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    • 3. 发明申请
    • DEVICE FOR CONTROLLING THE DRILLING DIRECTION OF DRILL BIT
    • 用于控制钻头钻头方向的装置
    • WO1996030616A1
    • 1996-10-03
    • PCT/JP1996000187
    • 1996-01-31
    • JAPAN NATIONAL OIL CORPORATIONIKEDA, AkioSHANO, Koetsu
    • JAPAN NATIONAL OIL CORPORATION
    • E21B04/00
    • E21B7/067E21B4/003
    • The objective of the present invention is to provide a device for controlling the drilling direction of the drills by which the drilling direction can be accurately detected, the bit load and the vibration affecting on the weakly-structured double eccentric mechanism portion can be controlled, and the rigidity of the rotating shaft is enhanced. The device for controlling the drilling direction of the drills comprises a cylinder-type housing (6), the first ring-formed component (11) which is located on an inner peripheral surface that is eccentric with respect to the cylinder-type housing (6), the second ring-formed component (12) which is located on the inner peripheral surface that is eccentric with respect to said circular inner surface of the first ring-formed component (11), and the hollow-type harmonized reduction gears (13, 14) which rotate the first and second ring-formed components (11, 12) relatively around their respective centers, and the said device for controlling the drilling direction of the drills is operated to determine the position of the rotating shaft (2) by individually rotating the first and second ring-formed components (11, 12). In said device for controlling the drilling direction of the drills, a resolver is positioned between the first and second ring-formed components (11, 12) and the hollow-type harmonized reduction gears (13, 14) to detect the rotating angular position of the first and second ring-formed components (11, 12). Furthermore, a fulcrum bearing (8) of the rotating shaft (2) is located at a midpoint between the drill bit and the first and second ring-formed components (11, 12). Moreover, a flexible joint (3) is located at the upper portion of the first and second ring-formed components (11, 12) and a bearing (15) is further mounted on the flexible joint in order to support the rotating shaft (1).
    • 本发明的目的是提供一种用于控制钻头的钻孔方向的装置,通过该装置可以准确地检测钻孔方向,可以控制钻头负载和对弱结构的双偏心机构部分的影响的振动,以及 提高了旋转轴的刚性。 用于控制钻头的钻孔方向的装置包括圆筒型壳体(6),第一环形部件(11)位于相对于圆筒型壳体(6)偏心的内周面上 ),位于相对于第一环形部件(11)的所述圆形内表面偏心的内周面上的第二环形部件(12)和中空型协调减速齿轮(13) ,14),其使第一和第二环形部件(11,12)相对绕其各自的中心旋转,并且操作用于控制钻孔的钻孔方向的所述装置,以确定旋转轴(2)的位置由 单独旋转第一和第二环形部件(11,12)。 在用于控制钻头的钻孔方向的装置中,旋转变压器位于第一和第二环形部件(11,12)和中空型协调减速齿轮(13,14)之间,以检测旋转角度位置 第一和第二环形部件(11,12)。 此外,旋转轴(2)的支点轴承(8)位于钻头与第一和第二环形部件(11,12)之间的中点处。 此外,柔性接头(3)位于第一和第二环形部件(11,12)的上部,并且轴承(15)进一步安装在柔性接头上以支撑旋转轴(1) )。
    • 7. 发明公开
    • METHOD AND APPARATUS FOR ANALYZING ORGANIC MATTERS USING TRANSPORTABLE CONSTRUCTION
    • 方法和设备的有机物质分析,使用可移植事务建设。
    • EP0584377A1
    • 1994-03-02
    • EP93905639.6
    • 1993-03-12
    • Japan National Oil Corporation
    • ISHIDA, ShigeakiFUJIMORI, Hidetoshi A-1003 Rose Mansion FujinomoriMATSUBAYASHI, HidekiMACHIHARA, Tsutomu
    • G01N33/24
    • G01N33/241
    • A sample container (21) filled with a sample of crude crashed rocks is loaded into a thermal decomposition furnace (1), and this thermal decomposition furnace (1) is evacuated to substantial vacuum by connecting it to a vacuum suction line (27), and is then sealed. The sealed furnace (1) is rapidly heated to a first temperature at which some proportions of hydrocarbons are thermally decomposed but inorganic carbonates are not decomposed, and is retained at this temperature for a predetermined time. After the thermal decomposition furnace (1) is cooled to a temperature at which the hydrocarbons inside the furnace do not react with air, it is connected to an air feed line (29) and to an exhaust line (35) and the produced gas inside the furnace is passed through a hydrocarbon detector (34) and through a CO₂ detector (33). An HC peak (P1) and a CO₂ peak (P3) are determined from the output signals of these detectors and are recorded. Then, the temperature of the thermal decomposition furnace (1) is set to a second temperature which is higher than the first temperature and at which insoluble organic matters are substantially decomposed thermally, and each of the steps of exhaust, heating, cooling and measurement is again carried out so as to determine and record at least an HC peak (P2). Types, contents, etc., of the organic matters are judged from these peaks (P1, P2 and P3).
