Stainless steel air shower
By designing a hollow plate and air outlet duct structure within the air shower chamber, combined with an air supply and drive mechanism, the problem of difficult air outlet duct insertion was solved, enabling efficient clothes drying and improving the efficiency of the air shower chamber.
Patent Information
- Application Number
- CN202520407070.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2026-03-06
- Estimated Expiration
- 2035-03-10
AI Technical Summary
In existing air showers, the air outlet pipe encounters an obstruction when penetrating the rubber pad, increasing the difficulty of smoothly sending the air outlet pipe into the air shower body and affecting the efficiency of drying clothes.
A stainless steel air shower is designed. Hollow plates and air outlet pipes are set in the chambers on the left and right sides of the air shower body. Combined with an air supply mechanism and a drive mechanism, the air outlet pipes can be smoothly inserted into the through holes and contact the rotating rollers. The air supply mechanism supplies air into the hollow plates, realizing the connection between the air outlet pipes and the air shower body.
The connection process between the air outlet duct and the air shower body has been simplified, improving the air blowing efficiency for clothes and enhancing the air blowing effect inside the air shower.
Smart Images

Figure CN223970536U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air shower technology, specifically to a stainless steel air shower. Background Technology
[0002] An air shower, also known as a clean air shower, purification air shower, air shower room, air shower chamber, air shower door, dust removal room, air shower passage, or air shower room, is a versatile local purification device.
[0003] In existing air showers, rotating a threaded rod causes the air vane to slide against the inner wall of the chamber, compressing a spring and allowing the air outlet pipe on the air vane to extend into the air shower body. This facilitates adjustment of the air outlet pipe's position and allows for easy air blowing on clothes inside the air shower body. Air filtered by the filter plate is introduced into the blower, and then through a connecting pipe into the air vane before being discharged through the air outlet pipe, ensuring stable airflow.
[0004] However, certain technical issues may arise during its use. For example, when using the device, the operator needs to rotate the threaded rod, using its pushing force to allow the air plate to slide smoothly along the inner wall of the chamber. This process aims to allow the air outlet pipe connected to the air plate to penetrate the rubber pad and extend into the interior of the air shower. However, due to the inherent irregular shape and frictional characteristics of the rubber pad, the process of the air pipe penetrating the rubber pad may be hindered, increasing the difficulty for the operator to smoothly send the air outlet pipe into the interior of the air shower and establish communication with it, thus affecting the efficiency of drying clothing placed inside the air shower. Utility Model Content
[0005] This utility model addresses the shortcomings of existing technologies by providing a stainless steel air shower that allows workers to easily connect the air outlet pipe to the interior of the air shower body, thereby facilitating the blowing of air onto clothing inside the air shower body.
[0006] This utility model is achieved through the following technical solution: a stainless steel air shower is provided, including an air shower body. Two chambers are opened on the left and right sides of the air shower body. A hollow plate is slidably installed on the inner wall of each chamber. An air outlet pipe is installed in each chamber, fixed to the inner wall of the hollow plate and communicating with the internal cavity of the hollow plate. A through hole is opened on the inner wall of the air shower body, communicating with the chambers and coaxial with the air outlet pipe. Vertical grooves are opened at the top and bottom of the through hole, and the width of the vertical grooves is consistent with the horizontal width of the through hole. Two sliding grooves extending towards and communicating with the through hole are opened on the side wall of the vertical groove facing the air outlet pipe. The two slides are located on the front and rear sides of the vertical groove, respectively. A slide plate is provided in the slide. A spring is provided at the end of the slide away from the through hole and fixed to the side wall of the slide away from the through hole. A rotating roller is provided in the through hole and rotatably connected to the inner side wall of the two slide plates. The upper and lower rotating rollers abut against the side wall away from the vertical groove. A rubber pressure plate is also provided in the vertical groove, which is fixed to the inner side wall of the slide plate and slidably sealed with the vertical groove. The upper and lower rubber pressure plates abut against the side wall away from the vertical groove. An air supply mechanism is provided on the air shower body to supply air to the hollow cavity inside the hollow plate. A drive mechanism is provided on the air shower body to move the hollow plate left and right in the cavity.
