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    • 2. 发明公开
    • 귀금속을 이용한 손톱용 악세사리 및 제조방법
    • 人造钉使用贵金属附件及其方法
    • KR1020120129386A
    • 2012-11-28
    • KR1020110047620
    • 2011-05-20
    • 신선호
    • 신선호
    • A45D31/00A44C27/00
    • A45D31/00A44C27/00Y02P70/177
    • PURPOSE: An accessory for artificial nails using precious metals and a manufacturing method thereof are provided to prevent damage to fingernails and skin trouble. CONSTITUTION: An original model of a nail shape is manufactured(S100). A rubber mold is manufactured from the original model(S200). A wax model is manufactured from the rubber mold(S300). A plaster mold is manufactured from the wax mold(S400). A precious metal molding material is injected in the plaster mold(S500). A casting is manufactured by removing the plaster mold(600). Foreign materials are removed from the surface of the precious metal casting(S700). The decorative pieces are set on the surface of the precious metal casting(S800). [Reference numerals] (S100) First model manufacturing step; (S200) First mold manufacturing step; (S300) Second model manufacturing step; (S400) Second mold manufacturing step; (S500) Molding step; (S600) Casting manufacturing step; (S700) Finishing step; (S800) Processing step
    • 目的:提供使用贵金属的人造指甲及其制造方法,以防止指甲和皮肤问题的损害。 构成:制造指甲形状的原始模型(S100)。 橡胶模具由原始型号(S200)制造。 蜡模由橡胶模制造(S300)。 石蜡模具由蜡模制造(S400)。 在石膏模具中注入贵金属成型材料(S500)。 通过去除石膏模具(600)制造铸件。 从贵金属铸件表面除去异物(S700)。 装饰件设置在贵金属铸件的表面上(S800)。 (附图标记)(S100)第一模型制造步骤; (S200)第一模具​​制造步骤; (S300)第二模具制造步骤; (S400)第二模具制造步骤; (S500)成型步骤; (S600)铸造制造步骤; (S700)整理步骤; (S800)处理步骤
    • 3. 发明授权
    • 디지털 방식의 가변식 ELID 연삭 전원공급장치
    • 数字型逆向电流免费电源
    • KR101141375B1
    • 2012-05-03
    • KR1020110136126
    • 2011-12-16
    • 경남과학기술대학교 산학협력단
    • 곽태수
    • B24B55/00C25F3/16
    • Y02P70/177
    • PURPOSE: A digital variable ELID(Electrolytic Inprocess Dressing) grinding and power supplying device is provided to improve grinding performance by enabling the precise control of PWM(Pulse Width Modulation) and the variable control of load voltage/current. CONSTITUTION: A digital variable ELID grinding and power supplying device comprises an input circuit unit(100), an inrush current preventing circuit unit(200), a power factor improving circuit unit(300), a main switching circuit unit(400), a reverse voltage/reverse current circuit unit(500), and a CPU(600). The input circuit unit rectifies the pulsating currents of low-frequency. The inrush current preventing circuit unit restricts peak currents. The power factor improving circuit unit filters a power factor through sinusoidal currents to improve the power factor. The main switching circuit unit turns on/off a high-frequency switch to control irregular voltage. The reverse voltage/reverse current circuit unit prevents voltage and currents flowing backward from a load. The CPU controls the level change of DC voltage.
