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公开(公告)号:KR101656482B1
公开(公告)日:2016-09-09
申请号:KR1020150007568
申请日:2015-01-15
Applicant: 강원대학교산학협력단
CPC classification number: Y02E10/72
Abstract: 편하중에의한기어부의피로와그에따른토크변화를측정할수 있도록형성된풍력발전기내구시험용시뮬레이터에관한것이다. 풍력발전기내구시험용시뮬레이터는로터부와, 구동부와, 기어부, 및토크트랜스듀서를포함한다. 로터부는일측에회전축이형성된허브와, 허브의둘레를따라연결된적어도하나의블레이드시편을구비한다. 구동부는로터부의전면에이격배치되어로터부를비접촉식으로회전시킨다. 기어부는로터부의회전축에연결된다. 토크트랜스듀서는기어부의회전축에연결되며, 기어부의회전축에작용하는외란요소에의한토크변화를측정한다.
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公开(公告)号:KR101553068B1
公开(公告)日:2015-09-15
申请号:KR1020130106660
申请日:2013-09-05
Applicant: 강원대학교산학협력단
IPC: F21V5/04
Abstract: 광집중현상을줄여눈부심을방지하고, 광확산특성을향상시켜주는 LED 광확산렌즈가개시된다. 본발명의바람직한실시예에따른엘이디광 확산렌즈는기둥형상의몸체부, 몸체부의상면으로부터몸체부일부가, 중앙이움푹패인형태로, 함몰된오목부, 오목부표면에형성된다수의음각마이크로홈부를포함하는것을특징으로한다.
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公开(公告)号:KR101397714B1
公开(公告)日:2014-05-22
申请号:KR1020120055622
申请日:2012-05-24
Applicant: 강원대학교산학협력단
IPC: G01N33/50 , G01N33/53 , G01N33/551
Abstract: 본 발명은 나노다공성 알루미나를 고정의 패턴으로 분리할 수 있고, 유연한 고분자 기판의 특정위치에 전사시킬 수 있는 다공성 알루미나 기반 바이오칩 제조방법에 관한 것으로, 제1기판의 일면에 알루미늄을 증착하는 단계와, 상기 제1기판에 증착된 알루미늄에 양극 산화 공정을 통해 나노 다공성 알루미나를 제작하는 단계와, 상기 나노 다공성 알루미나 상단에 소정의 패턴으로 절연층을 형성하는 단계와, 상기 절연층이 형성된 나노 다공성 알루미나를 에칭하여 나노다공성 알루미나 패턴을 형성하는 단계와, 상기 절연층을 제거하는 단계와, 상기 제1기판에서 나노다공성 알루미나 패턴을 이송하여 제2기판에 전사하는 단계를 포함한다.
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公开(公告)号:KR1020110134776A
公开(公告)日:2011-12-15
申请号:KR1020100054548
申请日:2010-06-09
Applicant: 강원대학교산학협력단
CPC classification number: C25D11/045 , B82B3/00
Abstract: PURPOSE: A base master manufacturing method is provided to enable a user to manufacture a nano single body unit structure on a surface of non-planar shaped material and to form porous-nano patterns on an oxide film on aluminum by using an anodic oxidation method. CONSTITUTION: A base master manufacturing method comprises the next step. The nano-pattern of non-planar shape is formed on the top of the substrate. The aluminum is formed on the top of the substrate. An oxide film is created on the aluminum. The oxide film is eliminated. The porous nano-pattern, having multiple pores, is formed on the aluminum from which the oxide film is removed.
Abstract translation: 目的:提供一种基本主制造方法以使用户能够在非平面形状材料的表面上制造纳米单体单元结构,并通过使用阳极氧化方法在铝上的氧化物膜上形成多孔纳米图案。 构成:基本主制造方法包括下一步骤。 非平面形状的纳米图案形成在基板的顶部。 铝在基板的顶部形成。 在铝上形成氧化膜。 消除氧化膜。 在除去氧化膜的铝上形成具有多个孔的多孔纳米图案。
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公开(公告)号:KR101093217B1
公开(公告)日:2011-12-13
申请号:KR1020100093739
申请日:2010-09-28
Applicant: 강원대학교산학협력단
IPC: A61B3/16
Abstract: PURPOSE: A contactless portable intraocular pressure measuring device is provided to help a user to quickly recognize the change of intraocular pressure by individually and periodically measuring the intraocular pressure. CONSTITUTION: An air pressure actuator(110) generates air pressure which is sprayed in cornea. An air pressure transfer part(120) of a tube type transfers the air pressure which is generated in the air pressure actuator. A nozzle(130) is connected to one end of the air pressure transfer part. The nozzle is formed into a ring type which sprays the air pressure to the cornea. An air pressure measuring sensor(140) is installed in the center part of the muzzle and measures the intensity of the air pressure which is sprayed and the intensity of the air pressure which is reflected form the cornea. A controller is connected to the air pressure measuring sensor and analyzes the air pressure which is measured and diffuses the air pressure.
