Delivery window capable of switching multiple working environments
By designing a transfer window that can switch between multiple working environments and using air ducts, exhaust equipment and temperature air supply equipment to achieve rapid switching of purification and temperature environments, the problem that existing laboratory transfer windows cannot adapt to the needs of different experimental products is solved, and the efficient and orderly transfer of experimental products is achieved.
Patent Information
- Application Number
- CN202510874866.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-27
- Publication Date
- 2025-09-12
AI Technical Summary
The current laboratory transfer windows cannot respond to the pungent volatile odors and temperature environment requirements of different experimental samples, affecting the normal progress of the experiment.
A transfer window for switching between multiple working environments is designed. The exhaust equipment and the temperature air supply equipment are connected through air ducts, and filters and regulating valves are used to achieve rapid switching between purification, 40-45℃ medium temperature and 15-22℃ low temperature environments.
It realizes efficient transfer of different experimental products and can quickly switch to the required working environment to ensure efficient and orderly transfer of experimental products.
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Figure CN120626032A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a laboratory and equipment used therein, and in particular to a transfer window for switching between multiple operating environments. Background Art
[0002] At present, laboratory transfer windows transfer experimental samples through a switchable window, and then transfer the experimental samples through a built-in conveyor belt. However, in some experiments, the experimental samples have pungent volatile odors and need to be in a medium temperature environment of 40-45℃ or a low temperature environment of 15-22℃. The current transfer windows cannot switch the working environment accordingly, affecting the normal progress of the experiments.
[0003] Therefore, it is necessary to provide a transfer window for switching between multiple operating environments to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide a transfer window for switching between multiple operating environments.
[0005] The technical solution is as follows:
[0006] A transfer window for switching multiple working environments includes a transfer window body, which includes a switch door. The transfer area is behind the switch door. After the switch door is closed, the transfer area forms a closed space and has a built-in conveyor belt module. An air duct is provided corresponding to the transfer area. The air duct is connected to an exhaust device and a temperature air supply device. A filter is provided at the connection between the air duct and the transfer area. The working environment is switched to meet the needs of the required experimental sample transfer. The working environment includes:
[0007] 1) Purified experimental product delivery environment:
[0008] The door of the transfer window is closed, and the transfer area becomes a closed space. The exhaust equipment draws air at a speed of 0.8m / s, purifying the closed space through the filter, forming a purification program for the experimental sample transfer environment.
[0009] 2) Temperature air supply experimental product transfer environment:
[0010] 2-1) A laboratory sample transfer environment of 40-45°C must be provided. The main door of the transfer window is closed, forming a closed space in the transfer area. The exhaust equipment is operated at a speed of 1m / s for 20 minutes to purify the closed space through the filter. The exhaust equipment is then stopped and the temperature air supply equipment is operated at a speed of 1.5m / s to continuously supply medium-temperature air (i.e., 40-45°C), thus forming a medium-temperature laboratory sample transfer environment.
[0011] 2-2) A low-temperature experimental environment of 15-22°C must be provided. The switch door of the transfer window body is closed, and the transfer area forms an enclosed space. The exhaust equipment is used to extract air at a speed of 1.2m / s for 15 minutes, and the enclosed space is purified through the filter. The exhaust equipment then stops working, and the temperature air supply equipment is used to continuously supply medium-temperature air, i.e., 15-22°C, at a speed of 1.8m / s, to form a low-temperature experimental product transfer environment program.
[0012] Furthermore, a regulating valve is provided on the air duct.
[0013] Furthermore, the air duct is made of PP200mm hard pipe.
[0014] Furthermore, the air duct is arranged in the vertical functional column.
[0015] Furthermore, vertical functional columns connect the transfer area and the ceiling.
[0016] Furthermore, the air duct passes through the suspended ceiling and then extends to the area where the exhaust equipment and the temperature air supply equipment are set up for connection.
[0017] Compared with the existing technology, the present invention can provide a purified experimental product transfer environment, a medium-temperature experimental product transfer environment, and a low-temperature experimental product transfer environment, and can quickly switch to meet the needs of experimental product transfer with different requirements, ensuring that the experimental product transfer is carried out efficiently and orderly. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural schematic diagram of the present invention. DETAILED DESCRIPTION
[0019] Example:
[0020] See also Figure 1 This embodiment shows a transfer window with multiple working environments, including a transfer window body 1. The transfer window body 1 includes a switch door 11. Behind the switch door 11 is a transfer area 100. After the switch door 11 is closed, the transfer area 100 forms a closed space and has a built-in conveyor belt module. The transfer window body 1 is arranged corresponding to the workbench 200, and an air duct 2 is arranged corresponding to the transfer area 100. The air duct 2 is connected to an exhaust device and a temperature air supply device. A filter is provided at the connection between the air duct 2 and the transfer area 100. The working environment is switched to meet the needs of the required experimental sample transfer. The working environment includes:
[0021] 1) Purified experimental product delivery environment:
[0022] The door 11 of the transfer window body 1 is closed, and the transfer area 100 forms a closed space. The exhaust equipment draws air at a speed of 0.8 m / s, purifying the closed space through the filter, forming a clean environment program for sample transfer.
