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    • 4. 发明授权
    • 다양한 형상의 얼음 제조가 가능한 제빙장치
    • 各种形状Ice Maker可用制冰装置
    • KR101449900B1
    • 2014-10-13
    • KR1020140032087
    • 2014-03-19
    • 주식회사 태성
    • 권영우
    • F25C1/22F25C1/00
    • An ice machine for manufacturing ice with ice water includes: a condenser for condensing a refrigerant; a compressor for compressing the vaporized refrigerant; a condenser line for transferring the compressed refrigerant from the compressor to the condenser; a refrigerant line for transferring the condensed refrigerant from the condenser to the compressor; an ice water nozzle for discharging the ice water; an ice water supply pipe for dropping the ice water discharged from the ice water nozzle; and an ice making unit for making the ice from the ice water dropped from the ice water supply pipe. The ice making unit has: an inner member positioned at a lower portion of the ice water supply pipe and being brought into contact with the flowing ice water to make the ice; an outer member spaced apart from the outer surface of the inner member to enclose the outer surface of the inner member; and a refrigerant passage formed by engaging the outer surface of the inner member and the inner surface of the outer member with an interval, through which the refrigerant flows along the outer surface of the inner member. One side and the other side of the outer member are formed with refrigerant inlet and outlet portions, and the refrigerant flowing in the refrigerant inlet portion flows to the inner member through the refrigerant passage, and then is discharged from the refrigerant outlet portion. Since the inner member and the outer member are integrally formed so that the members are brought into surface or line contact with each other, it is possible to easily engage the inner member and the outer member, and to improve sealing force, thereby preventing water leaking and thus reducing maintenance costs.
    • 用于制造具有冰水的冰的制冰机包括:用于冷凝制冷剂的冷凝器; 用于压缩蒸发的制冷剂的压缩机; 用于将压缩的制冷剂从压缩机传递到冷凝器的冷凝器管线; 用于将冷凝的制冷剂从冷凝器传送到压缩机的制冷剂管线; 用于排出冰水的冰水喷嘴; 用于将从冰水喷嘴排出的冰水滴下的冰水供给管; 以及用于使来自冰水供应管的冰水的制冰单元。 制冰单元具有:定位在冰水供给管的下部并与流动的冰水接触以制造冰的内部构件; 外部构件与内部构件的外表面间隔开以包围内部构件的外表面; 以及制冷剂通路,其通过以一定的间隔与内部构件的外表面和外部构件的内表面接合而形成,制冷剂通过该间隔沿着内部构件的外表面流动。 外部构件的一侧和另一侧形成有制冷剂入口和出口部分,并且在制冷剂入口部分中流动的制冷剂通过制冷剂通道流到内部构件,然后从制冷剂出口部分排出。 由于内部构件和外部构件一体地形成为使得构件彼此进行表面或线接触,因此可以容易地接合内部构件和外部构件,并且提高密封力,从而防止水泄漏 从而降低维护成本。
    • 5. 发明授权
    • 에칭액 공급구조체
    • 蚀刻液体供应结构
    • KR101403054B1
    • 2014-06-03
    • KR1020120142852
    • 2012-12-10
    • 주식회사 태성
    • 김종학
    • C23F1/18H05K3/06
    • C23F1/08
    • The present invention relates to an etching solution supply structure. The supply structure for supplying an etching solution to a nozzle pipe is made of a rigid pipe instead of a connecting hose made of a flexible material. Therefore, the durability of the etching solution supply structure is enhanced. The improved etching solution supply structure is capable of moving to left and right corresponding to left and right movements of the nozzle pipe. The etching solution supply structure includes an etching solution supply pipe which supplies an etching solution transferred by pressure; a joining pipe which is joined to the etching solution supply pipe; a connecting pipe which has one end connected with the end of the joining pipe by a first coupler means to be able to move horizontally corresponding to the end of the joining pipe; and a first elbow pipe which has one end connected to the other end of the connecting pipe by a second coupler means, is connected to be able to rotate corresponding to the connecting pipe, and has the other end connected to the nozzle pipe having an injection nozzle for injecting the etching solution.
