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    • 1. 发明公开
    • 세라믹 젖병 용기 및 이를 제조하는 방법
    • 陶瓷瓶容器及其制造方法
    • KR1020170089808A
    • 2017-08-04
    • KR1020170093427
    • 2017-07-24
    • 김영준
    • 김영준
    • A61J9/00A61J11/00C04B33/13
    • A61J9/006A61J11/008B01L2300/028C04B33/13C04B2235/70
    • 본발명의일 실시예는세라믹젖병용기및 이를제조하는방법에관한것으로서, 이에따르면용기의내부및 외부가인체에유해한환경호르몬등과같은물질을방출하지않는친환경소재로구현되고, 내열성이강해전자렌지에서데우거나고온의분유를수용하더라도쉽게변질하지않아유해물질을방출하지않고, 불투과성을갖아직사광선을투과시키지않고보온성이뛰어나장시간분유를담고있어도분유가상하지않으며, 표면에서의세정작용이용이하여강한화학작용으로신생아또는유아에게유해한세제를다량사용하지않아도쉽게세척이가능하여위생관리에탁월하며, 반영구적으로사용할수 있어서젖병용기로사용한후 이유식보관용기, 반찬용기등으로활용할수 있는탁월한경제성도기대할수 있다.
    • 本发明的一个实施方案涉及一种用于制造陶瓷瓶容器和为此,根据实施为一种环保材料和出不发射材料,例如在人体有害的环境激素,强耐热微波容器的 暖在或者甚至接收高温度的公式不容易地改变,而不释放的有害物质,即使没有传输的直射光gatah不可渗透的含优异的热绝缘的长周期时间奶粉不虚拟干乳,通过使用清洁eseoui表面官能强的 而你并不需要使用大量的有害的洗涤剂对新生儿或婴儿化学易清洗和卓越的卫生和突出的经济圣徒期望你可以可以使用用瓶容器婴儿食品容器,餐具和容器后永久使用 你可以。
    • 4. 发明公开
    • 갑발에서 소성된 분체의 냉각 장치
    • 用于冷却SAGGAR中的粉末的装置
    • KR1020110124134A
    • 2011-11-16
    • KR1020110039021
    • 2011-04-26
    • 엔지케이 인슐레이터 엘티디
    • 노이리히후오아오키미치로
    • C04B35/64C04B35/626
    • C04B35/64C04B35/626C04B2235/70
    • PURPOSE: An apparatus for cooling powder plasticized in a saggar is provided to efficiently implement a cooling process with respect to powder by including a moving unit which sucks powder from the saggar. CONSTITUTION: An apparatus for cooling powder plasticized in a saggar includes a powder sucking nozzle(1) and a transferring line(2). The powder sucking nozzle sucks and collects powder from a saggar. The transferring line transfers the sucked powder. The apparatus includes a saggar transferring unit or a powder sucking nozzle transferring unit. The saggar transferring unit or the powder sucking nozzle transferring unit includes a transferring unit. The saggar transferring unit transfers the saggar at the lower side of the power sucking nozzle. The powder sucking nozzle transferring unit transfers the power sucking nozzle at the upper side of the saggar.
    • 目的:提供一种用于冷却粉末塑化的粉末的装置,用于通过包括从撒布吸粉末的移动单元来有效地实现关于粉末的冷却过程。 构成:用于冷却粉末的粉末的装置包括粉末吸嘴(1)和传送线(2)。 粉末吸嘴从撒旦吸收和收集粉末。 传输线传送吸粉。 该装置包括一个传送单元或一个粉末吸嘴传送单元。 传送单元或粉末吸嘴传送单元包括转印单元。 传送单元的传送单元在功率吸嘴的下侧传送。 粉末吸嘴传送单元将吸力喷嘴在上侧传递。
    • 5. 发明公开
    • 세라믹 젖병 용기 및 이를 제조하는 방법
    • 陶瓷婴儿用品及其制造方法
    • KR1020130123634A
    • 2013-11-13
    • KR1020120046903
    • 2012-05-03
    • 김영준
    • 김영준
    • A61J9/00A61J11/00C04B33/13
    • A61J9/006A61J11/008B01L2300/028C04B33/13C04B2235/70
    • The present invention relates to a ceramic baby bottle and a manufacturing method using the same. According to the present invention, the inner and outer parts of the baby bottle are made of environment-friendly materials which do not emit hazardous endocrine disrupters. The ceramic baby bottle has high heat-resistance property which is not deformed by heat inside a microwave oven and hot milk so that hazardous materials are not emitted, is impervious to direct light, has high heat reservance so that milk does not spoil even when the milk is kept inside the said bottle for a long period of time, is capable of being easily cleansed without the use of a large quantity of a cleanser which might be hazardous to babies, and can be used semipermanently as a baby bottle and containers for food, thereby improving economical efficiency.
