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    • 51. 发明专利
    • Compressed air dehumidifier
    • 压缩空气除湿器
    • JP2014124565A
    • 2014-07-07
    • JP2012281951
    • 2012-12-26
    • Orion Mach Co Ltdオリオン機械株式会社
    • KANEKO HIDEKIMARUYAMA YASUHIKOYAMAGISHI TOSHIAKI
    • B01D53/26F25B1/00F25B39/02
    • PROBLEM TO BE SOLVED: To supply a necessary amount of lubrication oil to a refrigerant compressor even in a high load state.SOLUTION: A compressed air dehumidifier includes: a plate heat exchanger provided with an air introduction port 21, an air exhaust port 22, a water discharge port 23, a refrigerant introduction port 24, and a refrigerant discharge port 25, and causing heat exchange between compressed air in a first space S1 and refrigerant in a second space S2, thereby generating dew condensation of moisture contained in the compressed air and dehumidifying a room; a control unit controlling a refrigeration cycle 2 to operate; a lubrication-oil discharge pipe P5 for discharging lubrication oil remaining in the second space S2 to a refrigerant pipe P4; and a solenoid valve 15 for regulating a flow volume of a fluid moving in the lubrication-oil discharge pipe P5. If a preset high load state is detected, the control unit 4 executes a "first process" for controlling the solenoid valve 15 to increase the flow volume of the fluid moving in the lubrication-oil discharge pipe P5.
    • 要解决的问题:即使在高负载状态下也可向制冷剂压缩机供应必要量的润滑油。解决方案:压缩空气除湿器包括:板式热交换器,其具有空气引入口21,排气口22, 排水口23,制冷剂引入口24和制冷剂排出口25,并且使第一空间S1中的压缩空气与第二空间S2中的制冷剂之间的热交换,从而产生包含在压缩空气中的水分的结露 并对房间进行除湿; 控制制冷循环2进行操作的控制单元; 用于将残留在第二空间S2中的润滑油排出到制冷剂配管P4的润滑油排出管P5; 以及用于调节在润滑油排出管P5中移动的流体的流量的电磁阀15。 如果检测到预设的高负载状态,则控制单元4执行用于控制电磁阀15的“第一处理”,以增加在润滑油排出管P5中移动的流体的流量。
    • 52. 发明专利
    • Precision temperature regulating device
    • 精密温度控制装置
    • JP2014081120A
    • 2014-05-08
    • JP2012228667
    • 2012-10-16
    • Orion Mach Co Ltdオリオン機械株式会社
    • OTA KOICHIKITAMURA YOSHIAKIFUJISAWA TADAHIRO
    • F25B29/00
    • PROBLEM TO BE SOLVED: To provide a precise temperature control device capable of supplying a temperature-controlled object of a prescribed pressure or more, even when the prescribed pressure or more is added to the object of which a temperature is controlled by a condenser disposed in a heating flow channel and an evaporator disposed in a cooling flow channel.SOLUTION: In a precise temperature control device including a cooling flow channel 37 provided with, at least, a compressor 2, a condenser 5 for heat radiation, releasing heat of a refrigerant R to water, a first expansion valve 7, and an evaporator 9 for cooling a temperature-controlled object A, and a heating flow channel 36 including the compressor 2, a condenser 6 for heating, heating the temperature-controlled object A, a second expansion valve 8, and an evaporator 11 for heat absorption, absorbing heat of the water receiving heat from the refrigerant R in the condenser 5 for heat radiation, the condenser 6 for heating and the evaporator 9 for cooling are incorporated in a container 35 for a heat exchanger, and the container 35 for the heat changers is a sealed pressure resistant vessel.
