一种人体热交换设备分流装置与集流装置
By using flexible sleeves to connect the ports and pipe hoses of the distributor/collector in heat exchange garments, the problems of fluid flow resistance and connection in the prior art are solved, the performance of the garments is improved and production and maintenance are simplified, and the flow rate is stabilized and the connection is flexible.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NANJING BYRON TECHNOLOGY CO LTD
- Filing Date
- 2025-03-03
- Publication Date
- 2026-07-17
AI Technical Summary
In existing heat exchange garments, the inner diameter of the port of the distributor/collector is smaller than the inner diameter of the pipe hose, which causes resistance to the liquid flow and affects the performance of the heat exchange garment. Furthermore, the existing flexible distributor/collector is difficult to disassemble after connection, which affects production and maintenance.
A flexible sleeve is used to connect the port of the distributor/collector and the pipe hose to ensure that the inner diameter of the port is the same as that of the pipe hose. The flexible sleeve and the barbs of the distributor/collector form a liquid-tight structure to avoid the resistance caused by the reduction of the fluid cross-sectional area. A reliable liquid-tight joint is formed by solvent bonding, ultrasonic welding and other methods.
The problem of fluid flow resistance has been solved, the performance of heat exchange garments has been improved, and the production and maintenance process has been simplified. The connection between the flexible sleeve and the distributor/collector can be plugged and unplugged at any time, making it convenient to use.
Smart Images

Figure CN224505713U_ABST
Abstract
Claims
1. A human body heat exchange device flow splitting and collecting device, characterized in that, The diverting and collecting devices include a diverter and a collector, and a flexible sleeve. The flexible sleeve connects the ports of the diverter and collector to the corresponding pipes or hoses to be connected. The inner diameter of the ports of the diverter and collector is the same as the inner diameter of the corresponding pipes or hoses to be connected, and the inner diameter of the flexible sleeve is the same as the outer diameter of the pipes or hoses. One end of the pipe or hose is placed in the cavity at one end of the flexible sleeve, and the two are made of compatible materials to form a tight fit. The diverter and collector are rigid, and the ports of the diverter and collector have barbs on their outer sides. The other end of the flexible sleeve is inserted into the corresponding port of the diverter and collector, and the barbs are located inside the flexible sleeve. Together, they form a liquid-tight structure. The human body heat exchange device includes heat exchange clothing that at least partially covers the wearer's body, the heat exchange clothing including a multi-parallel circulation pipe hose loop and a distributor and collector installed in the lining of the clothing.
2. The shunt and collector device of claim 1, wherein, The connection between the flexible sleeve and the pipe hose is formed into a reliable liquid-tight joint using existing methods, including solvent bonding, ultrasonic welding, and radio frequency welding.
3. The shunt and collector device of claim 1, wherein, The length of the flexible sleeve is determined by the port lengths of the distributor and collector it connects to, the bridging gap, and the tight connection process between the flexible sleeve and the pipe hose.
4. The shunt and current collector device of claim 1, wherein, The wall thickness and rigidity of the flexible sleeve are determined by the support force and flexibility requirements at the connection between it and the distributor and collector.
5. The shunt and current collector device of claim 1, wherein, The inner diameter of the flexible sleeve is interference-fitted with the outer diameter of the pipe hose.
6. The shunt and current collector device of claim 1, wherein, The inner diameter of the ports of the splitter and collector is not strictly the same as the inner diameter of the corresponding pipe or hose to be connected.
7. The shunt and current collector device of claim 1, wherein, The outer diameter, length, number of barbs, and barb spacing of each port of the distributor and collector are designed to ensure that they remain liquid-tight and are not easily detached after being inserted into the flexible sleeve.
8. The shunt and current collector of claim 1, wherein, Only some ports of the splitter and collector are connected to the corresponding pipe hoses using flexible sleeves.
9. The shunt and current collector device of claim 1, wherein, To enhance the liquid tightness of the connection between the flexible sleeve and its barbed port and prevent the sleeve from falling off, the flexible sleeve is secured to the port with cable ties.
10. The shunt and collector device of claim 1, wherein, To enhance the liquid tightness of the connection between the flexible sleeve and its inserted barbed port and to prevent the sleeve from falling off, an adhesive was applied to the interface between the outer side of the port and the inner side of the flexible sleeve, bonding the two together.