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    • 2. 发明申请
    • INSULATING POLYMER MATERIAL COMPOSITION
    • 绝缘聚合物材料组合物
    • US20110152414A1
    • 2011-06-23
    • US13060628
    • 2009-09-01
    • Yasuyuki Kurata
    • Yasuyuki Kurata
    • C08K5/1515C08L61/06C07D405/14
    • C08G59/621C08G59/5073C08L63/00H01B3/20H01B3/40
    • [Summary] Not only to improve insulating properties, heat resistance, mechanically physical properties and the like of an insulating composition but also to lower viscosity of an insulating material (insulating polymer component) so as to improve a productivity thereby raising reliability of an insulating product.[Object] Upon using an insulating material including at least an insulating polymer component, this insulating material is heated to be three-dimensionally crosslinked thereby to obtain an insulating composition which is applied for an insulating constitution of a voltage equipment. The insulating polymer component is formed of a vegetable oil such as linseed oil or the like. The vegetable oil undergoes esterification thereby to obtain fatty acid which is epoxidized thereby obtaining epoxidized vegetable oil ester which is applied for. As components other than this epoxidized vegetable oil ester, for example, filler (silica or the like), hardening agent (polyphenol or the like), hardening accelerator (imidazole or the like) may be suitably blended.
    • [总结]不仅提高了绝缘性组合物的绝缘性,耐热性,机械物性等,而且为了提高绝缘材料(绝缘性聚合物成分)的粘度,提高了绝缘物的可靠性, 。 在使用至少包含绝缘聚合物组分的绝缘材料时,将该绝缘材料加热至三维交联,从而获得施加电压设备的绝缘结构的绝缘组合物。 绝缘聚合物组分由植物油如亚麻籽油等形成。 植物油进行酯化,由此得到环氧化脂肪酸,得到环氧化植物油酯。 作为除了该环氧化植物油酯以外的成分,可以适当地配合例如填料(二氧化硅等),硬化剂(多酚等),硬化促进剂(咪唑等)。
    • 5. 发明申请
    • INSULATING POLYMERIC-MATERIAL COMPOSITION
    • 绝缘聚合材料组合物
    • US20090281273A1
    • 2009-11-12
    • US12440511
    • 2007-11-08
    • Yasuyuki Kurata
    • Yasuyuki Kurata
    • C08G65/04
    • C08G59/4042C08G59/62H01B3/18H01B3/40H05K1/0326
    • There is provided an insulating polymeric-material composition that is superior in insulating performance and mechanical strength and exerts no adverse influence on the global environment even after discarded. This insulating polymeric-material composition is obtained by mixing lignin as a curing agent with an epoxidized linseed oil and then conducting a heating treatment to cure it. As the lignin, for example, one obtained by blasting a lignin raw material and then conducting an alcohol extraction is used. The epoxidized linseed oil and the lignin are mixed together in such a proportion that epoxy equivalent of the epoxidized linseed oil:hydroxyl equivalent of the lignin=1:1. In the composition, as a curing acceleration agent, for example, 2-ethyl-4-methylimidazole is added by 0.2-2.0 parts by weight relative to 100 parts by weight of the epoxidized linseed oil. Upon this, it is cured under a condition, for example, of a heating temperature of 150-170° C. and a heating time of 10-20 hours. In some cases, the heating temperature is set to be formed of two different temperature regions.
    • 提供绝缘性能和机械强度优异的绝缘聚合材料组合物,即使在丢弃之后也不会对全球环境产生不利影响。 这种绝缘聚合材料组合物通过将作为固化剂的木质素与环氧化亚麻籽油混合,然后进行加热处理以使其固化而获得。 作为木质素,例如可以使用通过喷射木质素原料,然后进行醇提取得到的木质素。 将环氧化亚麻子油和木质素以这样的比例混合在一起,即环氧当量的环氧化亚麻子油:木质素的羟基当量= 1:1。 在该组合物中,作为固化促进剂,例如,相对于100重量份的环氧化亚麻籽油,例如,2-乙基-4-甲基咪唑的添加量为0.2〜2.0重量份。 此时,在例如加热温度为150〜170℃,加热时间为10〜20小时的条件下固化。 在一些情况下,加热温度设定为由两个不同的温度区域形成。