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    • 1. 发明公开
    • 도자기 표면장식의 심미성 향상을 위한 적화장토
    • 红色ENGOBE
    • KR1020120019547A
    • 2012-03-07
    • KR1020100082793
    • 2010-08-26
    • 이장수
    • 이장수
    • C04B14/10C04B33/24C04B41/85C04B14/30
    • C04B41/85B28C1/006C04B35/01C04B2103/54
    • PURPOSE: A red engobe for the esthetic improvement of porcelain surface decorations is provided to clearly express a red color by mixing an engobe composition at a proper ratio. CONSTITUTION: A red engobe for the esthetic improvement of porcelain surface decorations comprises 48-58wt% of pigment, 35-45wt% of grayish-blue clay, 2-8wt% of tin, 2-8wt% of copper oxide, and 2-8wt% of white clay. A manufacturing method of the pigment comprises the following steps: mixing Y2O3 and Al2(OH)3 of same weight rate to make a mixture of basic raw materials; mixing 4-10wt% of mineralizer with the mixture of basic raw materials; calcinating the mixture of basic raw materials and mineralizer in a crucible at 1,350-4,600deg.C; naturally cooling the mixture at room temperature for 5-6hours; and pulverizing cooled mixture to an average particle size of 10micro meters. The mineralizer includes NaF, MgF2, and Li2CO3 at a 1:1:1 ratio. 50% of the white clay particles are less than 2micro meters in particle size.
    • 目的:为了通过以适当的比例混合eng obe obe obe obe eng eng eng eng::::。。。。。。。。。。。。。。。。 构成:瓷器表面装饰美观改进的红色包括颜料占48-58%,灰蓝色粘土35-45%,锡,2-8%重量的氧化铜和2-8% %的白土。 颜料的制造方法包括以下步骤:混合相同重量比的Y 2 O 3和Al 2(OH)3以制备基本原料的混合物; 混合4-10wt%的矿化剂与基础原料混合; 在坩埚中以1,350-4,600℃煅烧碱性原料和矿化剂混合物; 在室温下自然冷却混合物5-6小时; 并将冷却的混合物粉碎至10μm的平均粒径。 矿化剂包括1:1:1的NaF,MgF 2和Li 2 CO 3。 白色粘土颗粒的50%粒径小于2微米。
    • 2. 实用新型
    • 클레이 재생장치
    • 粘土再现装置
    • KR2019980046450U
    • 1998-09-25
    • KR2019960059603
    • 1996-12-28
    • 대우자동차 주식회사
    • 이성현
    • B28B17/02
    • B28C1/006B09B3/00
    • 본고안은클레이재생장치에관한것으로, 일반적으로고가의클레이를이용하여차체외형을제작할때 제작중클레이가바닥으로떨어져작업자등이발로밟게되거나하여상기클레이에이물질등이포함되어버리게되거나상기클레이로모델링한차체외형을폐기시킬때 굳어진클레이를분쇄시키는장치가별도로구비되어있지않음으로인해상기와같이차체외형을모델링한클레이를버려야하는문제점을해소하기위하여, 이물질등이포함된클레이에서이물질을분리시키며또한굳어진클레이를블레이드(13)에의해분쇄시키며, 분쇄된클레이에서그릴(16)을통해이물질을걸러내는클레이재생장치를제공함으로써, 고가의클레이를이용한차체외형제작작업중이물질등이포함된클레이를버리게되는것을방지함과아울러클레이를이용하여모델링한차체외형의폐기시굳어진클레이를분쇄시켜다시재활용할수 있도록함으로써, 원가를절감시키게되는효과가있다.
