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    • 11. 发明专利
    • 岸壁クレーン
    • QUAN CRANE
    • JP2014196151A
    • 2014-10-16
    • JP2013071504
    • 2013-03-29
    • 三井造船株式会社Mitsui Eng & Shipbuild Co Ltd
    • SATO SOJIMATSUURA MASAHIROKUBO HIROSHIHORIE MASAHITOANDO KAZUAKI
    • B66C5/04B66C7/10B66C19/00
    • 【課題】スライド式ブーム(シャトルブーム)を懸架構造物で支持する岸壁クレーン(ロープロファイルクレーン)において、懸架構造物の走行方向への揺動を抑制し、安定性を向上させた岸壁クレーンを提供する。【解決手段】スライド式ブーム2を脚構造物が有する支持構造で支持した岸壁クレーンであり、支持構造が、脚構造物上端の脚構造物水平部材6と、脚構造物水平部材6に支持ピン4を介して懸吊された懸架構造物3と、懸架構造物3に設置された支持車輪5と、を有し、支持車輪5がスライド式ブーム2を支持する岸壁クレーン1において、懸架構造物3が、支持ピン4から離れる方向に延伸して形成された延長アーム部20を有し、岸壁クレーン1が、支持ピン4を中心とする延長アーム部20の揺動を拘束するバッファ部材21を有している。【選択図】図1
    • 要解决的问题:为了提供一种支撑具有悬架结构的滑动式起重臂(梭动吊杆)的码头起重机(低型起重机),抑制悬架结构在行进方向上的摆动,从而提高了稳定性。解决方案:在码头 起重机,滑动式起重臂2由腿结构的支撑结构支撑。 支撑结构包括腿结构的上端的腿部结构水平构件6,通过支撑销4从腿部结构水平构件6悬挂的悬挂结构3和布置在悬挂结构3中的支撑轮5, 支撑轮5支撑滑动式吊杆2.悬架结构3具有在与支撑销4分离的方向上延伸的延伸臂部20,并且码头起重机1具有限制延伸臂20的振动的缓冲部件21 以支撑销4为中心。
    • 13. 发明专利
    • Operator cab of crane and crane
    • 起重机和起重机操作员
    • JP2014189391A
    • 2014-10-06
    • JP2013068715
    • 2013-03-28
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • ICHIMURA KINYA
    • B66C13/54B66C13/46
    • B66C13/54B66C13/46
    • PROBLEM TO BE SOLVED: To provide an operator cab which improves safety of cargo handling operation by a crane while inhibiting the manufacturing costs of the operator cab of the crane and reduces a load of an operator, and to provide the crane having the operator cab.SOLUTION: An operator cab 2 of a crane 1 includes glass surfaces 13, 14 supported by frame bodies 11, 12. The operator cab 2 includes: an image display device 21 installed at the inner side of the frame body 11; an image obtaining device 22 which obtains an image of the outer side of the frame body 11; and a control device 23 which includes a structure for displaying the image obtained by the image obtaining device 22 on the image display device 21.
    • 要解决的问题:提供一种操作者驾驶室,其提高起重机的货物处理操作的安全性,同时抑制起重机的驾驶室的制造成本并降低操作者的负载,并提供具有驾驶室的起重机。 解决方案:起重机1的驾驶室2包括由框架体11,12支撑的玻璃表面13,14。操作者驾驶室2包括:安装在框体11的内侧的图像显示装置21; 获取框体11的外侧的图像的图像获取装置22; 以及控制装置23,其包括用于在图像显示装置21上显示由图像获取装置22获得的图像的结构。
    • 14. 发明专利
    • Crane and control method for the same
    • 其起动和控制方法
    • JP2014189389A
    • 2014-10-06
    • JP2013068706
    • 2013-03-28
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • HARADA HIDEKAZUMIYANISHI YASUFUMIFURUSE AKIHIROTANIGUCHI YASUSHIOGASAWARA MASANOBU
    • B66C13/22
    • PROBLEM TO BE SOLVED: To provide a crane and a control method for the same capable of: calculating a deflection angle of a holding attachment without using a deflection angle detection device regardless of a moving state of a trolley; and accurately calculating the deflection angle by reducing an influence of a noise due to a wire.SOLUTION: In a crane which has load cells installed on land side pulleys P1 and P3 at a land side of a girder 6 and sea side pulleys P2 and P4 at a sea side thereof, a control device 11: calculates a target acceleration α' of a trolley 7 in accordance with a deflection angle θ of a crab bucket 8 with respect to a vertical direction; and controls deflection of the crab bucket 8 with respect to the vertical direction by moving the trolley 7 so that an acceleration α of the trolley 7 becomes equal to the calculated target acceleration α'. The control device has deflection angle calculation means M1 which calculates the deflection angle θ from a tensile force difference ΔF between land side tensile force F1 detected by the land side pulleys P1 and P3 and sea side tensile force F2 detected by the sea side pulleys P2 and P4.
