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Design, manufacturing and testing of a portable vaccine carrier box employing thermoelectric module and heat pipe.

机译:使用热电模块和热管的便携式疫苗承载箱的设计,制造和测试。

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摘要

Vaccination is a highly effective method and a cheap tool for preventing certain infectious diseases. Routine immunization programs protect most of the world's children from diseases that claim millions of lives each year. There are many practical problems impeding vaccine delivery, especially to maintain the cold chain system, which is the means for storing and transporting vaccines in a potent state from the manufacturer to the person being immunized at a temperature of 2-8 degrees C. The development of the solid state thermoelectric cooling system has permitted newly developed packages that are capable of meeting many requirements and applications where environmental concern, size, weight, performance and noise are an issue. This paper describes the development of a vaccine carrier box. A combination of a thermoelectric module and a heat pipe is used for the cooling system. The position of the heat pipe as a heat sink on the hot side of the thermoelectric module will enhance the thermoelectric performance. The minimum temperature in the cabin of the vaccine carrier box reached -10 degrees C, which indicates that the design of the vaccine carrier box can maintain the vaccine at desired temperatures.
机译:接种疫苗是预防某些传染病的一种非常有效的方法,也是一种廉价的工具。常规免疫计划可保护世界上大多数儿童免受每年夺去数百万人生命的疾病的侵害。存在许多阻碍疫苗交付的实际问题,尤其是维持冷链系统的问题,冷链系统是在制造商向处于2-8摄氏度温度的被免疫人员有效状态下储存和运输疫苗的手段。固态热电冷却系统的应用已经允许新开发的封装,这些封装能够满足许多关注环境,尺寸,重量,性能和噪声的要求和应用。本文介绍了疫苗载体盒的发展。热电模块和热管的组合用于冷却系统。将热管作为散热器放置在热电模块热侧的位置将增强热电性能。疫苗载体盒的机舱中的最低温度达到-10℃,这表明疫苗载体盒的设计可以将疫苗维持在期望的温度。

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