    • 当生产车身外使用昂贵的粘土是使掉落到地面和操作者,如巴尔格英尺的粘土或包括的异物,如粘土或粘土内部模型纸涉及一种粘土再现装置,丢弃通常 hancha解决扔掉硬化一个的问题,由于用于粉碎粘土不提供分开配置在体外的类型时建模车体轮廓作为粘土的装置中,隔离开的异物等的异物粘土 通过硬化粘土到叶片13还sikimyeo地,通过提供一种粘土和再现装置通过所述格栅16在粉碎粘土过滤异物,一个等使得使用昂贵的粘土工作碎片粘土车身外 并且还从被丢弃,以及防止作为粉碎粘土使用粘土硬化在处置身体轮廓建模的时间 通过这样来对再生回来,有一种情形,从而削减成本的效果。
    • 3. 发明公开
    • 유기 템플레이트의 포스트 인터칼레이션을 이용한알루미나-실리카 가교화 점토의 제조 방법
    • 一种使用有机模板后接触生产氧化硅 - 硅胶的方法
    • KR1020090103352A
    • 2009-10-01
    • KR1020080028898
    • 2008-03-28
    • 한국세라믹기술원
    • 박선민나윤희
    • C04B14/10C04B35/14
    • B28C1/006
    • PURPOSE: A method for producing alumina-silica pillared clay using post intercalation of an organic template is provided to secure an excellent humidity-controlling characteristic. CONSTITUTION: A method for producing alumina-silica pillared clay using post intercalation of an organic template comprises the following steps of: putting clay into distilled water, and expanding montmorillonite to obtain a clay colloidal solution; mixing 2N HCl, ethanol, and TEOS(tetraethyl orthosilicate); stirring the mixture at room temperature for 1.5-2.5 hours and obtaining a silica sol; dropping 1N AlCl3·6H2O into the silica sol and letting them react to each other at 80°C for 1 hour to obtain an alumina(Al2O3)-silica(SiO2) sol; mixing the alumina-silica sol and clay colloidal solution and leaving them to react at 50~70°C for 2-4 hours; performing an ion exchanging reaction at room temperature for 10-14 hours and filtering the obtained precipitate; eliminating unreacted ions from it and obtaining an alumina-silica pillared clay precursor; adding octadecylamine to the alumina-silica pillared clay precursor 4-6 times as much as CEC(cation exchange capacity); post-intercalating it at room temperature for 10-14 hours and filtering the obtained precipitate; washing it with distilled water to remove unreacted ions; and sintering it at 550~700°C for 3-5 hours.
    • 目的:提供使用有机模板的后插入生产氧化铝 - 二氧化硅柱状粘土的方法,以确保优异的湿度控制特性。 构成:使用有机模板后插入制备氧化铝 - 二氧化硅柱状粘土的方法包括以下步骤:将粘土放入蒸馏水中,并膨胀蒙脱石以获得粘土胶体溶液; 混合2N HCl,乙醇和TEOS(原硅酸四乙酯); 在室温下搅拌混合物1.5-2.5小时,得到二氧化硅溶胶; 将1N AlCl 3·6H 2 O滴入硅溶胶中,使其在80℃下反应1小时,得到氧化铝(Al 2 O 3) - 二氧化硅(SiO 2)溶胶; 混合氧化铝 - 硅溶胶和粘土胶体溶液,使其在50〜70℃下反应2-4小时; 在室温下进行离子交换反应10-14小时,过滤得到的沉淀物; 从中除去未反应的离子并获得氧化铝 - 二氧化硅柱状粘土前体; 向氧化铝 - 二氧化硅柱状粘土前体添加十八胺,为CEC(阳离子交换容量)的4-6倍; 在室温下后插入10-14小时,过滤得到的沉淀物; 用蒸馏水洗涤以除去未反应的离子; 并在550〜700℃下烧结3-5小时。
    • 4. 发明公开
    • 고령토로부터 나노크기 입자를 함유한 점토의 제조방법
    • 从KAOLIN制备含有纳米尺寸颗粒的粘土的方法
    • KR1020140095697A
    • 2014-08-04
    • KR1020130008367
    • 2013-01-25
    • 경남대학교 산학협력단
    • 김순호전병세
    • B28C1/18C04B14/10B82Y30/00
    • B28C1/006B28C1/04B28C1/06B28C1/082B82Y30/00C04B14/10
    • The present invention relates to a manufacturing method of clay containing nano-sized particles and having excellent plasticity, which comprises the steps of: putting kaolin, water glass and water as a starting material in a ball mill into which alumina ball media are inserted, and then grinding the kaolin, water glass and water to generate a first particle; grinding the first particle obtained in the previous step in a ball mill into which alumina ball media are inserted, and then forming cake by a filter press, followed by vacuum kneading the cake in a vacuum pugmill to generate a second particle; and grinding the second particle obtained in the previous step in a ball mill into which zircon ball media are inserted, and then drying the second particle which has been ground to obtain ultrafine clay which is a third particle. The clay manufactured according to the present invention has a uniform composition, a narrow particle size distribution, and excellent plasticity.
