Long-length ultrasonic isolation sound-transparent film drying device

CN224787594UActive Publication Date: 2026-09-22JINJIANG LICHANG RUBBER PRODUCTS CO LTD
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Patent Information

Application Number
CN202522170175.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-22
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

[0003]现有技术中将长款超声隔离透声膜大多是都是直接将长款超声隔离透声膜放入到烘干机内部,但是这种烘干长款超声隔离透声膜的方式由于无法让长款超声隔离透声膜处于打开的状态,使得烘干机需要较长时间才能完全将长款超声隔离透声膜上的水分进行烘干,因此降低了烘干长款超声隔离透声膜的效率,不便于使用者使用

Benefits of technology

本实用新型通过旋转的方式进行旋转烘干,主要针对长款的透声膜,通过旋转组件对长款超声隔离透声膜进行固定,然后旋转的方式进行烘干将内部水汽烘干脱出,长款超声隔离透声膜开口处有橡胶圈,通过延展组件让橡胶圈保持打开状态,方便导入热气及脱出水汽,提升了长款超声隔离透声膜烘干装置使用的实用性。

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Abstract

The utility model discloses a long ultrasonic isolation sound transmission film drying device, including support subassembly, the inside center position of support subassembly is installed with drive component, and the top fixed mounting of support subassembly has the drying component, and the front end swing of drying component is provided with the safety door, and drive component includes motor, and the output fixed connection of motor has the pivot, and the one end of pivot away from motor detachably installs the rotating component, and rotating component includes the top head and the shaft body for the sleeveing ultrasonic isolation sound transmission film, and the lower end fixed connection of shaft body has the extension component for the ultrasonic isolation sound transmission film bottom props open. The utility model discloses through the mode of rotation and rotates and dries, mainly for long sound transmission film, through rotating component and fix long ultrasonic isolation sound transmission film, then the mode of rotation and dries and dries out the internal water vapor, and long ultrasonic isolation sound transmission film opening has the rubber ring, and through extension component and let the rubber ring keep open state, and the hot gas of convenient import and the water vapor of exit.
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Description

Technical Field

[0001] This utility model relates to the field of acoustic membrane drying technology, specifically a long ultrasonic isolation acoustic membrane drying device. Background Technology

[0002] The long ultrasonic isolation sound-permeable membrane is a sterile, highly sound-permeable medical protective cover. It acts like a "raincoat" for an expensive TEE probe, ensuring clear ultrasound penetration and perfect imaging while completely isolating patients from the risk of cross-infection. Since ultrasound travels much faster in water than in human tissue, any tiny water droplets or mist on the inner or outer walls of the membrane can interfere with the ultrasound. Therefore, the long ultrasonic isolation sound-permeable membrane needs to be dried before use.

[0003] In existing technologies, long ultrasonic isolation sound-permeable membranes are mostly placed directly into the dryer. However, this method of drying long ultrasonic isolation sound-permeable membranes does not allow the membranes to be in an open state, so the dryer needs a long time to completely dry the moisture on the membranes. This reduces the efficiency of drying long ultrasonic isolation sound-permeable membranes and is inconvenient for users. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a long ultrasonic isolation sound-permeable membrane drying device, which solves the above-mentioned technical problems.

[0005] To achieve the above objectives, this utility model provides a long ultrasonic isolation sound-permeable membrane drying device, comprising a support assembly, a drive assembly installed at the center of the support assembly, a drying assembly fixedly installed on the top of the support assembly, a safety door swinging at the front end of the drying assembly, a drive assembly including a motor, a rotating shaft fixedly connected to the output end of the motor, and a rotating assembly detachably installed at the end of the rotating shaft away from the motor. The rotating assembly includes a top for fitting the ultrasonic isolation sound-permeable membrane and a shaft, an extension assembly fixedly connected to the lower end of the shaft for expanding the bottom of the ultrasonic isolation sound-permeable membrane, and the drying assembly for drying the ultrasonic isolation sound-permeable membrane on the rotating assembly. The drying assembly improves the drying efficiency of the long ultrasonic isolation sound-permeable membrane drying device.

[0006] Furthermore, the rotating assembly also includes a chassis mounted on the rotating shaft, the extension assembly is fixedly mounted on the chassis, the extension assembly includes a central block, the central block has cylindrical grooves around its perimeter, a spring column is fixedly installed in the central block within the cylindrical grooves, a support plate is fixedly installed at the front end of the spring column, and the support plate is used to insert into the bottom of the ultrasonic isolation sound-permeable membrane.

[0007] Furthermore, the drying assembly includes a housing with a bottom groove for the shaft to pass through. A controller is located at the rear of the housing, and a fan is located at the front of the controller. The fan at the front of the controller allows the hot air blown out by the fan to directly act on the long ultrasonic insulating sound-permeable membrane, improving the practicality of the long ultrasonic insulating sound-permeable membrane drying device.