    • 要解决的问题:提供一种起重机及其控制方法,其能够:无需使用倾转角检测装置来计算保持附件的偏转角度,而与手推车的移动状态无关; 并通过减少由于电线引起的噪声的影响来精确地计算偏转角。解决方案:在具有安装在梁6的陆侧皮带轮P1和P3上的载荷传感器和海侧滑轮P2和P4的起重机中 在其海侧,控制装置11根据偏转角度θ计算手推车7的目标加速度α'; 相对于垂直方向的蟹桶8; 并且通过移动小车7来控制螃蟹桶8相对于垂直方向的偏转,使得滑车7的加速度α等于计算出的目标加速度α'。 控制装置具有计算偏转角度的偏转角计算装置M1; 来自陆侧皮带轮P1和P3检测到的陆侧张力F1与海侧滑轮P2和P4所检测到的海侧张力F2之间的拉力差Dgr; F。
    • 15. 发明专利
    • Swing detection device of hanging attachment and control method for the same
    • 悬挂检测装置及其控制方法
    • JP2014189353A
    • 2014-10-06
    • JP2013064406
    • 2013-03-26
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • KASAI HIROSHI
    • B66C13/22
    • PROBLEM TO BE SOLVED: To provide a swing detection device of a hanging attachment and a control method for the same capable of appropriately detecting swing of the hanging attachment even when the same does not have a power source as is the case with a crab bucket.SOLUTION: A swing detection device 1 comprises: a laser range finder 3 installed on a trolley 2; at least two targets 5 installed on a hanging attachment 4; and a control device. The swing detection device 1 has configurations to calculate: a difference between a predetermined inter-target horizontal distance Wof the two targets 5 and an apparent inter-target horizontal distance (W+W) of the two targets 5 measured by the laser range finder 3; and a swing speed of the hanging attachment 4 in a horizontal direction from the difference in the horizontal distances and time required for the laser range finder 3 to measure the apparent inter-target horizontal distance (W+W) of the two targets 5.
    • 要解决的问题:为了提供一种吊挂装置的摆动检测装置及其控制方法,能够适当地检测吊挂装置的摆动,即使在与铲斗相同的情况下也没有电源。 解决方案:摆动检测装置1包括:安装在手推车2上的激光测距装置3; 安装在悬挂附件4上的至少两个目标5; 和控制装置。 摆动检测装置1具有如下结构:计算两个目标5的预定目标间水平距离W与由激光测距装置3测定的两个目标物5的表观目标间水平距离(W + W)之间的差 ; 和垂直安装件4的水平方向的摆动速度与激光测距仪3所需的水平距离和时间的差异,以测量两个目标5的表观目标间水平距离(W + W)。
    • 16. 发明专利
    • Brake gear and crane including brake gear
    • 制动齿轮和起重机,包括制动齿轮
    • JP2014189179A
    • 2014-10-06
    • JP2013067073
    • 2013-03-27
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • OGASAWARA MASANOBUHORIE MASAHITOSUZUKI YOHEIISEKI SHUNTAROABE TATSUYA
    • B61H7/12B60T1/14B66C9/18F16D59/00F16D63/00F16D65/14F16D65/22
    • PROBLEM TO BE SOLVED: To provide a brake gear which is low in manufacturing cost, and small-sized and can obtain enough brake force.SOLUTION: In a brake gear 2, a brake shoe 21 has brake shoe upper surfaces 24u, 24d having an inclined part, and a receiving part 22 has receiving part lower surfaces provided with inclined parts 26u, 26d corresponding to the brake shoe upper surfaces. In braking, the receiving part 22 and the brake shoe 21 are lowered by actuation of an elevating mechanism 23, the brake shoe 21 is grounded, and the receiving part 22 runs on the brake shoe upper surfaces by the movement of a mover. When a vertical load is generated in a brake protection mechanism 10 over a predetermined value, the brake protection mechanism 10 raises the receiving part 22.
    • 要解决的问题:提供一种制造成本低且尺寸小并且可以获得足够的制动力的制动器齿轮。解决方案:在制动器齿轮2中,制动蹄片21具有制动蹄片上表面24u,24d,其具有 倾斜部分和接收部分22具有设置有对应于制动蹄上表面的倾斜部分26u,26d的接收部分下表面。 在制动时,通过升降机构23的动作使接收部22和制动蹄21下降,制动蹄21接地,并且接收部22通过动子的移动而在制动蹄上表面上行驶。 当在制动保护机构10中产生超过预定值的垂直负载时,制动器保护机构10使接收部22升高。
    • 17. 发明专利
    • Ethanol production system
    • 乙醇生产系统
    • JP2014183780A
    • 2014-10-02
    • JP2013060981
    • 2013-03-22
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • SHO TOMOHIROSAITO MASAHIROSAKAI SHINSUKETAKAOKA KAZUEKURAKAKE TADASHI
    • C12M1/00C12P7/08
    • PROBLEM TO BE SOLVED: To provide an ethanol production system which can easily maintain an alcohol in fermentation liquor in a low concentration, and can reduce energy consumption at the time of purifying the alcohol contained in the fermentation liquor in a low concentration.SOLUTION: An ethanol production system includes: a fermentation tank 11 including a fermentation tank body 11a storing fermentation liquor containing gas-assimilating bacteria, and a raw material gas introducing pipe 12 having a raw material gas introducing port 12a which is connected to the fermentation tank body 11a and introduces the raw material gas into the fermentation liquor in the fermentation tank body 11a, the fermentation tank 11 converting the introduced raw material gas into ethanol by a metabolic reaction of the gas-assimilating bacteria to produce ethanol in the fermentation liquor; and a dealcoholization film device 2 having a dealcoholization film which selectively separates ethanol into the permeation side by supplying the fermentation liquor containing ethanol generated by the fermentation tank 11.
