in:(Xiaojun HU)
PIPELINE-JOINT COATING MACHINE, CONSTRUCTION METHOD AND NOVEL PIPELINE-JOINT COATING STRUCTURE
PCT/CN2015/097217
[ZHENG, Mingjia 郑明嘉, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, HE, Liuwei 何浏炜, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, HE, Liuwei 何浏炜, LI, Jianzhong 李建中, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, HE, Liuwei 何浏炜, LI, Jianzhong 李建中, GUO, Meifu 郭美福, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, HE, Liuwei 何浏炜, LI, Jianzhong 李建中, GUO, Meifu 郭美福, YANG, Zhiyong 杨智勇, ZHENG, Mingjia 郑明嘉, CHEN, Tan 陈锬, LEI, Xiaojun 雷小均, SU, Junye 苏俊业, HU, Bing 胡兵, ZHOU, Hao 周浩, HE, Liuwei 何浏炜, LI, Jianzhong 李建中, GUO, Meifu 郭美福, YANG, Zhiyong 杨智勇, YANG, Zhihua 杨志骅]
Yongan Road Crossing, Yongxing Industrial Park, High and New-technology Industrial Zone 中国四川省绵阳市高新区永兴工业园永安路口, Sichuan 621000Mianyang, Sichuan 621000
Disclosed are a pipeline-joint coating machine, a construction method and a novel pipeline-joint coating structure. The machine comprises a metal liner plate (4), an electric heating apparatus (3) and a steel hoop (1) in sequence from inside to outside. The construction method comprises steps of: a. surface treatment; b. steel pipe preheating; c. primer painting; d. wrapping with a pipeline-joint coating sheet; e. wrapping the metal liner plate; f. wrapping the electric heating apparatus; g. wrapping and locking the steel hoop; h. programmed temperature control; and i. machine dismantling. The new pipeline-joint coating structure comprises a joint steel pipe (6), a corrosion protective coating (7) preformed at two ends, and a pipeline-joint coating part. An epoxy primer layer (8) is formed on the exterior wall of the steel pipe at the pipeline-joint coating part, a pipeline-joint coating sheet (5) is wrapped around the epoxy primer layer (8), and a metal liner plate (4) is disposed on the periphery of the pipeline-joint coating sheet (5). The pipeline-joint coating machine is simple and reliable. Locking the steel hoop to apply pressure can apply great pressure to the pipeline-joint coating sheet during the softening and adhesion process, thereby increasing the strength of adhesion with the epoxy primer layer. The peel strength reaches 250 N/cm or higher at 23°C and 100 N/cm or higher at 50°C, which are respectively 2 times and 5 times those obtained by using a heat shrink sleeve (stripe).
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INTELLIGENT OIL PUMPING CONTROL METHOD AND INTELLIGENT OIL PUMPING UNIT
PCT/CN2015/100033
[YU, Shengcun 于胜存, YU, Shengcun 于胜存, HU, Guangje 胡广杰, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, ZHAO, Puchun 赵普春, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, ZHAO, Puchun 赵普春, JIANG, Chuanfang 姜传方, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, ZHAO, Puchun 赵普春, JIANG, Chuanfang 姜传方, GUO, Qiang 郭强, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, ZHAO, Puchun 赵普春, JIANG, Chuanfang 姜传方, GUO, Qiang 郭强, LV, Zhiqiang 吕志强, YU, Shengcun 于胜存, HU, Guangje 胡广杰, GAO, Changle 高长乐, YUE, Jun 岳军, LIANG, Shangbin 梁尚斌, MA, Shujian 马述俭, CHENG, Xiaojun 程晓军, ZHAO, Puchun 赵普春, JIANG, Chuanfang 姜传方, GUO, Qiang 郭强, LV, Zhiqiang 吕志强, LI, Shaoqi 李绍奇]
No 3 Machine Tool Plant 中国新疆维吾尔族自治区乌鲁木齐市新市区东站路1339号第三机床厂, Xinjiang 8300131399, Dongzhan Road,Xinshi DistrictUrumqi, Xinjiang 830013
Disclosed are an intelligent oil pumping control method and an intelligent oil pumping unit. The intelligent oil pumping unit comprises a main electric motor (15), a speed reducer (8), a crank (9), a connecting rod (6), a walking beam (3), a balance boom (7), a bracket (5), a horsehead (2), a base (12), a brake device (13), a beam hanger (1), a load sensor (17), a stroke process measurer, a safety limiting device and a digital control cabinet (14). The oil pumping unit has the characteristics of safety and reliability, realizes the intelligent optimization and adjustment of stroke times and balance of the oil pumping unit, increases well yields and the efficiency of the oil pumping unit, and realizes remote data transmission and remote control of opening and closing of the well by means of seamless access to an oil field computer network system, thereby simplifying operation, being convenient and fast and labour-saving, achieving energy savings and emission reduction, and increasing economic benefits.