[0007] In use, this utility model features an air shower body with two chambers on its left and right sides. Hollow plates are slidably mounted on the inner walls of each chamber. An air outlet pipe, fixed to the inner wall of the hollow plate and communicating with its internal cavity, is installed within each chamber. A through hole, coaxial with the air outlet pipe and communicating with the chamber, is located on the inner wall of the air shower body. Vertical grooves are formed at the top and bottom of the through hole, with the width of the grooves matching the horizontal width of the through hole. Two sliding grooves, extending towards and communicating with the through hole, are formed on the side wall of the vertical groove facing the air outlet pipe. The two sliding grooves are located on the vertical groove... On both the front and rear sides of the trough, sliding plates are installed inside the trough. A spring is fixed to the side wall of the trough away from the through hole at the end of the sliding plate. Rotating rollers are installed inside the through hole, rotatably connected to the inner side walls of the two sliding plates. The upper and lower rotating rollers abut against the side wall away from the vertical trough. Rubber pressure plates are also installed inside the vertical trough, fixed to the inner side wall of the sliding plates and slidably sealingly connected to the vertical trough. The upper and lower rubber pressure plates abut against the side wall away from the vertical trough. The air shower body is equipped with an air supply mechanism to supply air to the hollow cavity inside the hollow plate. The air shower body is also equipped with a drive mechanism to move the hollow plate left and right within the cavity. The device is in use... First, the clothes need to be placed into the air shower chamber. Then, the drive mechanism moves the hollow plate towards the through hole in the chamber, which in turn moves the air outlet pipe towards the through hole. This causes the end of the air outlet pipe away from the hollow plate to insert between the upper and lower rollers in the through hole, and simultaneously contact the upper and lower rollers. At this time, because the air outlet pipe is inserted between the upper and lower rollers, it pushes the rollers away from the air outlet pipe, and drives the slide plate to move away from the air outlet pipe in the slide groove. This compresses the spring, which in turn drives the rubber pressure plate fixed to the inner wall of the slide plate to move vertically. The trough moves away from the air outlet pipe, causing the upper and lower rubber pressure plates to no longer abut against the side wall away from the vertical trough, creating an opening. The air outlet pipe continues to extend into the air shower body through the opening under the push of the hollow plate. Then, the air supply mechanism is activated to supply air into the cavity inside the hollow plate, allowing the air to pass through the cavity inside the hollow plate and exit through the air outlet pipe into the air shower body. This blows the clothes inside the air shower. This allows staff to easily connect the air outlet pipe to the inside of the air shower body, making it convenient to blow the clothes inside the air shower body.
[0008] Preferably, the air supply mechanism includes a groove formed at the top of the air shower body, in which a blower is installed. A filter plate is fixedly connected to the inner wall of the groove, positioned above the blower. A flexible connecting pipe is provided at the air outlet end of the blower, extending into the chamber and communicating with the internal cavity of the hollow plate. In use, by turning on the blower, filtered air is introduced into the blower, then transported through the flexible connecting pipe to the hollow plate, and finally ejected through the air outlet pipe, thereby blowing air onto the clothes inside the air shower body.
[0009] Preferably, the driving mechanism includes a connecting column disposed in the cavity and fixedly connected to the outer wall of the hollow plate. The connecting column has a threaded hole on the side away from the hollow plate, and a threaded rod is disposed in the threaded hole. The threaded rod extends laterally in the direction away from the hollow plate and passes through the air shower body. The threaded rod is rotatably connected to the air shower body. The driving mechanism includes a connecting column disposed within the cavity and fixedly connected to the outer wall of the hollow plate. A threaded hole is provided on the side of the connecting column away from the hollow plate, and a threaded rod is disposed within the threaded hole. The threaded rod extends laterally away from the hollow plate and passes through the air shower body. The threaded rod is rotatably connected to the air shower body. When the device is in use, the threaded rod is controlled to rotate on the air shower body and within the threaded hole. At this time, because the hollow plate and the inner wall of the cavity are slidably disposed, and the connecting column is fixedly connected to the outer wall of the hollow plate, the hollow plate and the connecting column will not rotate under the drive of the threaded rod. Instead, they move within the cavity towards the through hole under the drive of the threaded rod, thereby driving the air outlet pipe to move, so that the end of the air outlet pipe away from the hollow plate is inserted into the through hole between the upper and lower rotating rollers and simultaneously contacts the upper and lower rotating rollers.
[0010] Preferably, a rotating handle is coaxially fixed to the end of the threaded rod away from the air shower body. By coaxially fixing the rotating handle to the end of the threaded rod away from the air shower body, the operator can easily drive the threaded rod to rotate within the threaded hole on the air shower body using the rotating handle.
