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1:
[发明]
【中文】线材挂牌装置及方法 【EN】Wire rod tag hanging device and method
申请号:
201911359158.7
公开号:CN111056107A 主分类号:B65C7/00
申请人:
【中文】北京中远通科技有限公司【EN】BEIJING ZHONGYUANTONG SCIENCE AND TECHNOLOGY Co.,Ltd.
申请日:2019.12.25 公开日:2020.04.24
发明人:
【中文】桑建伟
;
朱晓君
;
陈乃豪
;
赵亚辉
;
赵亚龙【EN】Sang Jianwei
;
Zhu Xiaojun
;
Chen Naihao
;
Zhao Yahui
;
Zhao Yalong
摘要:【中文】本发明涉及轧钢线材生产技术领域,提供了一种线材挂牌装置及方法。线材挂牌装置,包括标牌打印机构,用以为标牌打印标识信息;标牌穿孔机构,所述标牌穿孔机构与所述标牌打印机构连接,用以为标牌穿孔;挂牌机构,所述挂牌机构与所述标牌穿孔机构连接,用以将挂钩与标牌装配,并将装配有标牌的挂钩挂设在线材上。线材挂牌方法,包括如下步骤:步骤一,标牌打印机构将标识信息打印在标牌上;步骤二,标牌穿孔机构为打印有标识信息的标牌穿孔;步骤三,挂牌机构将挂钩与打印有标识信息的标牌装配,并将装配有标牌的挂钩挂设在线材上。本发明实施例降低工人劳动强度,提高生产的安全性和挂牌的准确性。 【EN】The invention relates to the technical field of steel rolling wire production, and provides a wire tag hanging device and a method. The wire rod tag hanging device comprises a tag printing mechanism and a tag hanging mechanism, wherein the tag printing mechanism is used for printing identification information for a tag; the label perforating mechanism is connected with the label printing mechanism and is used for perforating the label; and the card hanging mechanism is connected with the label perforating mechanism and used for assembling the hook and the label and hanging the hook assembled with the label on the wire. The wire rod tag hanging method comprises the following steps: firstly, a label printing mechanism prints identification information on a label; step two, the label perforating mechanism perforates the label printed with the identification information; and step three, assembling the hook and the label printed with the identification information by the label hanging mechanism, and hanging the hook provided with the label on the wire. The embodiment of the invention reduces the labor intensity of workers and improves the production safety and the card hanging accuracy.
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2:
[发明]
【中文】触控按键结构和电子设备 【EN】Touch key structure and electronic equipment
申请号:
201911375541.1
公开号:CN111082795A 主分类号:H03K17/96
申请人:
【中文】业成科技(成都)有限公司
;
业成光电(深圳)有限公司
;
英特盛科技股份有限公司【EN】INTERFACE TECHNOLOGY (CHENGDU) Co.,Ltd.
;
INTERFACE OPTOELECTRONICS (SHENZHEN) Co.,Ltd.
;
GENERAL INTERFACE SOLUTION Ltd.
申请日:2019.12.27 公开日:2020.04.28
发明人:
【中文】杨岳峰
;
金鸿杰
;
陈柏林
;
黄彦衡
;
薛乃豪【EN】Yang Yuefeng
;
Jin Hongjie
;
Chen Bailin
;
Huang Yanheng
;
Xue Naihao
摘要:【中文】本发明涉及一种触控按键结构,包括面板、感应层以及背光源。面板覆盖于感应层上,面板上形成有至少一个触碰区域,触碰区域内包括至少一个图案显示区域。感应层界定触碰区域。感应层与图案显示区域相对的部分的厚度为第一厚度,感应层其余部分的厚度为第二厚度,第一厚度小于第二厚度。背光源发出的光线透过感应层到达面板,并于图案显示区域处透过面板。本发明还涉及一种包括上述触控按键结构的电子设备。上述触控按键结构,通过对感应层的厚度进行设计,提高感应层与图案显示区域相对的部分的透光率,使背光源发出的光线透过感应层后于图案显示区域形成的按键标识发光图案更明显。 【EN】The invention relates to a touch key structure which comprises a panel, an induction layer and a backlight source. The panel covers on the induction layer, at least one touch area is formed on the panel, and at least one pattern display area is included in the touch area. The sensing layer defines a touch area. The thickness of the part of the sensing layer opposite to the pattern display area is a first thickness, the thickness of the rest part of the sensing layer is a second thickness, and the first thickness is smaller than the second thickness. Light emitted by the backlight source penetrates through the sensing layer to reach the panel and penetrates through the panel at the pattern display area. The invention also relates to electronic equipment comprising the touch key structure. According to the touch key structure, the thickness of the induction layer is designed, the light transmittance of the part, opposite to the pattern display area, of the induction layer is improved, and the light emitted by the backlight source penetrates through the induction layer and then the key identification light-emitting patterns formed in the pattern display area are more obvious.