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PIPELINE JOINT COATING STRUCTURE AND PIPELINE JOINT COATING METHOD THEREFOR
PCT/CN2015/097216
[ZHENG, Mingjia 郑明嘉, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, CHEN, Tan 陈锬, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, CHEN, Tan 陈锬, ZHOU, Hao 周浩, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, CHEN, Tan 陈锬, ZHOU, Hao 周浩, YANG, Zhiyong 杨智勇, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, CHEN, Tan 陈锬, ZHOU, Hao 周浩, YANG, Zhiyong 杨智勇, YANG, Zhihua 杨志骅, ZHENG, Mingjia 郑明嘉, LEI, Xiaojun 雷小均, HU, Bing 胡兵, SU, Junye 苏俊业, CHEN, Tan 陈锬, ZHOU, Hao 周浩, YANG, Zhiyong 杨智勇, YANG, Zhihua 杨志骅, HE, Liuwei 何浏炜]
Yongan Road Crossing,Yongxing Industrial Park, High and New-technology Industrial Zone 中国四川省绵阳市高新区永兴工业园永安路口, Sichuan 621000Mianyang, Sichuan 621000
A pipeline joint coating structure comprises an abutting steel tube (1), a two-end prefabricated anti-corrosive coating (2) circularly applied on the outer wall of the abutting steel tube, an epoxy primer layer (3) arranged on the outer wall of a welding joint reserved in the abutting steel tube, and a joint coating sheet (4) wrapped on the periphery of the primer layer. The joint coating sheet completely covers the epoxy primer layer and has two ends in lap joint with the prefabricated anti-corrosive coating. Also disclosed is a pipeline joint coating method, which comprises the steps of surface treatment, steel tube preheating, primer painting, joint coating sheet wrapping, silicon sheet heating, airbag pressurization, and pressure maintaining cooling. The present invention has good sealing effect, stable anti-corrosion property and long service life.
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FLAVONE GLYCOSIDE DERIVATIVES AND PREPARATION METHOD AND USE THEREOF
PCT/CN2014/086933
[XU, Bixue 徐必学, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, ZHANG, Limei 张丽梅, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, ZHANG, Limei 张丽梅, JIANG, Kun 蒋坤, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, ZHANG, Limei 张丽梅, JIANG, Kun 蒋坤, SUN, Xiaojun 孙晓军, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, ZHANG, Limei 张丽梅, JIANG, Kun 蒋坤, SUN, Xiaojun 孙晓军, LI, Xing 李星, XU, Bixue 徐必学, LIANG, Guangyi 梁光义, HU, Zhanxing 胡占兴, XIA, Wen 夏文, JIANG, Wei 姜伟, YUAN, Jie 袁洁, CHEN, Hongju 陈洪菊, ZHANG, Limei 张丽梅, JIANG, Kun 蒋坤, SUN, Xiaojun 孙晓军, LI, Xing 李星, AN, Qiao 安巧]
Xihang Avenue, Economic And Technological Development Zone 中国贵州省安顺市经济技术开发区西航大道, Guizhou 561000Anshun, Guizhou 561000
Disclosed is a class of flavone glycoside derivatives, compounds of structural general formula (I) described below or pharmaceutically acceptable salts or hydrates thereof, comprising racemates, optical isomers and epimers thereof. Also disclosed are a method for preparing the flavone glycoside derivatives and a use thereof in preparing drugs for treating diabetes. The flavone glycoside derivatives of the present invention are used to prepare drugs for treating diabetes, and have a relatively good inhibition effect on alpha-glucosidase, thereby slow down the decomposition rate from starches to glucose and the intestinal absorption of glucose, so lower postprandial hyperglycemia, improve the activity of such compounds for treating diabetes, and have less toxicity. Their physicochemical properties are more suitable for pharmaceutical preparations for treating diabetes, thus can be used for preparing drugs for treating diabetes which have better efficacy and higher safety. In their preparation method, the steps are simple, raw materials are readily available, the product yield is high and the purity is good. The flavone glycoside derivative can be prepared into various pharmaceutical preparations for treating diabetes.
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IO CHANNEL ALLOCATION METHOD AND DEVICE
PCT/CN2015/077093
[HU, Shanghe 胡上贺, HU, Shanghe 胡上贺, CHEN, Ming 陈明, HU, Shanghe 胡上贺, CHEN, Ming 陈明, WANG, Xiaojun 王小军]
Huawei Administration Building, Bantian,Longgang District 中国广东省深圳市龙岗区坂田华为总部办公楼, Guangdong 518129Shenzhen, Guangdong 518129
An IO channel allocation method and device. The method comprises: a first controller reads and loads a first configuration file in a memory, wherein the first configuration file comprises link connection information of exchange interfaces of the first controller (S201); configure, according to the first configuration file, the exchange interface of the first controller adjacent to a second controller as a mirror interface (S202); and establish a link channel between the mirror interface of the first controller and a mirror interface of the second controller, wherein the second controller configures, according to a second configuration file, an exchange interface adjacent to the first controller as the mirror interface (S203). By using the method and the device, transmission paths of a mirror channel are reduced, and the reliability of data transmission is improved.