    • 本发明涉及一种蚀刻溶液供应结构。 用于向喷嘴管提供蚀刻溶液的供应结构由刚性管制成,而不是由柔性材料制成的连接软管。 因此,提高了蚀刻液供给结构的耐久性。 改进的蚀刻溶液供应结构能够相应于喷嘴管的左右运动而向左和向右移动。 蚀刻溶液供给结构包括:供给通过压力传递的蚀刻液的蚀刻液供给管; 与蚀刻溶液供给管接合的接合管; 连接管,其一端通过第一联接装置与连接管的端部连接,以能够相应于接合管的端部水平移动; 并且通过第二联接器装置将一端连接到连接管的另一端的第一弯管被连接成能够相应于连接管旋转,并且另一端连接到具有注射的喷嘴管 用于注入蚀刻溶液的喷嘴。
    • 6. 发明授权
    • 기판 이송장치
    • PCB运输装置
    • KR101401541B1
    • 2014-05-30
    • KR1020120123085
    • 2012-11-01
    • 주식회사 태성
    • 김종학
    • H05K13/02H05K3/00B65G49/00B65G13/06
    • 본 발명에 따른 기판이송장치는, 구동모터를 구비하는 본체프레임(1); 상기 구동모터의 동력을 상하측 이송 롤러 샤프트(110,120)에 전달하는 동력전달기어(117); 상기 본체프레임(1) 상에서 상하측 이송 롤러 샤프트(110,120)를 회전 가능하게 지지하는 지지부재(130); 상기 지지부재(130) 상에 평행하게 복수로 배열되고 동력전달기어(117)로부터 동력을 전달받아 회전하고 복수개의 디스크 휠(111,121)을 구비하는 상하측 이송 롤러 샤프트(110,120);를 포함하여 이루어지고, 상기 지지부재(130)는 동력전달기어(117)의 동력을 전달받는 상하측 이송 롤러 샤프트 회전용 기어(112,122)에 근접하게 설치되는 제1지지부재(131)와, 상기 제1지지부재(131)에서 상하측 이송 롤러 샤프트(110,120)의 일측 방향으로 이격된 위치에 설치되는 제2지지부재(133) 및 상하측 이송 롤러 샤프트(110,120)의 타측 방향에 설치되는 제3지지부재(135)로 구성되고, 상기 상하측 이송 롤러 샤프트(110,120)의 각각은 상기 지지부재(130)의 제2지지부재(133)측으로 연장되는 연장부(113,123)를 구비하는 것을 특징으로 한다.
      이에 따라 본 발명에 따른 기판이송장치는, 회전하는 기판 이송용 롤러 샤프트의 축 중심선을 기준으로 휨 현상이 발생되는 것을 방지할 수 있고, 이송 롤러 샤프트 상에서 이송되는 인쇄회로기판이 일측 방향으로 경사지게 이송되지 아니하고 직진하여 이송되도록 하며, 구동력이 집중할 경우 나타나게 되는 기판 이송용 롤러 샤프트와 지지부재 간의 결합부 상에서 발생하는 편 마모 및 파손을 방지할 수 있고, 이송 롤러 샤프트의 구동시 진동 및 소음의 발생을 최소화하여 인쇄회로기판 제조과정에서 품질저하를 방지하고 작업자의 작업환경이 개선될 수 있도록 하는 효과를 갖는다.
    • 7. 发明授权
    • 경첩유로칸막이를 갖는 제빙용 침지부 및 이의 제조방법
    • 制冰机的制冷管道制冷剂导向装置的铰接和安装方法
    • KR101332217B1
    • 2013-11-22
    • KR1020130031339
    • 2013-03-25
    • 주식회사 태성
    • 권영우
    • F25C1/22F25C5/00F25B39/02
    • The present invention relates an immersion unit for a hinge fluid path partition and an installation method thereof. More specifically, a refrigerant pipe inside which a refrigerant path is formed and a plurality of installation holes are placed at regular intervals on a flat plane; an immersion pipe which includes a plurality of ice making space units with an open end to be installed in each installation hole of the refrigerant pipe and is immersed into ice making water for ice making; a pair of hinge fluid path partitions which block between the refrigerant path where the installation holes are installed and the ice making space units of the immersion unit, opens the other end, which is not open, of the ice making space unit, and moves the refrigerant through the other end of the ice making space units; and a joining means which installs the immersion pipe, where the hinge fluid path partitions are installed, in the refrigerant pipe and joins the ice making space units of the immersion unit and the refrigerant path of the refrigerant pipe. The upper parts of the hinge fluid path partition, while being hinged, are inserted into the installation holes of the refrigerant pipe and then, while being unhinged, is inserted into the refrigerant path of the refrigerant pipe. The immersion unit is installed to make the hinge fluid path partitions protruding outside the installation holes to be inserted into the ice making space units and is fixed to the refrigerant pipe using the joining means.