    • 要解决的问题:提供一种乙醇生产系统,其可以容易地在低浓度的发酵液中维持醇,并且可以降低在低浓度下纯化发酵液中所含的醇时的能量消耗。解决方案: 乙醇生产系统包括:发酵罐11,其包含存储含有气体同化细菌的发酵液的发酵罐体11a和具有连接到发酵罐体11a的原料气体导入口12a的原料气体导入管12, 将原料气体引入发酵槽体11a的发酵液中,发酵罐11通过气体同化细菌的代谢反应将引入的原料气体转化为乙醇,在发酵液中生成乙醇; 和具有脱醇膜的脱醇膜装置2,其通过供给由发酵罐11产生的含有乙醇的发酵液选择性地将乙醇分离成渗透侧。
    • 19. 发明专利
    • Manufacturing method and manufacturing system of deethanolated wine and manufacturing method and use of wine-derived fragrance ingredient
    • 脱乙醇葡萄酒的制造方法和制造系统及其制造方法和葡萄酒衍生成分的使用
    • JP2014176366A
    • 2014-09-25
    • JP2013054041
    • 2013-03-15
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • INABA TOSHIHARUMIYAJI TAKESHIHATTA NAOKIKURAKAKE TADASHI
    • A23L2/00A23L2/02A23L27/24C12G1/00
    • PROBLEM TO BE SOLVED: To manufacture, both assuredly and efficiently, a deethanolated wine imparting a fragrance unique to wine and having an ethanol concentration abated to less than 0.005 mass%.SOLUTION: In a manufacturing method of a deethanolated wine including an ethanol and fragrance ingredient separation step of separating, from a wine including at least ethanol and a fragrance ingredient, the ethanol and fragrance ingredient, a pervaporation (PV) membrane treatment step of separating the fragrance ingredient from the ethanol and fragrance ingredient separated at the ethanol and fragrance ingredient separation step, and an addition step of conferring a fragrance onto the wine by adding, to the wine having undergone the ethanol and fragrance ingredient separation step, the fragrance ingredient separated at the pervaporation (PV) membrane treatment step, the ethanol concentration within the wine to which the fragrance ingredient has been added at the fragrance ingredient addition step is below 0.005 mass%.
    • 要解决的问题:确定地和有效地制造脱乙醇醇,赋予葡萄酒独特的香料,并且乙醇浓度降低到小于0.005质量%。解决方案:在脱乙醇醇的制造方法中,包括乙醇和香料 从至少包含乙醇和香料成分的葡萄酒中分离乙醇和香料成分的渗透蒸发(PV)膜处理步骤,从乙醇和芳香成分分离的乙醇和香料成分分离香料成分 分离步骤,以及通过向经过乙醇和香料成分分离步骤的葡萄酒中加入在渗透蒸发(PV)膜处理步骤分离的香料成分,葡萄酒中的乙醇浓度来赋予香料的添加步骤 在香料成分添加剂中加入香料成分 步骤低于0.005质量%。
    • 20. 发明专利
    • Bioethanol recovering method and bioethanol recovering system
    • 生物柴油回收方法和生物柴油回收系统
    • JP2014171417A
    • 2014-09-22
    • JP2013045474
    • 2013-03-07
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • INABA TOSHIHARUMIYAJI TAKESHIHATTA NAOKI
    • C12P7/06C12M1/00
    • Y02E50/17
    • PROBLEM TO BE SOLVED: To provide a bioethanol recovering method and a bioethanol recovering system capable of preventing the entrainment of odorous components when recovering ethanol from fermentation liquid.SOLUTION: A bioethanol recovering method comprises an odorous component removal process II for removing odorous components from fermentation liquid as a preliminary process of an ethanol recovering process III for recovering ethanol from the fermentation liquid. A bioethanol recovering system comprising at least ethanol recovering means for recovering ethanol from the fermentation liquid, includes odorous component removal means for removing the odorous components from the fermentation liquid in the preliminary stage of the ethanol recovering means.
    • 要解决的问题:提供生物乙醇回收方法和生物乙醇回收系统,其能够防止在从发酵液中回收乙醇时夹杂恶臭成分。解决方案:一种生物乙醇回收方法,包括从发酵中除去有害成分的气味成分去除方法II 液体作为从发酵液中回收乙醇的乙醇回收方法III的初步方法。 一种生物乙醇回收系统,其至少包括用于从发酵液中回收乙醇的乙醇回收装置,包括在乙醇回收装置的初级阶段从发酵液中除去异味成分的有气味成分去除装置。