility Model Content
[0005] The purpose of this utility model is to disclose a rinsing-type cup cleaning device to solve the problem that the residual pollutants on the inner wall of the cup are difficult to remove in the existing soaking cleaning process, so as to ensure the production efficiency of the cup.
[0006] To achieve the above objectives, this utility model provides a rinsing cleaning device, including a conveying mechanism and a processing tank. The conveying mechanism is equipped with a plurality of cup clamps along its length. Each cup clamp has a base and a plurality of clamping components. The opening of the cup is placed downward on the upper surface of the base. The plurality of clamping components abut against the outer wall of the cup. The cup clamps are assembled to the conveying mechanism via the base.
[0007] The processing tank is located below the conveying mechanism and is equipped with a rinsing device. The rinsing device includes a spray pipe and a nozzle. The base has a through hole. The cleaning liquid enters the spray pipe and is sprayed out by the nozzle and then passes through the through hole to rinse the inner wall of the cup.
[0008] As a further improvement of this utility model, the cup clamp further includes: a plate body, the plate body being rotatably connected relative to the base, and the clamping member forming a continuously arranged rotating section, connecting section, and adjusting section;
[0009] The rotating section is inserted into the upper surface of the base along the direction perpendicular to the rotation plane of the disc body, and the disc body forms a hollow part for the adjusting section to pass through upward;
[0010] The plate and the base form a gap for the connecting section to rotate. During the rotation of the plate relative to the base, the hollow part pushes the adjusting section to rotate relative to the base with the rotating section as the axis and the connecting section as the radius. The adjusting section is displaced in the length direction relative to the hollow part in the rotating state and clamps the outer wall of the cup.
[0011] As a further improvement of this utility model, the disc body is coaxially distributed with the base and rotates around the central axis. The base includes a mounting body and a mounting step. The mounting step is coaxially distributed on the upper surface of the mounting body, and the lower surface of the disc body is in contact with the upper surface of the mounting step.
[0012] The upper surface of the mounting body is parallel to the plane of the disk body, and multiple insertion holes for the insertion of rotating sections are evenly distributed around the mounting step. The gap for the connecting section to rotate is the annular space formed by the upper surface of the mounting body and the lower surface of the disk body.
[0013] The upper surface of the mounting step is coaxially provided with a positioning protrusion, and the disc body is provided with a connecting hole for the positioning protrusion to pass through. The through hole is opened from the top surface of the positioning protrusion and penetrates the bottom surface of the mounting body.
[0014] As a further improvement of this utility model, the disc body is provided with a plurality of arc-shaped guide holes around the connecting hole, and a positioning member is respectively inserted into each of the plurality of guide holes. The top surface of the mounting step is provided with a number of positioning holes consistent with the number of guide holes around the positioning protrusion. After the positioning member passes through the guide hole, it is locked in the positioning hole. When the disc body is rotating, the positioning member in the stationary state slides along the arc of the guide hole relative to the rotating guide hole.
[0015] As a further improvement of this utility model, the rinsing device further includes a connecting pipe and an inlet pipe. The connecting pipe is arranged along the length direction of the treatment tank. One end of the inlet pipe is located outside the treatment tank, and the other end passes through the side wall of the treatment tank and connects with the connecting pipe. The spray pipe is arranged perpendicular to the length direction of the connecting pipe, and the nozzle is formed at the top of the spray pipe.
[0016] As a further improvement of this utility model, several nozzles are arranged perpendicular to the length direction of the connecting pipe, and the distance between adjacent nozzles is equal to the distance between two adjacent cup clamps assembled in the length direction of the conveying mechanism.
[0017] As a further improvement of this utility model, the treatment tank is an ultrasonic cleaning tank, and the conveying mechanism drives the cup body to perform immersion and lifting actions in the ultrasonic cleaning tank.
[0018] As a further improvement of this utility model, the adjustment section includes a force-receiving section and a force-applying section. One end of the force-receiving section is connected to the end of the connecting section away from the rotating section. The other end of the force-receiving section passes upward through the hollow part and connects to the force-applying section. The top of the force-applying section extends in a direction away from the force-receiving section. The force-receiving section is pushed by the side wall formed by the hollow part along its length direction and clamps the side wall of the cup body through the force-applying section.
