in:(王震)
SYSTEM AND METHOD FOR GENERATING MACHINING CONTROL DATA OF NUMERICAL CONTROL MACHINE TOOL
PCT/CN2015/070241
[YU, Tao 余涛, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, PENG, Chao 彭超, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, PENG, Chao 彭超, WANG, Zhenxia 王震霞, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, PENG, Chao 彭超, WANG, Zhenxia 王震霞, ZENG, Peng 曾鹏, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, PENG, Chao 彭超, WANG, Zhenxia 王震霞, ZENG, Peng 曾鹏, FAN, Xiang 樊响, YU, Tao 余涛, ZHU, Rongchang 朱荣昌, TANG, Yunjie 唐赟杰, XIA, Xiao 夏晓, HUANG, Qi 黄琦, LIU, Hongwei 刘宏威, PENG, Chao 彭超, WANG, Zhenxia 王震霞, ZENG, Peng 曾鹏, FAN, Xiang 樊响, CUI, Shenggang 崔胜刚]
2nd Floor, Bldg. #1 中国上海市杨浦区翔殷路128号1号楼2楼, Shanghai 200433128 Xiangyin Road, YangpuShanghai 200433
A system (100) and method for generating machining control data of a numerical control machine tool. The system (100) comprises a server (10) and at least one terminal device (30). The server (10) is installed with computer-aided manufacturing software, a numerical control machine tool model library and a cutter and fixture library. The terminal device (30) is connected to the server (10) through the Internet (20) to generate machining program data of a part model and/or to carry out machining simulation of a part model. The method for generating machining control data of a numerical control machine tool comprises: sending a part model file to the server (10) through the Internet (20); and generating program code that can be executed by the numerical control machine tool. The system (100) and the method have the beneficial technical effects of being convenient to operate, low in cost and flexible and easy to use.
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AMINOSULFONYL COMPOUND, PREPARATION METHOD THEREFOR AND USE THEREOF
PCT/CN2015/089471
[SHEN, Jingshan 沈敬山, SHEN, Jingshan 沈敬山, LIU, Zheng 刘正, SHEN, Jingshan 沈敬山, LIU, Zheng 刘正, WANG, Zhen 王震, SHEN, Jingshan 沈敬山, LIU, Zheng 刘正, WANG, Zhen 王震, TIAN, Guanghui 田广辉, SHEN, Jingshan 沈敬山, LIU, Zheng 刘正, WANG, Zhen 王震, TIAN, Guanghui 田广辉, LI, Jianfeng 李剑峰, SHEN, Jingshan 沈敬山, LIU, Zheng 刘正, WANG, Zhen 王震, TIAN, Guanghui 田广辉, LI, Jianfeng 李剑峰, YANG, Xiaojun 杨小军]
Fl. 10, Bldg. D, 398 Ruoshui Road, Suzhou Industrial Park 中国江苏省苏州市苏州工业园区独墅湖高教区若水路398号D栋10楼, Jiangsu 215123Suzhou, Jiangsu 215123;555 Zuchongzhi Road, Zhangjiang, Pudong 中国上海市浦东张江祖冲之路555号, Shanghai 201203Shanghai 201203;1088 Chuansha Road, Pudong 中国上海市浦东新区川沙路1088号, Shanghai 201209Shanghai 201209
Disclosed are an aminosulfonyl compound represented by general formula I or a tautomer, enantiomer, racemate or pharmaceutically acceptable salt thereof, a preparation method therefor, a pharmaceutical composition and a use thereof. The compound can be used for treating epilepsy, convulsion, obesity and the like.
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POWER TOOL
PCT/CN2015/099451
[WANG, Zhen 王震, WANG, Zhen 王震, NIE, Fangjie 聂方杰, WANG, Zhen 王震, NIE, Fangjie 聂方杰, LIU, Qian 刘谦]
No. 159, Jiangjun Road, Jiangning Economic & Technical Development Zone 中国江苏省南京市江宁经济技术开发区将军大道159号, Jiangsu 211106Nanjing, Jiangsu 211106
A power tool comprises a function device (10) and a power device (20). The function device (10) is provided with a mounting portion (121) for mounting the power device (20). The power device (20) comprises a prime motor and a battery pack (23) that can be combined with a power housing (21) in a separated manner. The prime motor may be a motor (22). The power housing (21) is provided with at least an adaptation portion (211), which enables the power device (20) to be mounted on the function device (10); and a combination portion (212), used to provide a space or a structure for combining the battery pack (23). When the function device (10) and the power device (20) form a whole by means of the mounting portion (121) and the adaptation portion (211), the battery pack (23) can be separated from the power housing (21). A power device mower provided with the power tool can use multiple battery packs to provide power and is convenient to use.