[0011] Preferably, a plurality of through holes are provided on the inner side wall of the air shower chamber, and the plurality of through holes are distributed in a vertical direction. By providing a plurality of through holes on the inner side wall of the air shower chamber and distributing the plurality of through holes in a vertical direction, the airflow into the air shower chamber can be increased, thereby improving the airflow effect on the clothes inside the air shower chamber.
[0012] The beneficial effects of this utility model are as follows: By setting the air shower body, two chambers are opened on the left and right sides of the air shower body. Hollow plates are slidably installed on the inner walls of the chambers. An air outlet pipe is installed in the chamber, which is fixed to the inner side wall of the hollow plate and communicates with the internal cavity of the hollow plate. A through hole is opened on the inner side wall of the air shower body, which communicates with the chamber and is coaxial with the air outlet pipe. Vertical grooves are opened at the top and bottom of the through hole, and the width of the vertical grooves is consistent with the horizontal width of the through hole. Two sliding grooves are opened on the side wall of the vertical groove facing the air outlet pipe, which extend towards the through hole and communicate with the through hole. The two sliding grooves are respectively located on the vertical side wall. On both the front and rear sides of the trough, sliding plates are installed inside the trough. A spring is fixed to the side wall of the trough away from the through hole at the end of the sliding plate. Rotating rollers are installed inside the through hole, rotatably connected to the inner side walls of the two sliding plates. The upper and lower rotating rollers abut against the side wall away from the vertical trough. Rubber pressure plates are also installed inside the vertical trough, fixed to the inner side wall of the sliding plates and slidably sealingly connected to the vertical trough. The upper and lower rubber pressure plates abut against the side wall away from the vertical trough. The air shower body is equipped with an air supply mechanism to supply air to the hollow cavity inside the hollow plate. The air shower body is also equipped with a drive mechanism to move the hollow plate left and right within the cavity. The device is in use... First, the clothes need to be placed into the air shower chamber. Then, the drive mechanism moves the hollow plate towards the through hole in the chamber, which in turn moves the air outlet pipe towards the through hole. This causes the end of the air outlet pipe away from the hollow plate to insert between the upper and lower rollers in the through hole, and simultaneously contact the upper and lower rollers. At this time, because the air outlet pipe is inserted between the upper and lower rollers, it pushes the rollers away from the air outlet pipe, and drives the slide plate to move away from the air outlet pipe in the slide groove. This compresses the spring, which in turn drives the rubber pressure plate fixed to the inner wall of the slide plate to move vertically. The trough moves away from the air outlet pipe, causing the upper and lower rubber pressure plates to no longer abut against the side wall away from the vertical trough, creating an opening. The air outlet pipe continues to extend into the air shower body through the opening under the push of the hollow plate. Then, the air supply mechanism is activated to supply air into the cavity inside the hollow plate, allowing the air to pass through the cavity inside the hollow plate and exit through the air outlet pipe into the air shower body. This blows the clothes inside the air shower. This allows staff to easily connect the air outlet pipe to the inside of the air shower body, making it convenient to blow the clothes inside the air shower body. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the structure of this utility model;
[0014] Figure 2 This is a perspective view of the structure of this utility model;
[0015] Figure 3 for Figure 2 Schematic diagram of part A in the middle;
[0016] Figure 4 for Figure 2 Side view of section A of the structure;
[0017] Figure 5 for Figure 4 Structural perspective view;
[0018] Figure 6 for Figure 5 Structural perspective view;
[0019] Figure 7 for Figure 2 Perspective view of section B;
[0020] As shown in the figure:
[0021] 1. Air shower body, 2. Rotating handle, 3. Threaded rod, 4. Groove, 5. Chamber, 6. Filter plate, 7. Blower, 8. Through hole, 9. Hollow plate, 10. Flexible connecting pipe, 11. Connecting column, 12. Slide plate, 13. Rubber pressure plate, 14. Air outlet pipe, 15. Vertical groove, 16. Slide groove, 17. Spring, 18. Threaded hole. Detailed Implementation
[0022] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to explain the solution.