[0019] As a further improvement of this utility model, the insertion hole is formed at one end of the upper surface of the mounting body, having a tapered opening for the insertion of the rotating section.
[0020] As a further improvement of this utility model, the conveying mechanism has at least two cup clamps arranged side by side along the width direction, and each nozzle has a nozzle that is consistent with the number of cup clamps arranged along the width direction of the conveying mechanism.
[0021] Compared with the prior art, the beneficial effects of this utility model are as follows: By using the rinsing device installed in the processing tank, when the conveying mechanism drives the cup clamp and the cup together to move in the processing tank, the spray pipe constituting the rinsing device sprays rinsing liquid through the nozzle. The rinsing liquid rinses the inner surface of the cup held in the cup clamp in an inverted state through the through hole of the cup clamp. Compared with the prior art of cleaning the cup by soaking, the cleaning liquid is sprayed out of the nozzle at a certain speed to achieve the effect of rinsing the inner wall of the cup. This can achieve a more effective rinsing effect on the inner wall of the cup, so as to avoid the problem of pollutant residue on the inner wall of the cup. Attached Figure Description
[0022] Figure 1 This is a schematic diagram illustrating the arrangement of the processing tank, conveying mechanism, cup clamp, and rinsing device in this utility model.
[0023] Figure 2 for Figure 1 Enlarged view of section A in the middle;
[0024] Figure 3 This is a top view of the present invention used to illustrate the cooperative relationship between the cup clamp and the rinsing device in the treatment tank;
[0025] Figure 4 This is a top view showing the overall state of the cup clamp when the adjustment section is moved to any non-limit position within the hollowed-out part according to this utility model.
[0026] Figure 5 This utility model is used to embody the disc body made of Figure 1 The top view of the overall state of the cup fixture when it rotates a certain angle from the state shown;
[0027] Figure 6 This is a schematic diagram of the present utility model showing the state where the cup is inverted on the base in the open state of the clamping member;
[0028] Figure 7 is Figure 6 the enlarged view of part B in
[0029] Figure 8 This is the top view of the present utility model used to show the specific structure of the base. Specific embodiments
[0030] The present utility model will be described in detail below in conjunction with the various embodiments shown in the drawings. However, it should be noted that these embodiments are not limitations on the present utility model. Any equivalent transformation or substitution in terms of function, method, or structure made by those of ordinary skill in the art based on these embodiments shall fall within the protection scope of the present utility model.
[0031] Refer Figures 1 to 7 This is a specific embodiment of a flushing cleaning device disclosed by the present utility model. Compared with the prior art, the beneficial effect of the present utility model is that when the conveying mechanism 20 drives the cup fixture 10 and the cup 5 to move together in the processing tank 30, the spray pipe 401 constituting the flushing device 40 sprays the cleaning liquid through the nozzle 402. The cleaning liquid flushes the inner surface of the cup 5 clamped in the cup fixture 10 in an inverted state through the through hole 24 formed by the cup fixture 10 having the base 2. Compared with the prior art where the cup is cleaned by soaking, the cleaning liquid is sprayed out at a certain speed through the spraying method to achieve the effect of flushing the inner wall of the cup 5, which can achieve a more effective flushing effect on the inner wall of the cup 5, so as to avoid the problem of pollutant residue on the inner wall of the cup and further avoid the problem of affecting the production efficiency of the cup due to the need to re-clean the cup with pollutants on the inner wall.
[0032] Refer Figures 1 to 7As shown, in this embodiment, the flushing cleaning device includes a conveying mechanism 20 and a processing tank 30. The conveying mechanism 20 is equipped with a number of cup clamps 10 along the length direction. The cup clamp 10 has a base 2 and a number of clamping members 3. The opening 51 of the cup 5 is placed downward on the upper surface of the base 2, and a number of clamping members 3 abut against the outer wall of the cup 5. The cup 5 clamp is assembled to the conveying mechanism 2 through the base 2; the processing tank 30 is provided with a flushing device 40 below the conveying mechanism 20. The flushing device 40 includes a spray pipe 401 and a nozzle 402. The base 2 is provided with a through hole. After the cleaning liquid enters the spray pipe 401, it is sprayed out by the nozzle 402 and then passes through the through hole 24 to flush the inner wall of the cup 5.
