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    • 63. 发明专利
    • Oil-contaminated soil treatment apparatus convertible from existing asphalt plant
    • 油浸土壤处理设备可从现有的沥青厂转移
    • JP2003334535A
    • 2003-11-25
    • JP2003055153
    • 2003-03-03
    • Emco:KkKajima CorpKajima Road Co Ltd株式会社エムコ鹿島建設株式会社鹿島道路株式会社
    • SUZUKI SHIGERUFUKUKAWA MITSUOSAEKI ISAMU
    • E01C19/10B07B1/00B07B1/28B09C1/06
    • PROBLEM TO BE SOLVED: To provide an oil-contaminated soil treatment apparatus convertible from an existing asphalt plant, which utilizes existing asphalt plant facilities and can also treat oil-contaminated soil through some additional provision or modification of the facilities.
      SOLUTION: In asphalt plant facilities (A) which include a drier (5), an aggregate vibration screen (11), a metering device (13), and a mixer (4) and have been constructed so that a raw material as contaminated soil heat-treated by the drier (5) is supplied through a transfer means (3) into the aggregate vibration screen (11), a cooling/dust-proof water addition apparatus (15) for the contaminated soil which has been heat-treated by the drier is additionally provided. A switching means (18) for switching between the aggregate vibration screen (11) and the cooling/dust-proof water addition apparatus (15) followed by charging is further provided so that the facilities can also be used for oil- contaminated soil treatment.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供可利用现有沥青设备设备的现有沥青设备可转换的油污染土壤处理设备,并且还可以通过一些额外的设施或改造来处理受油污染的土壤。 解决方案:在包括干燥器(5),聚集体振动筛(11),计量装置(13)和混合器(4)的沥青设备设施(A)中,已经构造成使原料 由干燥机(5)热处理的污染土壤通过传送装置(3)供给到集料振动筛(11)中,用于已经被加热的污染土壤的冷却/防尘添加装置(15) 另外提供了由干燥器处理的。 进一步设置用于在集合振动筛(11)和冷却/防尘添加装置(15)之间进行充电的切换装置(18),使得设备也可以用于油污染的土壤处理。 版权所有(C)2004,JPO
    • 65. 发明专利
    • METHOD AND DEVICE FOR CONSTRUCTING ASPHALT SURFACE WATER SHIELDING WALL
    • JPH11158845A
    • 1999-06-15
    • JP32980497
    • 1997-12-01
    • KAJIMA CORPKAJIMA ROAD CO LTD
    • NAKAYA YOSHIAKIABE YUTAKAFUKUKAWA MITSUOKAGATA MAMORU
    • E02B7/00E01C7/35E01C19/48
    • PROBLEM TO BE SOLVED: To reduce the man-hours of construction, and to prevent the blister condition due to the involvement of air and water in a water shielding layer by forming a surface water shielding wall of a single layer having a required thickness, and securing a stage difference in a vertical joint part of each lane end so as to secure a required joint length at the time of constructing the water shielding wall. SOLUTION: An asphalt surface water shielding wall is formed of a single layer having a required thickness W at 10 cm for example, and a vertical joint part J-1 of each lane end is provided with a step-like stage difference, and formed so as to have a required length L of 50 cm and a required thickness (w) of 5 cm for example. In a vertical joint part J-1 of the first lane R-1, the asphalt layer having a thickness (w) of 5 cm is overlapped with a following second lane R-2, and thickness in the vertical connection part is formed of 10 cm. Man-hours of the construction is reduced by forming a single layer having thickness of 10-15 cm, and the water shielding wall working process is shortened, and since the vertical joint part J-1 of each lane end is provided with a step-like stage difference so as to secure a required length of the joint part, involvement of air and water in the water shielding layer is eliminated so as to prevent the blister condition.
    • 66. 发明专利
    • CONCRETE LEVELING ROBOT
    • JPH0598804A
    • 1993-04-20
    • JP26483291
    • 1991-10-14
    • KAJIMA CORP
    • SHIRAISHI YASUNOBUITOU KIYOKAZUKUBO KIRYONEMOTO TSUTOMUFUKUKAWA MITSUOHIGUCHI NORIMASA
    • E04F21/24E04G21/10G05D1/02
    • PURPOSE:To aim at the promotion of labor-saving by installing each mobile leg orthogonally with both ends of a screed type concrete leveler equipped with a laser beam receiver, and setting up respective motor screw jacks and drivers at both ends of these inner and outer legs. CONSTITUTION:Two motor screw jacks 13, 13 at both outer legs 11 are extended longer by a controller 8 of a screed type concrete leveler 1, supporting this leveler 1 with the outer legs 11, and two motor screw jacks 14, 14 of both inner legs 12 are contracted and the inner legs 12 are supported by the leveler 1. Next, a pinion 24a is rotated by an outer driving motor 21 a, traveling the leveler 1 forward on these outer legs 11, and then the leveler 1 is detected by a limit switch S3, stopping the motor 21a. Subsequently, the leveler 1 is shifted along these inner legs 12 by reverse motion, and ready-mixed concrete 33 is leveled by two blades 2, 2. In succession, with a signal out of a laser beam receiver 3 received with a laser beam from a laser beam emitter 35, each stroke of these jacks 13, 14 is adjusted as specified, thus a level on a flattened surface is kept constant.