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    • 1. 发明授权
    • 적층형 세라믹 전자부품 및 그 제조방법
    • 적층형세라믹전자부품및그제조방법
    • KR100438515B1
    • 2004-07-03
    • KR1020010043996
    • 2001-07-21
    • 가부시키가이샤 무라타 세이사쿠쇼
    • 미야자키마코토다나카사토루기무라고지가토고지스즈키고지닛타구니유키
    • H01G4/30
    • PURPOSE: To overcome the problem such that conventionally the shift or distortion of a coil conductive film, when a form-keeping function in a step-absorbing ceramic green sheet layer is deteriorated in producing a laminated ceramic inductor, by sintering a raw laminate formed of the step-absorbing ceramic green sheet on a ceramic green sheet for substantially eliminating a step of an inner coil conductive film. CONSTITUTION: A ceramic paste, containing ceramic powder and organic binder for forming a step-part absorbing ceramic green sheet layer 5, is turned into higher viscosity coefficient by adding a bodying agent. As the bodying agent, plastic beads, which are powdered by chilled crushing, with an average grain size of 0.01 to 3 μm and have a crosslinking structure.
    • 目的:为了克服传统上线圈导电膜的偏移或变形的问题,当生产层叠陶瓷电感器时,在阶梯吸收陶瓷生片层中的形状保持功能恶化时,通过烧结由 陶瓷生片上的台阶吸收陶瓷生片基本上消除了内层线圈导电膜的台阶。 组成:通过加入增粘剂,将含有陶瓷粉末和用于形成台阶吸收性陶瓷生片层5的有机粘合剂的陶瓷糊剂转化为较高的粘度系数。 作为增粘剂,塑料珠粒通过冷硬粉碎成粉末,平均粒径为0.01至3μm,并具有交联结构。
    • 6. 发明公开
    • 모놀리식 세라믹 전자 부품과 그 제조 방법, 및 세라믹페이스트와 그 제조 방법
    • 层压陶瓷电子元件及其制造方法及其制造方法及其制造方法
    • KR1020010062384A
    • 2001-07-07
    • KR1020000075920
    • 2000-12-13
    • 가부시키가이샤 무라타 세이사쿠쇼
    • 미야자키마코토다나카사토루
    • H01G4/30
    • H01F17/0013H01F41/046H01G4/30
    • PURPOSE: A ceramic paste is provided to improve the distributing properties of ceramic powder contained in the ceramic paste. CONSTITUTION: To manufacture ceramic paste, a primary distribution process for distributed-processing a primary mixture containing at least ceramic powder and the first organic solvent and a secondary distributing process for distributed processing a secondary mixture in which at least an organic binder is added to the primary mixture, are performed. The primary mixture and/or the secondary mixture comprise the second organic solvent having a relative evaporation rate smaller than the first organic solvent. The first organic solvent is removed selectively by thermally treating the secondary mixture after the secondary distribution process. The ceramic paste is used advantageously for forming ceramic green layers(5) for absorbing stepped sections on the main surfaces of ceramic green sheets(2) so as to substantially remove the stepped sections by the thickness of internal electrodes(1) in a laminated ceramic capacitor.
