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1:
[发明]
【中文】一种信息处理方法及电子设备 【EN】Information processing method and electronic equipment
申请号:
201911341178.1
公开号:CN111142750A 主分类号:G06F3/0484
申请人:
【中文】维沃移动通信有限公司【EN】VIVO MOBILE COMMUNICATION Co.,Ltd.
申请日:2019.12.23 公开日:2020.05.12
发明人:
【中文】甘君【EN】
Gan Jun
摘要:【中文】本发明提供一种信息处理方法及电子设备,涉及数据处理技术领域。该方法包括:在显示界面中,接收第一输入;所述显示界面中至少显示部分第一信息;所述第一信息存储于预设区域;响应于所述第一输入,从所述第一信息中选取待转发的第二信息,并获取所述第二信息在所述预设区域中的存储位置;根据所述存储位置,将所述第二信息复制到目标应用的信息编辑窗口中。基于用户在显示界面中的第一输入,从第一信息中选取出待转发的第二信息,并获取该第二信息在预设区域的存储位置,根据该存储位置将第二信息自动复制至目标应用的信息编辑窗口中,无需手动复制第二信息,无需手动打开目标应用的信息编辑窗口、再粘贴第二信息,用户操作少,操作便捷。 【EN】The invention provides an information processing method and electronic equipment, and relates to the technical field of data processing. The method comprises the following steps: receiving a first input in a display interface; at least displaying part of the first information in the display interface; the first information is stored in a preset area; responding to the first input, selecting second information to be forwarded from the first information, and acquiring a storage position of the second information in the preset area; and copying the second information to an information editing window of a target application according to the storage position. Based on first input of a user in a display interface, second information to be forwarded is selected from the first information, the storage position of the second information in a preset area is obtained, the second information is automatically copied to an information editing window of a target application according to the storage position, the second information does not need to be copied manually, the information editing window of the target application does not need to be opened manually, and then the second information is pasted, so that the operation of the user is few, and the operation is convenient.
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2:
[发明]
【中文】一种区分碳质来源的热化学方法 【EN】Thermochemical method for distinguishing carbonaceous sources
申请号:
201911023189.5
公开号:CN110926997A 主分类号:G01N5/00
申请人:
【中文】中国科学院广州地球化学研究所【EN】Guangzhou Institute of Geochemistry, Chinese Academy of Sciences
申请日:2019.10.25 公开日:2020.03.27
发明人:
【中文】张向云
;
李军
;
张干【EN】Zhang Xiangyun
;
Li Jun
;
Zhang Gan
摘要:【中文】本发明公开了一种区分碳质来源的热化学方法。a、将待测样品放入有机碳/元素碳分析仪的加热炉中,按程序升温:b、定义碳组分:第一阶段非氧化氦气氛中的310℃(OC1),475℃(OC2),615℃(OC3),870℃(OC4)和第一阶段870℃降温到550℃(Pyrol C),第二阶段在氧化气氛中550℃(EC1),625℃(EC2),700℃(EC3),775℃(EC4),850℃(EC5)和870℃(EC6)。c、碳质来源区分。本发明能够区分碳质气溶胶组分的碳质来源,大大提高了对有机碳气溶胶组分的认识,为防控碳质气溶胶组分提供了有利条件。 【EN】A thermochemical process for differentiating carbonaceous sources is disclosed. a. Putting a sample to be detected into a heating furnace of an organic carbon/element carbon analyzer, and heating according to the program: b. definition of carbon component: the first stage is non-oxidizing in the atmosphere of helium at 310 deg.C (OC1), 475 deg.C (OC2), 615 deg.C (OC3), 870 deg.C (OC4) and the first stage is oxidizing at 870 deg.C to 550 deg.C (Pyrol C), and the second stage is oxidizing at 550 deg.C (EC1), 625 deg.C (EC2), 700 deg.C (EC3), 775 deg.C (EC4), 850 deg.C (EC5) and 870 deg.C (EC 6). c. And (4) distinguishing carbon sources. The method can distinguish the carbon sources of the carbon aerosol components, greatly improves the knowledge of the organic carbon aerosol components, and provides favorable conditions for preventing and controlling the carbon aerosol components.