    • 本发明涉及一种用于铰链流体通道分隔件的浸没装置及其安装方法。 更具体地说,在平面上规则间隔地形成制冷剂通路的制冷剂配管和多个安装孔, 一个浸没管,其包括多个制冰空间单元,该制冰空间单元具有开口端,安装在制冷剂管的每个安装孔中,并被浸入用于制冰的制冰水中; 在安装有安装孔的制冷剂路径和浸没单元的制冰空间单元之间的一对铰链流体路径隔板打开制冰空间单元的未打开的另一端,并移动 制冷剂通过制冰空间单元的另一端; 以及将制冷剂配管中安装有铰链流路隔板的浸入管安装在浸入装置的制冰空间部和制冷剂配管的制冷剂路径的接合装置。 铰链流体通道分隔件的上部在铰接的同时被插入制冷剂管的安装孔中,然后在被打开的同时被插入制冷剂管的制冷剂路径中。 浸没单元被安装成使得铰链流体路径隔板突出到安装孔的外部以插入制冰空间单元中,并且使用接合装置固定到制冷剂管。
    • 8. 发明授权
    • 얼음정수기의 탈빙용 전기히터 열전도율 향상구조 및 이의 설치방법
    • 热电导率改善电热水器结构,用于冰水净化器的制冰机及其安装方法
    • KR101316961B1
    • 2013-10-11
    • KR1020120053200
    • 2012-05-18
    • 주식회사 태성
    • 권영우
    • F25C5/08F25D11/00
    • PURPOSE: A thermal conductivity increasing structure of a deicing electric heater for an ice making purifier includes a deicing unit to be in contact with an ice-making pipe. The contact part is formed to be flat so that the surfaces are in contact with each other. The surface of the ice-making pipe and the surface of the deicing unit are stably in contact with each other by a connection unit so that the thermal conductivity increasing structure can improve thermal conductivity. CONSTITUTION: A thermal conductivity increasing structure of a deicing electric heater for an ice making purifier includes an ice-making pipe (100), a deicing unit (300), and a connection unit (300) connecting the ice-making pipe and the deicing unit. A first plane is formed on the part touching the deicing unit in the ice-making pipe, and a second plane is formed on the deicing unit so that the surface of the deicing unit is in contact with the surface of the first plane. The first plane of the ice-making pipe is connected with the second plane of the deicing unit after being in contact with the same. Heat of the deicing unit passes through the ice-making pipe and is easily transferred to a soakage pipe (200) due to the surface contact of the first plane and the second plane. A compressor is operated and deiced for each soakage pipe while an ice-making refrigerant is circulated. The connecting unit welds the first plane and the second plane touching each other and increases a mutual contact area by attaching the ice-making pipe and the deicing unit.