[0033] The opening 51 of the cup 5 is clamped downward within the cup clamp 10; the cup clamp 10 is assembled to the conveying mechanism 20 through the base 2. The flushing device 40 is arranged along the length direction below the conveying mechanism 20 within the processing tank 30. The base 2 is provided with an axial through hole 24. The flushing device 40 sprays the cleaning liquid into the opening 51 of the cup 5 through the through hole 24 to clean the inside of the cup 5. The cup clamp 10 also has a number of clamping members 3. The cup 5 is placed upside down on the base 2 with the opening 51 downward, and the clamping members 3 clamp and position the outer wall of the cup 5. The cleaning liquid enters the spray pipe 401 and is then sprayed out by the nozzle 402 connected to the top end of the spray pipe 401 and sprayed into the cup 5 through the through hole 24 opened in the base 2 to flush the inside of the cup 5, so as to achieve a better effect of removing contaminants inside the cup 5.
[0034] Refer Figures 4 to 7 As shown, the cup clamp further includes: a disk body 1, the disk body 1 is rotatably connected to the base 2. The clamping member 3 forms a continuously arranged rotating section 31, a connecting section 33, and an adjusting section 32; the rotating section 32 is inserted into the upper surface of the base 2 along the direction perpendicular to the rotating plane of the disk body 1, and the disk body 2 forms a hollow part 11 for the adjusting section 32 to pass upward; a gap 12 for the connecting section 33 to rotate is enclosed by the disk body 1 and the base 2. During the rotation of the disk body 1 relative to the base 2, the hollow part 11 pushes the adjusting section 32 to rotate relative to the base 2 with the rotating section 31 as the axis and the connecting section 33 as the radius. The adjusting section 32 is displaced in the length direction relative to the hollow part 11 in the rotating state and clamps the outer wall of the cup 5.
[0035] Refer Figures 4 to 7As shown, the disk body 1 and the base 2 are coaxially distributed and rotate about the central axis O. The base 2 includes an installation main body 21 and an installation step 22. The installation step 22 is coaxially distributed on the upper surface of the installation main body 21. The lower surface of the disk body 1 is fitted with the upper surface of the installation step 22. The upper surface of the installation main body 21 is arranged parallel to the plane where the disk body 1 is located, and jacks 211 for inserting multiple rotating sections 31 are evenly distributed around the installation step 22. The gap 12 for the connecting section 33 to rotate is an annular space formed by the upper surface of the installation main body 21 and the lower surface of the disk body 1. A positioning protrusion 23 is coaxially arranged on the upper surface of the installation step 22. The disk body 1 is provided with a connecting hole 13 for the positioning protrusion to pass through. A through hole 24 is opened on the top surface of the positioning protrusion 23 and penetrates the bottom surface of the installation main body 21.
[0036] As shown in the figure, Figures 4 to 7 the adjusting section 32 includes a stress-receiving section 321 and a force-applying section 322. One end of the stress-receiving section 321 is connected to the end of the connecting section 33 far from the rotating section 31. The other end of the stress-receiving section 321 passes upward through the hollowed-out part 11 and is connected to the force-applying section 322. The top end of the force-applying section 322 extends in a direction away from the stress-receiving section 321. The stress-receiving section 321 is pushed by the side wall formed by the hollowed-out part 11 along its length direction, and the side wall of the cup body 5 is clamped through the force-applying section 322. The jack 211 formed at one end of the upper surface of the installation main body 21 has a tapered hole opening 212 for inserting the rotating section 31.