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3:
[发明]
【中文】一种基于红外测温的气体监测设备组件 【EN】Gas monitoring equipment assembly based on infrared temperature measurement
申请号:
202010128288.6
公开号:CN111157481A 主分类号:G01N21/3504
申请人:
【中文】安徽合为智能科技有限公司【EN】Anhui Hewei Intelligent Technology Co., Ltd
申请日:2020.02.28 公开日:2020.05.15
发明人:
【中文】高军
;
甘俊齐【EN】Gao Jun
;
Gan Jun
qi
摘要:【中文】本发明公开了一种基于红外测温的气体监测设备组件,包括:管体,管体内设置有安装板,且安装板上安装有红外气体传感器,竖板,竖板的一侧设置有两个呈上下分布的导板,且两个导板分别位于管体的内外侧,管体内的导板与竖板固定连接,且管体内的导板上套有磁铁滑套,安装板固定在磁铁滑套的底部,夹紧调节组件,夹紧调节组件设置在竖板靠近导板的一侧,且管体外的导板安装在夹紧调节组件上,管体外的导板通过夹紧调节组件调节与管体内的导板间距;本发明将两个导板夹持在管体上,通过移动磁铁板,就可以移动红外气体传感器,最后,就使得能够监测管体内任何位置的气体,且操作简单,红外气体传感器移动方便。 【EN】The invention discloses a gas monitoring equipment assembly based on infrared temperature measurement, which comprises: the infrared gas sensor and the riser are arranged in the tube body, one side of the riser is provided with two guide plates which are vertically distributed, the two guide plates are respectively positioned on the inner side and the outer side of the tube body, the guide plates in the tube body are fixedly connected with the riser, the guide plates in the tube body are sleeved with a magnet sliding sleeve, the mounting plate is fixed at the bottom of the magnet sliding sleeve, the clamping adjusting assembly is arranged on one side, close to the guide plates, of the riser, the guide plates outside the tube body are arranged on the clamping adjusting assembly, and the guide plates outside the tube body adjust the distance between the guide plates and the guide plates in the tube body through the clamping adjusting assembly; the two guide plates are clamped on the tube body, the infrared gas sensor can be moved by moving the magnet plate, and finally, gas at any position in the tube body can be monitored.
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4:
[发明]
【中文】一种针对用户时空数据行为检测的Adaboost方法 【EN】Adaboost method for detecting user spatio-temporal data behaviors
申请号:
201911222910.3
公开号:CN110955804A 主分类号:G06F16/901
申请人:
【中文】南京大学【EN】NANJING University
申请日:2019.12.03 公开日:2020.04.03
发明人:
【中文】张雷
;
淦珺
;
曾成
;
罗向阳【EN】Zhang Lei
;
Gan Jun
;
Zeng Cheng
;
Luo Xiangyang
摘要:【中文】本发明公开了一种针对用户时空数据行为检测的Adaboost方法,根据用户的时空数据,空间数据用于经纬度的表示,根据时间序将这些空间点有序的连接起来形成一个轨迹图。轨迹图可以将用户的常驻点作为一个核心点将整个轨迹划分成多个环。利用空间上经纬度之间的距离计算以及时间节点上的差值计算,可以从图中得到多条特征。根据计算所得,将简单的用户时空数据转化成了更多维度的特征向量,送入机器学习的分类模型当中对用户行为分析进行预测。本发明通过图上的轨迹挖掘出用户更为丰富的潜在信息,基于机器学习Adaboost的预测方法,可以更加显著地提高预测的准确率。 【EN】The invention discloses an Adaboost method for detecting user spatio-temporal data behaviors. The track graph may divide the entire track into a plurality of rings with the user's resident points as a core point. Multiple features can be obtained from the graph by distance calculation between latitude and longitude in space and difference calculation at time nodes. And according to the calculation result, simple user space-time data is converted into feature vectors with more dimensions, and the feature vectors are sent into a machine learning classification model to predict user behavior analysis. According to the method, richer potential information of the user is mined through the track on the graph, and the prediction accuracy can be improved more remarkably based on a prediction method of machine learning Adaboost.