    • 填充有粗的样本的样本容器(21)的岩石坠毁被装入热分解炉(1),该热分解炉(1)是通过将其连接到一个真空抽吸管线抽空到基本真空(27) 并且然后密封。 将密封的炉(1)被迅速加热到使烃的一些比例被热分解,但无机碳酸盐不分解的第一温度,并保持在该温度下持续预定时间。 热分解炉(1)被冷却到使炉内的烃不与空气反应的温度后,将其连接到空气进料管线(29)和在排气管线(35)和内部所产生的气体 该炉通过烃检测器(34),并通过检测器的CO 2(33)通过。 的HC峰(P1)和CO 2峰(P3)是确定性的从合成的输出信号所开采和探测器被记录。 然后,将热分解炉的温度(1)被设定为第二温度的所有比所述第一温度和在其中不溶的有机物被基本上分解热更高,且每个排气,加热,冷却和测量的步骤是 再次进行,以确定矿和记录HC(P2)的至少峰值。 类型,内容等,有机物的从合成峰(P1,P2和P3)判断。
    • 9. 发明公开
    • Submersible optical connector
    • Eintauchbarer optischer Steckverbinder。
    • EP0298144A1
    • 1989-01-11
    • EP87109786.1
    • 1987-07-07
    • Japan National Oil CorporationSUMITOMO ELECTRIC INDUSTRIES LIMITED
    • Yamaguchi, Masayoshi Osaka Works of SumitomoHagihara, Toshio Osaka Works of Sumitomo
    • G02B6/38
    • G02B6/382G02B6/32G02B6/3816G02B6/3823G02B6/3833G02B6/3847
    • An optical connector assembly has a female connector (1) formed in its front surface with a recess (3), and a male connector formed therein with a cavity (7) and in its front surface with a projection (8) which is partly or entirely deformable so that the tip of an optical fiber (10) supported by the projection will be fitted into the innermost portion of the recess without fail. An incoming/outgoing beam surfaces at the innermost part of the recess and at the tip of the projection are formed by the end faces of optical fibers passed through the female and male connectors. A collimator lens (11, 12) may be provided on the end face of each optical fiber (4, 10) which serves to expand the diameter of transmitted beams and deflect the beams in parallel, so that the transmission loss by dust in the water is kept to a minimum level. A device (16, 18) for forming jet streams is provided at the joint surfaces of the male and female connectors which serves to jet water or a detergent stored in a storage means to the end faces of both optical fibers when connecting the connectors and blow away dust, thereby reducing the transmission loss by dust.
    • 光学连接器组件具有在其前表面上形成有凹部(3)的阴连接器(1)和形成有空腔(7)的阳连接器,并且在其前表面中具有突出部(8),所述突起部分 完全可变形,使得由突起支撑的光纤(10)的尖端将不会失配地嵌入凹部的最内部。 在凹槽的最内部和突起的尖端处的入射/射出光束表面由通过阴连接器和阳连接器的光纤的端面形成。 可以在每个光纤(4,10)的端面上设置准直透镜(11,12),其用于扩大透射光束的直径并使光束平行偏转,使得水中的灰尘传输损失 保持在最低水平。 用于形成喷射流的装置(16,18)设置在阳连接器和阴连接器的接合表面处,用于在连接连接器并吹动时将存储在存储装置中的水或洗涤剂喷射到两根光纤的端面 从而减少灰尘的传输损失。