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Shanghai Qianshi Precision Electromechanical Technology Co., Ltd
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Shanghai Qianshi Precision Electromechanical Technology Co., Ltd

  • E-mail

    846490659@qq.com

  • Phone

    15618746768

  • Address

    No. 258 Banting Road, Jiuting Town, Songjiang District, Shanghai

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Supplier of imported atomization tester

NegotiableUpdate on 05/19
Model
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Product Category
Place of Origin
Overview
The automobile interior material atomization tester/atomization tester is suitable for evaluating the evaporation of volatile components of interior materials such as plastic parts, polyurethane, textiles, leather, adhesives, non-woven fabrics, thermoplastic elastomers, etc. at high temperatures in automobiles, aircraft, and other interior materials. It can also be used to determine the high-temperature atomization phenomenon of xenon lamps in front of vehicles.
Product Details

meet the standards

ISO17071,ISO6452,BSEN14288,DIN75201,VolvoSTD1027,GM9305P,GMGME60326,D451727,TSM0503G,SAEJ1756,VCS1027,2719,I. U.P.33,I. U.P.46,QB/T2728,PV3920、PV3015、ES-X83231、NESM016

Scope of application:

  Automotive interior material atomization tester/atomization testerSuitable for evaluating the evaporation of volatile components of interior materials such as plastic parts, polyurethane, textiles, leather, adhesives, non-woven fabrics, thermoplastic elastomers, etc. in automobiles and aircraft at high temperatures. It can also be used for measuring the high-temperature atomization phenomenon of xenon lamps in front of vehicles.

Product details:

Test principle:

This atomization performance tester is designed for measuring the fogging performance of organic materials. The term 'fog' in this experiment specifically refers to the phenomenon of volatile substances from materials (mainly car interior decorations) condensing on glass, especially windshields.

The main framework of the equipment includes a water tank filled with specific ethylene glycol liquid, which can reach high temperatures. During testing, leather samples are placed in six standard glass containers filled with high-temperature liquids. The stainless steel plate container is placed on top of each glass and maintained at a constant temperature of 20 ℃ by a constant water flow distribution. It is adjusted by a regulating device connected to the main frame. Such environmental control conditions will cause a layer of "fog" on the surface of the sample. Operators can detect and judge the atomization performance of materials based on weight analysis or refraction methods.

Applicable to the following testing methods:

1) Glossiness method: The gas evaporated by heating the sample in the fogging cup condenses on a low-temperature glass plate. By comparing and calculating the glossiness values of the glass plate before and after condensation, the fogging value of the sample can be obtained.

2) Weight method: The gas evaporated by heating the sample in the fogging cup condenses on the low-temperature aluminum foil. By measuring the weight change of the aluminum foil before and after condensation, the weight of the atomized condensed material of the sample can be obtained.

3) Haze method: The gas evaporated by heating the sample in the fogging cup condenses on a low-temperature glass plate. By comparing and calculating the haze values of the glass plate before and after condensation, the haze value of the sample can be obtained.

Structural characteristics:

1. The internal bearing surface is made of acid resistant and corrosion-resistant coated structural steel;

2. The outer protective steel plate has undergone acid resistant treatment and is coated with epoxy resin;

3. Six workstations 18/8 stainless steel testing room;

4. 18/8 stainless steel adjustable cooling system;

5. Rapid centrifugal stirring system;

6. Armored thermistor;

7. Safety thermostat;

8. Rubber pipeline cooling and liquid discharge;

9. Security protection design:

Safety door magnetic switch;

Electronic temperature controller and microprocessor;

Electronic timer;

Start stop switch;

Warning lights;

Beep notification at the end of the test.