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5:
[发明]
【中文】一种绞车拖缆张力测量驱动机构 【EN】Winch towing cable tension measurement driving mechanism
申请号:
201911308469.0
公开号:CN111114692A 主分类号:B63B21/16
申请人:
【中文】中国船舶重工集团有限公司第七一0研究所【EN】710 Research Institute of China Shipbuilding Industry Group Co., Ltd
申请日:2019.12.18 公开日:2020.05.08
发明人:
【中文】麻昔
;
甘文兵
;
怀义霞
;
张莺
;
代军【EN】Ma Xi
;
Gan Wenbing
;
Huai Yixia
;
Zhang Ying
;
Dai Jun
摘要:【中文】本发明公开了一种绞车拖缆张力测量驱动机构,机构包括安装座、销轴式张力传感器、张力测量板、液压马达、卷扬减速机和卷筒轴;安装座和卷筒轴之间设有轴承,轴承两端由轴承内挡圈和轴承外挡圈限制轴线位移;安装座和轴承外挡圈内设置有密封圈;液压马达直接与卷扬减速机对接,卷扬减速机转子与卷筒轴螺栓连接,卷扬减速机定子与张力测量板螺栓连接;销轴式张力传感器的支撑区位于传感器座和安装座的安装孔上,承载区位于张力测量板的受力孔上。本发明根据销轴式传感器所测的张力和结构几何参数推算出拖缆的张力,可实现在卷扬减速机转动和制动情况下均能实时监测拖缆张力的能力,具有结构紧凑、测量稳定和精度高等优点。 【EN】The invention discloses a winch towing cable tension measurement driving mechanism which comprises a mounting seat, a pin shaft type tension sensor, a tension measurement plate, a hydraulic motor, a winch speed reducer and a drum shaft, wherein the mounting seat is arranged on the front end of the winch towing cable; a bearing is arranged between the mounting seat and the drum shaft, and the axial displacement of the two ends of the bearing is limited by an inner bearing retainer ring and an outer bearing retainer ring; sealing rings are arranged in the mounting seat and the bearing outer retaining ring; the hydraulic motor is directly butted with the hoisting speed reducer, the rotor of the hoisting speed reducer is connected with the drum shaft through a bolt, and the stator of the hoisting speed reducer is connected with the tension measuring plate through a bolt; the supporting area of the pin shaft type tension sensor is positioned on the mounting holes of the sensor seat and the mounting seat, and the bearing area is positioned on the stress hole of the tension measuring plate. The invention calculates the tension of the towing cable according to the tension measured by the pin shaft type sensor and the structural geometric parameters, can realize the capability of monitoring the tension of the towing cable in real time under the conditions of rotation and braking of the winch speed reducer, and has the advantages of compact structure, stable measurement, high precision and the like.
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6:
[发明]
【中文】燃料电池电堆及系统、燃料电池汽车及其水管理方法 【EN】Fuel cell stack and system, fuel cell vehicle and water management method thereof
申请号:
201911422703.2
公开号:CN111092245A 主分类号:H01M8/04007
申请人:
【中文】上海神力科技有限公司【EN】Shen-Li High Tech Co., Ltd. (Shanghai)
申请日:2019.12.31 公开日:2020.05.01
发明人:
【中文】李骏
;
汤千秋
;
徐鑫
;
甘全全【EN】Li Jun
;
Tang Qianqiu
;
Xu Xin
;
Gan Quanquan
摘要:【中文】本发明涉及一种燃料电池电堆及系统、燃料电池汽车及其水管理方法,所述的燃料电池电堆在第一端板上设有氢气进口、空气进口、第一氢气出口、第一空气出口,第二端板上设有第二氢气出口和/或第二空气出口,第二氢气出口和/或第二空气出口设有电磁阀,电磁阀连接燃料电池电堆的控制系统;所述的燃料电池汽车上设有上述燃料电池电堆以及陀螺仪;本发明利用陀螺仪实时监控车辆运行的状况,若陀螺仪监测到电堆发生转弯、爬坡或下坡,则通过控制系统打开电磁阀,另一侧端板上的氢气和/或空气出口打开,增大排水,进而避免电堆端部水淹。与现有技术相比,本发明具有操作简单易行,成本低等优点。 【EN】The invention relates to a fuel cell stack and a system thereof, a fuel cell automobile and a water management method thereof, wherein a first end plate of the fuel cell stack is provided with a hydrogen inlet, an air inlet, a first hydrogen outlet and a first air outlet; the fuel cell electric pile and the gyroscope are arranged on the fuel cell automobile; the invention utilizes the gyroscope to monitor the running condition of the vehicle in real time, if the gyroscope monitors that the galvanic pile turns, climbs or descends, the electromagnetic valve is opened through the control system, and the hydrogen and/or air outlet on the other side end plate is opened, so that the drainage is increased, and the end part of the galvanic pile is prevented from flooding. Compared with the prior art, the method has the advantages of simple and easy operation, low cost and the like.