    • 目的:一种用于制冰净化器的除冰电加热器的导热系数增加结构包括与制冰管接触的除冰单元。 接触部分形成为平坦的,使得表面彼此接触。 制冰管的表面和除冰单元的表面通过连接单元彼此稳定地接触,使得导热率增加结构可以提高导热性。 构成:用于制冰净化器的除冰电加热器的导热系数增加结构包括制冰管(100),除冰单元(300)和将制冰管和除冰装置连接的连接单元(300) 单元。 第一平面形成在与制冰管中的除冰单元接触的部分上,第二平面形成在除冰单元上,使得除冰单元的表面与第一平面的表面接触。 制冰管的第一平面与除冰单元的第二平面在与其接触之后连接。 除冰单元的热量通过制冰管,并且由于第一平面和第二平面的表面接触而容易地转移到浸泡管(200)。 在制冰制冷剂循环的同时,对于每个浸泡管,对压缩机进行操作和除冰。 连接单元焊接第一平面和第二平面彼此接触并且通过附接制冰管和除冰单元来增加相互接触面积。
    • 9. 发明授权
    • 열팽창을 고려한 하우징 결합장치
    • 管的热膨胀的壳体组装装置
    • KR101269359B1
    • 2013-05-29
    • KR1020100112849
    • 2010-11-12
    • 주식회사 태성
    • 권영우
    • F26B9/00F26B25/00B09B3/00
    • 본발명은열팽창을고려한하우징결합장치에관한것으로, 더욱상세하게는일단에음식물쓰레기의건조를위해가열된고온의건조공기가유입되기위한유입구와타단에배출되기위한배출구를갖고, 중앙부는건조공기가이동되는방향과교차되는방향으로열교환공이형성되되, 상기유입구가형성된일단부와배출구가형성된타단부가압축공기이동방향으로이동가능한하우징, 상기하우징의열교환공에일정간격으로다수개 구비되어유입구를통해유입된압축공기를배출구로이동시키며, 상기열교환공을통해유입되는외부공기와열교환되는튜브, 상기다수의튜브를유입구및 배출구와연통되도록상기하우징에설치되는연결판, 및상기하우징에설치된연결판과이 연결판에구비된다수의튜브가밀폐되도록결합시키는결합수단을포함하여이루어지고, 상기유입구를통해이동되는압축공기의온도에의해상기다수의튜브가팽창및 수축됨에따라상기하우징의일단부와타단부가이동되어상기결합수단의파손을방지한다.상기와같은본 발명에의하면, 순환되는압축공기와새로유입되는외부공기가교차되면서용이하게열교환되고, 압축공기의고온에의해길이방향으로팽창되는튜브에대응하여하우징의간격이유격되어튜브가결합된부위가파손되는것을방지하여수명을연장시킬수 있다.
    • 10. 发明授权
    • 실내 주차장용 환기팬
    • 室内停车场通风机
    • KR101201894B1
    • 2012-11-15
    • KR1020120056720
    • 2012-05-29
    • 주식회사 태성
    • 김진호
    • F04D25/08F24F7/10F24F13/08
    • PURPOSE: A ventilation fan of an indoor parking lot is provided to open and close and block an impeller of a variable grille from wind and to prevent air induction into a grille piece and reversed air intake from the outside, so that air circulation in the inside of a parking lot is provided. CONSTITUTION: A ventilation fan(100) of an indoor parking lot comprises a body(110), a fan driving motor(120), and a variable grille. The variable grille comprises a supporting stand(210), an impeller(220), a supporting shaft, a supporting frame(240), and impeller pieces(250). The supporting stand is fixed to an inner wall of the body. The impeller comprises a hinge shaft. The hinge shaft is installed in the supporting stand, thereby rotating. A recessed groove portion is formed in a rear surface of the impeller. A hinge cavity is formed in the inner side of the recessed groove portion. An inclined bent portion is formed in a front surface of a side opposite to the side where the recessed groove is formed. The supporting shaft is joined to the hinge cavity of the impeller. The supporting frame supports the impeller to be rotated at the same time. The impeller pieces lift the supporting frame up by resisting wind being ventilated, thereby adjusting the impeller at an opened angle.
    • 目的:提供一个室内停车场的通风扇,用于打开和关闭可变格栅的叶轮风,并防止空气进入格栅片并从外部反转进气口,使内部空气流通 提供停车场。 构成:室内停车场的通风扇(100)包括主体(110),风扇驱动电机(120)和可变格栅。 可变格栅包括支撑架(210),叶轮(220),支撑轴,支撑框架(240)和叶轮片(250)。 支撑架固定在身体的内壁上。 叶轮包括铰链轴。 铰链轴安装在支撑架上,从而旋转。 在叶轮的后表面形成凹槽部。 在凹槽部分的内侧形成铰链腔。 在与形成凹槽的一侧相反的一侧的前表面中形成有倾斜的弯曲部分。 支撑轴连接到叶轮的铰链腔。 支撑框架支撑叶轮同时旋转。 叶轮片通过抗风通风来抬起支撑架,从而以一个敞开的角度调节叶轮。