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    • 41. 发明授权
    • 내구성이 향상된 제빙용 침지부 및 이의 제조방법
    • 耐磨性改进制冰机的制冷管及其制造方法
    • KR101332216B1
    • 2013-11-22
    • KR1020130031038
    • 2013-03-22
    • 주식회사 태성
    • 권영우
    • F25C1/22F25C5/00F25B39/02
    • The present invention relates to a refrigerant pipe for ice making with improved durability and a manufacturing method thereof and, more specifically, the refrigerant pipe for ice making includes: a refrigerant tube which has a refrigerant flow path for a refrigerant formed inside and has one side formed flatly in the same width, and has a number of installation holes formed along the one side; a number of dipping tubes which are installed at each installation holes of the refrigerant tube, and have an ice making space part with one side opened inside, and are dipped into an ice making water for ice making; a flow path partition which connects only the other end of the ice making space part of each dipping tube, and flows the refrigerant to the refrigerant flow path again through the other end of the ice making space part according as the refrigerant flow path of the refrigerant tube is partitioned by being protruded to the outside of the opened end of the dipping tube; a first bonding member to bond the flow path partition to the dipping tube and the refrigerant tube; and a fixing unit which installs the dipping tube, where the flow path partition is installed, in the refrigerant tube, and bonds the ice making space part of the dipping tube and the refrigerant flow path of the refrigerant tube as connected with each other. The fixing unit comprises a burring part which is formed along the edge of the installation hole and is in plain contact with one end of the dipping tube by being bent to be protruded to the outside of the refrigerant flow path, and a second bonding member to bond the burring part and the dipping tube, and increases bonding surface of the burring part and the dipping tube.
    • 本发明涉及一种制造耐久性良好的制冰用制冷剂配管及其制造方法,具体而言,涉及一种制冷剂制冷剂管,其具有制冷剂流路,该制冷剂流路形成在内部并具有一侧 平坦地形成为相同的宽度,并且具有沿着一侧形成的多个安装孔; 多个浸渍管,其安装在制冷剂管的每个安装孔处,并且具有一侧开放的制冰空间部分,并被浸入制冰水中用于制冰; 流路分隔部,其仅与每个浸渍管的制冰空间部分的另一端连接,并且通过制冷空间部分的另一端再次将制冷剂流过制冷剂流路,根据制冷剂的制冷剂流路 管通过突出到浸渍管的开口端的外侧而分隔开; 第一接合构件,用于将流路隔板结合到浸渍管和制冷剂管; 以及固定单元,其将安装有流路隔板的浸渍管安装在制冷剂管中,并且将浸渍管的制冰空间部分和制冷剂管的制冷剂流路彼此连接。 固定单元包括沿着安装孔的边缘形成的翻边部分,其通过弯曲而突出到制冷剂流动路径的外侧而与浸渍管的一端平面接触,第二接合构件 粘结毛边部分和浸渍管,并且增加了翻边部分和浸渍管的粘结表面。
    • 42. 发明公开
    • 오일 열교환 장치 및 이의 제조방법 및 이의 설치방법
    • 石油换热器及其制造方法及其安装方法
    • KR1020130121444A
    • 2013-11-06
    • KR1020120044646
    • 2012-04-27
    • 주식회사 태성
    • 권영우
    • F28D1/047F16H57/04
    • The present invention relates to an oil heat exchanging device, a manufacturing method thereof, and an installing method thereof and, more particularly, the oil heat exchanging device comprises a body in which multiple creases are formed on a center part and the interior is penetrated so that oil for heat exchange is transferred. The body is formed inside a radiator tank. An inflow part of the body for supplying oil and a discharge part of the body for discharging the oil are protruded to outside through a first installation part and a second installation part. The oil heat exchanging device comprises; a first fixing part for fixing the inflow part of the body on the first installation hole of the tank; a second fixing part for fixing the discharge part of the body on the second installation part of the tank; an inflow pipe which is extended and formed from the inflow part in order to supply the oil to the body and has multiple bending parts on a center predetermined portion. The present invention as above effectively cools the oil by increasing a contact area with cooling water circulating the radiator tank and increasing a heat exchanging rate as the center part of the body has the creases and is helically bent. The present invention solves a defect for conventional connection part corrosion by integrating the inflow pipe in which the oil is inserted with the inflow part of the body and by easily being installed by forming multiple bending parts on a predetermined portion.
