您好,欢迎来到中国测试科技资讯平台!

首页> 《中国测试》期刊 >本期导读>RGD-3001A智能导热系数测试装置的设计与实现

RGD-3001A智能导热系数测试装置的设计与实现

2142    2016-01-16

免费

全文售价

作者:何伟, 赵普俊, 邓丽娟, 唐臻, 代林

作者单位:中国测试技术研究院, 四川成都 610021


关键词:导热系数; 智能导热系数测试装置; 自动控制; 测量; 数据采集; 知识产权


摘要:

针对目前国内导热系数测试仪器设备偏大、试样装夹不方便以及人为计算误差等问题,综合运用机械、自动控制、传感测控及交互式人机界面技术设计研发了RGD-3001A智能导热系数测试装置。该装置的最大特点是试样厚度的测量、夹紧以及所有数据采集、显示、计算均由系统自动完成,整个测量过程无需人工干预,同时还具有上位机通讯功能,真正实现了导热系数测试的自动化。实验表明,该智能导热系数测试装置性能稳定,自动化程度及测量精度较高,操作简单,并拥有独立的知识产权,在技术上已达国内先进水平,具有广阔的应用前景。


Design and development of RGD-3001A intelligence thermal conductive measuring device

HE Wei, ZHAO Pu-jun, DENG Li-juan, TANG Zhen, DAI Lin

National Institute of Measurement and Testing Technology, Chengdu 610021, China

Abstract: At present, domestic thermal conductivity measuring device has disadvantages such as huge size, inconvenient specimen loading and high possible man-made calculation error.For overcoming these disadvantages, an intelligence thermal conductivity measuring device, RGD-3001A has been designed through integrating mechanical technology, automatic control, sensor measure-control, interactive man-machine interface, and so on.This device can automatically load the specimen and measure its thickness, and it also can automatically complete the routine tasks such as data collection, display, calculation and so on.Beside, it has the function of communication with PLC.For the entire measurement was completed without human intervention, it truly realized automatic thermal conductivity measurement.The experimental results show that this device has stable performance, high automation degree and measurement precision, and convenient operation.With independent intellectual property rights, it is advanced in our country.Thus, it has broad application prospect.

Keywords: Thermal conductivity; Intelligence thermal conductivity measure device; Automatic control; Measurement; Data collection; Intellectual property

2009, 35(6): 63-66  收稿日期: 2009-5-8;收到修改稿日期: 2009-8-11

基金项目: 

作者简介: 何伟(1962-),男,工程师,主要从事计量测试工作。

参考文献

[1] 姜继圣,罗玉萍,兰 翔.新型建筑绝热、吸声材料[M].北京:化学工业出版社,2002.
[2] 钱德基,许宏华.国内最新塑料牌号手册[M].北京:中国石化出版社,1993.
[3] 韩喜林.新型防水材料应用技术[M].北京:中国建材工业出版社,2003.
[4] 中国绝热隔音材料协会.绝热材料与绝热工程使用手册[M].北京:中国建材工业出版社,1998.
[5] 韩喜林.新型建筑绝热保温材料应用·设计·施工[M].北京:中国建材工业出版社,2005.
[6] 朱盈豹.保温材料在建筑墙体节能中的应用[M].北京:中国建材工业出版社,2003.
[7] 中国绝热隔声材料协会.绝热材料与绝热工程[M].北京:中国建材工业出版社,1998.
[8] 杨振江,孙占彪,王曙梅,等.智能仪器与数据采集系统中的新器件及应用[M].西安:西安电子科技大学出版社,2001.
[9] 李景学,金广业.可编程控制器应用系统设计方法[M].北京:电子工业出版社,1995.
[10] 朱善君.可编程序控制系统原理、应用、维护[M].北京:清华大学出版社,2002.
[11] 何希才.传感器及其应用[M].北京:国防工业出版社,2001.
[12] 蒋焕文,孙 续.电子测量[M].北京:中国计量出版社, 1988.