    • 要解决的问题:为了提供能够提供规定压力以上的温度控制对象的精确的温度控制装置,即使当规定的压力以上被添加到通过设置在 设置在冷却流道中的加热流道和蒸发器。解决方案:在精确的温度控制装置中,包括至少设置有压缩机2的冷却流道37,用于散热的冷凝器5,释放制冷剂的热量 R至水,第一膨胀阀7和用于冷却温度控制对象A的蒸发器9,以及包括压缩机2的加热流动通道36,用于加热温度控制对象A的第二冷却器6 膨胀阀8和用于吸热的蒸发器11,吸收来自用于散热的冷凝器5中的制冷剂R的受热的热量,用于加热的冷凝器6 用于冷却的蒸发器9被并入用于热交换器的容器35中,用于换热器的容器35是密封耐压容器。
    • 55. 发明专利
    • Food product dehydration unit
    • 食品脱水装置
    • JP2014055744A
    • 2014-03-27
    • JP2012201743
    • 2012-09-13
    • Orion Mach Co Ltdオリオン機械株式会社
    • KOZU KAZUESHIMIZU YUKIKOBAYASHI MITSUNORIHOSOO TEPPEI
    • F26B21/00F26B25/00
    • PROBLEM TO BE SOLVED: To avoid proliferation of saprophyte in an evaporator for use in cooling/dehumidification of air supplied into a food product storage space.SOLUTION: A drain pan 11a and a drain pipe 12a are made of metal material, the drain pipe 12a is arranged to enable accumulation of heat at the drain pan 11a to be released to air within equipment storing space S2a and at the same time, when a prescribed finish condition is satisfied during execution of processing to dry food product within a food product storing space S1a, at least one of processing Ca in which a controller 9 controls an adjusting valve 42a to decrease a first rate of supply amount of coolant for a condenser 43a, expansion valve 44a and evaporator 45a in respect to discharge amount of coolant from a compressor 41 than that of a time in which a finish condition is satisfied and processing Cb in which the controller 9 controls an adjusting valve 42b to increase a second rate of supply amount of coolant for a condenser 43b, expansion valve 44b and evaporator 45b in respect to discharge amount of coolant from the compressor 41 than that of a time in which a finish condition is satisfied is carried out.
    • 要解决的问题:为了避免蒸发器中的腐生菌增殖用于供给食品储存空间的空气的冷却/除湿。排水盘11a和排水管12a由金属材料制成,排水管12a 被布置成使得能够在排水盘11a处积聚热量以释放到设备存储空间S2a内的空气中,并且同时当在食品储存空间S1a内的干食品的处理执行期间满足规定的完成条件时 处理Ca中的至少一种,其中控制器9控制调节阀42a以减小冷凝器43a,膨胀阀44a和蒸发器45a的冷却剂供应量相对于来自压缩机41的冷却剂排放量的第一速率比 满足完成条件的时间和处理Cb的处理Cb,其中控制器9控制调节阀42b以增加第二速率的冷却剂供应量 相对于来自压缩机41的冷却剂的排出量,与执行完成条件的时间相比,执行分散器43b,膨胀阀44b和蒸发器45b。
    • 56. 发明专利
    • Heat exchange device
    • 热交换装置
    • JP2014005960A
    • 2014-01-16
    • JP2012140437
    • 2012-06-22
    • Orion Mach Co Ltdオリオン機械株式会社
    • KOYAMA FUMIHIKOMURAISHI HIROYUKIMIYAGAWA YOSHIKAZUHOTANI TOSHIYUKI
    • F28F3/08
    • PROBLEM TO BE SOLVED: To increase the treatment flow amount per unit time without enlarging a device and reduce the power consumption thereby achieving energy saving.SOLUTION: A heat exchange device includes: a dividing wall part 5 which is provided in a heat exchange chamber thereby dividing the heat exchange chamber in a right direction Fs relative to heat exchange surfaces 2f, 2r and forming a pair of heat exchange divided chamber parts 3f, 3r; one or more inflow port parts 6i which may flow a fluid L from the right angle Fs relative to the one heat exchange surface 2f into the one heat exchange divided chamber part 3f; one or more outflow port parts 6e which may flow out the fluid L in the other heat exchange divided chamber part 3r in the right angle Fs relative to the other heat exchange surface 2r; and multiple circulation hole parts 7 ... which penetrate through the dividing wall part 5 and are formed along a periphery 5c of the dividing wall part 5 at a predetermined interval.
