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    • 2. 发明专利
    • Airborne ion generator, and air conditioner having the same
    • AIRBORNE发电机和具有相同功能的空调
    • JP2013167402A
    • 2013-08-29
    • JP2012030777
    • 2012-02-15
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO SHINGOOKADA YUJIMORI HIRONORI
    • F24F1/00F24F6/00F24F6/04
    • PROBLEM TO BE SOLVED: To provide an airborne ion generator capable of generating airborne ions with smaller diameters at high efficiency, and sufficiently emitting and diffusing the ions into air, and an air conditioner having the same.SOLUTION: An airborne ion generator includes a longitudinal duct case 15 with an ion diffuser 16 opened at a lower end, an ion generation unit 19 arranged in a vicinity of the ion diffuser 16 in the duct case 15, and a mist generation unit 21 which is arranged in an upper part of the ion generation unit 19 to obtain super-fine mist by making a water content in the air condensed on a cooling surface side of a Peltier element 22 pass through a permeable film 25. Airborne ions are generated by adding negative ions generated by the ion generation unit 19 to the super-fine mist generated by the mist generation unit 21, and emitted into the air from the ion diffuser 16.
    • 要解决的问题:提供一种能够高效率地产生较小直径的空气中离子的空气离子发生器,并且将离子充分地发射和扩散到空气中,以及具有该离子的空调。空气离子发生器包括纵向 具有在下端开口的离子扩散器16的管道壳体15,布置在管道壳体15中的离子扩散器16附近的离子产生单元19和布置在离子的上部的雾产生单元21 通过使在珀尔帖元件22的冷却表面侧冷凝的空气中的含水量通过透过膜25而获得超细雾的发电单元19通过加入由离子产生单元19产生的负离子而产生空气离子 涉及由雾产生单元21产生的超细雾,并从离子扩散器16发射到空气中。
    • 3. 发明专利
    • Air conditioner
    • 冷气机
    • JP2012057917A
    • 2012-03-22
    • JP2010204547
    • 2010-09-13
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKANO MASASHIGOTO TAKASHINAITO YASUHIROITO SHINGOHIGASHIURA KUNIHIRO
    • F24F13/28
    • PROBLEM TO BE SOLVED: To provide an air conditioner which can improve the freedom degree of setting position of a filter position detection means, reducing a failure risk of a filter cleaning mechanism to improve the reliability of the filter cleaning mechanism, and improving the storage of the filter cleaning mechanism to make the filter cleaning mechanism compact.SOLUTION: The air conditioner has an air filter 14 fixed on upstream side of a thermal exchanger movably along a filter moving course via the filter cleaning mechanism to cover the whole surface of an air suction port. In the air conditioner, one filter position detection means 30 for detecting the moving position of the air filter 14 is disposed on a position along the filter moving course on which the air filter 14 moves, and a marker for switching the filter position detection means 30 into an off state is disposed in the neighborhood of terminal part in the moving direction of the air filter 14.
    • 要解决的问题:提供一种能够提高过滤器位置检测单元的设定位置的自由度的空调,降低过滤器清洗机构的故障风险,提高过滤器清洗机构的可靠性,提高 过滤器清洁机构的存放使得过滤器清洁机构紧凑。 解决方案:空气调节器具有固定在热交换器的上游侧的空气过滤器14,该空气过滤器14通过过滤器清洁机构沿着过滤器移动路径可移动地覆盖空气吸入口的整个表面。 在空气调节器中,一个用于检测空气过滤器14的移动位置的过滤器位置检测装置30设置在沿着空气过滤器14移动的过滤器移动路径的位置,以及用于切换过滤器位置检测装置30的标记 在空气过滤器14的移动方向上设置在终端部附近的关闭状态。(C)2012,JPO&INPIT
    • 4. 发明专利
    • Air conditioner
    • 冷气机
    • JP2012037118A
    • 2012-02-23
    • JP2010176522
    • 2010-08-05
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO SHINGOGOTO TAKASHI
    • F24F13/28
    • PROBLEM TO BE SOLVED: To provide an air conditioner which can prevent falling of dust on a heat exchanger even when a part of the dust remains on an air filter in cleaning the air filter by a filter cleaning mechanism.SOLUTION: The air conditioner 1 includes the filter cleaning mechanism 23 for removing the dust by moving the air filter 14 along a filter guide. The filter guide forms a first filter guide path 18 for placing the air filter 14 along an upstream side of the heat exchanger 15, a second filter guide path 27 continuing to one end of the first filter guide path 18 and turning the air filter 14 around by a curved path, and a third filter guide path 29 continuing to the second filter guide path 27 and guiding the air filter 14 moved in cleaning to a position deviated from an upper section of the heat exchanger 15.