Abstract translation: 目的:提供一种非接触式便携式眼内压测量装置,以帮助用户通过单独和周期地测量眼内压来快速识别眼内压的变化。 构成:空气压力致动器(110)产生喷雾在角膜中的空气压力。 管式空气压力传递部件(120)传送在空气压力致动器中产生的空气压力。 喷嘴(130)连接到空气压力传送部分的一端。 喷嘴形成为将空气压力喷射到角膜的环型。 空气压力测量传感器(140)安装在枪口的中心部分,并测量被喷射的空气压力的强度和由角膜反射的空气压力的强度。 控制器连接到气压测量传感器,并分析测量的空气压力并扩散空气压力。
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公开(公告)号:KR1020110094261A
公开(公告)日:2011-08-23
申请号:KR1020110077111
申请日:2011-08-02
Applicant: 강원대학교산학협력단
CPC classification number: B82B3/0038 , B82Y40/00 , G03F7/0002
Abstract: PURPOSE: A method for manufacturing a nano structure using a metal nano-ring pattern is provided to cost-effectively improve the precision of the metal nano-ring pattern through a simplified manufacturing process. CONSTITUTION: A metal film is formed on one side of a substrate(12) by depositing metal. The metal film is anodized to form a metal oxide film without a plurality of first nano-holes, and the anodizing process is implemented until a part of the bottom side of the metal oxide film is in contact with the substrate. The metal oxide film is eliminated to form a metal nano-ring pattern(10) with a plurality of second nano-holes(141) is formed. The substrate is etched using the metal nano-ring pattern as an etching mask to form a plurality of third nano-holes(121) on the substrate.
Abstract translation: 目的:提供一种使用金属纳米环图案制造纳米结构的方法,以通过简化的制造工艺成本有效地提高金属纳米环图案的精度。 构成:金属膜通过沉积金属形成在衬底(12)的一侧上。 金属膜被阳极氧化以形成没有多个第一纳米孔的金属氧化物膜,并且进行阳极氧化处理直到金属氧化物膜的底侧的一部分与基板接触。 消除金属氧化物膜以形成具有多个第二纳米孔(141)的金属纳米环图案(10)。 使用金属纳米环图案作为蚀刻掩模来蚀刻基板,以在基板上形成多个第三纳米孔(121)。
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公开(公告)号:KR1020110050299A
公开(公告)日:2011-05-13
申请号:KR1020090107219
申请日:2009-11-06
Applicant: 강원대학교산학협력단
CPC classification number: C25D1/006 , B82Y30/00 , B82Y40/00 , C23C14/14 , C23C14/34 , C25D1/10 , C25D11/02
Abstract: PURPOSE: A method for manufacturing a metal nano ring pattern and a method for manufacturing a nano structure using the same are provided to precisely form metal nano ring pattern in a large size based on simplified processes. CONSTITUTION: A metal film(14) is formed on one side of a substrate(12) by deposition metal. The metal film is anodized to form a metal oxide film(16) with a plurality of first nano holes(161) on the surface of the metal film. An anodizing process is implemented until a part of the bottom surface of the metal oxide film is in contact with the substrate. The metal oxide film is eliminated to form a metal nano ring pattern with a plurality of second nano holes.