[0037] When using the cup body clamp 10 described in this embodiment to clamp the cup body 5, the opening 51 of the cup body 5 is buckled onto the upper surface of the disk body 1 (specifically refer to Figure 6 as shown in the figure, Figure 6 in the state where the cup body 5 is buckled above the disk body 1 and the clamping member 3 does not clamp it), and then the adjusting sections 32 of several clamping members 3 are used to position it by rotating the disk body 1. When it is necessary to Figure 6 position the cup body 5 buckled on the disk body 1 as shown in the figure, rotate the disk body 1 in the direction of the arrow O1 shown in Figure 5 the figure so that the stress-receiving section 321 moves in the direction close to the central axis O in the hollowed-out part 11 until the force-applying section 322 covering the friction increasing member abuts against the outer wall of the cup body 5 to clamp and position it. In this embodiment, by controlling the rotation of the disk body 1, the position of the stress-receiving section 321 in the hollowed-out part 11 is changed to adapt to cup bodies 5 with different outer diameters. Specifically, Figures 4 to 6 as shown in the figure, the stress-receiving section 321 located at different positions in the hollowed-out part 11 can be used to clamp and position cup bodies 5 of three sizes.
[0038] Refer to Figures 4 to 8As shown, the disc body 1 has several arc-shaped guide holes 14 around the connecting hole 13. A positioning element 25 is inserted into each of the guide holes 14. The top surface of the mounting step 22 has a number of positioning holes 221 around the positioning protrusion 23 that are the same as the number of guide holes 14. After the positioning element 25 passes through the guide hole 14, it is locked in the positioning hole 221. When the disc body 1 is rotating, the positioning element 25 in the stationary state slides along the arc of the guide hole 14 relative to the rotating guide hole 14. In this embodiment, to cooperate with the through hole 24 that penetrates the base 2 longitudinally, a plurality of guide holes 14 are formed around the connecting hole 13 at the disc body 1, and a number of positioning holes 221, the same as the number of guide holes 14, are distributed on the upper surface of the mounting step 22. The positioning member 25 passes through the guide holes 14 and is locked in the positioning holes 221. When the disc body 1 is driven to rotate relative to the base 2, the positioning member 25 in the stationary state moves relative to the guide holes 14 in the rotating state, and the positioning member 25 is in a state of moving along the arc of the guide holes 14, so as to achieve the purpose of coaxial rotation of the disc body 1 relative to the base 2 through the cooperation between the positioning member 25 and the guide holes 14.
[0039] Furthermore, in this embodiment, the upper surface of the mounting body 21 is parallel to the disc body 1, and the insertion hole 211 forms a conical opening 212 on the upper surface of the mounting body 21. In this embodiment, the rotating section 31 passes through the conical opening 212 of the insertion hole 211 and is directly bent to form a connecting section 33. The connecting section 33 is a rod that is vertically connected between the rotating section 31 and the force-bearing section 321. The design of the conical opening 212 effectively improves the overall rotational smoothness of the clamping component 3 and avoids the rotating section 31 from getting stuck relative to the mounting body 21 during the rotation of the disc body 1. In this embodiment, the mounting step 22 formed at the center of the upper surface of the mounting body 21 fits against the lower surface of the disc body 1 to achieve an annular space with the same height as the mounting step 22 between the lower surface of the disc body 1 and the upper surface of the mounting body 21, i.e., the aforementioned gap 12 for the connecting section 33 to rotate, making the volume, height, and overall structure of the cup clamp 10 more reasonable. It should be noted that in this embodiment, the clamping members 3 are configured in three groups, therefore the number of insertion holes 211 is set to three, which is consistent with the number of rotating segments 31 of the three groups of clamping members 3. The three groups of clamping members 3 are symmetrically arranged with respect to the central axis O, and can move closer and further away synchronously.
