Cleaning and pre-drying device for non-latex anesthesia air storage bag
By designing a non-latex anesthesia gas storage bladder cleaning and pre-drying device with an external spray pipe assembly and an internal spray and hot air shared pipe assembly, the problems of incomplete cleaning and long drying time in traditional methods have been solved, achieving efficient cleaning and preliminary drying effects and shortening the drying time.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional cleaning and drying methods are insufficient to thoroughly clean the inside of non-latex anesthesia gas reservoirs, and the drying time is long, making it difficult to meet the needs of high-efficiency production.
A cleaning and pre-drying device for non-latex anesthesia gas storage bags is designed. It adopts an external spray pipe assembly and an internal spray and hot air shared pipe assembly to clean and pre-dry the outside and inside of the gas storage bag respectively. Hot air is used to quickly evaporate the moisture and shorten the drying time.
It enables comprehensive cleaning and rapid drying of non-latex anesthesia reservoirs, shortening drying time from over 8 hours to about 2 hours and improving production efficiency.
Smart Images

Figure CN224072950U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cleaning and drying technology for non-latex anesthesia reservoirs, specifically to a cleaning and pre-drying device for non-latex anesthesia reservoirs. Background Technology
[0002] Non-latex anesthesia reservoirs are an important component of ventilator equipment, used for the storage and delivery of gas during anesthesia. Their production involves cleaning and drying. The traditional method for cleaning and drying non-latex anesthesia reservoirs is as follows: The reservoirs are placed in a drum washer filled with sufficient water for cleaning. After cleaning, the reservoirs are removed, placed on a drying rack, and then the rack is pushed into a dryer to dry them.
[0003] However, the aforementioned traditional methods for cleaning and drying non-latex anesthesia reservoirs have the following problems:
[0004] 1. It is difficult to clean the inside of non-latex anesthesia reservoirs thoroughly in a drum cleaning machine. The coagulant inside the reservoir is likely to remain inside, resulting in incomplete cleaning.
[0005] 2. The moisture inside the non-latex anesthesia reservoir on the drying rack is difficult to dry and requires a very long time, usually more than 8 hours.
[0006] Therefore, in order to more comprehensively clean and more efficiently dry non-latex anesthesia reservoirs, the inventors have developed a non-latex anesthesia reservoir cleaning and pre-drying device. Utility Model Content
[0007] The purpose of this invention is to provide a cleaning and pre-drying device for non-latex anesthesia reservoirs, which can perform more comprehensive cleaning of non-latex anesthesia reservoirs and perform preliminary drying of the cleaned non-latex anesthesia reservoirs, thereby improving the subsequent drying efficiency of the non-latex anesthesia reservoirs.
[0008] The objective of this utility model is achieved through the following technical solution:
[0009] A cleaning and pre-drying device for non-latex anesthesia reservoirs, characterized in that it includes a frame, a first conveyor, a first lifting power source, an external spray pipe assembly, a second lifting power source, and an internal spray and hot air shared pipe assembly. The first conveyor is located in the middle of the frame, and the non-latex anesthesia reservoir is fixed on the first conveyor for cleaning and preliminary drying. The external spray pipe assembly is located above the first conveyor and is driven to move up and down by the first lifting power source. The external spray pipe assembly has a first water inlet and can clean the exterior of the non-latex anesthesia reservoir. The internal spray and hot air shared pipe assembly is located below the first conveyor and is driven to move up and down by the second lifting power source. The internal spray and hot air shared pipe assembly has a second water inlet and an air inlet and can extend into the interior of the non-latex anesthesia reservoir for cleaning. After cleaning, hot air is introduced through the air inlet for preliminary drying.
[0010] A further technical solution of this utility model is as follows: the external spray pipe assembly is provided with at least one ring of external spray pipes corresponding to each non-latex anesthesia reservoir, and the external spray pipes are respectively provided with spray holes facing inward.
[0011] A further technical solution of this utility model is as follows: the external spray pipe assembly includes a transverse external spray pipe located on the front and rear sides and a plurality of longitudinal external spray pipes connected side by side between the transverse external spray pipes. The transverse external spray pipes and the longitudinal external spray pipes are interconnected, and a plurality of cavities are formed between the transverse external spray pipes and the longitudinal external spray pipes. During cleaning, the non-latex anesthesia storage bladder will be located in the corresponding cavity.