    • 要解决的问题:提供一种空气调节器,即使在通过过滤器清洁机构清洁空气过滤器时,一部分灰尘残留在空气过滤器上时也能够防止热交换器上的灰尘下降。 解决方案:空气调节器1包括用于通过沿着过滤器引导件移动空气过滤器14来除去灰尘的过滤器清洁机构23。 过滤器引导件形成用于沿着热交换器15的上游侧放置空气过滤器14的第一过滤器引导路径18,连续到第一过滤器引导路径18的一端并将空气过滤器14转动的第二过滤器引导路径27 通过弯曲的路径和连续到第二过滤器引导路径27的第三过滤器引导路径29并将在清洁中移动的空气过滤器14引导到偏离热交换器15的上部的位置。版权所有(C) )2012,JPO&INPIT
    • 5. 发明专利
    • Air conditioner
    • 冷气机
    • JP2012037116A
    • 2012-02-23
    • JP2010176520
    • 2010-08-05
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • GOTO TAKASHIITO SHINGOHIGASHIURA KUNIHIRO
    • F24F13/28
    • PROBLEM TO BE SOLVED: To provide an air conditioner which has a simple transfer path having no U-turn portion, does not require an air filter to have bending durability, thus extending its lifespan, and allows the miniaturization of a drive motor for a filter cleaning mechanism.SOLUTION: The air conditioner 1 includes an enclosure 5 having an air suction port 8, an air blowoff port 10, and an internal air channel 13 in which an air filter 14, a heat exchanger 15, and a blower 16 are arranged in order. The air conditioner 1 also includes a filter cleaning mechanism 23 which moves the air filter 14 along a transfer path 27 to eliminate dust captured thereby. The transfer path 27 for the air filter 14 is formed to extend from the lower part of a front face inside the enclosure 5 and penetrate into the air blowoff port 10 of the air channel 13. The transfer path 27 further extends through the air channel 13 toward its upstream side from the position of the air blowoff port 10, passes through a gap 32 between an air channel wall 13A and the blower 16, and reaches the upstream side of the gap 32.
    • 要解决的问题:为了提供一种具有没有U形转弯部分的简单传送路径的空调器,不需要空气过滤器来具有弯曲耐久性,从而延长其寿命,并且允许驱动电动机的小型化 用于过滤器清洁机构。 解决方案:空调1包括具有空气吸入口8,排气口10和内部空气通道13的外壳5,空气过滤器14,热交换器15和鼓风机​​16布置在该内部空气通道13中 为了。 空调装置1还具有过滤器清洗机构23,其将空气过滤器14沿着传送路径27移动,以消除由此而吸收的尘埃。 用于空气过滤器14的传送路径27形成为从外壳5内的正面的下部延伸并且穿透空气通道13的空气吹出口10.传送路径27还延伸穿过空气通道13 从空气吹出口10的位置向其上游侧通过空气通道壁13A和鼓风机16之间的间隙32,到达间隙32的上游侧。(C)2012年, JPO&INPIT
    • 6. 发明专利
    • CORRECTION DATA SYNCHRONIZING DEVICE FOR ROAD SURFACE CONDITION MEASURING DEVICE
    • JPH09189536A
    • 1997-07-22
    • JP311696
    • 1996-01-11
    • MITSUBISHI HEAVY IND LTD
    • ITO SHINGO
    • G01B11/30
    • PROBLEM TO BE SOLVED: To obtain a synchronizing device capable of making displacement data and image data of each of the cameras correspond to distance data by a method wherein the data of a displacement sensor, image data of a camera for imaging a crack and image data of a camera for imaging a front section are collected to be stored by making them correspond to the distance data. SOLUTION: When recording of a front image by a VTR via a camera 3 and recording of a crack by a VTR via a camera 2 are started, an environment file 7, time code data files 9 of the respective cameras, displacement data files 6a, 6b and a white line data file 10 are formed. In the running measurement, wheel track concave data is inputted from a displacement sensor 4 by running a prescribed distance, plane characteristic data is inputted from a displacement sensor 5 and the data is stored in the displacement data file 6a with distance data. A time code from the camera 3 is stored in the time code data file 9 with the distance data. Lastly, wheel track concave data and distance data are stored in the displacement data file 6b.