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3:
[发明]
【中文】显示装置之光源模组及其制造方法 【EN】Light source module of display device and method for manufacturing the same
申请号:
202010058537.9
公开号:CN111221178A 主分类号:G02F1/13357
申请人:
【中文】业成科技(成都)有限公司
;
业成光电(深圳)有限公司
;
英特盛科技股份有限公司【EN】INTERFACE TECHNOLOGY (CHENGDU) Co.,Ltd.
;
INTERFACE OPTOELECTRONICS (SHENZHEN) Co.,Ltd.
;
GENERAL INTERFACE SOLUTION Ltd.
申请日:2020.01.19 公开日:2020.06.02
发明人:
【中文】周贤颖
;
陈伯纶
;
薛乃豪
;
陈俊达
;
黄达人
;
孙宜嶙【EN】Zhou Xianying
;
Chen Bolun
;
Xue Naihao
;
Chen Junda
;
Huang Daren
;
Sun Yilin
摘要:【中文】一种使用微小型LED(mini LED)做为光源的背光厚度和提升光效率的制造方法,包括下列步骤:首先,将复数个发光二极管芯片以间隔排列方式,装设于一基板之一上表面;再于该等发光二极管芯片上利用一涂布设备涂布一层胶体,该胶体中分布有均匀之扩散粒子,且填满该等LED之间隙;接着,再通过一滚轮压印该胶体,使该胶体表面形成一连续几何结构,该连续几何结构之断面水平‑垂直(X‑Y轴)方向呈一锥形结构;最后,该连续几何结构利用一紫外线固化设备作棱镜片之光学固化;如此一来,所形成之成品不但大幅减少厚度,符合薄型化之要求,并且亦大幅提高界面反射效率之穿透率。 【EN】A manufacturing method for using micro-miniature LED (mini LED) as backlight thickness of light source and improving light efficiency includes the following steps: firstly, a plurality of LED chips are arranged on an upper surface of a substrate in an interval arrangement mode; coating a layer of colloid on the LED chips by using a coating device, wherein the colloid is distributed with uniform diffusion particles and fills the gaps of the LEDs; then, a roller is used to press and print the colloid to form a continuous geometric structure on the surface of the colloid, and the cross section of the continuous geometric structure is a cone-shaped structure in the horizontal-vertical (X-Y axis) direction; finally, the continuous geometry is optically cured by an ultraviolet curing device; therefore, the thickness of the formed product is greatly reduced to meet the requirement of thinning, and the transmittance of the interface reflection efficiency is greatly increased.
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4:
[发明]
【中文】一种线热源安全性评估实验平台 【EN】Linear heat source safety assessment experiment platform
申请号:
201911131456.0
公开号:CN110933780A 主分类号:H05B3/06
申请人:
【中文】中国科学院电工研究所
;
中国电力科学研究院有限公司
;
国网浙江省电力有限公司
;
中国石化工程建设有限公司
;
国家电网有限公司【EN】Institute of Electrical Engineering, Chinese Academy of Sciences
;
China Electric Power Research Institute Co., Ltd.
;
Zhejiang Electric Power Co., Ltd.
