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    • 4. 发明授权
    • 보안용 기록매체
    • 安全记录媒体
    • KR101738341B1
    • 2017-05-22
    • KR1020150114102
    • 2015-08-12
    • 주식회사 소재의맥(주)제이엠씨(주)티엔에프
    • 정택용김재환이활종정민창이상원강용구김경훈
    • B42D25/30B41M3/14
    • 본발명은보안용기록매체에관한것이다. 본발명은인쇄가능한기재와검출용물질이일체로형성된검출기재층을포함하는보안용기록매체에있어서, 상기인쇄가능한기재는종이또는필름이며, 상기검출용물질은서로직교하는제 1방향, 제 2방향및 제 3방향중 두방향의길이가 1~200㎛이고나머지한 방향의길이는 0.2~20mm 이며, 상기검출용물질은상기검출용물질의전체중량중 탄소, 수소, 산소및 질소로이루어진군에서선택된적어도하나를 5~50 중량% 함유하는것을특징으로하는보안용기록매체를개시한다.
    • 安全记录介质本发明涉及一种安全记录介质。 另外,本发明中可用的基底和检测安全记录介质材料印刷包括检测基本层一体地形成用于可印刷基底纸或薄膜,用于第一方向的检测材料,彼此垂直的第二 2路和3和两个长1〜200㎛和0.2在取向方向中的另一个方向上的长度至20mm的,用于检测的材料在该材料的总重量,是由碳,氢,氧和氮的用于检测 以及5至50重量%的选自上述材料中的至少一种。
    • 7. 发明授权
    • 친환경 유니-소재 전자부품 포장용 다층필름 및 이를 이용한 백
    • 用于包装电子部件的环境友好的单层多层膜和使用其的袋
    • KR101387977B1
    • 2014-04-22
    • KR1020130055753
    • 2013-05-16
    • (주)티엔에프
    • 김경훈강용구이활종강호종이경미조병선
    • B32B27/32B29C47/06C08J5/18
    • The present invention provides an environment-friendly uni-material multi-layered film for packaging electronic parts and a bag using the same. The multi-layered film according to the present invention is formed by co-extruding a first layer, a second layer, and a third layer which are each made of a polyolefin-based single resin. The multi-layered film according to the present invention may further comprise a coating layer formed on the surface of the third layer. The multi-layered film of the present invention is suitable as a packaging for electronic parts as it has improved moisture blocking performance, gas permeability, and physical properties like strength, elongation, thermal adhesion, and is environment-friendly and improves recyclability by using material for forming the multi-layered film as a uni-material.
    • 本发明提供了一种用于包装电子部件的环境友好的单层多层膜和使用该多层膜的袋。 根据本发明的多层膜通过共挤出由聚烯烃基单树脂制成的第一层,第二层和第三层而形成。 根据本发明的多层膜还可以包括形成在第三层的表面上的涂层。 本发明的多层膜适合作为电子部件的包装,因为其具有改善的防潮性,透气性和物理性能如强度,伸长率,热粘合性,并且是环境友好的并且通过使用材料提高可回收性 用于形成多层膜作为单质材料。
    • 8. 发明公开
    • 전자부품 포장용 다층필름
    • 用于包装电子部件和电子部件包的多层膜
    • KR1020130139159A
    • 2013-12-20
    • KR1020130037451
    • 2013-04-05
    • (주)티엔에프
    • 김경훈강용구이활종강호종이경미조병선
    • B32B27/32B32B27/18B65D65/40
    • Y02W30/805Y02W30/807
    • Disclosed is a multilayer film for packaging electronic parts and an electronic part bag. The multilayer film for packaging electronic parts and bag for electronic parts according to the present invention comprise a three-layer base film having an outer layer, center layer and inner layer, and the three layers have a width of 50~250μm and are composed of polyolefine films. The present invention has an excellent moisture barrier property, gas permeability, strength property, shrinkage property and heat-adhesive property. In addition, the present invention is appropriate for packaging electronic parts, is environment-friendly, has high recyclability and contains a surface with an antistatic agent. The polyolefine film and packaging bag disclosed by the present invention effectively protect objects inside while transporting or packaging electronic elements, display panel, complete product, semiconductor chip, PCB, cartridge for secondary batteries, and solar batteries since static electricity and corona discharge during arc discharge are prevented.
    • 公开了一种用于包装电子部件和电子部件袋的多层膜。 根据本发明的用于包装电子部件和电子部件的袋的多层膜包括具有外层,中心层和内层的三层基膜,并且三层的宽度为50〜250μm,由 聚烯烃薄膜。 本发明具有优异的防潮性,透气性,强度性能,收缩性和热粘合性。 另外,本发明适用于电子部件的包装,环保,具有高可再生性,并且具有抗静电剂的表面。 本发明公开的聚烯烃薄膜和包装袋在电弧放电期间的静电和电晕放电的作用下,有效地保护物体在运输或包装电子元件,显示面板,成品,半导体芯片,PCB,二次电池的盒和太阳能电池的同时, 被阻止
    • 9. 发明公开
    • 전자부품 포장용 다층필름
    • 使用防止电气部件的透气膜的涂层溶液
    • KR1020140003740A
    • 2014-01-10
    • KR1020120068599
    • 2012-06-26
    • (주)티엔에프
    • 김경훈강용구이활종강호종이경미조병선
    • B32B27/08B32B27/32B05D3/00
    • B32B27/08B32B27/32B32B2307/7246B32B2323/043B32B2323/046B32B2439/00
    • The present invention relates to a barrier coating aqueous solution preventing moisture permeation of a film for an electronic material. A multilayer film for packaging electronic parts is formed of a base film of the electronic material, having four layers obtained by successively stacking an outer layer, a central layer, an inner layer, and a coating layer. A surface layer is formed using low density polyethylene resin as a basic resin and an antistatic resin, and includes polyaniline, polypyrrole, polythiophene, polyethylendioxythiophene (PEDOT), derivatives thereof, and copolymers thereof. The central layer includes a resin which is a synthetic resin obtained by polymerizing ethylene of high density polyenthylene (HDPE) and is obtained by mixing HDPE, M-PE, and LLDPE. The inner layer is sealed into a thickness of 5-20 um using LLDPE as a basic resin. The coating layer is obtained by thermally cross-linking a PEG, PU, and LLDPE based emulsion solution on the inner layer into a thickness of 5-50 um for coating. The present invention provides the barrier coating aqueous solution preventing the moisture movement of the film for the electronic material which is formed of coating liquid for preventing the moisture movement of the film by being injected to the inside of an edge surface of the film while sealing the inside of the multilayer film.
