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    • 1. 发明授权
    • Composite drill bit
    • 复合钻头
    • US08985243B2
    • 2015-03-24
    • US13740197
    • 2013-01-12
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • E21B10/14E21B10/16E21B10/50E21B10/20
    • E21B10/16E21B10/14E21B10/20E21B10/50
    • A composite drill bit with a bit body configured at its upper extend for connection into a drillstring, comprising: a bit body (1) with at least one bit leg (3), at least one scraping-wheel (2) set with a cutter-row (4), and a set of cutters fixed thereon. The scraping-wheel (2) is mounted for rotation on the corresponding bit leg (3) with a large angular deflection α in the range of 20°≦|α|≦90°. The cutters on the scraping-wheel break rock by means of successive scraping, forming a cross-cutting area on the bottomhole accompanied by the cutters on the fixed cutting unit, thus achieving high rock-breaking efficiency, even wear, high cooling performance, and a longer service life for the cutters, bearings and the drill bit.
    • 一种复合钻头,其具有在其上部延伸部分上配置的钻头主体,用于连接到钻柱中,包括:具有至少一个钻头刀头(3)的钻头体(1),至少一个刮刀轮(2) (4)和固定在其上的一组刀具。 刮削轮(2)安装成在相应的钻头支脚(3)上以大角度偏转α在20°& NlE; |α|和nlE; 90°的范围内旋转。 刮刀上的切割机通过连续刮削破碎岩石,在固定切割单元上的切割机上形成了在井底上的交叉切割区域,从而实现了高的破碎效率,甚至磨损,高冷却性能,以及 刀具,轴承和钻头的使用寿命更长。
    • 2. 发明申请
    • SCRAPING-WHEEL DRILL BIT
    • 刮刀轮钻头
    • US20130126246A1
    • 2013-05-23
    • US13740194
    • 2013-01-12
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • E21B10/08
    • E21B10/16E21B10/50E21B10/52
    • A scraping-wheel drill bit with a bit body configured at its upper extend for connection into a drillstring, comprising: a bit body (1) with at least one bit leg (3), and at least one scraping-wheel (2) set with a cutter-row (4). The scraping-wheel (2) is mounted for rotation on the corresponding bit leg (3) with a large angular deflection α which lies in the range of 20°≦|α|≦90°. The cutters on the scraping-wheel break rocks by means of successive scraping, forming a spiral-like tracks on the bottomhole, thus achieving high rock-breaking efficiency, even wear, high cooling performance, and a longer service life for the cutters, bearings and the drill bit.
    • 一种刮刀钻头,其具有在其上延伸部分上配置用于连接到钻柱中的钻头体,包括:具有至少一个钻头(3)和至少一个刮削轮(2)的钻头体(1) (4)。 刮刀轮(2)以大角度偏转α安装在相应的钻头支脚(3)上,旋转角度位于20°@ |α| @ 90°的范围内。 刮刀上的切割机通过连续刮削破碎岩石,在井底形成螺旋状轨道,从而实现高破碎效率,均匀磨损,高冷却性能,以及刀具,轴承使用寿命更长 和钻头。
    • 3. 发明授权
    • Scraping-wheel drill bit
    • 刮刀钻头
    • US09103168B2
    • 2015-08-11
    • US13740194
    • 2013-01-12
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • E21B10/16E21B10/50E21B10/52
    • E21B10/16E21B10/50E21B10/52
    • A scraping-wheel drill bit with a bit body configured at its upper extend for connection into a drillstring, comprising: a bit body (1) with at least one bit leg (3), and at least one scraping-wheel (2) set with a cutter-row (4). The scraping-wheel (2) is mounted for rotation on the corresponding bit leg (3) with a large angular deflection α which lies in the range of 20°≦|α|≦90°. The cutters on the scraping-wheel break rocks by means of successive scraping, forming a spiral-like tracks on the bottomhole, thus achieving high rock-breaking efficiency, even wear, high cooling performance, and a longer service life for the cutters, bearings and the drill bit.
