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    • 1. 发明授权
    • Polymer concrete electrical insulation
    • 聚合物混凝土电绝缘
    • US08545977B2
    • 2013-10-01
    • US12756464
    • 2010-04-08
    • Stephen CliffordFaustine SoyeuxAndrej KrivdaVincent TillietteNikolaus ZantBandeep SinghFelix GreuterLeopold Ritzer
    • Stephen CliffordFaustine SoyeuxAndrej KrivdaVincent TillietteNikolaus ZantBandeep SinghFelix GreuterLeopold Ritzer
    • H01B3/02H01B3/08H01B3/10C08G59/20C08K3/10C08K3/14C08K3/20C08K3/22C08K3/28C08K3/34C08K3/36C08K3/38
    • H01B3/40C08K3/36Y10T428/25Y10T428/252Y10T428/256Y10T428/257Y10T428/259Y10T428/269C08L63/00
    • Polymer concrete electrical insulation including a hardened epoxy resin composition filled with an electrically non-conductive inorganic filler compositions. The polymer concrete electrical insulation system optionally may contain additives. The epoxy resin composition is based on a cycloaliphatic epoxy resin. The inorganic filler composition can be present within the range of about 76% by weight to about 86% by weight, calculated to the total weight of the polymer concrete electrical insulation system. The inorganic filler composition includes a uniform mixture of (i) an inorganic filler with an average grain size within the range of 1 micron (μm) to 100 micron (μm) [component c(i)], and (ii) an inorganic filler with an average grain size within the range of 0.1 mm (100 micron) to 2 mm [component c(ii)]. The inorganic filler with an average grain size within the range of 1 micron (μm) to 100 micron (μm) [component c(i)] can be present in an amount within the range of 22% to 42%, calculated to the total weight of the polymer concrete electrical insulation system; and (e) the inorganic filler with an average grain size within the range of 0.1 mm to 2 mm [component c(ii)] is present within the range of 41% to 61% by weight, calculated to the total weight of the polymer concrete electrical insulation; and method of producing said electrical insulation.
    • 聚合物混凝土电气绝缘包括填充有非导电无机填料组合物的硬化环氧树脂组合物。 聚合物混凝土电绝缘​​系统任选地可以含有添加剂。 环氧树脂组合物基于脂环族环氧树脂。 按照聚合物混凝土电气绝缘系统的总重量,无机填料组合物可以在约76重量%至约86重量%的范围内存在。 无机填料组合物包括(i)平均粒度在1微米(mum)至100微米(母体)[组分c(i)]范围内的无机填料的均匀混合物,和(ii)无机填料 平均粒度在0.1mm(100微米)〜2mm的范围内[成分c(ii)]]。 平均晶粒尺寸在1微米(mum)至100微米(母体)[成分c(i)]范围内的无机填料可以以22%至42%的范围内的量存在,计算为总计 聚合物混凝土电气绝缘体系重量; 和(e)平均粒度在0.1mm至2mm范围内的无机填料[组分c(ii)]存在于聚合物总重量的41%至61%的范围内 混凝土电绝缘​​; 以及制造所述电绝缘体的方法。
    • 2. 发明申请
    • POLYMER CONCRETE ELECTRICAL INSULATION
    • 聚合物混凝土电绝缘
    • US20100227951A1
    • 2010-09-09
    • US12756464
    • 2010-04-08
    • Stephen CLIFFORDFaustine SoyeuxAndrej KrivdaVincent TillietteNikolaus ZantBandeep SinghFelix GreuterLeopold Ritzer
    • Stephen CLIFFORDFaustine SoyeuxAndrej KrivdaVincent TillietteNikolaus ZantBandeep SinghFelix GreuterLeopold Ritzer
    • C08L63/00C08K3/36C08K3/22
    • H01B3/40C08K3/36Y10T428/25Y10T428/252Y10T428/256Y10T428/257Y10T428/259Y10T428/269C08L63/00
    • Polymer concrete electrical insulation including a hardened epoxy resin composition filled with an electrically non-conductive inorganic filler compositions. The polymer concrete electrical insulation system optionally may contain additives. The epoxy resin composition is based on a cycloaliphatic epoxy resin. The inorganic filler composition can be present within the range of about 76% by weight to about 86% by weight, calculated to the total weight of the polymer concrete electrical insulation system. The inorganic filler composition includes a uniform mixture of (i) an inorganic filler with an average grain size within the range of 1 micron (μm) to 100 micron (μm) [component c(i)], and (ii) an inorganic filler with an average grain size within the range of 0.1 mm (100 micron) to 2 mm [component c(ii)]. The inorganic filler with an average grain size within the range of 1 micron (μm) to 100 micron (μm) [component c(i)] can be present in an amount within the range of 22% to 42%, calculated to the total weight of the polymer concrete electrical insulation system; and (e) the inorganic filler with an average grain size within the range of 0.1 mm to 2 mm [component c(ii)] is present within the range of 41% to 61% by weight, calculated to the total weight of the polymer concrete electrical insulation; and method of producing said electrical insulation.