    • 目的:提供陶瓷膏,以改善陶瓷糊中所含陶瓷粉末的分布性能。 构成:为了制造陶瓷浆料,分散处理至少包含陶瓷粉末和第一有机溶剂的初级混合物的主要分配方法和用于分散加工二次混合物的二次分配方法,其中将至少一种有机粘合剂加入到 初级混合物。 初级混合物和/或第二混合物包含相对蒸发速率小于第一有机溶剂的第二有机溶剂。 通过在二次分配过程之后热处理二次混合物来选择性地除去第一有机溶剂。 陶瓷膏有利地用于形成用于吸收陶瓷生片(2)的主表面上的阶梯部分的陶瓷生坯层(5),以便通过层压陶瓷中的内部电极(1)的厚度基本上除去台阶部分 电容。
    • 9. 发明授权
    • 모놀리식 세라믹 전자 부품과 그 제조 방법, 및 세라믹페이스트와 그 제조 방법
    • 모놀리식세라믹전자부품과그제조방법,및세라믹페이스트와그제조방
    • KR100388778B1
    • 2003-06-25
    • KR1020000075920
    • 2000-12-13
    • 가부시키가이샤 무라타 세이사쿠쇼
    • 미야자키마코토다나카사토루
    • H01G4/30
    • H01F17/0013H01F41/046H01G4/30
    • A process for producing a monolithic ceramic electronic component, which includes: providing a ceramic slurry, a conductive paste and a ceramic paste; forming a plurality of composite structures each comprising a ceramic green sheet produced by shaping the ceramic slurry, internal circuit element films formed by applying the conductive paste partially onto a main surface of the ceramic green sheet so as to provide step-like sections, and a ceramic green layer which compensates for spaces defined by the step-like sections, the ceramic green layer being formed by applying the ceramic paste onto the region on the main surface of the sheet on which the element films are not formed so as to substantially compensate for the spaces; forming a green laminate by laminating the composite structures; and firing the green laminate. A monolithic ceramic electronic component which is produced through the process; a ceramic paste; and a production process for the paste are also disclosed.
    • 一种制造单片陶瓷电子元件的方法,其包括:提供陶瓷浆料,导电浆料和陶瓷浆料; 形成多个复合结构,每个复合结构包括通过对陶瓷浆料进行成形而制成的陶瓷生片,通过将导电浆料部分地施加到陶瓷生片的主表面上以形成台阶状部分而形成的内部电路元件膜, 所述陶瓷生坯层补偿由所述台阶状部分限定的空间,所述陶瓷生坯层通过将所述陶瓷浆料施加到所述片材的主表面上的未形成所述元件膜的区域上而形成,以基本补偿 空间; 通过层压复合结构形成生坯层压体; 并烧制绿色层压板。 通过该工艺生产的单片陶瓷电子元件; 陶瓷膏; 并且还公开了用于糊剂的生产过程。
    • 10. 发明公开
    • 세라믹 슬러리 조성물, 그 제조방법 및 그로부터 형성되는 세라믹 그린시트
    • 陶瓷浆料组合物及其制造方法,以及由该方法形成的陶瓷绿色片材
    • KR1020020002311A
    • 2002-01-09
    • KR1020010038104
    • 2001-06-29
    • 가부시키가이샤 무라타 세이사쿠쇼
    • 다카타마사치카다나카사토루미야자키마코토
    • C04B35/634
    • C04B35/63424
    • PURPOSE: Provided are a ceramic slurry composition capable of providing a ceramic slurry with a low viscosity by decreasing the solution viscosity of the binder alone and without decreasing the molecular weight of the water-soluble acrylic binder containing a hydrophobic component, its manufacturing method therefor, and ceramic green sheet formed by the method. CONSTITUTION: The ceramic slurry composition comprises a ceramic raw material powder; a water-soluble acrylic binder; and an aqueous solvent. The water-soluble acrylic binder has a weight average molecular weight of from about 10,000 to 500,000, and has an inertial square radius of not more than about 100 nm in the aqueous solvent. The water-soluble acrylic binder is a copolymer containing from about 93 to 99% by weight of alkyl (meth)acrylate which does not dissolve in water as a homopolymer at ambient temperatures and under atmospheric pressure, and from about 1.0 to 7.0% by weight of a carboxyl group-containing unsaturated monomer.
    • 目的:提供一种陶瓷浆料组合物,其能够通过降低粘合剂的溶液粘度而不降低含有疏水性组分的水溶性丙烯酸类粘合剂的分子量来提供具有低粘度的陶瓷浆料,其制造方法, 和通过该方法形成的陶瓷生片。 构成:陶瓷浆料组合物包含陶瓷原料粉末; 水溶性丙烯酸粘合剂; 和水溶剂。 水溶性丙烯酸类粘合剂的重均分子量为约10,000〜500,000,在水性溶剂中的惯性方形半径不超过约100nm。 水溶性丙烯酸类粘合剂是含有约93〜99重量%的(甲基)丙烯酸烷基酯,在环境温度和大气压下不溶于水的均聚物,约1.0〜7.0重量% 的含羧基的不饱和单体。