    • 一种刮刀钻头,其具有在其上延伸部分上配置用于连接到钻柱中的钻头体,包括:具有至少一个钻头(3)和至少一个刮削轮(2)的钻头体(1) (4)。 刮刀轮(2)以大的角度偏转α安装在对应的位腿(3)上以旋转,该角度偏差α位于20°< 1 | | | | n1E; 90°的范围内。 刮刀上的切割机通过连续刮削破碎岩石,在井底形成螺旋状轨道,从而实现高破碎效率,均匀磨损,高冷却性能,以及刀具,轴承使用寿命更长 和钻头。
    • 4. 发明申请
    • COMPOSITE DRILL BIT
    • 复合钻头
    • US20130126247A1
    • 2013-05-23
    • US13740197
    • 2013-01-12
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • Ying Xin YangLian ChenMin LinZhu PeiHai Tao Ren
    • E21B10/08E21B10/50
    • E21B10/16E21B10/14E21B10/20E21B10/50
    • A composite drill bit with a bit body configured at its upper extend for connection into a drillstring, comprising: a bit body (1) with at least one bit leg (3), at least one scraping-wheel (2) set with a cutter-row (4), and a set of cutters fixed thereon. The scraping-wheel (2) is mounted for rotation on the corresponding bit leg (3) with a large angular deflection α in the range of 20°≦|α|≦90°. The cutters on the scraping-wheel break rock by means of successive scraping, forming a cross-cutting area on the bottomhole accompanied by the cutters on the fixed cutting unit, thus achieving high rock-breaking efficiency, even wear, high cooling performance, and a longer service life for the cutters, bearings and the drill bit.
    • 一种复合钻头,其具有在其上部延伸部分上配置的钻头主体,用于连接到钻柱中,包括:具有至少一个钻头刀头(3)的钻头体(1),至少一个刮刀轮(2) (4)和固定在其上的一组刀具。 刮刀轮(2)以20°@ |α| @ 90°的范围内的大的角度偏转α安装在相应的钻头腿(3)上旋转。 刮刀上的切割机通过连续刮削破碎岩石,在固定切割单元上的切割机上形成了在井底上的交叉切割区域,从而实现了高的破碎效率,甚至磨损,高冷却性能,以及 刀具,轴承和钻头的使用寿命更长。
    • 5. 发明申请
    • PROCESS OF EPOXIDISING CYCLOHEXANE
    • 环氧环氧化物的过程
    • US20140088327A1
    • 2014-03-27
    • US14115754
    • 2012-05-02
    • Min LinChunfeng ShiBin ZhuYingchun Ru
    • Min LinChunfeng ShiBin ZhuYingchun Ru
    • C07C27/16
    • C07C27/16C07C29/48C07C45/28C07C2601/14C07C35/08C07C49/403
    • A process of oxidizing cyclohexane, comprising feeding cyclohexane, an aqueous hydrogen peroxide solution and optionally an organic solvent into a reaction zone through a feed inlet thereof under the oxidation reaction conditions for contact, and providing all or most of the oxidation product at the reaction zone bottom, wherein a part or all of the packing in the reaction zone is a titanium silicate molecular sieve-containing catalyst. The process of oxidizing cyclohexane according to the present invention carries out the oxidation in the reaction zone, which, firstly, utilizes the latent heat from reaction sufficiently so as to achieve energy-saving; secondly, increases the yield of target product and the availability of oxidizer; and thirdly, allows the separation of the oxidation product from the raw material cyclohexane as the reaction proceeds, such that the cost for subsequent separations can be saved.
    • 一种氧化环己烷的方法,包括在用于接触的氧化反应条件下,将环己烷,过氧化氢水溶液和任选的有机溶剂通过其进料入口进入反应区,并在反应区提供全部或大部分氧化产物 底部,其中反应区中的一部分或全部填料是含硅酸钛分子筛的催化剂。 本发明环氧化合物的处理在反应区进行氧化,首先利用充分的反应潜热,达到节能; 其次,提高目标产品的产量和氧化剂的可用性; 第三,随着反应进行,允许氧化产物与原料环己烷分离,从而可以节省后续分离的成本。
    • 6. 发明授权
    • Embedded communication enclosure
    • 嵌入式通讯机箱
    • US08315057B2
    • 2012-11-20
    • US12934414
    • 2009-03-25
    • Zhiyong XuBin YuMin LinPierre BonvallatAhmed M. Ghazy
    • Zhiyong XuBin YuMin LinPierre BonvallatAhmed M. Ghazy
    • H05K7/20
    • H04Q1/021H04Q1/026H04Q1/06H04Q1/13H04Q2201/10
    • Disclosed is an embedded communication enclosure for housing and supporting communication devices and communication cables, comprising: an enclosure body; a cable connecting member, provided within said enclosure body to connect communication cables, where an input cable from the exterior of the enclosure body is connected to a plurality of distribution cables to be brought out of the enclosure body; and a first door connected with the enclosure body, for opening and closing the front of the enclosure body, said first door comprising a second door embedded therein to provide access to the cable connecting member; wherein said cable connecting member is arranged to correspond to said second door in such a manner that said cable connecting member is exposed to outside when said second door is opened. With the embedded communication enclosure, a two-stage stage operating interface is achieved, so that communication devices and cables housed in the embedded communication enclosure will not be undesirably influenced or accessed during frequently changing and maintaining terminal jumpers.