[0012] A further technical solution of this utility model is as follows: the cleaning and pre-drying device is also provided with a support frame, the support frame is connected to the first lifting power, and multiple vertically downward extending rods are provided below the support frame, with the external spray pipe assembly fixedly connected to the lower end of the rods.
[0013] A further technical solution of this utility model is as follows: the first lifting power includes a first cylinder, which is installed vertically downward on the top of the frame, and the support frame is located above the first conveyor, with the middle part of the support frame fixedly connected to the piston rod of the first cylinder.
[0014] A further technical solution of this utility model is: a first guide rod extending vertically upward is provided on the top of the support frame, and the first guide rod slides through the guide hole at the top of the frame.
[0015] A further technical solution of this utility model is as follows: the internal spray and hot air shared pipe assembly includes a horizontal main pipe and multiple straight pipes connected to the main pipe and extending vertically upwards. The second water inlet and air inlet are located in the middle of the main pipe, and a rotating nozzle is provided at the upper end of the straight pipe.
[0016] A further technical solution of this utility model is as follows: The first conveyor is provided with a conveyor belt, and the conveyor belt is provided with multiple connectors that can be connected to the head of the latex anesthesia reservoir. The middle of the connector is provided with a through hole that passes through the connector and the conveyor belt. When the latex anesthesia reservoir is placed on the first conveyor for cleaning and preliminary drying, the connectors on the upper and lower sides of the conveyor belt are aligned one by one, so that the straight tube can be inserted into the latex anesthesia reservoir through the through holes of the upper and lower connectors.
[0017] A further technical solution of this utility model is as follows: the second lifting power includes a second cylinder, which is installed vertically upward at the bottom of the frame, and the middle part of the internal spray and hot air common pipe assembly is fixedly connected to the upper end of the piston rod of the second cylinder.
[0018] A further technical solution of this utility model is as follows: a second guide rod extending vertically downward is provided below the shared pipe assembly for internal spraying and hot air, and the second guide rod slides through the guide hole at the bottom of the frame.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] 1. This utility model not only sprays and cleans the exterior of the non-latex anesthesia reservoir through the external spray pipe assembly, but also extends into the interior of the non-latex anesthesia reservoir through the internal spray and hot air shared pipe assembly, making the cleaning more comprehensive and thorough, and less likely to leave foreign objects inside.
[0021] 2. After cleaning, this invention first uses an internal spray and hot air sharing pipe assembly to introduce hot air into the non-latex anesthesia reservoir for preliminary drying. The hot air can quickly remove the moisture inside the non-latex anesthesia reservoir, and during the hot air introduction process, the overall temperature of the non-latex anesthesia reservoir will rise, and the moisture on the outside of the non-latex anesthesia reservoir will also be evaporated. It can be seen that this invention can perform preliminary drying of the non-latex anesthesia reservoir, evaporating most of the moisture on the non-latex anesthesia reservoir, especially the moisture inside the non-latex anesthesia reservoir that is difficult to evaporate. This allows the non-latex anesthesia reservoir to be thoroughly dried in a short time, thereby improving the drying efficiency of the non-latex anesthesia reservoir. In actual use, the drying time can be shortened to about 2 hours. Attached Figure Description
[0022] Figure 1 This is a perspective view of the cleaning and pre-drying device according to an embodiment of the present invention;
[0023] Figure 2 This is a three-dimensional schematic diagram of the cleaning and pre-drying device of this utility model embodiment with a hidden side sealing plate and a non-latex anesthesia storage bag fixed on the first conveyor.
[0024] Figure 3This is a perspective view of the cleaning and pre-drying device of this utility model when one side sealing plate is hidden;
[0025] Figure 4 This is a perspective view of the external spray pipe assembly according to an embodiment of the present utility model;
[0026] Figure 5 This is a three-dimensional schematic diagram of the internal spray and hot air shared pipe assembly according to an embodiment of the present utility model;
[0027] Figure 6 This is a cross-sectional schematic diagram of the first conveyor according to an embodiment of the present utility model;
[0028] Figure 7 This is a schematic diagram of the structure of the internal spray and hot air shared pipe assembly of this utility model when it passes through the first conveyor.