[0023] 2) Temperature air supply experimental product transfer environment:
[0024] 2-1) A laboratory sample transfer environment of 40-45°C is required. The door 11 of the transfer window main body 1 is closed, forming a closed transfer area 100. The exhaust equipment operates at a speed of 1 m / s for 20 minutes, purifying the closed space through the filter. The exhaust equipment then stops operating, and the temperature air supply equipment operates at a speed of 1.5 m / s to continuously supply medium-temperature air (i.e., 40-45°C), thus establishing a medium-temperature laboratory sample transfer environment.
[0025] 2-2) A low-temperature experimental environment of 15-22°C is required. The switch door 11 of the transfer window main body 1 is closed, and the transfer area 100 forms a closed space. The exhaust equipment draws air at a speed of 1.2m / s for 15 minutes, and the closed space is purified through the filter. The exhaust equipment then stops working, and the temperature air supply equipment starts working, continuously supplying medium-temperature air, i.e., 15-22°C, at a speed of 1.8m / s, to form a low-temperature experimental product transfer environment program.
[0026] The air duct 2 is provided with a regulating valve.
[0027] The air duct 2 is made of a PP200mm hard pipe.
[0028] The air duct 2 is arranged in the vertical functional column 3 .
[0029] The vertical functional column 3 connects the transfer area 100 and the suspended ceiling 4 .
[0030] The air duct 2 passes through the suspended ceiling 4 and then extends to the area where the exhaust equipment and the temperature air supply equipment are installed for connection.
[0031] Compared with the existing technology, the present invention can provide a purified experimental product transfer environment, a medium-temperature experimental product transfer environment, and a low-temperature experimental product transfer environment, and can quickly switch to meet the needs of experimental product transfer with different requirements, ensuring that the experimental product transfer is carried out efficiently and orderly.
[0032] For those skilled in the art, several variations and improvements can be made without departing from the inventive concept of the present invention, and all of these fall within the scope of protection of the present invention.
Claims
1. A transfer window for switching between multiple working environments, characterized by: The transfer window includes a main body, which includes a switch door. The transfer area is behind the switch door. After the switch door is closed, the transfer area forms a closed space with a built-in conveyor belt module. An air duct is provided in the corresponding transfer area. The air duct is connected to exhaust equipment and temperature air supply equipment. A filter is provided at the connection between the air duct and the transfer area to switch the working environment to meet the needs of the required experimental sample transfer. The working environment includes: 1) Purified experimental product delivery environment: The door of the transfer window is closed, and the transfer area becomes a closed space. The exhaust equipment draws air at a speed of 0.8m / s, purifying the closed space through the filter, forming a purification program for the experimental sample transfer environment. 2) Temperature air supply experimental product transfer environment: 2-1) A laboratory sample transfer environment of 40-45°C must be provided. The main door of the transfer window is closed, forming a closed space in the transfer area. The exhaust equipment is operated at a speed of 1m / s for 20 minutes to purify the closed space through the filter. The exhaust equipment is then stopped and the temperature air supply equipment is operated at a speed of 1.5m / s to continuously supply medium-temperature air (i.e., 40-45°C), thus forming a medium-temperature laboratory sample transfer environment. 2-2) A low-temperature experimental environment of 15-22°C must be provided. The switch door of the transfer window body is closed, and the transfer area forms an enclosed space. The exhaust equipment is used to extract air at a speed of 1.2m / s for 15 minutes, and the enclosed space is purified through the filter. The exhaust equipment then stops working, and the temperature air supply equipment is used to continuously supply medium-temperature air, i.e., 15-22°C, at a speed of 1.8m / s, to form a low-temperature experimental product transfer environment program.
2. The transfer window for switching between multiple working environments according to claim 1, characterized in that: A regulating valve is provided on the air duct.
3. The transfer window for switching between multiple working environments according to claim 1, characterized in that: The air duct is made of PP200mm hard pipe.
4. The transfer window for switching between multiple working environments according to claim 1, characterized in that: The air duct is arranged in the vertical functional column.
5. The transfer window for switching between multiple working environments according to claim 4, characterized in that: Vertical functional columns connect the transfer area and the suspended ceiling.
6. The transfer window for switching between multiple working environments according to claim 5, characterized in that: The air duct passes through the ceiling and then extends to the area where the exhaust equipment and temperature air supply equipment are set up for connection.