    • 公开了一种用于容纳和支持通信设备和通信电缆的嵌入式通信外壳,包括:外壳主体; 电缆连接构件,设置在所述外壳主体内以连接通信电缆,其中来自外壳主体外部的输入电缆连接到要从外壳主体出来的多个配线电缆; 以及与所述外壳主体连接的用于打开和关闭所述外壳主体的前部的第一门,所述第一门包括嵌入其中的第二门以提供对所述电缆连接构件的接近; 其中所述电缆连接构件被布置成对应于所述第二门,使得当所述第二门打开时所述电缆连接构件暴露于外部。 利用嵌入式通信机箱,实现了两级平台操作界面,使得在频繁更换和维护终端跳线时,容纳在嵌入式通信机箱中的通信设备和电缆不会受到不必要的影响或访问。
    • 8. 发明授权
    • Process for producing an alkylene oxide by olefin epoxidation
    • 通过烯烃环氧化制备烯化氧的方法
    • US08859791B2
    • 2014-10-14
    • US13878659
    • 2011-10-11
    • Hua LiMin LinXiaoju WuWei WangChijian HeJizao GaoXingtian ShuShuanghua WanBin Zhu
    • Hua LiMin LinXiaoju WuWei WangChijian HeJizao GaoXingtian ShuShuanghua WanBin Zhu
    • C07D301/12C07D303/04
    • C07D301/12C07D303/04
    • A process for producing an alkylene oxide by olefin epoxidation, wherein said process comprises the steps of: (1) in a first olefin epoxidation condition, in the presence of a first solid catalyst, a first mixed stream containing a solvent, an olefin and H2O2 is subjected to an epoxidation in one or more fixed bed reactors and/or one or more moving bed reactors until the conversion of H2O2 reaches 50%-95%, then, optionally, the resulting reaction mixture obtained in the step (1) is subjected to a separation to obtain a first stream free of H2O2 and a second stream containing the unreacted H2O2, and the olefin is introduced to the second stream to produce a second mixed stream, or optionally, the olefin is introduced to the reaction mixture obtained in the step (1) to produce a second mixed stream; (2) in a second olefin epoxidation condition, the reaction mixture obtained in the step (1) or the second mixed stream obtained in the step (1) and a second solid catalyst are introduced to one or more slurry bed reactors to conduct an epoxidation until the total conversion of H2O2 reaches 98% or more, with a proviso that said process for producing the alkylene oxide by olefin epoxidation has an selectivity for the alkylene oxide of 90% or more.The process of the present invention combines the slurry bed reactor with the fixed bed reactor and/or the moving bed reactor so as to overcome the disadvantages of the low conversion of H2O2 in the case that only the fixed bed reactor and/or the moving bed reactor are used, and the low selectivity for the target alkylene oxide in the case that only the slurry bed reactor is used.
    • 一种通过烯烃环氧化生产烯化氧的方法,其中所述方法包括以下步骤:(1)在第一烯烃环氧化条件下,在第一固体催化剂存在下,将含有溶剂,烯烃和H 2 O 2的第一混合物流 在一个或多个固定床反应器和/或一个或多个移动床反应器中进行环氧化,直到H 2 O 2的转化率达到50%-95%,然后,任选地,将在步骤(1)中获得的所得反应混合物 以分离以获得不含H 2 O 2的第一物流和含有未反应的H 2 O 2的第二物流,并将烯烃引入第二物流以产生第二混合物流,或任选地将烯烃引入到 步骤(1)以产生第二混合流; (2)在第二烯烃环氧化条件下,将步骤(1)中获得的反应混合物或步骤(1)中获得的第二混合物流和第二固体催化剂引入一个或多个淤浆床反应器中进行环氧化 直到H 2 O 2的总转化率达到98%以上,条件是通过烯烃环氧化生产环氧烷烃的方法对环氧烷烃的选择性为90%以上。 本发明的方法将淤浆床反应器与固定床反应器和/或移动床反应器结合,以克服在只有固定床反应器和/或移动床的情况下H 2 O 2转化率低的缺点 使用反应器,在仅使用浆料床反应器的情况下对目标烯化氧的选择性低。