;
Sinopec Engineering Incorporation
;
STATE
申请日:2019.11.19 公开日:2020.03.27
发明人:
【中文】靖立伟
;
李振明
;
朱承治
;
陈盼盼
;
桑文举
;
陈建辉
;
罗朝志
;
于国鹏
;
宋乃浩
;
邱清泉
;
张国民
;
肖立业【EN】Jing Liwei
;
Li Zhenming
;
Zhu Chengzhi
;
Chen Panpan
;
Sang Wenju
;
Chen Jianhui
;
Luo Chaozhi
;
Yu Guopeng
;
Song Naihao
;
Qiu Qingquan
;
Zhang Guomin
;
Xiao Liye
摘要:【中文】一种线热源安全性评估实验平台,为金属管状结构,金属管的内腔为实验腔(15)。第一电流引线(1)的一端连接电源的正极,第一电流引线(1)的另一端连接金属电阻丝(6)的一端;第二电压引线(14)的一端连接电源的负极,第二电压引线(14)另一端连接金属电阻丝(16)的另一端。输液口(7)、出液口(12)、安全阀(9)和爆破阀(10)、十个压力传感器(P1‑P10)固定在实验腔(15)上,并与实验腔(15)内部联通。金属电阻丝(6)、第一电流引线(1)、第二电流引线(14)与电源形成闭合电路,通过调节电源的输出电压控制金属电阻丝(6)的发热量。 【EN】A linear heat source safety assessment experiment platform is of a metal tubular structure, and an inner cavity of a metal tube is an experiment cavity (15). One end of the first current lead (1) is connected with the anode of a power supply, and the other end of the first current lead (1) is connected with one end of the metal resistance wire (6); one end of the second voltage lead (14) is connected with the negative electrode of the power supply, and the other end of the second voltage lead (14) is connected with the other end of the metal resistance wire (16). The transfusion port (7), the liquid outlet (12), the safety valve (9), the explosion valve (10) and ten pressure sensors (P1-P10) are fixed on the experiment cavity (15) and are communicated with the inside of the experiment cavity (15). The metal resistance wire (6), the first current lead (1), the second current lead (14) and the power supply form a closed circuit, and the heat productivity of the metal resistance wire (6) is controlled by adjusting the output voltage of the power supply.
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5:
[发明]
【中文】激光雷达屏幕显示头盔 【EN】Laser radar screen display helmet
申请号:
201911249618.0
公开号:CN110893030A 主分类号:A42B3/04
申请人:
【中文】中国人民解放军陆军装甲兵学院【EN】Army Armored Academy
申请日:2019.12.09 公开日:2020.03.20
发明人:
【中文】邱绵浩
;
王翰阳
;
张少亮
;
刘仁浩
;
崔乃浩
;
雍潮
;
师已航
;
李志强
;
陆琛
;
张家川【EN】Qiu Mianhao
;
Wang Hanyang
;
Zhang Shaoliang
;
Liu Renhao
;
Cui Naihao
;
Yong Chao
;
Shi Yihang
;
Li Zhiqiang
;
Lu Chen
;
Zhang Jiachuan
摘要:【中文】激光雷达屏幕显示头盔,包括头盔壳体,头盔壳体朝里的表面设有缓冲层,缓冲层朝里的表面设有内衬层,头盔壳体的顶部设有激光雷达固定座,激光雷达固定座利用向下穿过头盔壳体和缓冲层的螺钉固定在头盔壳体的顶部,激光雷达固定座顶部的边缘沿竖直方向设有多个支撑柱,多个支撑柱的顶端顶在激光雷达安装板的下端面上,激光雷达安装板通过多个螺钉与对应的支撑柱和激光雷达安装板固定相连,激光雷达安装板的顶端安装有机械式激光雷达。其目的是提供一种在火灾现场采集到的图像信息的清晰度和精确度更高,进而可降低消防员在火灾现场的安全风险,提高救援效率的激光雷达屏幕显示头盔。 【EN】Laser radar screen display helmet, including helmet shell, helmet shell surface inwards is equipped with the buffer layer, buffer layer surface inwards is equipped with the inner liner, helmet shell's top is equipped with the laser radar fixing base, the screw fixation at helmet shell's top at laser radar fixing base utilization downwards pass helmet shell and buffer layer, the edge at laser radar fixing base top is equipped with a plurality of support columns along vertical direction, the top of a plurality of support columns is on the lower terminal surface of laser radar mounting panel, the laser radar mounting panel passes through a plurality of screws and the support column that corresponds and the laser radar mounting panel is fixed continuous, mechanical type laser radar is installed on the top of laser radar mounting panel. The laser radar screen display helmet aims to provide the laser radar screen display helmet which is higher in definition and accuracy of image information collected on a fire scene, and further can reduce the safety risk of a fireman on the fire scene and improve the rescue efficiency.
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6:
[发明]
【中文】点热源安全性评估实验平台 【EN】Point heat source safety assessment experiment platform
申请号:
201911131450.3
公开号:CN110988618A 主分类号:G01R31/12
申请人:
【中文】中国科学院电工研究所
;
中国电力科学研究院有限公司
;
国网浙江省电力有限公司
;
国家电网有限公司
;
中国石化工程建设有限公司【EN】Institute of Electrical Engineering, Chinese Academy of Sciences
;
CHINA ELECTRIC POWER RESEARCH INSTITUTE Co.,Ltd.
;
STATE GRID ZHEJIANG ELECTRIC POWER Co.,Ltd.