    • 陶瓷婴儿奶瓶及其制造方法技术领域本发明涉及一种陶瓷婴儿奶瓶及其制造方法。 根据本发明,婴儿奶瓶的内部和外部部分由不会发出有害的内分泌干扰物的环境友好的材料制成。 陶瓷婴儿奶瓶具有高耐热性,不受微波炉和热牛奶中的热量的影响,不会发出危险物质,不能直接照射,具有较高的保温性,因此即使在 牛奶长时间保持在该瓶内,能够容易地清洗,而不需要使用大量可能对婴儿有害的清洁剂,并且可以半永久地用作婴儿奶瓶和食品容器 ,从而提高经济效益。
    • 6. 发明公开
    • 열처리로용 부정형 내화물 및 그 노의 라이닝 구조
    • 热处理炉的热处理炉和热处理炉的内部结构的单晶耐火材料
    • KR1020120009403A
    • 2012-02-01
    • KR1020110069977
    • 2011-07-14
    • 엔지케이 인슐레이터 엘티디엔지케이 어드렉 가부시키가이샤
    • 니시우치가즈마히에다고지
    • C04B35/66
    • C04B35/66C04B2235/70
    • PURPOSE: Monolithic refractory for a thermal treating furnace and the lining structure of the furnace are provided to prevent the thermal shrinkage phenomenon of a joint part in a sintering process by using refractory clay containing 1-5 mass% of alkali metal oxide and a magnesia base material. CONSTITUTION: Basic monolithic refractory for a lithium complex oxide thermal treating furnace is used for the lining joint part of the thermal treating furnace and includes refractory clay and refractory aggregate. The refractory includes 96-99.5 mass% of a magnesia base material as the refractory aggregate and includes 1-5 mass% of alkali metal oxide as the refractory clay. The diameter of 95mass% or more particles in the refractory aggregate is lower than or equal to 0.3mm. The room temperature bending intensity of the refractory aggregate after heating is more than or equal to 1.0MPa. The lining structure of the furnace fills the joint part using the refractory.
    • 目的:提供用于热处理炉的单片耐火材料和炉内衬结构,以通过使用含有1-5质量%碱金属氧化物和氧化镁基的耐火粘土来防止烧结过程中接头部分的热收缩现象 材料。 构成:用于锂复合氧化物热处理炉的基本单片耐火材料用于热处理炉的衬里接合部分,并且包括耐火粘土和耐火骨料。 耐火材料包括96-99.5质量%的作为耐火骨料的氧化镁基材,并且包括1-5质量%的作为耐火粘土的碱金属氧化物。 耐火材料骨料中95质量%以上的颗粒直径小于或等于0.3mm。 加热后耐火骨料的室温弯曲强度大于或等于1.0MPa。 炉内衬结构使用耐火材料填充接头部分。
    • 7. 发明公开
    • 분체 소성 플랜트의 운전 방법
    • 粉末喷涂设备的操作方法
    • KR1020110124135A
    • 2011-11-16
    • KR1020110039024
    • 2011-04-26
    • 엔지케이 인슐레이터 엘티디
    • 노이리히후오아오키미치로
    • C04B35/64C04B35/626
    • C04B35/64C04B35/626C04B2235/70
    • PURPOSE: A method for driving a power plasticizing plant is provided to efficiently implement a cooling process with respect to power while the implementation of a power collecting process by sucking and collecting stratified powder from a saggar. CONSTITUTION: A method for driving a power plasticizing plant includes the following: A saggar(4) containing powder is successively transferred from one side to another side of a furnace. A plasticizing process is implemented in a continuous kiln(1). Powder is collected from the saggar, and the empty saggar is transferred to a subsequent process. While the power collecting process, stratified powder is sucked and collected from the saggar by a powder sucking nozzle(21). The power sucking nozzle includes a gas emitting nozzle.
    • 目的:提供一种用于驱动动力塑化装置的方法,以在通过从撒旦抽吸和收集分层粉末来实施集电过程时有效地实施关于功率的冷却过程。 构成:用于驱动动力塑化装置的方法包括以下步骤:将含有粉末(4)的粉末从炉的一侧依次转移到另一侧。 在连续窑中实施塑化过程(1)。 粉末从saggar收集,空的saggar被转移到随后的过程。 在电力收集过程中,分层粉末通过粉末吸嘴(21)从汲取中收集。 动力吸嘴包括气体发射喷嘴。