[0040] It should be noted that when there are stubborn stains on the inner wall of the cup body 5 that cannot be removed by soaking, existing positioning fixtures for the cup body 5 (such as clamps, cup baskets, etc.) do not have a space structure that can rinse the inner wall of the cup body 5, resulting in the stains inside the cup body 5 not being effectively removed even after soaking and cleaning. In this embodiment, when the cup body 5 is... Figure 6 When the cup body 5 is inverted and held in place by the three sets of clamping components 3 (see...) Figure 3In the schematic state, cleaning liquid is introduced into the nozzle 401. After the cleaning liquid flows out of the nozzle 402 at a certain speed, it flows upward through the through hole 24 to wash the inner surface of the cup body 5, so as to wash the inner wall of the cup body 5 with a liquid having a certain flow rate. Compared with the prior art, it effectively avoids the situation that stubborn stains still exist on the cup body 5 after cleaning, and further achieves a better cleaning effect on the cup body 5. Through the design of the positioning protrusion 23, in addition to improving the smoothness of the cooperation and rotation of the disc body 1 and the base 2, it provides a spatial structure where the through hole 24 can be opened, and the flushing pipe 4 extends from the through hole 24 and extends into the opening of the cup body 5 in a centered posture, having a more uniform flushing effect on the inside of the cup body 5.
[0041] Refer Figure 3 As shown, the flushing device 40 further includes a connecting pipe 403 and a liquid inlet pipe 404. The connecting pipe 403 is arranged along the length direction of the treatment tank 30. One end of the liquid inlet pipe 404 is located outside the treatment tank, and the other end passes through the side wall of the treatment tank 30 and is connected to the connecting pipe 403. The nozzle 401 is arranged perpendicular to the length direction of the connecting pipe 403, and the nozzle 402 is formed at the top end of the nozzle 401. The nozzle 401 is arranged perpendicular to the length direction of the connecting pipe 402 in several rows, and the distance between adjacent nozzles 402 is equal to the distance between two adjacent cup clamps 10 assembled in the length direction of the conveying mechanism 20.
[0042] Specifically, refer Figures 1 to 3 As shown, the conveying mechanism 20 includes a plurality of conveying gears 201 and a conveyor belt 202. The plurality of conveying gears 201 are arranged in the treatment tank 30 in the Figure 1 shown manner, and the conveyor belt 202 is guided by the conveying gears 201. In this embodiment, the treatment tank 30 is set as an ultrasonic cleaning tank, and the conveyor belt 202 of the conveying mechanism 20 drives the cup body 3 to perform immersion and lifting actions in the ultrasonic cleaning tank. It should be noted that the conveyor belt 202 of the conveying mechanism 20 is arranged in parallel in the width direction with no less than two cup clamps 10, and each nozzle 401 has the same number of nozzles 402 as the number of cup clamps 10 arranged in the width direction of the conveyor belt 202. It should be noted that in this embodiment, the width direction of the conveyor belt 202 is arranged with a total of four cup clamps 10 as Figure 3 shown, and four nozzles 402 are arranged directly below the four cup clamps 10 along the length direction of the nozzle 401.
[0043] In this embodiment, the treatment tank 30 is an ultrasonic cleaning tank. That is, the treatment tank 30 contains a cleaning solution for ultrasonic cleaning. After the conveyor belt 202 drives the cup 5 into the cleaning solution in the treatment tank 30, the ultrasonic vibration of the cleaning solution cleans the cup 5 immersed in the cleaning solution. Simultaneously, four nozzles 402 spray cleaning solution onto four cup clamps 10 to rinse the inner walls of the cups 3 held by the four cup clamps 10 installed in the width direction of the conveyor belt 202. Compared with the ultrasonic cleaning tank in the prior art, this effectively improves the rinsing effect on the cups 3. It should be noted that when the treatment tank 30 is set as an acid pickling tank or other type of treatment tank, the conveyor belt 202 does not need to drive the cup 5 into the cleaning solution. Several conveying gears 201 guide the conveyor belt 202 along the length direction of the treatment tank 30, and the cleaning solution is sprayed out by the nozzles 402 to achieve the effect of cleaning the inner walls of the cups 5.
[0044] The detailed descriptions listed above are merely specific descriptions of feasible implementations of this utility model, and are not intended to limit the scope of protection of this utility model. All equivalent implementations or modifications made without departing from the spirit of this utility model should be included within the scope of protection of this utility model.