;
STATE GRID CORPORATION OF CHINA
申请日:2019.11.19 公开日:2020.04.10
发明人:
【中文】靖立伟
;
邱清泉
;
朱承治
;
李振明
;
陈盼盼
;
罗朝志
;
桑文举
;
于国鹏
;
宋乃浩
;
张国民
;
肖立业【EN】Jing Liwei
;
Qiu Qingquan
;
Zhu Chengzhi
;
Li Zhenming
;
Chen Panpan
;
Luo Chaozhi
;
Sang Wenju
;
Yu Guopeng
;
Song Naihao
;
Zhang Guomin
;
Xiao Liye
摘要:【中文】一种点热源安全性评估实验平台,为金属管状结构,金属管的内腔为实验腔(15)。第一电压引线(1)的一端连接高压发生器的正极,第一电压引线(1)的另一端连接金属棒电极(6);第二电压引线(14)的一端连接高压发生器的负极,第二电压引线(14)另一端连接金属板电极(16)。输液口(7)、出液口(12)、安全阀(9)和爆破阀(10)、十个压力传感器(P1‑P10)固定在实验腔(15)上并与实验腔(15)内部联通。金属棒电极(6)和金属板电极(16)组成放电系统,和高压发生器连接形成放电回路;通过调节金属棒电极(6)的长短调节金属棒电极(6)与金属板电极(16)的放电间隙长度,调整放电电压,控制放电能量。 【EN】A point heat source safety assessment experiment platform is of a metal tubular structure, and an inner cavity of a metal tube is an experiment cavity (15). One end of the first voltage lead (1) is connected with the anode of the high-voltage generator, and the other end of the first voltage lead (1) is connected with the metal rod electrode (6); one end of the second voltage lead (14) is connected with the negative electrode of the high-voltage generator, and the other end of the second voltage lead (14) is connected with the metal plate electrode (16). The transfusion port (7), the liquid outlet (12), the safety valve (9), the explosion valve (10) and ten pressure sensors (P1-P10) are fixed on the experiment cavity (15) and are communicated with the inside of the experiment cavity (15). The metal rod electrode (6) and the metal plate electrode (16) form a discharge system, and are connected with a high-voltage generator to form a discharge loop; the length of the discharge gap between the metal rod electrode (6) and the metal plate electrode (16) is adjusted by adjusting the length of the metal rod electrode (6), the discharge voltage is adjusted, and the discharge energy is controlled.
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7:
[发明]
【中文】超导电缆线热源安全性评估实验平台 【EN】Superconducting cable heat source safety assessment experiment platform
申请号:
201911131440.X
公开号:CN111044557A 主分类号:G01N25/18
申请人:
【中文】中国科学院电工研究所
;
中国石化工程建设有限公司
;
中国电力科学研究院有限公司
;
国网浙江省电力有限公司
;
国家电网有限公司【EN】Institute of Electrical Engineering, Chinese Academy of Sciences
;
SINOPEC ENGINEERING Inc.
;
CHINA ELECTRIC POWER RESEARCH INSTITUTE Co.,Ltd.
;
STATE GRID ZHEJIANG ELECTRIC POWER Co.,Ltd.
;
STATE
申请日:2019.11.19 公开日:2020.04.21
发明人:
【中文】桑文举
;
陈建辉
;
陈晓刚
;
丰佳
;
朱青山
;
李振明
;
罗朝志
;
陈盼盼
;
于国鹏
;
靖立伟
;
张传升
;
宋乃浩
;
邱清泉
;
滕玉平
;
张国民
;
肖立业【EN】Sang Wenju
;
Chen Jianhui
;
Chen Xiaogang
;
Feng Jia
;
Zhu Qingshan
;
Li Zhenming
;
Luo Chaozhi
;
Chen Panpan
;
Yu Guopeng
;
Jing Liwei
;
Zhang Chuansheng
;
Song Naihao
;
Qiu Qingquan
;
Teng Yuping
;
Zhang Guomin
;
摘要:【中文】一种超导电缆线热源安全性评估实验平台,模拟直流超导电缆失超下发热,使液体电介质气化,在液体电介质中产生的压力变化规律。实验平台为金属管,内腔为实验腔(16),两端为法兰。第一电流引线(1)的一端连接电源正极,另一端连接金属电阻丝(15)的一端;第二电流引线(14)的一端连接电源负极,另一端连接金属电阻丝(15)的另一端。输液口(6)、出液口(17)、安全阀(8)、爆破阀(9)、压力传感器(P1‑P10)固定在实验腔(16)上,与实验腔(16)内部联通。金属电阻丝(15)、第一电流引线(1)、第二电流引线(14)与电源形成闭合电路,调节电源的输出电压可调节金属电阻丝(15)的发热量。 【EN】A test platform for evaluating the safety of a heat source of a superconducting cable simulates the pressure change rule generated in a liquid dielectric medium by heating the direct-current superconducting cable under the condition of quench so as to gasify the liquid dielectric medium. The experiment platform is a metal pipe, the inner cavity is an experiment cavity (16), and flanges are arranged at two ends of the experiment platform. One end of the first current lead (1) is connected with the positive electrode of the power supply, and the other end of the first current lead is connected with one end of the metal resistance wire (15); one end of the second current lead (14) is connected with the negative electrode of the power supply, and the other end is connected with the other end of the metal resistance wire (15). The transfusion opening (6), the liquid outlet (17), the safety valve (8), the explosion valve (9) and the pressure sensor (P1-P10) are fixed on the experiment cavity (16) and are communicated with the inside of the experiment cavity (16). The metal resistance wire (15), the first current lead (1), the second current lead (14) and the power supply form a closed circuit, and the output voltage of the power supply is adjusted to adjust the heat productivity of the metal resistance wire (15).