Abstract translation: 目的:提供一种制造金属纳米环图案的方法和使用其制造纳米结构体的方法,以便基于简化的工艺精确地形成大尺寸的金属纳米环图案。 构成:通过沉积金属在衬底(12)的一侧上形成金属膜(14)。 金属膜被阳极化以在金属膜的表面上形成具有多个第一纳米孔(161)的金属氧化物膜(16)。 实施阳极氧化处理直到金属氧化物膜的底表面的一部分与衬底接触。 消除金属氧化物膜以形成具有多个第二纳米孔的金属纳米环形图案。
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公开(公告)号:KR1020110045288A
公开(公告)日:2011-05-04
申请号:KR1020090101789
申请日:2009-10-26
Applicant: 강원대학교산학협력단
IPC: H01L21/677 , B25J15/06 , B65G47/91 , H05K13/02
CPC classification number: H01L21/6838 , B25J15/0608 , B65G47/911 , H01L21/68707 , H05K13/021 , H05K13/0408
Abstract: PURPOSE: A transfer stamper is provided to control the curvature of an adhesive balloon according to a change of air pressure applied to air channels, thereby controlling the contact area between the adhesive balloon and an electronic device. CONSTITUTION: A back plate(10) comprises a concave part(11) and a convex part(12) that surrounds the concave part. A first channel(13) into which compressed air is injected is formed on the concave part. A second channel(21) connected to the first channel is formed on a middle plate(20). A membrane(30) is attached to the outside of a part which surrounds an air channel and a connection channel. The elastic coefficients of the middle plate and the membrane can be changed by controlling the percentage of a hardening agent.
Abstract translation: 目的:根据施加到空气通道的空气压力的变化,提供转印模具以控制粘合剂球囊的曲率,从而控制粘合气球和电子装置之间的接触面积。 构成:背板(10)包括凹部(11)和围绕凹部的凸部(12)。 在凹部上形成有喷射压缩空气的第一通道(13)。 连接到第一通道的第二通道(21)形成在中间板(20)上。 膜(30)附接到围绕空气通道和连接通道的部分的外部。 中间板和膜的弹性系数可以通过控制硬化剂的百分比来改变。
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公开(公告)号:KR1020210017456A
公开(公告)日:2021-02-17
申请号:KR1020190096748
申请日:2019-08-08
Applicant: 강원대학교산학협력단 , 씨엔브이텍(주)
Abstract: 본발명은적외선광차를이용한비접촉식휴대용안압측정시스템및 안압측정방법에관한것이다. 노즐모듈은압축공기공급원으로부터압축공기를공급받아공기분사구를통해피측정자의각막으로분사하여각막에변형을일으킨다. 적외선센서는각막으로적외선을방출하여각막으로부터반사되는광량을측정하도록노즐모듈내에배치된다. 컨트롤러는각막의변형전후에적외선센서로부터측정된광량을안압으로환산한다.
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公开(公告)号:KR101692976B1
公开(公告)日:2017-01-06
申请号:KR1020140143548
申请日:2014-10-22
Applicant: 강원대학교산학협력단
Abstract: 사용자의호흡량을측정할수 있도록형성된디지털마우스피스에관한것이다. 디지털마우스피스는사용자의호흡량을구동정보로하는애플리케이션이내장된휴대단말기에설치되는것으로, 하우징과, 튜브와, 압력센서와, 데이터통신부와, 제어부를포함한다. 하우징은일측에취구부가형성되고, 일면에배출홀이형성된다. 튜브는하우징에내장되며, 유입부의일단이취구부와연결되고배출부의일단이배출홀과연결되어사용자의호흡기류가안내된다. 압력센서는튜브에연결되며, 튜브로유입된호흡기류에의한튜브내의압력값을측정한다. 데이터통신부는휴대단말기의통신부와연결되어정보를송수신할 수있도록형성된다. 제어부는압력센서로부터측정된압력값을이용하여호흡량을산출한후, 산출된호흡량을데이터통신부를통해휴대단말기의애플리케이션으로전송한다.
Abstract translation: 本发明涉及一种能够测量使用者的呼吸量的数字口管。 数字接口安装在与使用用户呼吸量的应用程序集成的移动终端作为操作数据。 数字接头包括壳体,管,压力传感器,数据通信单元和控制单元。 外壳在一侧有一个开口,一个表面有排放孔。 管被包括在外壳中。 管的流入单元的一端连接到栓塞,并且管的排出单元的一端连接到排出孔以引导使用者的呼吸气流。 压力传感器连接到管,并通过流入管中的呼吸气流测量管内的压力。 数据通信单元连接到移动终端的通信单元以发送或接收数据。 控制单元使用由压力传感器测量的压力来计算呼吸量,并通过数据通信单元将计算出的呼吸量发送到移动终端中的应用。
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