    • 目的:通过实现PWM(脉宽调制)的精确控制和负载电压/电流的可变控制,提供数字变量ELID(电解过程敷料)研磨和供电装置,以提高磨削性能。 构成:数字变量ELID研磨和供电装置包括输入电路单元(100),浪涌电流防止电路单元(200),功率因数提高电路单元(300),主开关电路单元(400), 反向电压/反向电流电路单元(500)和CPU(600)。 输入电路单元对低频脉动电流进行整流。 浪涌电流防止电路单元限制峰值电流。 功率因数提高电路单元通过正弦电流来滤除功率因数,以提高功率因数。 主开关电路单元打开/关闭高频开关以控制不规则电压。 反向电压/反向电流电路单元防止从负载向后流动的电压和电流。 CPU控制直流电压的电平变化。
    • 5. 发明公开
    • 블라스팅 장치
    • 喷砂装置
    • KR1020160026102A
    • 2016-03-09
    • KR1020140113998
    • 2014-08-29
    • 삼성중공업 주식회사
    • 송건영김기선허영범
    • B24C3/02F03D9/00H02J7/14
    • Y02E10/72Y02P70/177B24C3/02B24C3/00B24C3/06B24C3/065F03D9/00H02J7/14
    • 피처리물을향해연마제를분사하여상기피처리물의표면을처리하는분사부, 상기분사부와연결되며, 상기연마제를저장하는제1 탱크, 상기연마제의분사를위한압축공기를공급하는공급부, 상기압축공기의공급에따라외부의상기연마제와, 상기연마제를분사함으로써상기피처리물의표면에서발생된이물질을흡입하여상기이물질과상기연마제가섞여있는제1 혼합기체를방출하는흡입부, 상기제1 혼합기체로부터상기연마제를회수하여제2 혼합기체를형성하는제2 탱크및 상기제2 혼합기체의공급에따라전기를발전시키는발전부를포함하는블라스팅장치가개시된다.
    • 公开了一种喷砂设备,包括:注射部件,其通过向待处理材料注入磨料来处理待加工材料的表面; 第一罐,其连接到注射部分并将磨料存储在其中; 供给用于注入磨料的压缩空气的供给部; 抽吸部分,其吸入外部磨料和由于根据供给压缩空气的磨料喷射而在待加工材料的表面上产生的异物,并将异物与磨料混合以排出第一混合气体 到外面 第二罐,其从第一混合气体收集磨料以形成第二混合气体; 以及根据第二混合气体的供给而发电的发电部。
    • 6. 发明公开
    • 희토류 원소의 회수 방법
    • 恢复稀土元素的方法
    • KR1020080100137A
    • 2008-11-14
    • KR1020080043216
    • 2008-05-09
    • 에이지씨 세이미 케미칼 가부시키가이샤
    • 이토요시카즈히사츠네데츠후미엔도가즈아키이케무라마사아키
    • C01F17/00C22B59/00
    • Y02P70/177
    • A method of recovering rare earth materials is provided to selectively dissolve the rare earth oxide component by using mine, an oxidation agent and a reducing agent and to separate selectively impurities including a coexisted iron ion by separating in advance solid from liquid at a specific pH. Slurry containing the rare earth oxide is mixed with an oxidation agent and a reducing agent and an acid under the mixing condition and melted. After a pH of the obtained rare earth materials solution is controlled at the proper condition, a non-soluble component is separated by a solid-liquid separating unit, a carbonic acid rare earth(85) is segregated by adding an ammonium bicarbonate in the solution, the carbonic acid rare earth is separated from the obtained carbonic acid rare earth containing slurry and the rare earth oxide is manufactured by plasticizing it. The generated rare earth materials are collected. The strong alkaline agent is added in the ammonium salt aqueous solution separating the carbonic acid rare earth, the ammonia is generated and condensed, the ammonia aqueous solution is collected. A solution of the ammonium bicarbonate(70) or the slurry is formed by contacting carbon dioxide generated from the process. The solution or the slurry of the obtained ammonium bicarbonate is reused as the precipitation agent forming the carbonic acid rare earth.
    • 提供回收稀土材料的方法,通过使用矿,氧化剂和还原剂来选择性地溶解稀土氧化物组分,并通过在特定pH下预先分离固体与液体来选择性地分离包括共存的铁离子的杂质。 将含有稀土氧化物的浆料与氧化剂,还原剂和酸在混合条件下混合并熔融。 在所得稀土材料溶液的pH值控制在适当的条件下后,通过固液分离单元分离不可溶成分,通过在溶液中加入碳酸氢铵使碳酸稀土(85)分离 ,从得到的含碳酸稀土浆中分离出碳酸稀土,通过使其稀释来制造稀土类氧化物。 收集生成的稀土材料。 将强碱性试剂加入到分离碳酸稀土的铵盐水溶液中,产生氨并冷凝,收集氨水溶液。 通过使由该方法产生的二氧化碳接触而形成碳酸氢铵(70)或浆料的溶液。 将得到的碳酸氢铵的溶液或浆液作为形成碳酸稀土的沉淀剂再次使用。