[0008] Furthermore, the controller includes a microcontroller control board, a heater, and a motor, with the heater used to heat the interior of the housing.

[0009] Furthermore, the cross-section of the spring column and the support plate connected as a whole is L-shaped.

[0010] Furthermore, the support assembly includes a housing with an inner cavity inside, and the motor is fixedly installed in the inner cavity.

[0011] Furthermore, a sealing gasket is provided on the rotating shaft, and the rotating shaft is sealed to the outer casing through the sealing gasket. The sealing connection between the rotating shaft and the outer casing through the sealing gasket improves the sealing performance of the internal structure of the long ultrasonic isolation sound-permeable membrane drying device.

[0012] Compared with the prior art, the present invention has the following beneficial effects: This invention utilizes a rotary drying method, primarily targeting long ultrasonic insulating membranes. A rotating assembly secures the long ultrasonic insulating membrane, which is then dried by rotation to remove internal moisture. The long ultrasonic insulating membrane has a rubber ring at its opening, which is kept open by an extension assembly, facilitating the introduction of hot air and the removal of moisture, thus enhancing the practicality of the drying device for long ultrasonic insulating membranes. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of a long ultrasonic isolation sound-permeable membrane drying device according to the present invention; Figure 2 This is a three-dimensional structural diagram of the support component of this utility model; Figure 3 This is a frontal three-dimensional structural diagram of the support component of this utility model; Figure 4 This is a three-dimensional structural diagram of the rotating component of this utility model; Figure 5 This is a partially enlarged three-dimensional structural diagram of A of this utility model; Figure 6 This is a three-dimensional structural diagram of the drying component of this utility model.

[0014] In the diagram: Support assembly 1, Drive assembly 2, Safety door 3, Drying assembly 4, Outer shell 11, Inner cavity 12, Motor 21, Rotating assembly 22, Rotating shaft 23, Sealing gasket 24, Chassis 221, Shaft 222, Top head 223, Extension assembly 224, Middle block 2241, Support plate 2242, Spring column 2243, Cylindrical groove 2244, Controller 41, Fan 42, Housing 43, Bottom groove 44. Detailed Implementation

[0015] The technical solution of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without creative effort are within the protection scope of this utility model.

[0016] Example The following is in conjunction with the appendix Figure 1 -Appendix Figure 6This application provides a further detailed description. A long ultrasonic isolation sound-permeable membrane drying device includes a support assembly 1, a drive assembly 2 installed at the center of the support assembly 1, a drying assembly 4 fixedly installed on the top of the support assembly 1, and a safety door 3 swinging at the front end of the drying assembly 4. The drive assembly 2 includes a motor 21, with a rotating shaft 23 fixedly connected to the output end of the motor 21. A rotating assembly 22 is detachably installed at the end of the rotating shaft 23 away from the motor 21. The rotating assembly 22 includes a top head 223 for fitting the ultrasonic isolation sound-permeable membrane and a shaft 222. An extension assembly 224 for expanding the bottom of the ultrasonic isolation sound-permeable membrane is fixedly connected to the lower end of the shaft 222. The drying assembly 4 is used to dry the ultrasonic isolation sound-permeable membrane on the rotating assembly 22. The rotating assembly 22 also includes a base 221 mounted on the rotating shaft 23. The extension assembly 224 is fixedly mounted on the base 221 and includes a middle block 2241. Cylindrical grooves 2244 are provided around the perimeter. A spring column 2243 is fixedly installed in the cylindrical groove 2244 of the central block 2241. A support plate 2242 is fixedly installed at the front end of the spring column 2243. The support plate 2242 is used to insert into the bottom of the ultrasonic isolation sound-permeable membrane. The drying component 4 includes a housing 43. A bottom groove 44 for the rotating shaft 23 to penetrate is provided at the bottom of the housing 43. A controller 41 is provided at the rear of the housing 43. A fan 42 is provided at the front end of the controller 41. The controller 41 includes a single-chip microcomputer control board, a heater, and a motor. The heater is used to heat the inside of the housing 43. The cross-section of the spring column 2243 and the support plate 2242 is L-shaped. The support component 1 includes a shell 11. An inner cavity 12 is provided inside the shell 11. The motor 21 is fixedly installed in the inner cavity 12. A sealing gasket 24 is provided on the rotating shaft 23. The rotating shaft 23 is sealed to the shell 11 through the sealing gasket 24.

[0017] The microcontroller control board, heater, and motor included in the controller 41 are all existing technologies. The working principle of the microcontroller control board can be divided into four basic steps: input, processing, output, and feedback. First, the microcontroller control board receives input signals from external devices or users, such as button presses or information detected by sensors. Next, the microcontroller control board processes the input signals, performs calculations and judgments according to the set algorithms and logic, and then generates corresponding output signals based on the processing results to control the working status and display information of external devices. The heater is a device that converts electrical energy into heat energy. Together with the rotating fan 42, it can quickly transfer heat to the long ultrasonic isolation sound-permeable membrane, improving the quality and efficiency of the long ultrasonic isolation sound-permeable membrane drying device.