    • 本发明涉及含有纳米尺寸颗粒并具有优异塑性的粘土的制造方法,其包括以下步骤:将高岭土,水玻璃和水作为起始原料,在其中插入氧化铝球介质的球磨机中,以及 然后研磨高岭土,水玻璃和水以产生第一颗粒; 将上一步骤获得的第一颗粒研磨在其中插入氧化铝球介质的球磨机中,然后通过压滤机形成滤饼,随后在真空搅拌机中真空捏合该饼以产生第二颗粒; 并将前述工序中得到的第二粒子研磨在其中插入锆石球介质的球磨机中,然后干燥已研磨的第二粒子,得到作为第三粒子的超细粘土。 根据本发明制造的粘土具有均匀的组成,窄的粒度分布和优异的可塑性。
    • 7. 发明公开
    • 극성 유기용매를 이용한 유기 점토의 제조방법
    • 使用极有机溶剂制备组织的方法
    • KR1020140122060A
    • 2014-10-17
    • KR1020130038645
    • 2013-04-09
    • (주)금강알텍
    • 조득환구승영
    • C04B14/10C04B33/04
    • B28C1/006C09C1/42
    • 본 발명은 극성 유기용매를 이용한 유기 점토의 제조방법에 관한 것으로, 더욱 상세하게는 활성 점토 1 중량부를 극성 유기용매 4 내지 100 중량부에 첨가하고, 여기에 유기화제 1 내지 5 중량부 첨가하여 반응시키고, 얻어진 반응물을 건조하는 단계를 포함하는 것을 특징으로 하는 유기 점토의 제조방법에 관한 것이다.
      상기 방법은 유기 점토 제조 시 극성 유기용매를 사용함에 따라 소포제를 사용하지 않더라도 유기화제의 용해성이 높고, 건조 시 공정에 들어가는 에너지가 적고 건조 속도가 빨라 유기 점토의 생산성이 향상될 뿐만 아니라 최종 얻어지는 유기 점토 내 함수율을 낮출 수 있는 이점이 있다.
    • 本发明涉及使用极性有机溶剂制备有机粘土的方法,更具体地说,涉及使用极性有机溶剂制备有机粘土的方法,包括以下步骤:将1重量份的活性粘土加入到4至100份中 重量的极性有机溶剂,向其中加入1至5重量份的组织器并使其混合,并干燥所得产物。 该方法即使在不使用有机消泡剂的情况下也可以通过使用极性有机溶剂来提高组织物的溶解性,减少干燥工序的能量,提高干燥速度,从而提高有机粘土的生产率,降低水分含量 终于获得了有机粘土。
    • 8. 发明公开
    • 문구용 친환경 점토 및 그 제조방법
    • 文化生态环境粘土和制造工艺
    • KR1020110002342A
    • 2011-01-07
    • KR1020090059881
    • 2009-07-01
    • 이화희
    • 이화희
    • C04B14/10C04B16/02G09B19/00
    • C04B33/04B28C1/006C04B33/1305C04B33/132G09B19/00
    • PURPOSE: A method for preparing stationery environmentally-friendly clay is provided to impart softness, clearness, and cohesive force to clay using loess, pine needle powder, and mulberry paper pulp. CONSTITUTION: A method for preparing stationery environmentally-friendly clay, based on 100.0 parts by weight of loess, 80-115 parts by weight of pine needle powder, 15-35 parts by weight of loess, and 15-35 parts by weight of mulberry paper pulp. A method for manufacturing stationery environment-friendly clay comprises the steps of: mixing and kneading 80-115 parts by weight of pine needle powder, 15-35 parts by weight of loess, and 15-35 parts by weight of mulberry paper pulp; heating and molding the mixture; and packaging the molded product.
    • 目的:提供一种制备文具环保粘土的方法,以使用黄土,松针粉和桑叶纸浆对粘土赋予柔软度,清晰度和凝聚力。 构成:以100.0重量份的黄土,80-115重量份的松针粉,15-35重量份的黄土和15-35重量份的桑树为基础制备文具环保粘土的方法 纸浆。 制造文具环保粘土的方法包括以下步骤:将80-115重量份的松针粉末,15-35重量份的黄土和15-35重量份的桑叶纸浆混合和捏合; 加热和成型混合物; 并包装成型产品。