    • 要解决的问题:为了增加单位时间的处理流量而不增加装置并降低功耗从而实现节能。热交换装置包括:分隔壁部5,其设置在热交换室中 将热交换室相对于热交换面2f,2r分成正确的方向Fs,形成一对热交换分隔室部3f,3r; 一个或多个流入口部分6i,其可将流体L相对于一个热交换表面2f从直角Fs流动到一个热交换分隔室部分3f中; 一个或多个流出口部分6e,其可以相对于另一个热交换表面2r以直角Fs流出另一个热交换分隔室部分3r中的流体L; 以及贯通分隔壁部5并以规定间隔沿分隔壁部5的周缘5c形成的多个循环孔部7 ...。
    • 58. 发明专利
    • Milking bucket cleaning equipment and connection structure
    • 空值
    • JP5327527B2
    • 2013-10-30
    • JP2009057978
    • 2009-03-11
    • オリオン機械株式会社
    • 真吾 米村一幸 町田
    • A01J7/00A01K13/00B08B5/00B08B9/22
    • PROBLEM TO BE SOLVED: To provide an automatic washing apparatus and a connecting structure for a vacuum piping type milking machine. SOLUTION: Provided is the washing apparatus for the milking bucket installed on the vacuum piping type milking machine comprising a cleaning tank attached to the vacuum piping type milking machine, a cleaning liquid feeding means to the cleaning tank and a cleaning liquid circulating means which cleans a milk collecting piping of the vacuum piping type milking machine by circulating the cleaning liquid in the cleaning tank, wherein the washing apparatus for milking bucket is provided with a cleaning liquid sucking means for sucking the cleaning liquid into the milking bucket from the cleaning tank, and a cleaning liquid delivery means for delivering the cleaning liquid after cleaning the milking bucket to the milk collecting piping by using vacuum pressure of the vacuum piping type milking machine. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于真空管道式挤奶机的自动洗涤装置和连接结构。 解决方案:提供一种安装在真空管道式挤奶机上的挤奶斗的洗涤装置,包括安装在真空管道式挤奶机上的清洗槽,清洗槽的清洗液供给装置和清洗液循环装置 其通过使清洗槽中的清洗液体循环来清洗真空管道式挤奶机的集奶管,其特征在于,所述清洗槽的清洗装置设置有清洗液吸引机构,用于从清洗液吸入清洗液进入挤奶桶 以及清洁液输送装置,用于通过使用真空管道式挤奶机的真空压力将挤奶桶清洁到牛奶收集管道之后将清洗液输送。 版权所有(C)2010,JPO&INPIT
    • 59. 发明专利
    • Apparatus for reheating compressed air
    • 装置压缩空气的装置
    • JP2013198894A
    • 2013-10-03
    • JP2013059625
    • 2013-03-22
    • Orion Machinery Co Ltdオリオン機械株式会社
    • EJIRI KOICHISHIMIZU TAKUYATAKEUCHI YASUHIRO
    • B01D53/26F25B9/00
    • PROBLEM TO BE SOLVED: To provide an apparatus for reheating compressed air, which can reheat the compressed air by efficiently utilizing high-temperature water separated in a previous stage of a compressed air dehumidifier system.SOLUTION: An apparatus for reheating compressed air includes: an air compressor 3 which serves as a compressed air generation source; air piping which includes an air circulation pipe 12, an introduction pipe 13 and an exhaust pipe 14; drain piping which includes a drainage connection pipe and a drain pipe; an air tank 7; and a drain ejector 8. The drain pipe 16 is provided with a reheater 4 which exchanges heat between the low-temperature compressed air discharged from a compressed air dehumidifier system 2 and high-temperature water separated by the air tank 7 and discharged.
    • 要解决的问题:提供一种用于再加热压缩空气的装置,其可以通过有效地利用在压缩空气除湿器系统的前一级分离的高温水来再加热压缩空气。解决方案:一种用于再加热压缩空气的装置包括: 用作压缩空气发生源的空气压缩机3; 包括空气循环管12,导入管13和排气管14的空气管道; 排水管道,包括排水连接管和排水管; 一个空气罐7; 排水管16设置有再热器4,其在从压缩空气除湿器系统2排出的低温压缩空气与由空气罐7分离的高温水之间进行热交换并排出。
    • 60. 发明专利
    • Cooling system
    • JP5283562B2
    • 2013-09-04
    • JP2009118138
    • 2009-05-15
    • オリオン機械株式会社
    • 強志 丸山清太郎 杉本
    • F25D13/00F16L19/04
    • PROBLEM TO BE SOLVED: To provide a cooling device having an easily attachable/detachable cooler. SOLUTION: The cooling device 1 includes a refrigerant inflow pipe joint 27 connecting a refrigerant inlet 25 of the cooler 3 in a liquid tank 2 and a refrigerant inflow pipe 24 of an outside of the liquid tank 2 via a side plate 2a of the liquid tank 2. The refrigerant inflow pipe joint 27 is equipped with a cylindrical body 41 and a lock nut 42 attached to a refrigerant inflow through-hole 26 of the side plate 2a. The cylindrical body 41 is equipped with tip opening 41b detachably connected to the refrigerant inflow pipe 24 via a flare joint, a rear end opening 41a connected to the refrigerant inlet 25, an annular flange 41c spreading from an outer peripheral surface, and a male screw part 41d formed in a front side than the annular flange 41c of the outer peripheral surface. When the lock nut 42 is fastened by holding the side plate 2a between the annular flange 41c and the lock nut 42, the refrigerant inflow pipe joint 27 is detachably fixed to the side plate 2a of the liquid tank 2, and a liquid-tight state is provided between the annular flange 41c and an inner side face of the side plate 2a of the liquid tank 2. COPYRIGHT: (C)2011,JPO&INPIT