[0018] When installing the long ultrasonic isolation sound-permeable membrane, the user first unfolds the membrane, then places it over the top 223 from top to bottom, and pushes each support plate 2242 inward beforehand. Finally, the rubber ring at the bottom of the membrane is placed on each support plate 2242, so that the bottom of the membrane is open after installation, facilitating subsequent drying.

[0019] Since the rotating shaft 23 is sealed to the outer shell 11 through the sealing gasket 24, when the inner shell 11 is heated, the heat will not be directly transferred to the inner cavity 12 and affect the motor 21, thus improving the practicality of the long ultrasonic isolation sound-permeable membrane drying device.

[0020] The working principle of this utility model is explained below: Unless otherwise specified, all internal mechanical structures of the long ultrasonic isolation sound-permeable membrane drying device are fixed by threads. To allow for a more intuitive observation of the technical features, the bolt connections are appropriately concealed in the figure. When using the long ultrasonic isolation sound-permeable membrane drying device, the user places the long ultrasonic isolation sound-permeable membrane to be dried onto the shaft 222 along the top head 223, and allows the rubber ring at the bottom of the long ultrasonic isolation sound-permeable membrane to be fitted onto the four support plates 2242. At this time, the spring column extends outwards... 2243 allows the long ultrasonic isolation sound-permeable membrane to be unfolded from the bottom. Then, the user can start the motor 21, heater, and fan 42 respectively through the controller 41, so that the long ultrasonic isolation sound-permeable membrane unfolded at the bottom can be rotated and dried. Through the cooperation of the above structure, the rubber ring at the bottom of the long ultrasonic isolation sound-permeable membrane can be kept open at all times during use, which facilitates the introduction of hot air and the removal of moisture, and allows it to be rotated and dried, thus improving the practicality of the long ultrasonic isolation sound-permeable membrane drying device.

[0021] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

Claims

1. A long ultrasonic insulating sound-permeable membrane drying device, characterized in that, The device includes a support assembly (1), a drive assembly (2) is installed at the center of the support assembly (1), a drying assembly (4) is fixedly installed on the top of the support assembly (1), a safety door (3) is provided at the front end of the drying assembly (4), the drive assembly (2) includes a motor (21), a rotating shaft (23) is fixedly connected to the output end of the motor (21), a rotating assembly (22) is detachably installed at the end of the rotating shaft (23) away from the motor (21), the rotating assembly (22) includes a top head (223) for fitting the ultrasonic isolation sound-permeable membrane and a shaft (222), an extension assembly (224) for opening the bottom of the ultrasonic isolation sound-permeable membrane is fixedly connected to the lower end of the shaft (222), and the drying assembly (4) is used to dry the ultrasonic isolation sound-permeable membrane on the rotating assembly (22).

2. The long ultrasonic isolation sound-permeable membrane drying device according to claim 1, characterized in that: The rotating assembly (22) also includes a chassis (221) mounted on a rotating shaft (23). The extension assembly (224) is fixedly mounted on the chassis (221). The extension assembly (224) includes a middle block (2241). The middle block (2241) has cylindrical grooves (2244) around its perimeter. A spring column (2243) is fixedly installed in the cylindrical groove (2244) of the middle block (2241). A support plate (2242) is fixedly installed at the front end of the spring column (2243). The support plate (2242) is used to insert into the bottom of the ultrasonic isolation sound-permeable membrane.

3. The long ultrasonic isolation sound-permeable membrane drying device according to claim 1, characterized in that: The drying assembly (4) includes a housing (43), the bottom of which has a bottom groove (44) for the shaft (23) to pass through, a controller (41) is provided at the rear of the housing (43), and a fan (42) is provided at the front of the controller (41).

4. The long ultrasonic isolation sound-permeable membrane drying device according to claim 3, characterized in that: The controller (41) includes a microcontroller control board, a heater and a motor. The heater is used to heat the inside of the housing (43).

5. The long ultrasonic isolation sound-permeable membrane drying device according to claim 2, characterized in that: The cross-section of the spring column (2243) and the support plate (2242) connected as a whole is L-shaped.

6. The long ultrasonic isolation sound-permeable membrane drying device according to claim 1, characterized in that: The support assembly (1) includes a housing (11), and an inner cavity (12) is provided inside the housing (11). The motor (21) is fixedly installed in the inner cavity (12).

7. A long ultrasonic isolation sound-permeable membrane drying device according to claim 6, characterized in that: A sealing gasket (24) is provided on the rotating shaft (23), and the rotating shaft (23) is sealed to the outer shell (11) through the sealing gasket (24).