Abstract:
Asbestiform crystalline calcium M phosphate, where M is sodium or lithium, having a length to average diameter ratio of at least 5:1, can be prepared by forming a melt of a source of oxygen, calcium, phosphorus and M having a mole ratio of about 15 percent to about 30 percent M.sub.2 O, about 48 percent to about 60 percent P.sub.2 O.sub.5 and about 20 percent to about 37 percent CaO, cooling the melt within the range of about 500.degree. C. to about 750.degree. C. for a sufficient time to permit blocks of calcium M phosphate to form, and fiberizing the blocks into the asbestiform crystals. Such asbestiform crystalline calcium M phosphates are useful to prepare composites of organic polymeric materials.
Abstract:
The invention relates to a food-grade high-temperature lubricant, in particular a high-temperature oil or a high-temperature grease comprising the following components: a) at least one oil selected from a trimellitic acid ester or a mixture of various trimellitic acid esters, alkyl aromates, preferably an aliphatically substituted naphthalene or estolidene; b) a hydrogenated or fully hydrogenated polyisobutylene or a mixture or hydrogenated or fully hydrogenated polyisobutylene; and c) additives, individually or in combination with each other. In the case of the high-temperature grease, a thickening agent is added.
Abstract:
A thermally conductive silicone grease composition comprises: (A) an organopolysiloxane represented by the following general formula: wherein each R 1 is independently selected from monovalent hydrocarbon groups, each X is independently selected from monovalent hydrocarbon groups or alkoxysilyl-containing groups of the following general formula: -R 2 -SiR 1 a (OR 3 ) (3-a) wherein R 1 is defined as above, R 2 is an oxygen atom or an alkylene group, R 3 is an alkyl group, a is an integer ranging from 0 to 2, m is an integer equal to or greater than 0, and n is an integer equal to or greater than 0; (B) a thermally conductive filler; and (C) an aluminum-based or titanium-based coupling agent. The composition exhibits excellent heat resistance and reduced oil bleeding.
Abstract:
The invention provides for a lithium hydroxide composition including lithium hydroxide, a base oil, and a fatty acid salt. The invention also provides for a process for preparing a lithium hydroxide composition including contacting a lithium hydroxide component, a base oil, and a fatty acid component. The invention also provides for a process of using a lithium hydroxide composition for preparing a soap concentrate or a grease.
Abstract:
The disclosed invention relates to a biodegradable grease composition. The grease composition comprises the reaction product of a dispersion of metal oxide and/or hydroxide particulates with at least one animal or vegetable oil. The dispersion comprises an organic medium and has a water content of up to about 0.5% by weight water. The particulates have a mean particle size up to about 15 microns. A process for making a grease composition using a dispersion of metal oxide and/or hydroxide particulates is disclosed.
Abstract:
The invention provides for a lithium hydroxide composition including lithium hydroxide, a base oil, and a polymer. The invention also provides for a process for preparing a lithium hydroxide composition including contacting a lithium hydroxide component, a base oil, and a polymer. The invention also provides for a process of using a lithium hydroxide composition for preparing a soap concentrate or a grease.
Abstract:
A method for joining tubulars that includes preparing a fast-setting epoxy compound, wherein the preparing comprises: mixing a first micro-crystalline filler into an epoxidized glycerol fatty ester, mixing a titanium oxide, a first talc, and a flatting agent into the first mixture, mixing a hydrocarbon resin into the second mixture, and mixing a hardenable epoxide containing liquid to form an epoxy base. A second micro-crystalline filler, a second talc, and a glycidyl ether are mixed into a phthalocyanine, a hybrid reactive polyamide is mixed into this mixture, a modified aliphatic amine is mixed into the resulting mixture, and a methylamino accelerator is added to form an epoxy accelerator. Substantially equal portions of the epoxy base and the epoxy accelerator are mixed to form the fast-setting epoxy compound.
Abstract:
The disclosed technology relates to a dispersion comprising LiOH and/or LiOH.H 2 O particulates dispersed in an organic medium comprising at least one oil and at least one surfactant, the concentration of LiOH and/or LiOH.H 2 O particulates in the dispersion being greater than 10% by weight, the LiOH and/or LiOH.H 2 O particulates having a mean particle size in the range up to about 10 microns wherein at least about 99% by weight of the LiOH particulates have a particle size in the range up to about 20 microns. A process for making the dispersion is disclosed. Grease compositions made using the dispersion are disclosed.
Abstract translation:所公开的技术涉及分散在包含至少一种油和至少一种表面活性剂的有机介质中的LiOH和/或LiOH.H 2 O 2颗粒的分散体,LiOH和/或LiOH的浓度。 分散体中的H 2 O 2颗粒大于10重量%,LiOH和/或LiOH.H 2 O 2颗粒的平均粒度范围直到 约10微米,其中至少约99重量%的LiOH颗粒具有在约20微米范围内的粒度。 公开了制造分散体的方法。 公开了使用该分散体制成的油脂组合物。
Abstract:
Organosilicone pastes and greases including at least one oily diorganopolysiloxane polymer with a dynamic viscosity at 25 DEG C of at least 500 mPa.s, and at least one alkali-metal or alkaline-earth metal carbonate, but no actual thixotropic agent, wherein said carbonate has a particle size of at most 0.5 mu m and a high BET specific surface area of more than 5 m /g, and is present in an amount of at least 20 wt % based on the total composition. The preparation method is carried out at a low temperature, e.g. 5-40 DEG C.