    • 本发明涉及防止电子材料用膜渗透水分的阻隔性水溶液。 用于封装电子部件的多层膜由电子材料的基膜形成,其具有通过连续堆叠外层,中心层,内层和涂层而获得的四层。 使用低密度聚乙烯树脂作为碱性树脂和抗静电树脂形成表面层,包括聚苯胺,聚吡咯,聚噻吩,聚乙二氧噻吩(PEDOT)及其衍生物及其共聚物。 中心层包括树脂,其是通过聚合高密度聚乙烯(HDPE)的乙烯而获得并通过混合HDPE,M-PE和LLDPE获得的合成树脂。 使用LLDPE作为基础树脂将内层密封成5-20μm的厚度。 通过在内层上将基于PEG,PU和LLDPE的乳液溶液热交联至5-50μm的厚度进行涂布,获得涂层。 本发明提供一种阻挡涂层水溶液,其防止由涂布液形成的电子材料的膜的水分移动,以防止膜的湿气移动,同时将膜注入到膜的边缘表面的内部,同时密封 在多层膜内。
    • 10. 发明公开
    • 영구표식을 갖는 에프알피 코어의 제조방법
    • FRP芯的制造方法
    • KR1020130090967A
    • 2013-08-16
    • KR1020120012118
    • 2012-02-07
    • (주)티엔에프
    • 김경훈이활종강용구
    • B29C70/30B29C70/06
    • B29C70/30B05D1/32B29C70/06
    • PURPOSE: A method for manufacturing an FRP core is provided to form a mark where information about a film to be coiled is recorded inside a core, thereby dissolving the problems of mixing a product and the loss of the mark in respect to the problems related to the storage of the product. CONSTITUTION: A method for manufacturing an FRP core with a permanent mark comprises the following steps: coiling an unhardened FRP where glass fiber is dipped into epoxy resin to be laminated in a thickness of 1-3 mm (s10); pressing out the epoxy resin from a first molded product laminated in a mold to have a thickness of 1.5-2 mm (s20); forming a mark including information stored in characters or symbols on the surface of a second molded product towards the inside diameter of the core (s30); supplying the unhardened FRP while rotating a third molded product laminated in the mold and finishing laminating the product when the thickness of the product is 3.5-4 mm shorter than completion thickness (s40); forming a mark including information stored in characters or symbols on the surface of a fourth molded product towards the inside diameter of the core (s50); laminating the product to have the completion thickness by rotating a fifth molded product at 400-600 rpm and supplying the unhardened FRP to the product (s60); and plastic-hardening a sixth molded product while temperature is being gradually increased (s70). [Reference numerals] (S10) First forming step of laminating an unhardened FRP on a mold; (S20) Second forming step of pressing out the epoxy resin from a first molded product laminated in a mold; (S30) Third forming step of forming a mark including information stored in characters or symbols on the surface of a second molded product; (S40) Fourth forming step of increasing the thickness of the third molded product; (S50) Fifth forming step of forming a mark on the surface of a fourth molded product; (S60) Sixth forming step of increasing the thickness of the fifth molded product; (S70) Seventh forming step of plastic-hardening a sixth molded product
    • 目的:提供一种用于制造FRP芯的方法,以形成将要卷绕的薄膜的信息记录在核心内的标记,从而解决了产品混合的问题和关于与 产品的存放。 构成:用于制造具有永久标记的FRP芯的方法包括以下步骤:卷绕未硬化的FRP,其中玻璃纤维浸入环氧树脂中以层压1-3mm(s10)的厚度; 从层压在模具中的第一模制产品压出环氧树脂以具有1.5-2mm(s20)的厚度; 在第二模制品的表面上形成包含以字符或符号存储的信息朝向芯的内径的标记(s30); 当产品的厚度比完成厚度短3.5-4毫米时,供应未硬化的FRP,同时旋转层压在模具中的第三模制产品,并完成层压产品。 在第四模制品的表面上形成包含以字符或符号存储的信息朝着芯的内径形成标记(s50); 通过以400-600rpm旋转第五模制产品并将未硬化的FRP供应到产品(60)来层压产品以具有完成厚度; 并在温度逐渐增加的同时塑化硬化第六模制产品(s70)。 (S10)将未硬化的FRP层叠在模具上的第一成形工序; (S20)从层叠在模具中的第一成型体压出环氧树脂的第二形成工序; (S30)在第二成型品的表面上形成包含以字符或符号存储的信息的标记的第三形成步骤; (S40)增加第三成型体的厚度的第四成形工序; (S50)在第四成型体的表面上形成标记的第五形成工序; (S60)增加第五成型体的厚度的第六形成工序; (S70)第六成型体的塑化硬化的第七形成工序