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    • 1. 发明授权
    • Water-injection type scroll air compressor
    • 注水式涡旋空气压缩机
    • US08585376B2
    • 2013-11-19
    • US12858453
    • 2010-08-18
    • Hirotaka KameyaKazuaki ShiinokiNatsuki KawabataHirokatsu Kohsokabe
    • Hirotaka KameyaKazuaki ShiinokiNatsuki KawabataHirokatsu Kohsokabe
    • F01C21/06F01C1/02
    • F04C18/0223F04C18/0253F04C28/06F04C29/042F04C2240/81F04C2270/19
    • Disclosed is a water-injection type scroll air compressor whose pre-stopping operation time for drying can be reduced while enhancing compressor efficiency.The compressor body 1 includes a water supply line 24 for supplying water to a water feeder 23 connected to an air suction line 2. The water supply line 24 is provided with a control valve 27 that can control a flow rate of the water. A controller 28 conducts driving control of the control valve 27 in a 5×10−5 to 40×10−5 range of an injected-water volume ratio (more specifically, a volume ratio between an intake air flow rate and injected-water flow rate in the water feeder 23 of the suction line 2) and at the same time, in an injected-water volume ratio range of the compressor characterized so that an increase rate of overall adiabatic efficiency of the compressor per 1×10−5 increase rate of the injected-water volume ratio stays less than 2% of an original or initial value.
    • 公开了一种注水式涡旋式空气压缩机,其能够在提高压缩机效率的同时降低干燥的预停动时间。 压缩机主体1包括用于向连接到吸气管线2的供水器23供水的供水管线24.供水管线24设置有可以控制水的流量的控制阀27。 控制器28在注入水体积比的5×10-5至40×10-5范围内进行控制阀27的驱动控制(更具体地说,进气流量与喷射水流量之间的体积比 在吸入管线2的给水器23中的速率),同时在压缩机的注入水体积比范围内,其特征在于,每1×10-5增加压缩机的整体绝热效率的增加率 的注入水体积比保持小于原始值或初始值的2%。
    • 2. 发明申请
    • WATER-INJECTION TYPE SCROLL AIR COMPRESSOR
    • 注水式滚动空气压缩机
    • US20110129362A1
    • 2011-06-02
    • US12858453
    • 2010-08-18
    • Hirotaka KAMEYAKazuaki ShiinokiNatsuki KawabataHirokatsu Kohsokabe
    • Hirotaka KAMEYAKazuaki ShiinokiNatsuki KawabataHirokatsu Kohsokabe
    • F01C21/06F01C1/02
    • F04C18/0223F04C18/0253F04C28/06F04C29/042F04C2240/81F04C2270/19
    • Disclosed is a water-injection type scroll air compressor whose pre-stopping operation time for drying can be reduced while enhancing compressor efficiency. The compressor body 1 includes a water supply line 24 for supplying water to a water feeder 23 connected to an air suction line 2. The water supply line 24 is provided with a control valve 27 that can control a flow rate of the water. A controller 28 conducts driving control of the control valve 27 in a 5×10−5 to 40×10−5 range of an injected-water volume ratio (more specifically, a volume ratio between an intake air flow rate and injected-water flow rate in the water feeder 23 of the suction line 2) and at the same time, in an injected-water volume ratio range of the compressor characterized so that an increase rate of overall adiabatic efficiency of the compressor per 1×10−5 increase rate of the injected-water volume ratio stays less than 2% of an original or initial value.
    • 公开了一种注水式涡旋式空气压缩机,其能够在提高压缩机效率的同时降低干燥的预停动时间。 压缩机主体1包括用于向连接到吸气管线2的供水器23供水的供水管线24.供水管线24设置有可以控制水的流量的控制阀27。 控制器28在注入水体积比的5×10-5至40×10-5范围内进行控制阀27的驱动控制(更具体地说,进气流量与喷射水流量之间的体积比 在吸入管线2的给水器23中的速率),同时在压缩机的注入水体积比范围内,其特征在于,每1×10-5增加压缩机的整体绝热效率的增加率 的注入水体积比保持小于原始值或初始值的2%。
    • 3. 发明授权
    • Oil-free scroll compressor
    • 无油涡旋压缩机
    • US08202057B2
    • 2012-06-19
    • US12542863
    • 2009-08-18
    • Hirokatsu KohsokabeHirotaka KameyaKazuaki ShiinokiToshiaki Yabe
    • Hirokatsu KohsokabeHirotaka KameyaKazuaki ShiinokiToshiaki Yabe
    • F04B49/10
    • F04C18/0223F04C29/0014F04C2240/81F04C2270/19
    • An oil-free scroll compressor prevents wraps from being broken and provides improved reliability. The oil-free scroll compressor includes an orbiting scroll member and fixed scroll members, and has compression channels into which water is injected each formed between the intake port and exhaust port provided in the fixed scroll member. The oil-free scroll compressor includes temperature sensors each of which detects temperature in the compression channel, regulating valves each of which controls ratio of the amount of the water to be injected into the respective compression channels to the total amount of the water to be injected into the compression channels, and controller which controls the opening degrees of the regulating valves such that a difference between the detected temperatures from the compression channels is small.