    • 聚合物混凝土电气绝缘包括填充有非导电无机填料组合物的硬化环氧树脂组合物。 聚合物混凝土电绝缘​​系统任选地可以含有添加剂。 环氧树脂组合物基于脂环族环氧树脂。 按照聚合物混凝土电气绝缘系统的总重量,无机填料组合物可以在约76重量%至约86重量%的范围内存在。 无机填料组合物包括(i)平均粒径在1微米(μm)至100微米(μm)[组分c(i)]范围内的无机填料的均匀混合物,和(ii)无机填料 平均粒度在0.1mm(100微米)〜2mm的范围内[成分c(ii)]]。 平均粒径在1微米(μm)至100微米(μm)[组分c(i)]范围内的无机填料可以以22%至42%的范围内的量存在,以总计 聚合物混凝土电气绝缘体系重量; 和(e)平均粒度在0.1mm至2mm范围内的无机填料[组分c(ii)]存在于聚合物总重量的41%至61%的范围内 混凝土电绝缘​​; 以及制造所述电绝缘体的方法。
    • 5. 发明申请
    • ELECTRICAL INSULATION SYSTEM
    • 电绝缘系统
    • US20130203897A1
    • 2013-08-08
    • US13566580
    • 2012-08-03
    • Xavier KORNMANNLars E. SchmidtAndrej KrivdaFelix GreuterMartin Carlen
    • Xavier KORNMANNLars E. SchmidtAndrej KrivdaFelix GreuterMartin Carlen
    • C08K3/22C08K3/36
    • C08K3/22B82Y30/00C08K3/36H01B3/40Y10T428/2982
    • Electrical insulation system with improved electrical breakdown strength, including a hardened polymer component having incorporated therein a filler material and a nano-scale sized filler material. The hardened polymer component is selected from epoxy resin compositions, polyesters, polyamides, polybutylene terephthalate, polyurethanes and polydicyclo-pentadiene. The filler material has an average particle size within the range of 1 μm-500 μm, and is present in a quantity within the range of 40%-65% by weight, calculated to the total weight of the insulation system. The nano-scale sized filler material is a pretreated nano-scale sized filler material, having been produced by a sol-gel process. The nano-scale sized filler material is present within the electrical insulation system in an amount of about 1%-20% by weight, calculated to the weight of the filler material present in the electrical insulation system.
    • 具有改善的电击穿强度的电绝缘系统,包括其中掺入填充材料的硬化聚合物组分和纳米尺寸的填充材料。 硬化的聚合物组分选自环氧树脂组合物,聚酯,聚酰胺,聚对苯二甲酸丁二醇酯,聚氨酯和聚二环戊二烯。 填充材料的平均粒径在1〜500μm的范围内,以绝缘体系的总重量计,其量在40〜65重量%的范围内。 纳米尺寸的填充材料是经过溶胶 - 凝胶法生产的经预处理的纳米级填料。 纳米尺寸的填充材料以电绝缘系统中存在的填充材料的重量计,其量为约1重量%-20重量%,存在于电绝缘系统内。
    • 8. 发明授权
    • Method and system for partial discharge testing of an insulation component
    • 绝缘部件局部放电试验方法和系统
    • US08242786B2
    • 2012-08-14
    • US12543780
    • 2009-08-19
    • Henning FuhrmannAndrej Krivda
    • Henning FuhrmannAndrej Krivda
    • G01R31/02
    • G01R31/1272G01R31/1218G01R31/1245
    • The disclosure relates to a method for partial discharge testing of an insulation component, wherein at least one X-ray pulse is applied to the insulation component, an AC voltage is applied to the insulation component and the partial discharge induced by the at least one X-ray pulse is measured, wherein the dose rate of the at least one X-ray pulse is at least about 10−2 Gray/s. The disclosure relates further to a system for partial discharge testing of an insulation component which includes a flash X-ray source for generating at least one X-ray pulse, an AC voltage source, a voltage sensor, a partial discharge sensor and a partial discharge detection device for evaluating the measured partial discharge.
    • 本公开涉及一种用于绝缘部件的局部放电测试的方法,其中至少一个X射线脉冲被施加到绝缘部件,AC电压被施加到绝缘部件,并且由至少一个X 测量射线脉冲,其中至少一个X射线脉冲的剂量率为至少约10-2 Gray / s。 本公开还涉及一种用于绝缘部件的局部放电测试的系统,该绝缘部件包括用于产生至少一个X射线脉冲的闪光X射线源,AC电压源,电压传感器,局部放电传感器和局部放电 用于评估测量的局部放电的检测装置。
    • 10. 发明申请
    • METHOD AND SYSTEM FOR PARTIAL DISCHARGE TESTING OF AN INSULATION COMPONENT
    • 绝缘元件部分放电测试方法与系统
    • US20100045305A1
    • 2010-02-25
    • US12543780
    • 2009-08-19
    • Henning FUHRMANNAndrej Krivda
    • Henning FUHRMANNAndrej Krivda
    • H01H31/12
    • G01R31/1272G01R31/1218G01R31/1245
    • The disclosure relates to a method for partial discharge testing of an insulation component, wherein at least one X-ray pulse is applied to the insulation component, an AC voltage is applied to the insulation component and the partial discharge induced by the at least one X-ray pulse is measured, wherein the dose rate of the at least one X-ray pulse is at least about 10−2 Gray/s. The disclosure relates further to a system for partial discharge testing of an insulation component which includes a flash X-ray source for generating at least one X-ray pulse, an AC voltage source, a voltage sensor, a partial discharge sensor and a partial discharge detection device for evaluating the measured partial discharge.
    • 本公开涉及一种用于绝缘部件的局部放电测试的方法,其中至少一个X射线脉冲被施加到绝缘部件,AC电压被施加到绝缘部件,并且由至少一个X 测量射线脉冲,其中至少一个X射线脉冲的剂量率为至少约10-2 Gray / s。 本公开还涉及一种用于绝缘部件的局部放电测试的系统,该绝缘部件包括用于产生至少一个X射线脉冲的闪光X射线源,AC电压源,电压传感器,局部放电传感器和局部放电 用于评估测量的局部放电的检测装置。