[0029] Figure 8 This is a schematic diagram of the structure of the cleaning and pre-drying device of this utility model when used in conjunction with a drying oven;
[0030] Figure 9 This is a three-dimensional schematic diagram of a drying oven with a hidden side panel and a non-latex anesthesia gas storage bag suspended on a second conveyor.
[0031] Figure 10 This is a three-dimensional schematic diagram of the drying oven when one side panel is hidden.
[0032] Meaning of the labels in the attached diagram:
[0033] 1-Frame; 2-First conveyor; 2.1-Conveyor belt; 3-Connector; 3.1-Tubular connection; 3.2-Perforation; 4-Sealing plate; 5-Second lifting power; 6-First lifting power; 7-Non-latex anesthesia gas reservoir; 7.1-Outer convex ring; 8-Outer spray pipe assembly; 8.1-Transverse outer spray pipe; 8.2-Longitudinal outer spray pipe; 8.3-Cavity; 8.4-Spray hole; 8.5-First water inlet; 9 - Support frame; 9.1- First guide rod; 9.2- Hanging rod; 10- Common pipe assembly for internal spraying and hot air; 10.1- Second guide rod; 10.2- Main pipe; 10.3- Straight pipe; 10.4- Rotary nozzle; 10.5- Second water inlet; 10.6- Air inlet; 11- Drying oven; 12- Fan; 13- Second conveyor; 14- Robotic arm; 15- Hook; 15.1- Bayonet; 16- Heating element. Detailed Implementation
[0034] The present invention will be further described below with reference to embodiments.
[0035] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0036] In the description of this utility model, "several" means one or more, "multiple" means two or more, "greater than," "less than," and "exceeding" are understood to exclude the stated number, while "above," "below," and "within" are understood to include the stated number. If "first" or "second" is used in the description, it is only for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the number of indicated technical features, or implicitly indicating the order of the indicated technical features.
[0037] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution. Example
[0038] like Figures 1 to 7 The non-latex anesthesia reservoir cleaning and pre-drying device shown in this embodiment includes a frame 1, a first conveyor 2, a first lifting power 6, a support frame 9, an external spray pipe assembly 8, a second lifting power 5, and an internal spray and hot air shared pipe assembly 10.
[0039] The frame 1 has a sealing plate 4 on its side. The first conveyor 2 passes laterally through the middle of the frame 1. The first conveyor 2 is a belt conveyor with a conveyor belt 2.1, and the conveyor belt is driven to rotate by a conventional motor and rollers to achieve transportation. Figure 6 As shown, multiple connectors 3 are provided on the conveyor belt 2.1. Each connector 3 has a protruding tubular connection 3.1, and the head of the latex anesthesia reservoir 7 can be tightly fitted onto the tubular connection 3.1 of the connector 3. A perforation 3.2 is provided in the middle of the connector 3.2, which not only penetrates the connector 3 itself but also penetrates the conveyor belt 2.1. The connectors 3 appear in pairs. During operation, the latex anesthesia reservoir 7 is connected to the connector 3 on the upper side of the conveyor belt 2.1. When the latex anesthesia reservoir 7 stops on the first conveyor 2 for cleaning and preliminary drying, the connectors 3 on the upper and lower sides of the conveyor belt 2.1 are aligned one to one. This allows the lower internal spray and hot air common pipe assembly 10 to extend into the non-latex anesthesia reservoir 7 through the perforations 3.2 of the upper and lower connectors 3.