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BEND-RESISTANT FINE OPTICAL FIBER AND MANUFACTURING METHOD THEREOF
PCT/CN2015/099425
[CAO, Shanshan 曹珊珊, CAO, Shanshan 曹珊珊, LIU, Zhizhong 刘志忠, CAO, Shanshan 曹珊珊, LIU, Zhizhong 刘志忠, HU, Jigang 胡继刚, CAO, Shanshan 曹珊珊, LIU, Zhizhong 刘志忠, HU, Jigang 胡继刚, WHANG, Zhen 王震, CAO, Shanshan 曹珊珊, LIU, Zhizhong 刘志忠, HU, Jigang 胡继刚, WHANG, Zhen 王震, ZHANG, Haitao 张海涛, CAO, Shanshan 曹珊珊, LIU, Zhizhong 刘志忠, HU, Jigang 胡继刚, WHANG, Zhen 王震, ZHANG, Haitao 张海涛, ZHOU, Hui 周慧]
No.6, Zhongtian Road, Economic and Technological Development Area 中国江苏省南通市经济技术开发区中天路6号, Jiangsu 226000Nantong, Jiangsu 226000
A bend-resistant fine optical fiber and manufacturing method thereof. The method comprises: preparing a preform via an improved chemical vapor deposition process, and manufacturing an optical fiber via drawing at a certain temperature, wherein a diameter of a cladding layer of the optical fiber is 80 ± 1 μm, a diameter of a coating layer thereof is 155-170 μm; and computing a service life of the optical fiber via an established computation model after the manufacturing. In the present invention, the bend-resistant fine optical fiber is primarily formed by a core layer, a terrace layer, a sunken layer, a cladding layer and a coating layer, and the relative refractive index and radius of each of said layers is reasonably controlled, and a cutoff wavelength is effectively controlled by employing an automatic temperature and tension monitoring procedure during the drawing process, such that the cutoff wavelength and a mode field diameter are maintained in a relatively stable range, and the cutoff wavelength is adjusted upward while the mode field diameter remains stable, thus facilitating a decrease of bend loss of the optical fiber. A bend-resistant fine optical fiber and manufacturing method thereof. The method comprises: preparing a preform via an improved chemical vapor deposition process, and manufacturing an optical fiber via drawing at a certain temperature, wherein a diameter of a cladding layer of the optical fiber is 80 ± 1 μm, a diameter of a coating layer thereof is 155-170 μm; and computing a service life of the optical fiber via an established computation model after the manufacturing. In the present invention, the bend-resistant fine optical fiber is primarily formed by a core layer, a terrace layer, a sunken layer, a cladding layer and a coating layer, and the relative refractive index and radius of each of said layers is reasonably controlled, and a cutoff wavelength is effectively controlled by employing an automatic temperature and tension monitoring procedure during the drawing process, such that the cutoff wavelength and a mode field diameter are maintained in a relatively stable range, and the cutoff wavelength is adjusted upward while the mode field diameter remains stable, thus facilitating a decrease of bend loss of the optical fiber.
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NOVEL COOLING SYSTEM FOR OPTICAL FIBER DRAWING
PCT/CN2015/099437
[SUN, Zhicheng 孙志成, SUN, Zhicheng 孙志成, LIU, Zhizhong 刘志忠, SUN, Zhicheng 孙志成, LIU, Zhizhong 刘志忠, CAO, Shanshan 曹珊珊, SUN, Zhicheng 孙志成, LIU, Zhizhong 刘志忠, CAO, Shanshan 曹珊珊, WHANG, Zhen 王震, SUN, Zhicheng 孙志成, LIU, Zhizhong 刘志忠, CAO, Shanshan 曹珊珊, WHANG, Zhen 王震, ZHANG, Haitao 张海涛]
No.6, Zhongtian Road, Economic and Technological Development Area 中国江苏省南通市经济技术开发区中天路6号, Jiangsu 226000Nantong, Jiangsu 226000
A cooling system for optical fiber drawing is used for decreasing the temperature of an optical fiber before coating, avoiding the occurrence of bubbles in a coating, ensuring a stable coating state of the optical fiber, and reducing the amount of helium gas used, being suitable for high-speed drawing. The cooling system consists of cooling pipe upper and lower shutters, a helium gas guiding device, a cooling pipe body, a cooling water circulating and cooling device, a coated fiber diameter control system, a cooling water pipe and a gas pipe. The cooling pipe body comprises an inner cavity suitable for the optical fiber to pass through; helium gas is blown into the cooling pipe by means of a special helium gas intake device which communicates with the inner cavity and is mounted between two cooling pipes, several single-segment cooling pipes being connected by means of gas intake connection devices; the outer wall of each cooling pipe segment is covered with a polystyrene foam thermal insulating layer, and the helium gas guiding device guides the gas within the pipe at a suitable guiding flow rate to achieve the optimal cooling effect. A cooling system for optical fiber drawing is used for decreasing the temperature of an optical fiber before coating, avoiding the occurrence of bubbles in a coating, ensuring a stable coating state of the optical fiber, and reducing the amount of helium gas used, being suitable for high-speed drawing. The cooling system consists of cooling pipe upper and lower shutters, a helium gas guiding device, a cooling pipe body, a cooling water circulating and cooling device, a coated fiber diameter control system, a cooling water pipe and a gas pipe. The cooling pipe body comprises an inner cavity suitable for the optical fiber to pass through; helium gas is blown into the cooling pipe by means of a special helium gas intake device which communicates with the inner cavity and is mounted between two cooling pipes, several single-segment cooling pipes being connected by means of gas intake connection devices; the outer wall of each cooling pipe segment is covered with a polystyrene foam thermal insulating layer, and the helium gas guiding device guides the gas within the pipe at a suitable guiding flow rate to achieve the optimal cooling effect.