[0045] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A rinsing cleaning device, comprising a conveying mechanism and a processing tank, characterized in that, The conveying mechanism is equipped with several cup clamps along its length. Each cup clamp has a base and several clamping components. The opening of the cup is placed downward on the upper surface of the base. The clamping components abut against the outer wall of the cup. The cup clamps are assembled to the conveying mechanism via the base. The processing tank is located below the conveying mechanism and is equipped with a rinsing device. The rinsing device includes a spray pipe and a nozzle. The base has a through hole. The cleaning liquid enters the spray pipe and is sprayed out by the nozzle and then passes through the through hole to rinse the inner wall of the cup.
2. The flushing cleaning equipment according to claim 1, characterized in that, The cup clamp further includes: a plate body, which is rotatably connected to the base, and the clamping member forms a continuously arranged rotating section, connecting section, and adjusting section; The rotating section is inserted into the upper surface of the base along the direction perpendicular to the rotation plane of the disc body, and the disc body forms a hollow part for the adjusting section to pass through upward; The plate and the base form a gap for the connecting section to rotate. During the rotation of the plate relative to the base, the hollow part pushes the adjusting section to rotate relative to the base with the rotating section as the axis and the connecting section as the radius. The adjusting section is displaced in the length direction relative to the hollow part in the rotating state and clamps the outer wall of the cup.
3. The flushing cleaning equipment according to claim 2, characterized in that, The disc body is coaxially distributed with the base and rotates around the central axis. The base includes a mounting body and mounting steps. The mounting steps are coaxially distributed on the upper surface of the mounting body, and the lower surface of the disc body is in contact with the upper surface of the mounting steps. The upper surface of the mounting body is parallel to the plane of the disk body, and multiple insertion holes for the insertion of rotating sections are evenly distributed around the mounting step. The gap for the connecting section to rotate is the annular space formed by the upper surface of the mounting body and the lower surface of the disk body. The upper surface of the mounting step is coaxially provided with a positioning protrusion, and the disc body is provided with a connecting hole for the positioning protrusion to pass through. The through hole is opened from the top surface of the positioning protrusion and penetrates the bottom surface of the mounting body.
4. The flushing cleaning equipment according to claim 3, characterized in that, The disc body has several arc-shaped guide holes around the connecting hole, and a positioning member is inserted into each of the guide holes. The top surface of the mounting step has a number of positioning holes that are the same as the number of guide holes around the positioning protrusion. After the positioning member passes through the guide hole, it is locked in the positioning hole. When the disc body is rotating, the positioning member in the stationary state slides along the arc of the guide hole relative to the rotating guide hole.
5. The flushing cleaning device according to claim 1, characterized in that, The rinsing device also includes a connecting pipe and an inlet pipe. The connecting pipe is arranged along the length of the treatment tank. One end of the inlet pipe is located outside the treatment tank, and the other end passes through the side wall of the treatment tank and connects to the connecting pipe. The spray pipe is arranged perpendicular to the length of the connecting pipe, and the nozzle is formed at the top of the spray pipe.
6. The flushing cleaning device according to claim 5, characterized in that, The nozzles are arranged in several rows perpendicular to the length direction of the connecting pipe, and the distance between adjacent nozzles is equal to the distance between two adjacent cup clamps assembled in the length direction of the conveying mechanism.
7. The flushing cleaning device according to claim 6, characterized in that, The treatment tank is an ultrasonic cleaning tank, and the conveying mechanism drives the cup to immerse and lift within the ultrasonic cleaning tank.
8. The flushing cleaning equipment according to claim 4, characterized in that, The adjustment section includes a force-receiving section and a force-applying section. One end of the force-receiving section is connected to the end of the connecting section away from the rotating section. The other end of the force-receiving section passes upward through the hollow part and connects to the force-applying section. The top of the force-applying section extends in a direction away from the force-receiving section. The force-receiving section is pushed by the side wall formed by the hollow part along its length direction and clamps the side wall of the cup body through the force-applying section.
9. The flushing cleaning device according to claim 8, characterized in that, The insertion hole is formed at one end of the upper surface of the mounting body, with a tapered opening for the insertion of the rotating section.
10. The flushing cleaning device according to claim 6, characterized in that, The conveying mechanism has at least two cup holders arranged side by side along the width direction, and each nozzle has a nozzle that is the same as the number of cup holders arranged along the width direction of the conveying mechanism.