[0040] In this embodiment, the first lifting power 6 includes a first cylinder, which is vertically mounted downwards on the top of the frame 1. A support frame 9 is located between the first conveyor 2 and the top of the frame 1. The middle part of the support frame 9 is fixedly connected to the piston rod of the first cylinder. The first lifting power 6 drives the support frame 9 to move up and down. Two first guide rods 9.1 are also provided on the top of the support frame 9. The first guide rods 9.1 slide through guide holes at the top of the frame 1, and the first guide rods 9.1 make the lifting movement of the external spray pipe assembly 8 more stable. Figure 4 As shown, the support frame 9 has multiple vertically downward extending suspension rods 9.2. The external spray pipe assembly 8 is fixedly connected to the lower end of the suspension rods 9.2. In this embodiment, the external spray pipe assembly 8 includes transverse external spray pipes 8.1 located on the front and rear sides and multiple longitudinal external spray pipes 8.2 connected side by side between the transverse external spray pipes 8.1. The transverse external spray pipes 8.1 and the longitudinal external spray pipes 8.2 are interconnected, forming multiple cavities 8.3 between the transverse external spray pipes 8.1 and the longitudinal external spray pipes 8.2. During cleaning, the non-latex anesthesia reservoir 7 will be positioned in the corresponding cavities 8.3, so that each non-latex anesthesia reservoir 7 has a ring of external spray pipes around its perimeter, which can comprehensively clean the exterior of the non-latex anesthesia reservoir 7. The external spray pipes are respectively provided with spray holes 8.4 facing inward. During cleaning, the spray holes 8.4 will spray cleaning water onto the non-latex anesthesia reservoir 7. A first water inlet 8.5 is provided in the middle of the external spray pipe assembly 8, which is used to connect to an external water source.
[0041] The second lifting power 5 in this embodiment includes a second cylinder, which is vertically mounted at the bottom of the frame 1. The internal spray and hot air shared pipe assembly 10 is located between the first conveyor 2 and the bottom of the frame 1. The middle part of the internal spray and hot air shared pipe assembly 10 is fixedly connected to the upper end of the piston rod of the second cylinder. The internal spray and hot air shared pipe assembly 10 is driven to move up and down by the second cylinder. Two second guide rods 10.1 are also provided below the internal spray and hot air shared pipe assembly 10. The second guide rods 10.1 slide through the guide holes at the bottom of the frame 1, which makes the lifting movement of the internal spray and hot air shared pipe assembly 10 more stable.
[0042] like Figure 5As shown, the internal spray and hot air shared pipe assembly 10 includes a horizontal main pipe 10.2 and multiple straight pipes 10.3 connected to the main pipe 10.2 and extending vertically upwards. The main pipe 10.2 has a second water inlet 10.5 and an air inlet 10.6 in its middle. The second water inlet 10.5 is used to connect to an external water source, and the air inlet 10.6 is used to connect to an external hot air blower. A rotating nozzle 10.4 is located at the upper end of the straight pipes 10.3. The rotating nozzle 10.4 is an existing product and can be purchased directly from the market. It rotates continuously when water or air flows through it, powered by the reverse force of the water or air flow. When cleaning and initially drying the non-latex anesthesia reservoir 7, the straight pipes 10.3 pass through the perforations 3.2 of the connectors 3 on both sides of the conveyor belt 2.1 from bottom to top and extend into the non-latex anesthesia reservoir 7.
[0043] The process of using the non-latex anesthesia reservoir cleaning and pre-drying device in this embodiment is as follows:
[0044] The non-latex anesthesia reservoir 7, which needs to be cleaned, is fixed to the connector 3 on the conveyor belt 2.1 by a worker or another robotic arm. When the cleaning and pre-drying device cleans and pre-dries the non-latex anesthesia reservoir 7, the non-latex anesthesia reservoir 7 on the conveyor belt 2.1 will remain in the cleaning and pre-drying device and be located on top of the conveyor belt 2.1. Driven by the second lifting power 5, the straight pipe 10.3 will pass through the perforations 3.2 of the connectors 3 on both sides of the conveyor belt 2.1 from bottom to top and extend into the non-latex anesthesia reservoir 7. The external water source continuously supplies water to the second water inlet 10.5. The water entering from the second water inlet 10.5 will be sprayed out from the rotating nozzle 10.4 and sprayed into the interior of the non-latex anesthesia reservoir 7. During this process, the second lifting power 5 drives the internal spray and hot air common pipe assembly 10 to move up and down to thoroughly clean the interior of the non-latex anesthesia reservoir 7.