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8:
[发明]
【中文】超导直流输电/液化天然气一体化能源管道终端 【EN】Superconductive direct current transmission/liquefied natural gas integrated energy pipeline terminal
申请号:
201911131459.4
公开号:CN110912069A 主分类号:H02G15/06
申请人:
【中文】中国科学院电工研究所
;
中国石化工程建设有限公司
;
中国电力科学研究院有限公司
;
国网浙江省电力有限公司
;
国家电网有限公司【EN】Institute of Electrical Engineering, Chinese Academy of Sciences
;
Sinopec Engineering Incorporation
;
China Electric Power Research Institute Co., Ltd.
;
Zhejiang Electric Power Co., Ltd.
;
STATE
申请日:2019.11.19 公开日:2020.03.24
发明人:
【中文】桑文举
;
于国鹏
;
毛杭银
;
徐晨博
;
夏红鑫
;
罗朝志
;
邱清泉
;
陈建辉
;
李振明
;
陈盼盼
;
靖立伟
;
宋乃浩
;
滕玉平
;
张国民
;
肖立业【EN】Sang Wenju
;
Yu Guopeng
;
Mao Hangyin
;
Xu Chenbo
;
Xia Hongxin
;
Luo Chaozhi
;
Qiu Qingquan
;
Chen Jianhui
;
Li Zhenming
;
Chen Panpan
;
Jing Liwei
;
Song Naihao
;
Teng Yuping
;
Zhang Guomin
;
Xiao Liye
摘要:【中文】一种超导直流输电/液化天然气一体化能源管道终端,为卧式结构。低温杜瓦(16)为圆柱形,水平放置;绝热支撑(7)垂直焊接在低温杜瓦(16)上;人行孔(14)安装于低温杜瓦(16)的左侧;真空插接口(17)焊接于低温杜瓦(16)的右端;屏蔽层电流引线出口(8)垂直焊接在低温杜瓦(16)上;燃料输入口(12)焊接在低温杜瓦(16)的左端。低温高压套管(2)通过法兰及其配套金属均压环(4)竖直安装在绝热支撑(7)上。燃料输入口(12)焊接有波纹管(13)。保护泄压系统(11)安装在绝热支撑(7)上。本发明可以实现液化天然气输入,以及超导直流电缆低温向室温、从超导到常导、从高压向低压过渡的重要功能。 【EN】A superconductive direct current transmission/liquefied natural gas integrated energy pipeline terminal is of a horizontal structure. The low-temperature Dewar (16) is cylindrical and is horizontally placed; the heat insulation support (7) is vertically welded on the low-temperature Dewar (16); the manway (14) is arranged at the left side of the low-temperature Dewar (16); the vacuum interface (17) is welded at the right end of the low-temperature Dewar (16); the current lead outlet (8) of the shielding layer is vertically welded on the low-temperature Dewar (16); the fuel inlet (12) is welded to the left end of the cryogenic dewar (16). The low-temperature high-voltage sleeve (2) is vertically arranged on the heat insulation support (7) through a flange and a matched metal equalizing ring (4). A bellows (13) is welded to the fuel inlet (12). The protective pressure relief system (11) is arranged on the heat insulation support (7). The invention can realize the input of liquefied natural gas and the important functions of the transition of the superconducting direct current cable from low temperature to room temperature, from superconducting to normal conducting and from high pressure to low pressure.
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