[0023] like Figures 1-7 The stainless steel air shower of this utility model includes an air shower body 1. Two chambers 5 are formed on the left and right sides of the air shower body 1. A hollow plate 9 is slidably disposed on the inner wall of each chamber 5. An air outlet pipe 14 is disposed within each chamber 5, fixed to the inner wall of the hollow plate 9 and communicating with the internal cavity of the hollow plate 9. A through hole 8 is formed on the inner wall of the air shower body 1, communicating with the chambers 5 and coaxial with the air outlet pipe 14. Vertical grooves 15 are formed at the top and bottom of the through hole 8, and the width of the vertical grooves 15 is the same as that of the through hole 8. Two sliding grooves 16 are formed on the side wall of the vertical groove 15 facing the air outlet pipe 14, extending towards and communicating with the through hole 8. The two sliding grooves 16 are respectively located on the vertical... On the front and rear sides of the groove 15, a sliding plate 12 is provided in the sliding groove 16. A spring 17 is provided at the end of the sliding plate 12 away from the through hole 8 and is fixedly connected to the side wall of the sliding groove 16 away from the through hole 8. A rotating roller is provided in the through hole 8 and is rotatably connected to the inner side wall of the two sliding plates 12. The upper and lower rotating rollers abut against the side wall away from the vertical groove 15. A rubber pressure plate 13 is also provided in the vertical groove 15, which is fixedly connected to the inner side wall of the sliding plate 12 and is slidably sealed with the vertical groove 15. The upper and lower rubber pressure plates 13 abut against the side wall away from the vertical groove 15. An air supply mechanism is provided on the air shower body 1 to supply air to the cavity inside the hollow plate 9. A drive mechanism is provided on the air shower body 1 to move the hollow plate 9 left and right in the cavity 5.
[0024] The air supply mechanism includes a groove 4 on the top of the air shower body 1, a blower 7 installed in the groove 4, a filter plate 6 fixed to the inner wall of the groove 4 above the blower 7, and a flexible connecting pipe 10 provided at the air outlet of the blower 7. The flexible connecting pipe 10 extends into the chamber 5 and communicates with the internal cavity of the hollow plate 9. When the device is in use, by turning on the blower 7, the blower 7 introduces the air filtered by the filter plate 6 into the blower 7, and then delivers the air to the hollow plate 9 through the flexible connecting pipe 10, and then sprays it out through the air outlet pipe 14, thereby blowing the clothes in the air shower body 1. The driving mechanism includes a connecting column 11 disposed in the chamber 5 and fixedly connected to the outer wall of the hollow plate 9. A threaded hole 18 is opened on the side of the connecting column 11 away from the hollow plate 9. A threaded rod 3 is disposed in the threaded hole 18. The threaded rod 3 extends laterally in the direction away from the hollow plate 9 and passes through the air shower body 1. The threaded rod 3 is rotatably connected to the air shower body 1. When the device is in use, the threaded rod 3 is controlled to rotate on the air shower body 1 and in the threaded hole 18. At this time, because the hollow plate 9 and the inner wall of the chamber 5 are slidably disposed, and the connecting column 11 is fixedly connected to the outer wall of the hollow plate 9, the hollow plate 9 and the connecting column 11 will not rotate under the drive of the threaded rod 3. Instead, they move in the direction of the through hole 8 in the chamber 5 under the drive of the threaded rod 3, thereby driving the air outlet pipe 14 to move, so that the end of the air outlet pipe 14 away from the hollow plate 9 is inserted into the through hole 8 between the upper and lower rollers and simultaneously contacts the upper and lower rollers. A rotating handle 2 is coaxially fixed to one end of the threaded rod 3 away from the air shower body 1. The rotating handle 2 allows the operator to easily drive the threaded rod 3 to rotate within the threaded hole 18 on the air shower body 1. Several through holes 8 are provided on the inner wall of the air shower body 1, and these through holes 8 are distributed vertically. This increases the airflow into the air shower, improving the airflow effect on the clothes inside the air shower body 1.