    • 8. 发明专利
    • HOT BENDING DEVICE FOR METAL TUBE
    • JPH04333323A
    • 1992-11-20
    • JP13162791
    • 1991-05-08
    • MITSUBISHI HEAVY IND LTD
    • FURUKAWA HIROFUMIOTA TAKAHIROMORIMOTO KAZUOKAMO KAZUHIKOITO SHINGO
    • B21D7/16H05B6/10H05B6/42
    • PURPOSE:To prevent the development of wrinkle and bulge due to buckling developed at the time of bending to a metal tube and to obtain a hot ending device, which can reduce thinned thickness rate at back side of the tube. CONSTITUTION:The tube 1 passing through between guide rollers, is passed through a heating coil 4 set to the outer periphery at the bending part and an annular magnetic shield material 5 set to both sides of this coil 4, and the prescribed position in the tube is fixed with an arm. Then, by supplying high frequency current in the heating coil 4, the tube 1 is heated, and at the time of becoming the prescribed temp., load is given to one end of the tube 1 with a hydraulic cylinder 3 to execute the necessary bending work. The heating coil 4 is cooled with water in the inner part thereof and a part of the water is injected to the outer surface of tube 1 through an injection nozzle 8. At both sides of the heating coil 4, copper tubes 5 cooling the liner part with the flowing water, are set while insulating with the heating coil as the magnetic shield material. Then, by making distance between the heating coil 4 and the tube 1 at the back side of tube 1 larger than that at the front side of tube, eddy current density in the tube material at the back side is made to low, and heating temp. is made to low.
    • 9. 发明专利
    • Maintenance service support device, maintenance service support method, and program
    • 维护服务支持设备,维护服务支持方法和程序
    • JP2014174891A
    • 2014-09-22
    • JP2013049157
    • 2013-03-12
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO SHINGONOMURA MASUMITATEISHI HIROKIKAWACHI MOTOKOSAKAI TATSUYA
    • G06Q50/10F01D25/00F02C7/00
    • PROBLEM TO BE SOLVED: To present an appropriate maintenance measure principle.SOLUTION: An inspection/maintenance support device includes: a storage unit for storing maintenance reference data in which a type of damage, a measuring object of the damage, and an evaluation reference value of the damage are associated with each other; a damage data acquirement unit for acquiring damage data in which the type of each damage, the measuring object of the damage, and the measured value are associated with each other; an overall evaluation value calculation unit for calculating the overall evaluation value that is obtained by overall evaluating the measured value of the damages having the same damage type, of the damage data; and a maintenance principle determination unit for comparing the overall evaluation value with the maintenance reference data and determining a maintenance principle.
    • 要解决的问题:提出适当的维护措施原理。解决方案:检查/维护支持设备包括:存储单元,用于存储维护参考数据,其中损坏类型,损坏的测量对象和评估参考值 的损害相互关联; 用于获取损伤数据的损伤数据获取单元,其中每个损伤的类型,损伤的测量对象和测量值彼此相关联; 整体评估值计算单元,计算通过综合评价具有相同损伤类型的损伤的测量值而得到的综合评价值的损伤数据; 以及维护原理确定单元,用于将整体评估值与维护参考数据进行比较并确定维护原理。
    • 10. 发明专利
    • Wall-hanging air conditioner
    • 壁挂式空调
    • JP2013124855A
    • 2013-06-24
    • JP2011275979
    • 2011-12-16
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO SHINGOOKADA YUJIMORI HIRONORINISHIDA YASUHIROYAMAMI KOJI
    • F24F13/20F24F1/00
    • F24F13/20F24F1/32F24F13/30
    • PROBLEM TO BE SOLVED: To provide a wall-hanging air conditioner for improving the assembling workability of a heat exchanger on a base body and securing a sufficient strength of the base body.SOLUTION: This wall-hanging air conditioner includes the base body 3 to be assembled with a heat exchanger, an air blower and the like. A refrigerant pipe 7 extended from the heat exchanger assembled on the inner side of the base body 3 is extracted to the rear surface side of the base body 3, and the refrigerant pipe 7 is disposed along the rear surface of the base body. The base body 3 is separable in a longitudinal direction at a portion penetrated through by the refrigerant pipe 7 and divisible in right and left portions, and a divisible side pipe cover 17 is detachably mounted to the base body 3.
    • 要解决的问题:提供一种用于提高基体上的热交换器的组装操作性的壁挂式空调,并确保基体的足够的强度。 解决方案:该挂挂式空调包括与热交换器组装的基体3,鼓风机等。 从组装在基体3的内侧的热交换器延伸的制冷剂配管7被抽出到基体3的背面侧,制冷剂配管7沿着基体的后表面配置。 基体3在制冷剂配管7贯穿的部分的长度方向上分离,左右分割,可分离的侧管罩17可拆卸地安装在基体3上。 C)2013,JPO&INPIT