[0045] At the same time, the first lifting power 6 drives the external spray pipe assembly 8 to descend to the position of the non-latex anesthesia reservoir 7. The external water source continuously supplies water to the first water inlet 8.5. The water entering from the first water inlet 8.5 will be sprayed out from the spray hole 8.4 and sprayed to the outside of the non-latex anesthesia reservoir 7. During this process, the first lifting power 6 drives the external spray pipe assembly 8 to move up and down to thoroughly clean the outside of the non-latex anesthesia reservoir 7.
[0046] After cleaning, water intake at the first water inlet 8.5 and the second water inlet 10.5 is stopped. Then, hot air is introduced through the air inlet 10.6. The hot air 1 is blown into the interior of the non-latex anesthesia reservoir 7 from the rotating nozzle 10.4. The moisture inside the non-latex anesthesia reservoir 7 is quickly carried out by the hot air flow, allowing the interior of the non-latex anesthesia reservoir 7 to be dried quickly. During this process, the overall temperature of the non-latex anesthesia reservoir 7 will rise, and the moisture on the outside of the non-latex anesthesia reservoir 7 will also evaporate, thus initially drying the exterior of the non-latex anesthesia reservoir 7. After the initial drying is completed, the first lifting power 6 drives the outer spray pipe assembly 8 to rise to the initial position, and the second lifting power 5 drives the inner spray and hot air shared pipe assembly 10 to fall to the initial position. The straight pipe 10.3 is then pulled downwards and retracted below the first conveyor 2.
[0047] During operation, the non-latex anesthesia reservoir cleaning and pre-drying device will also be used in conjunction with the drying oven 11, such as... Figure 8 As shown, the non-latex anesthesia reservoir, after being cleaned and pre-dried by the cleaning and pre-drying device, will be transferred to the drying oven 11 by the robotic arm 14 to complete the thorough drying.
[0048] The drying oven can adopt the following structure:
[0049] like Figures 8 to 10 As shown, the drying oven 11 is generally rectangular in shape, with side plates on both sides, forming an inner cavity that is also rectangular. The end of the drying oven 11 closest to the cleaning and pre-drying device is the inlet, and the other end is the outlet. The drying oven 11 is equipped with a second conveyor 13, a heating device, and a hot air circulation device. The second conveyor 13 is a conventional circulating conveyor line, located near the top of the drying oven 11. The second conveyor 13 has multiple circulating hooks 15, each with a latch 15.1. The head of the non-latex anesthesia reservoir 7 can be inserted into the latch 15.1, and the protruding ring 7.1 on the head of the non-latex anesthesia reservoir 7 will be positioned above the latch 15.1, allowing the non-latex anesthesia reservoir 7 to hang on the hook 15. During drying, the non-latex anesthesia reservoir 7 is suspended one by one and transported into the drying oven 11 by the second conveyor 13. The two ends of the second conveyor 13 protrude from the two ends of the drying oven 11, which makes it easy for the robotic arm 14 to hang the non-latex anesthesia reservoir 7 on the hook 15 and remove the non-latex anesthesia reservoir 7 from the hook 15.
[0050] The heating device is used to heat the interior of the drying oven 11, and includes multiple heating tubes 16 arranged side by side on the inner sidewall of the drying oven 11. The hot air circulation device is used to drive the airflow inside the drying oven 11, and includes multiple fans 12 located at the top of the drying oven, which blow air into the drying oven 11.
[0051] After cleaning and preliminary drying in the cleaning and pre-drying device, the head of the non-latex anesthesia reservoir 7 at the output end of the cleaning and pre-drying device is clamped by the robotic arm 14. The non-latex anesthesia reservoir 7 is pulled out from the connector 3 and rotated 180° so that the head of the non-latex anesthesia reservoir 7 faces upward. Then it is hooked onto the hook 15 of the second conveyor 13. Each time a non-latex anesthesia reservoir 7 is hooked, the second conveyor 13 will run once, so that the empty hook 15 moves to the input port of the drying oven 11. Through the above process, the non-latex anesthesia reservoirs 7 in the cleaning and pre-drying device will be suspended one by one on the second conveyor 13 of the drying oven 11 and transported into the drying oven 11. After the set drying time in the drying oven 11, the non-latex anesthesia reservoirs 7 suspended on the second conveyor 13 will be thoroughly dried and then transported one by one to the output port of the drying oven 11, where they are transferred to the next process by the robotic arm 14.