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METHOD AND APPARATUS FOR PROVIDING WEB PAGES
US14369705
[Jianping Song, Xiaojun Ma, Jun Hu, Renlei Chen, Yan Hu]
CN Beijing
A method for providing a web page in a web server accessed by a user device, comprising: obtaining access behavior information to the web page by the user; and providing page contents and page layout adaptor of the web page to the user device so that a updated web page with an adapted page layout is generated by the user device according to the access behavior information.
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METHOD AND SYSTEM FOR EVALUATING UNIVERSITY TEACHING BUILDING PLAN LEARNING SPACE CONNECTION COHESION
PCT/CN2021/130965
[WU, Fang 吴放, ZHU, Yue 竺越, ZHU, Wei 朱炜, HU, Xiaojun 胡晓军, YING, Xiaoyu 应小宇, GONG, Min 龚敏, HU, Jun 扈军, ZHU, Jiang 朱江, WANG, Yue 王玥]
No.51 Huzhou Street, Gongshu District, 中国浙江省杭州市拱墅区湖州街51号, Zhejiang 310000Hangzhou, Zhejiang 310000
Disclosed are a method and system for evaluating university teaching building plan learning space connection cohesion. The method comprises the following steps: acquiring and simplifying a technical drawing of a university teaching building plan, performing convex space division, performing spatial region classification encoding, establishing connections between spatial regions, and generating a learning space topological network model; evaluating connection tightness features, control features, and robustness features of a learning space traffic network and an overall network system. The present invention establishes a flow-centered accurate method based on data and evidence for evaluating teaching building plan space connection cohesion, and achieves a breakthrough from a form-centered perceptual analysis method based on inspiration and experience.
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A METHOD FOR THE PREPARATION OF CERAMIC POWDERS BY A NON-SOLVENT REPLACEMENT NONAQUEOUS PRECIPITATION METHOD
ZA202303146A
[GUO FENG, FENG JIANG, WEIHUI JIANG, ZI HU, TUYUE WEI, JIAN LIANG, JIANMIN LIU, QING HU, LIFENG MIAO, QIAN WU, QUAN ZHANG, XIAOJUN ZHANG]
CN
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METHOD AND SYSTEM FOR EVALUATING LEARNING SPACE CONNECTION COHESIVENESS OF COLLEGE TEACHING BUILDING PLAN
LU501319A
[HU XIAOJUN, ZHU WEI, ZHU JIANG, WU FANG, ZHU YUE, GONG MIN, YING XIAOYU, WANG YUE, HU JUN]
CN
The present invention discloses a method and system for evaluating learning space connection cohesiveness of a college teaching building plan. The method includes the following steps: obtaining and simplifying a college teaching building plan technical drawing, performing convex space division, performing space region classification coding, establishing a connection between space regions, and generating a learning space topology network model; and evaluating connection tightness features, controllability characteristics and robustness features of a learning space traffic network and overall network system. The present invention establishes a flow-centred method for accurately evaluating space connection cohesiveness of a teaching building plan based on data and evidence, and breaks through the shape-centred perceptual analysis means based on inspiration and experience.
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LARGE-STROKE ADJUSTABLE SUPPORT
ZA202306929A
[ZHANG JIANXUN, LI PEIDONG, KE GAOGUO, GUO BAOTING, WANG PENGFEI, HU NANA, NIU XIAOKE, SU HAITAO, WEI SHUAILING, ZHANG QIANKUN, LI YANG, XIE LIUDAN, PENG YINGZHAN, CHEN SHANGZHI, MENG YAKUN, XU YUAN, CHEN BINGWEI, YANG XIAOJUN, WANG YUANHAO, BAO LEI, LI XIAODONG, DAI YINGJIE, HU TUANWEI, HUANG WEI, CHEN YUFEI]
CN;CN
Provided is a large-stroke adjustable support, relating to the technical field of bridge engineering. The support includes a lower support plate fixedly disposed at a top of a bridge pier, a height-adjusting mechanism disposed in the lower support plate, a pressure-bearing rubber plate fixedly disposed in a containing slot, a middle steel linear plate fixedly disposed in the containing slot and located above the pressure-bearing rubber plate and an upper support plate located above a tractor and fixedly disposed at a bottom of a bridge beam; the height-adjusting mechanism includes a supporting member, the height-adjusting mechanism can drive the supporting member to reciprocate up and down, and the containing slot is formed in the supporting member; the tractor is universally connected above the middle steel linear plate; and a plane sliding plate is disposed between the tractor and the upper support plate.
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