Thermal Sherlock additive for industrial pumps and electromotors based on nanodiamond and mining equipment
Publish place: Eighth International Conference on Technology Development in Oil, Gas, Refining and Petrochemicals
Publish Year: 1403
نوع سند: مقاله کنفرانسی
زبان: English
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شناسه ملی سند علمی:
OILBCNF08_016
تاریخ نمایه سازی: 17 مرداد 1403
Abstract:
Nano diamond particles with various filling ratios were added into the commercial high-temperature vulcanized silicon rubber composites, which were originally designed for high-voltage outdoor insulators. Their microstructures and electrical, thermal, mechanical, dielectric, and hydrophobic properties were systematically studied. Our results show that the Nano diamond filler improved slightly the electrical breakdown strength, i.e., from ۱۶.۲ kV/mm for the unfilled sample to ۱۷.۱ kV/mm for ۰.۹ vol%-filled sample, and the thermal conductivity was increased from ۰.۴۵ W/m K for the unfilled sample to ۰.۵۰ W/m K for ۱.۸ vol%-filled sample. Moreover, the hydrophobic properties were also improved with the contact angle at room temperature increased from ۹۱.۲ for the unfilled sample to ۱۰۲.۶ for the ۱.۸ vol%-filled sample. However, the mechanical properties were deteriorated by these fillers, i.e., decrease of the tensile strength, tear strength, etc. The dielectric constants were found to increase first with the filling fraction and then decrease. Possible mechanisms responsible for the improvement or deterioration for specific properties of the composites are discussed.
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Authors
Hamed Gazor
Manager Director, Petro flat Turbine Technical Engineering Company,The work of the Standard Group of the Nano Technology HeadquartersTehran, Iran
Khadija Mahdavi
Research and Development Group, Petro flat Turbine Technical EngineeringCompany,The work of the Standard Group of the Nano Technology HeadquartersTehran, Iran