[0052] The above embodiments of this utility model are not intended to limit the scope of protection of this utility model. The implementation of this utility model is not limited thereto. All other modifications, substitutions or alterations made to the above structure of this utility model based on the above content of this utility model and in accordance with the common technical knowledge and conventional means in the field, without departing from the basic technical idea of this utility model, shall fall within the scope of protection of this utility model.
Claims
1. A non-latex anesthetic reservoir bag cleaning and pre-drying device, characterized by: The device comprises a frame, a first conveyor, a first lifting power, an outer spray pipe assembly, a second lifting power and an inner spray and hot air shared pipe assembly. The first conveyor is arranged in the middle of the frame. Non-latex anesthetic gas storage bags are fixed on the first conveyor for cleaning and preliminary drying. The outer spray pipe assembly is arranged above the first conveyor. The outer spray pipe assembly is driven by the first lifting power to move up and down. The outer spray pipe assembly is provided with a first water inlet. The outer spray pipe assembly can clean the outside of the non-latex anesthetic gas storage bags. The inner spray and hot air shared pipe assembly is arranged below the first conveyor. The inner spray and hot air shared pipe assembly is driven by the second lifting power to move up and down. The inner spray and hot air shared pipe assembly is provided with a second water inlet and an air inlet. The inner spray and hot air shared pipe assembly can extend into the non-latex anesthetic gas storage bags for cleaning and preliminary drying by hot air after cleaning through the air inlet.
2. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 1, wherein: The outer spray pipe assembly is provided with at least one circle of outer spray pipes corresponding to each non-latex anesthetic gas storage bag. The outer spray pipes are respectively provided with spray holes facing the inside.
3. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 2, wherein: The outer spray pipe assembly comprises transverse outer spray pipes arranged on the front and back sides and a plurality of longitudinal outer spray pipes connected side by side between the transverse outer spray pipes. The transverse outer spray pipes and the longitudinal outer spray pipes are connected to each other to form a plurality of cavities between the transverse outer spray pipes and the longitudinal outer spray pipes. The non-latex anesthetic gas storage bags are arranged in the cavities one by one for cleaning.
4. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 3, wherein: The cleaning and preliminary drying device is further provided with a support frame connected to the first lifting power. The support frame is provided with a plurality of vertical downward extending hangers. The outer spray pipe assembly is fixedly connected to the lower ends of the hangers.
5. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 4, wherein: The first lifting power comprises a first cylinder vertically downward arranged on the top of the frame. The support frame is arranged above the first conveyor. The middle part of the support frame is fixedly connected to the piston rod of the first cylinder.
6. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 4, wherein: The upper surface of the support frame is further provided with a first guide rod vertically upward extending. The first guide rod slides through the guide hole in the top of the frame.
7. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 1, wherein: The inner spray and hot air shared pipe assembly comprises a transverse main pipe and a plurality of straight pipes connected to the upper surface of the main pipe and vertically upward extending. The second water inlet and the air inlet are arranged in the middle part of the main pipe. The upper ends of the straight pipes are provided with rotary spray heads.
8. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 7, wherein: The first conveyor is provided with a circle of conveyor belts. The conveyor belts are provided with a plurality of connecting heads capable of being connected to the heads of the latex anesthetic gas storage bags. The middle part of the connecting heads is provided with through holes penetrating the connecting heads and the conveyor belts. When the latex anesthetic gas storage bags are cleaned and preliminarily dried on the first conveyor, the connecting heads on the upper and lower sides of the conveyor belts are aligned one by one. The straight pipes can extend into the latex anesthetic gas storage bags through the through holes of the connecting heads on the upper and lower sides.
9. The non-latex anesthetic bladder cleaning and pre-drying apparatus of claim 1, wherein: The second lifting power comprises a second cylinder vertically upward arranged on the bottom of the frame. The middle part of the inner spray and hot air shared pipe assembly is fixedly connected to the upper end of the piston rod of the second cylinder.
10. The non-latex anesthetic bladder cleaning and pre-drying device of claim 1, wherein: The inner spray and hot air sharing pipe group is further provided with a second guide rod extending vertically downward, which slides through a guide hole in the bottom of the frame.