[0025] Combined with appendix Figure 1-7As can be seen, the method of using this utility model is as follows: First, the clothes need to be placed into the air shower body 1. Then, the handle 2 is rotated by controlling the rotation, which drives the threaded rod 3 to rotate on the air shower body 1 and inside the threaded hole 18. At this time, because the hollow plate 9 and the inner wall of the chamber 5 are slidably arranged, and the connecting column 11 is fixed to the outer wall of the hollow plate 9, the hollow plate 9 and the connecting column 11 will not rotate under the drive of the threaded rod 3. Instead, they will move towards the through hole 8 in the chamber 5 under the drive of the threaded rod 3, thereby driving the air outlet pipe 14 to move towards the through hole 8 as well, thus causing the air outlet pipe to move. The end of the air outlet pipe 14 away from the hollow plate 9 is inserted into the through hole 8 between the upper and lower rollers, and simultaneously contacts the upper and lower rollers. At this time, because the air outlet pipe 14 is inserted between the upper and lower rollers, the air outlet pipe 14 will push the rollers to move away from the air outlet pipe 14, and drive the slide plate 12 to move away from the air outlet pipe 14 in the slide groove 16, thereby compressing the spring 17, thereby driving the rubber pressure plate 13 fixed to the inner side wall of the slide plate 12 to move away from the air outlet pipe 14 in the vertical groove 15, so that the side walls of the upper and lower rubber pressure plates 13 away from the vertical groove 15 no longer abut together, creating an opening. The air outlet pipe 14 continues to extend into the air shower body 1 through the opening under the push of the hollow plate 9. Then, by turning on the blower 7, the air filtered by the filter plate 6 is introduced into the blower 7, and then the air is delivered to the hollow plate 9 through the flexible connecting pipe 10, and then sprayed out through the air outlet pipe 14 into the air shower body 1 to blow air onto the clothes inside the air shower. After the air shower is finished blowing the clothes inside the air shower, the control handle 2 is rotated back to the initial position, which also drives the threaded rod 3 to rotate back to the initial position on the air shower body 1 and in the threaded hole 18. This causes the connecting column 11, hollow plate 9, and air outlet pipe 14 to return to their initial positions under the drive of the threaded rod 3. The end of the air outlet pipe 14 away from the hollow plate 9 is no longer inserted into the through hole 8 between the upper and lower rollers, nor is it in contact with the upper and lower rollers at the same time. At this time, the slide plate 12 loses the force in the direction away from the air outlet pipe 14, and the spring 17 will return to its natural extension state, thereby driving the slide plate 12 to move in the groove 16 toward the air outlet pipe 14, thereby causing the rollers, slide plate 12, and rubber pressure plate 13 to return to their initial positions, and the side walls of the upper and lower rubber pressure plates 13 away from the vertical groove 15 to abut together again.
[0026] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.
Claims
1. A stainless steel air shower, comprising an air shower body (1), two cavities (5) are formed on the left and right sides of the air shower body, and a hollow plate (9) is slidably arranged on the inner wall of the cavity, characterized in that: The chamber is provided with an air outlet pipe (14) fixed with the inner side wall of the hollow plate and communicated with the inner cavity of the hollow plate, a through hole (8) coaxial with the air outlet pipe and communicated with the chamber is formed in the inner side wall of the air shower room body, vertical grooves (15) are formed in the top and bottom of the through hole, the vertical grooves are consistent with the transverse width of the through hole, two sliding grooves (16) extending towards the through hole and penetrating the through hole are formed in the side wall of the vertical groove towards the air outlet pipe, the two sliding grooves are respectively located on the front and rear sides of the vertical groove, a sliding plate (12) is arranged in the sliding groove, a spring (17) is arranged at the end of the sliding plate away from the through hole and fixed with the side wall of the sliding groove away from the through hole, rotating rollers are arranged in the through hole and rotatably connected with the inner side walls of the two sliding plates, the upper and lower rotating rollers abut against the side walls of the vertical groove away from the vertical groove, rubber pressing plates (13) are arranged in the vertical groove and fixed with the outer side walls of the sliding plates and sealingly slide with the vertical groove, the upper and lower rubber pressing plates abut against the side walls of the vertical groove away from the vertical groove, a air supply mechanism for supplying air to the inner cavity of the hollow plate is arranged on the air shower room body, and a driving mechanism for moving the hollow plate left and right in the chamber is arranged on the air shower room body.
2. The stainless steel vestibule according to claim 1, wherein: The air supply mechanism comprises a groove (4) formed in the top of the air shower room body, a blower (7) is arranged in the groove, a filter plate (6) is fixed on the inner side wall of the groove and located above the blower, a flexible connecting pipe (10) is arranged at the air outlet end of the blower, the flexible connecting pipe extends into the chamber and is communicated with the inner cavity of the hollow plate.
3. The stainless steel vestibule according to claim 1, wherein: The driving mechanism comprises a connecting column (11) arranged in the chamber and fixed with the outer side wall of the hollow plate, a threaded hole (18) is formed in the side of the connecting column away from the hollow plate, a threaded rod (3) is arranged in the threaded hole, the threaded rod extends transversely towards the direction away from the hollow plate and penetrates the air shower room body, and the threaded rod is rotatably connected with the air shower room body.
4. The stainless steel vestibule according to claim 3, wherein: A rotating handle (2) is coaxially fixed at the end of the threaded rod away from the air shower room body.
5. The stainless steel vestibule according to claim 4, wherein: A plurality of through holes are arranged on the inner side wall of the air shower room body, and the through holes are distributed in the vertical direction.