    • 油热交换装置及其制造方法及其安装方法技术领域本发明涉及一种油热交换装置及其制造方法及其安装方法,更具体地说,该油热交换装置包括在中心部分形成多个折痕并且内部被穿透的主体 用于换热的油被转移。 身体形成在散热器箱内。 用于供油的主体的流入部分和用于排出油的主体的排放部分通过第一安装部分和第二安装部分突出到外部。 油热交换装置包括: 用于将所述主体的流入部分固定在所述箱的所述第一安装孔上的第一固定部分; 用于将所述主体的排出部分固定在所述箱的所述第二安装部上的第二固定部; 流入管,其从所述流入部延伸并形成,以将油供给到所述主体,并且在中心预定部分上具有多个弯曲部。 如上所述的本发明通过增加与散热器箱循环的冷却水的接触面积来有效地冷却油,并且随着主体的中心部分具有折痕并且被螺旋弯曲而增加热交换率。 本发明通过将插入油的流入管与本体的流入部分整合并且通过在预定部分上形成多个弯曲部而容易地安装来解决常规连接部分腐蚀的缺陷。
    • 44. 发明公开
    • 열팽창을 고려한 하우징 결합장치
    • 用于热膨胀管的外壳组件结构
    • KR1020120051418A
    • 2012-05-22
    • KR1020100112849
    • 2010-11-12
    • 주식회사 태성
    • 권영우
    • F26B9/00F26B25/00B09B3/00
    • PURPOSE: A housing assembly structure considering thermal expansion is provided to prevent damage to tube coupling parts by controlling the interval of a housing corresponding to the expansion of tubes. CONSTITUTION: A housing assembly structure considering thermal expansion comprises a housing, tubes(200), connecting plate(300), and coupling units(400). The housing has an inlet(112) and an outlet(122) on both ends thereof for drawing in and out hot dry air to dry food waste and a heat exchange hole(140) formed in the center thereof across the propagating direction of the dry air. Two ends of the housing move in the flow direction of compressed air. The tubes let the compressed air drawn in through the inlet flow to the outlet and are heat-exchanged with exterior air drawn in through the heat exchange hole. The connecting plates communicate the inlet, the outlet, and the tubes to each other. The coupling units couple the connecting plates installed in the housing to the tubes installed in the connecting plate.
    • 目的:提供考虑热膨胀的壳体组件结构,以通过控制与管膨胀相对应的壳体的间隔来防止对管接头部件的损坏。 构成:考虑热膨胀的壳体组件结构包括壳体,管(200),连接板(300)和联接单元(400)。 壳体在其两端具有入口(112)和出口(122),用于吸入和排出热干燥空气以干燥食物垃圾,并且在干燥的传播方向上形成在其中心的热交换孔(140) 空气。 外壳的两端沿压缩空气的流动方向移动。 管使通过入口吸入的压缩空气流到出口并与通过热交换孔吸入的外部空气进行热交换。 连接板将进口,出口和管彼此连通。 联接单元将安装在外壳中的连接板与安装在连接板中的管连接。
    • 46. 发明授权
    • 정수기용 증발관 및 냉매관과 플랜지의 용접방법
    • 蒸发管和冷却剂管的焊接方法和水清洁器的法兰
    • KR100983351B1
    • 2010-09-20
    • KR1020080072132
    • 2008-07-24
    • 주식회사 태성
    • 권영우
    • B23K5/08B23K5/00
    • 본 발명은 정수기용 증발관 및 냉매관과 플랜지의 용접방법에 관한 것으로, 더욱 상세하게는 증발관의 단부가 플랜지의 연결공에 끼워지되, 증발관의 단부가 플랜지 연결공의 반대방향으로 돌출되지 않도록 설치하는 증발관 설치단계와 설치된 증발관과 플랜지를 아르곤 용접에 의해 고정시키는 제1용접단계와 플랜지의 연결공에 설치된 증발관의 단부 내측에 냉매관을 끼워 설치하는 냉매관 설치단계 및 냉매관과 증발관의 단부 및 플랜지를 동시에 산소 용접하여 고정되도록 용접비드가 형성되는 제2용접단계로 구성된다.
      상기와 같은 본 발명에 의하면, 종래 세 부위 용접을 두 부위 용접으로 감소시킴에 따라 용접공정이 감소될 수 있고, 스테인레스 재질의 증발관에 과도한 열이 전달되지 않아 용접 불균열이 발생되는 것을 방지할 수 있어 불량율을 감소시킬 수 있으며, 스테인레스 플랜지의 덧살과 함몰부에 의해 제1용접부와 제2용접부의 용접이 더욱 용이함은 물론, 견고하게 고정될 수 있다.
      연결방법, 관, 플랜지, 용접, 덧살
    • 47. 发明授权
    • 제빙용 냉매관 및 그 제조방법.
    • 制冰用制冷管及其制造方法
    • KR100936691B1
    • 2010-01-13
    • KR1020090053404
    • 2009-06-16
    • 주식회사 태성
    • 권영우
    • F25C1/08F25C1/22
    • PURPOSE: A coolant pipe for making ice and a manufacturing method thereof are provided to prevent corrosion of the coolant pipe by coating the coolant pipe with nickel. CONSTITUTION: A coolant pipe for making ice comprises a refrigerant pipe body(100) and a dipper unit(200). The coolant pipe is bent at least once in order to pass the coolant. The coolant pipe has multiple mounting holes on one side. An immersed part is located in the mounting holes of the coolant pipe. An end of the immersed part is communicated with the coolant pipe in order to change the flow of the coolant. The other part of the immersed part is divided in order to make the inside open. The immersed part transfers the coolant. The immersed part is dipped in the water. The immersed part freezes the water through heat exchange.