    • 无油涡旋压缩机防止卷材破损,提高了可靠性。 无油涡旋压缩机包括绕动涡旋构件和固定涡旋构件,并且具有压缩通道,每个形成在设置在固定涡旋构件中的进气口和排气口之间形成有水。 无油涡旋压缩机包括温度传感器,每个温度传感器检测压缩通道中的温度,每个调节阀控制要喷射到各个压缩通道中的水量的比例与待喷射的水的总量 以及控制器,其控制调节阀的开度,使得来自压缩通道的检测到的温度之间的差异小。
    • 5. 发明授权
    • Water injected scroll air compressor
    • 注水涡旋空压机
    • US08721308B2
    • 2014-05-13
    • US13025460
    • 2011-02-11
    • Kazuaki ShiinokiNatsuki KawabataHirotaka Kameya
    • Kazuaki ShiinokiNatsuki KawabataHirotaka Kameya
    • F01C1/02
    • F04C29/0007F04C18/0215F04C28/08F04C2240/81F05C2201/903
    • As pressure in a water tank rapidly rises when water inside a compressor is evaporated by the high temperature of compressed air and this situation makes the operation unstable, an object of the present subject matter is to address this problem. A water injected scroll air compressor is provided with: an air end of the scroll air compressor; a driving unit that generates driving force for the air end; a compressing path from a suction port to a discharge port; a portion to inject water into the compressing path; a discharge piping of air discharged from the air end; a tank provided on a path of the discharge piping for storing water separated from the compressed air; and a cooler that is provided on the path of the discharge piping between the tank and the air end and cools the compressed air discharged from the air end.
    • 当压缩机内的水被压缩空气的高温蒸发时,水箱内的压力急剧上升,这种情况使得操作不稳定,本发明的目的是解决这个问题。 注水涡旋空气压缩机设有:涡旋空气压缩机的空气端; 产生空气端的驱动力的驱动单元; 从吸入口到排出口的压缩路径; 将水注入压缩路径的部分; 从空气端排出的空气的排放管道; 设置在排出管道的路径上的用于储存从压缩空气分离的水的罐; 以及设置在罐和空气端之间的排放管道的路径上并且冷却从空气端排出的压缩空气的冷却器。
    • 9. 发明授权
    • Package-type scroll compressor
    • 包装式涡旋压缩机
    • US06283738B1
    • 2001-09-04
    • US09669632
    • 2000-09-26
    • Kazuaki ShiinokiAkira SuzukiIsamu KawanoNatsuki Kawabata
    • Kazuaki ShiinokiAkira SuzukiIsamu KawanoNatsuki Kawabata
    • F04C2702
    • F04C29/04B01D53/26
    • It is an improvement of a package-type compressor that is used for the air compression, refrigerating and air conditioning The compressor is a double scroll compressor that a laps are formed on both sides of an end plate of orbiting scroll. A scroll compressor element is disposed above a motor and a dryer is disposed further above the scroll compressor element. A cooling fan is installed in the motor. A cooler that cools operation gas through the compressor element is disposed above the cooling fan. A partition plate defines a first flow passage for cooling the motor and the compressor element and a second flow passage for cooling the cooler. A first suction port sucking external air to the first and second flow passages is provided on a casing side wall locating in a direction extending from the motor shaft. A suction partitioning plate is attached to a casing sidewall opposite to the casing side wall having the first suction port. The second suction port is lower than the first suction port.
    • 是用于空气压缩,制冷和空调的包装式压缩机的改进。压缩机是双涡旋压缩机,其在绕动涡卷的端板的两侧形成一圈。 涡旋压缩机元件设置在电动机上方,干燥器设置在涡旋压缩机元件的更上方。 电机内装有冷却风扇。 冷却器通过压缩机元件冷却操作气体,设置在冷却风扇上方。隔板限定用于冷却电动机和压缩机元件的第一流动通道和用于冷却冷却器的第二流动通道。吸入外部空气的第一吸入口 第一和第二流动通道设置在从电动机轴延伸的方向上的壳体侧壁上。 吸入分隔板附接到与具有第一吸入口的壳体侧壁相对的壳体侧壁。 第二吸入口比第一吸入口低。
    • 10. 发明授权
    • Partition means for directing air flow over a cooler in an oilless scroll compressor
    • 用于将无风涡旋压缩机中的空气流过冷却器的分隔装置
    • US06210132B1
    • 2001-04-03
    • US08921798
    • 1997-09-02
    • Kazuaki ShiinokiIsamu KawanoNatsuki KawabataAkira Suzuki
    • Kazuaki ShiinokiIsamu KawanoNatsuki KawabataAkira Suzuki
    • F04B1700
    • F04C29/04F04C18/0223F04C23/00F04C2220/12
    • A cooling fan is fitted to one of the shaft end portions of a double-end motor, and a pulley is fitted to the other end portion. A belt is passed around this pulley and a pulley fitted to a compressor element, and the compressor element is driven by this belt. The compressor element is disposed in such a manner as to be stacked up in an upward direction of the motor. An exhaust duct having a built-in cooler is also disposed in such a manner as to be stacked up above a cooling fan on the discharge side of the cooling fan. A main duct is formed on the suction side of the cooling fan and is interconnected in series with a cooling air outlet of the compressor element. These members described above are accommodated inside a casing. Therefore, two cooling air flow passages are defined on the right and left sides inside the casing.
    • 一个冷却风扇安装在双端电动机的一个轴端部分上,一个滑轮装在另一端部。 带子绕过该滑轮并且安装在压缩机元件上的滑轮,压缩机元件由该带驱动。 压缩机元件以沿电动机的向上方向堆叠的方式设置。 具有内置冷却器的排气管也设置成在冷却风扇的排出侧的冷却风扇上方堆叠。 主导管形成在冷却风扇的吸入侧,并与压缩机元件的冷却空气出口串联连接。 上述这些构件容纳在壳体内。 因此,在壳体内部的左右两侧限定有两个冷却风路。