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一种用于海洋采油管道的防泄漏环保装置
CN201611117308.X
[王晓龙, 程文文, 王震宇, 宋广成, 高凡, 梁沫, 郑炎, 郑重, 王超, 王震寰]
256600山东省滨州市黄河六路531号
本发明公开了一种用于海洋采油管道的防泄漏环保装置,包括连接套,所述连接套的外层开有外管连接槽,所述连接套的中部开有油管连接槽,所述外管连接槽的中部焊接有固定挡块,所述油管连接槽的中部卡接有油阀,所述油阀的两端卡接有挡板,所述油阀与固定挡块之间连接有螺杆,所述外管连接槽之间螺纹连接有外管,所述油管连接槽之间螺纹连接有油管,所述外管与油管之间设置有防泄漏层,所述外管的内壁焊接有感测装置,所述感测装置的顶端右侧通过限位孔卡接有自动开关。本发明通过安装有感测装置,可以在发生泄漏时,控制油阀对油管输油的控制,通过安装有外管,可以防止油管破裂导致污油流入海洋造成污染。
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洗地机基站
CN202330331153.4
[罗家杰, 李郁, 李训迪, 王震]
广东省深圳市南山区西丽街道西丽社区打石二路万科云城六期一栋云中城A2901
1.本外观设计产品的名称:洗地机基站。2.本外观设计产品的用途:本外观设计产品用于洗地机基站。3.本外观设计产品的设计要点:在于形状。4.最能表明设计要点的图片或照片:立体图1。
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印度芽孢杆菌的发酵培养方法
CN201410063650.0
[张东升, 李华, 刘洋, 宋坚, 王震, 毛东东]
辽宁省大连市西岗区黄河路219号
本发明公开一种印度芽孢杆菌的发酵培养方法,其特征在于:所述的方法按照以下步骤进行:向pH为7-7.5的培养基中接种印度芽孢杆菌,接种量为1-2%,培养温度为25-30℃,装液量为容器的20-40%,摇床转速为150-170r/min,培养时间为48小时,培养基为海水溶液,其中豆粕含量为0.2-0.4g/100ml,麦麸含量为0.2-0.4g/100ml,酵母膏含量为0.1g/100ml。这是一种操作简便,成本低廉,适合于推广和应用的印度芽孢杆菌的发酵培养方法。
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一种通信设备驻波功率自动测试方法及装置
CN201410407907.X
[吴成慧, 王震]
北京市海淀区羊坊店路18号光耀东方广场S座1326号
本发明公开了一种通信设备驻波功率自动测试方法及装置,涉及通信领域,所述方法包括:预先建立正向/反向检波电压与正向/反向标准功率之间的映射关系;在通信设备发射信号期间,对通信设备的正向/反向检波电压进行检测;在预先建立的映射关系中,查找与所检测到的正向/反向检波电压对应的正向/反向标准功率;若找到与所检测到的正向/反向检波电压对应的正向/反向标准功率,则将所述正向/反向标准功率作为所述通信设备的正向/反向驻波功率。本发明能够实现数字化自动测试驻波功率。
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一种多功能轧钢检测装置
CN202122661870.1
[王震]
271104山东省济南市钢城区新兴路71号莱芜钢铁集团银山型钢宽厚板事业部
本实用新型提供一种多功能轧钢检测装置。所述多功能轧钢检测装置包括工作台;两个支撑板,两个所述支撑板均固定安装在所述工作台的顶部;两个滑杆,两个所述滑杆分别滑动安装在两个所述支撑板上;两个气缸,两个所述气缸分别固定安装在两个所述支撑板相互远离的一侧外壁上,两个所述气缸的输出轴分别与两个所述滑杆相互远离的一端固定连接;两个夹板,两个所述夹板分别固定安装在两个所述滑杆相互靠近的一端;框架,所述框架滑动套设在两个所述滑杆上;两个安装槽,两个所述安装槽均开设在所述工作台的顶部。本实用新型提供的多功能轧钢检测装置具有操作简单,使用方便,可一次进行双面检测,提高检测效率的优点。
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