亚洲精品乱码久久久久久中文字幕,国产人妖乱国产精品人妖,亚洲熟妇av一区二区三区漫画,大肉大捧一进一出好爽视频mba

DEARTO-Professional manufacturer of temperature and humidity measuring instruments
Tai'an Detu Automation Instrument Co., Ltd.

0538-5089056

Solution Current position:Home > Solution

Common Methods of Thermocouple Calibration

Release time:2023-1-10    This article is read 2673 Times

During the use of thermocouples, sometimes the hot end is oxidized, corroded or the thermocouple material recrystallizes at high temperature, which changes the characteristics of the thermocouple, and then the measurement error becomes larger and larger. In order to ensure a certain accuracy in temperature measurement, Thermocouples must be calibrated periodically to detect changes in the thermocouple. When the change exceeds the specified error range, you can replace the thermocouple wire or cut off a section of the hot end of the original thermocouple, and use it after re-welding. It must also be recalibrated when in use.

Thermocouple Calibration

There are usually three methods for thermocouple calibration, namely bipolar method (direct comparison method), unipolar method (same-named pole method) and differential method.


1. Bipolar method

The method of directly comparing the standard and the thermocouple to be calibrated is called the bipolar method.

Advantages: The method is simple and easy to operate. Different types of thermocouples can be calibrated in the same furnace; the measuring ends of the thermocouples are not bundled on the same isothermal surface in the furnace; the number of measurements is small, usually two to four times.

Disadvantages: The free end of the thermocouple is required to be 0 degrees, otherwise it should be corrected; when the model of the standard device is different from that of the thermocouple to be calibrated, due to the large difference in the electric thermal potential at the same temperature, special attention should be paid to the galvanometer during operation. Damage; because the change of furnace temperature directly affects the calibration accuracy, the furnace temperature control is strictly required (for one cycle of reading, for the calibration of industrial thermocouples, the change of furnace temperature should not exceed 1°C).


2. Unipolar method

After binding the standard and the thermocouple to be calibrated (must be of the same type) into the furnace, the calibration method of measuring the differential thermoelectric potential between the standard and the thermocouple with the same name (positive and positive, negative and negative) is called unipolar method,

Advantages: fast reading, and can directly read the difference, easy to calculate, not strict requirements on furnace temperature control during calibration (fluctuations of ±10°C are allowed). temperature (not 0°C) without correction.

Disadvantages: The standard and calibrated thermocouples must be of the same type. For different types of thermocouples, the unipolar method cannot be used. The measuring ends of the standard and calibrated thermocouples must be bound firmly. Improper binding is prone to errors. It is a small potential, so the quality requirements for electrical measuring instruments, transfer switches and connecting wires are very high, otherwise the calibration error will be increased, the wiring is more complicated, and a positive and negative transfer switch is required. When switching from the measurement furnace to the measurement In the case of extreme thermoelectric potential with the same name, due to the sudden change from large potential measurement to small potential measurement, care should be taken not to damage the galvanometer during operation.


3.Differential method

The standard device and the thermocouple to be calibrated (same type) are connected in reverse series into the temperature calibration furnace, and the test method of the thermoelectric potential difference during the direct measurement is called the differential method.

Advantages: fast reading, can directly read the difference, simple calculation, simple wiring, and the reading is half of the unipolar method, the free end of the thermocouple only needs to be kept at room temperature (not limited to 0°C), and no correction is required. During the inspection, the temperature control in the furnace is not strictly required, and it is allowed to fluctuate within ±5°C of the calibration point.

Disadvantages: The standard device and the thermocouple to be calibrated must be of the same type; when measuring the differential potential, the positive pole of the thermocouple to be calibrated must be connected to the positive terminal of the potentiometer; The quality requirements of switches and connecting wires are high; otherwise, the calibration error will be increased. When changing from temperature calibration furnace temperature to measurement of differential potential, due to sudden changes in large potential measurement and small potential measurement, attention should also be paid to the operation The galvanometer is not damaged.

There are several methods for calibrating thermocouples, which should be determined according to the needs in actual application, and special attention should be paid to the regulation of furnace temperature change speed when calibrating thermocouples.

Common Methods of Thermocouple Calibration
  • Online message

  • Your name
    Your title must be filled
  • Cellphone number
    Mobile phone number is required
  • whatsapp/wechat
    Optional
  • Type of consultation
    Required, please select the type of consultation
  • Consultation content
    Required, what is the content you want to consult?
  • Verification code: Please fill in the calculation result.
Previous:Common Problems and Solutions in ThermoCouple Calibrationnext:New Product | DTZ-TSS Temperature switching sensor calibration system

Contact us

DEARTO QR codeHeadquarter Address Tai'an High-tech Development Zone,  Shandong Province 
Telephon :+86 0538-5089056 +86 13605384645  +86 13953856217 
Fax : +86 0538-5059718 
After sale:+86 0538-5050959 +86 13605384645 
Website : www.tadt.com.cn 
E-mail : tadt17@dearto.cn /  tadtzdh@dearto.cn

Copyright? Tai'an Detu Automation Instrument Co., Ltd.             Lu ICP 14024757-1           Business license inquiry

无遮挡啪啪摇乳动态图gif| 中国老熟妇自拍hd发布| 无码精品一区二区三区免费视频| 轻点好疼好大好爽视频| 手机在线观看| 午夜福利av无码一区二区 | 肥臀浪妇太爽了快点再快点| 67194熟妇人妻欧美日韩| 精品国产乱码久久久久久影片| 国产av无码专区亚洲av| 无码少妇一区二区三区芒果| 另类内射国产在线| 国产精品户外野外| 国产婷婷色一区二区三区在线 | 亚洲va韩国va欧美va| av无码精品一区二区三区宅噜噜 | 国产午夜亚洲精品午夜鲁丝片 | 两个人的www免费视频| 国产美女被遭强高潮免费网站 | 精品国产一区二区三区av片| 中文字幕久久熟女蜜桃| 国产精品99久久久久久www| 久久草草亚洲蜜桃臀| 亚洲七久久之综合七久久 | 国产在线国偷精品免费看| 国产精品麻豆va在线播放| 男人吃奶摸下挵进去啪啪软件 | 国产精选污视频在线观看| 午夜人妻久久久久久久久| 扒开腿狂躁女人爽出白浆| 精品香蕉一区二区三区| 欧美一性一乱一交一视频| 日韩成人无码影院| 亚洲日韩精品一区二区三区| 无码高潮少妇毛多水多水| 美女mm131爽爽爽| 国产女精品视频网站免费| 吸咬奶头狂揉60分钟视频| 天天躁日日躁狠狠久久| 国产大屁股喷水视频在线观看| 久久婷婷五夜综合色啪软件下 |