10842
Silicone oil
AP 1000, viscosity ~1000 mPa.s, neat(25 °C)
别名:
聚苯基-甲基硅氧烷
Product Name
硅油 AP 1000, viscosity ~1000 mPa.s, neat(25 °C)
折射率
n20/D 1.512
质量水平
粘度
~1000 mPa.s, neat(25 °C)
密度
1.09 g/mL at 20 °C
一般描述
硅油AP 1000是一种含有高比例苯基基团的聚二甲基硅氧烷。
已知微量的酸、碱、矿物油、有机金属化合物和金属盐/氧化物会缩短硅油的使用寿命。
已知微量的酸、碱、矿物油、有机金属化合物和金属盐/氧化物会缩短硅油的使用寿命。
应用
硅油AP 1000可用作:
- 压力传递油
- 热传递油
- 电容器和变压器的电介质
- 耐热润滑油的基液
特点和优势
出色的热稳定性(-35°C至+200°C)
储存分类代码
10 - Combustible liquids
WGK
WGK 3
闪点(°F)
536.0 °F
闪点(°C)
280 °C
个人防护装备
Eyeshields, Gloves
C Eckardt et al.
Ophthalmologica. Journal international d'ophtalmologie. International journal of ophthalmology. Zeitschrift fur Augenheilkunde, 201(3), 133-139 (1990-01-01)
Different methylphenylsilicone (MPS) and fluorosilicone (FS) oils having a higher specific gravity than water were investigated as vitreous replacements. Their intraocular tolerance in vitrectomized aphakic rabbit eyes was evaluated for periods of up to 4 months and compared to that
H Kriegs et al.
The Journal of chemical physics, 124(10), 104901-104901 (2006-03-18)
In some polymers, in addition to the usual structural alpha relaxation, a slower alpha' relaxation is observed with a non-Arrhenius temperature dependence. In order to understand better the molecular origin of this alpha' relaxation in poly(methylphenylsiloxane) (PMPS) we have studied
Experience with a silicone resin (polymethylphenylsiloxane) hard contact lens.
H Magatani et al.
The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc, 9(3), 261-266 (1983-07-01)
O Gyllenhaal et al.
Journal of chromatography, 516(2), 415-426 (1990-09-21)
The supercritical fluid chromatography of intact aliphatic amines with different columns is described. One group of amines was based on N,N-dimethyl-n-octylamine and related primary and secondary amines, and the other on the amino alcohol metoprolol and several of its analogues.
Gema Flores et al.
Journal of chromatography. A, 1153(1-2), 29-35 (2007-02-20)
A method based on the use of absorbents as packing materials in the interface of the direct coupling between reversed phase liquid chromatography and gas chromatography (RPLC-GC) is proposed. To that end, a comparative study on different adsorbents and absorbents
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