文章摘要
Effect of Carbon Conductive Material Amounts on Properties of Antistatic Carboxyl Nitrile Latex Gloves
Received:May 15, 2022  Revised:May 15, 2022
DOI:10.12136/j.issn.1000-890X.2024.01.0040
Key Words: nitrile latex gloves;antistatic property;SWCNT;superconducting carbon black
Author NameAffiliationE-mail
CHEN Xiaowei* Andanda Industrial Technology(Shanghai)Co.,Ltd xiaowei.chen@andandappe.com 
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Abstract:
      The antistatic carboxyl nitrile latex gloves were prepared by combining carbon conductive materials[single wall carbon nanotube (SWCNT) and superconducting carbon black] with the carboxyl nitrile latex,and the effect of the carbon conductive material amounts on the properties of the film of the antistatic carboxyl nitrile latex gloves was studied. The results showed that,with the increase of the SWCNT amount,the surface resistance and volume resistance of the film of the antistatic carboxyl nitrile latex glove decreased,the tensile strength first increased and then decreased,the penetration time of concentrated sulfuric acid resistance was about 32 ~ 35 min. When the SWCNT amount was 0. 1 phr,the volume resistance and surface resistance of the film of the antistatic carboxyl nitrile latex glove decreased to 60 MΩ·cm and 94 MΩ respectively,the tensile strength was the largest(26. 9 MPa). With the increase of the superconducting carbon black amount,the volume resistance and surface resistance of the film of the antistatic carboxyl nitrile latex glove decreased,the tensile strength decreased too,the elongation at break increased,and the penetration time of concentrated sulfuric acid resistance shortened. When the superconducting carbon black amount was 4 phr,the volume resistance and surface resistance of the film of the antistatic carboxyl nitrile latex glove decreased to 54 MΩ·cm and 89 MΩ respectively,and the penetration time of concentrated sulfuric acid resistance was shortened to 15 min when the superconducting carbon black amount was 10 phr. The performance of the antistatic carboxyl nitrile latex glove decreased with the extension of time.
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