    • 目的:提供一种用于制冰的冷却剂管及其制造方法,以通过用镍涂覆冷却剂管来防止冷却剂管的腐蚀。 构成:用于制冰的冷却剂管包括制冷剂管体(100)和铲斗单元(200)。 冷却剂管道至少弯曲一次,以使冷却剂通过。 冷却液管道一侧有多个安装孔。 浸没的部件位于冷却剂管道的安装孔中。 浸入部分的一端与冷却剂管连通以改变冷却剂的流动。 浸没部分的另一部分是为了使内部打开而分开。 浸没部分传送冷却液。 将浸没的部分浸入水中。 浸入部分通过热交换使水冻结。
    • 48. 发明授权
    • 옹벽축조용 블록 및 이를 이용한 옹벽시공방법
    • 一种用于拆卸和组装和拆除构造方法的块
    • KR100810912B1
    • 2008-03-10
    • KR1020060131692
    • 2006-12-21
    • 주식회사 태성
    • 이제열
    • E02D29/02E02D17/20
    • E02D29/02E02D17/205E02D29/0241E02D29/025E02D29/0266
    • A block for constructing a retaining wall and a construction method of a retaining wall using the blocks are provided to construct a retaining wall structure having various patterns by installing one or more retaining wall blocks having different sizes. A block for constructing a retaining wall comprises a first retaining wall block(10) provided with a head layered on a connection, a hanging projection projected to the upper part and an engaging projection formed in a space of the connection on the lower part, a second retaining wall block(20) provided with a head layered on a connection, a hanging projection projected to the upper part and an engaging projection formed in a space of the connection on the lower part, and formed to have the same height and the half of the length of the first retaining wall block, a third retaining wall block(30) provided with a head layered on a connection, a hanging projection projected to the upper part and an engaging projection formed in a space of the connection on the lower part, and formed to have the half of the height and the same length of the first retaining wall block, and a fourth retaining wall block(40) provided with a head layered on a connection, a hanging projection projected to the upper part and an engaging projection formed in a space of the connection on the lower part, and formed to have the half of the height and the half of the length of the first retaining wall block, so that the first, second, third and fourth retaining walls are formed to have different lengths and heights, wherein the heads of the first, second, third and fourth retaining walls are formed to be exposed to the outside when constructing a retaining wall, and the exposed surface includes many irregularities, and the first, second, third and fourth retaining walls are worn on the outer area as a whole to have many bends to give the feel of old stone. A construction method of a retaining wall using blocks comprises the steps of: pit-excavating the ground and filling up with rubble, and tamping and leveling; arranging first retaining walls on the tamped rubble to make contact laterally; forming a retaining wall structure by piling up one or more retaining wall blocks selected from first, second, third and fourth retaining wall blocks on the arranged first retaining wall blocks in many stages at the fixed height; connecting reinforcement grids on the upper side of the retaining wall structure; piling up retaining wall blocks on the retaining wall structure connected with the reinforcement grids, and installing reinforcement grids repeatedly to the fixed height; and installing finishing blocks on the uppermost end of the retaining all structure.
    • 提供了一种用于构造挡土墙的块和使用这些块的挡土墙的构造方法,以通过安装一个或多个具有不同尺寸的挡土墙块来构造具有各种图案的挡土墙结构。 一种用于构造挡土墙的块体,包括一个第一保持壁块(10),其设置有一个层叠在一个连接件上的头部,一个突出于上部的悬挂突起和一个形成在下部连接部分的空间中的接合突起 第二保持壁块(20),其设置有层叠在连接件上的头部,突出于上部的悬挂突起和形成在下部的连接部的空间中的接合突起,并且形成为具有相同的高度和半 第一挡土墙块的长度的第三挡土墙块(30),设置有层叠在连接件上的头部,突出于上部的悬挂突起和形成在下部的连接部的空间中的接合突起 并且形成为具有第一挡土墙块的高度和相同长度的一半,以及设置有层叠在连接上的头部的第四保持壁块(40),突出到u的悬挂突起 所述接合突起形成在所述下部的所述连接部的空间中,并且形成为具有所述第一保持壁块的长度的一半高度和一半,使得所述第一,第二,第三和第四 挡土墙形成为具有不同的长度和高度,其中,当构造挡土墙时,第一,第二,第三和第四挡土墙的头部形成为暴露于外部,并且暴露的表面包括许多不规则性,并且第一 ,第二,第三和第四挡土墙整体穿在外部区域,有许多弯曲,以给予老石头的感觉。 使用块体的挡土墙的施工方法包括以下步骤:对地面进行坑挖掘并填充瓦砾,并进行夯实和平整; 在夯实的瓦砾上布置第一个挡土墙,以便横向接触; 通过在固定的高度上将多个阶段的第一,第二,第三和第四挡土墙块中的一个或多个挡土墙块堆叠在所述布置的第一挡土墙块上,形成挡土墙结构; 在挡土墙结构的上侧连接钢筋网; 在与钢筋网连接的挡土墙结构上堆放挡土墙,并将钢筋网重新安装到固定高度; 并在保持所有结构的最上端安装精加工块。