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7:
[发明]
【中文】一种提高金属锂表面稳定性的方法 【EN】Method for improving surface stability of metal lithium
申请号:
201910792120.2
公开号:CN110846610A 主分类号:C23C8/08
申请人:
【中文】浙江工业大学【EN】ZHEJIANG UNIVERSITY OF TECHNOLOGY
申请日:2019.08.26 公开日:2020.02.28
发明人:
【中文】夏阳
;
韩熠垚
;
卢成炜
;
张文魁
;
黄辉
;
甘永平
;
梁初
;
张俊【EN】Xia Yang
;
Han Yiyao
;
Lu Chengwei
;
Zhang Wenkui
;
Huang Hui
;
Gan Yongping
;
Liang Chu
;
Zhang Jun
摘要:【中文】本发明属于材料加工技术领域,涉及一种提高金属锂表面稳定性的方法。本发明是为了解决现有金属锂储存要求高、加工性差等问题,而提供一种操作简便、快速高效的金属锂表面修饰方法。利用氟利昂与金属锂表面发生反应,从而在金属锂表面原位构筑一层均匀致密的氟化锂包覆层。该方法构筑的包覆层与金属锂基体结合紧密,可抑制金属锂与空气中的水和氧发生反应,降低其对存储和使用环境的要求,提高其对空气的稳定性。此外,该表面改性方法具有操作简单,成本低廉,无“三废”等优势,有利于工业化生产。 【EN】The invention belongs to the technical field of material processing, and relates to a method for improving the surface stability of metal lithium. The invention provides a method for modifying the surface of metal lithium, which is simple, convenient, rapid and efficient to operate, and aims to solve the problems of high storage requirement, poor processability and the like of the existing metal lithium. The Freon reacts with the surface of the metal lithium, so that a uniform and compact lithium fluoride coating layer is constructed on the surface of the metal lithium in situ. The coating layer constructed by the method is tightly combined with the metal lithium matrix, so that the reaction of metal lithium with water and oxygen in the air can be inhibited, the requirements on storage and use environments are reduced, and the stability of the coating layer to the air is improved. In addition, the surface modification method has the advantages of simple operation, low cost, no three wastes and the like, and is beneficial to industrial production.
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8:
[发明]
【中文】一种易潮物料贮存干燥装置 【EN】Moisture-sensitive material storage and drying device
申请号:
201910945005.4
公开号:CN110844370A 主分类号:B65D88/74
申请人:
【中文】广西机械工业研究院有限责任公司【EN】Guangxi Machinery Industry Research Institute Co., Ltd
申请日:2019.09.30 公开日:2020.02.28
发明人:
【中文】江文权
;
蒙永龙
;
甘桂裕
;
吴湘柠
;
陈义时
;
毛骏
;
苏聪【EN】Jiang Wenquan
;
Meng Yonglong
;
Gan Guiyu
;
Wu Xiangning
;
Chen Yishi
;
Mao Jun
;
Su Cong
摘要:【中文】本发明涉及贮存干燥设备领域,具体公开了一种易潮物料贮存干燥装置,包括:贮存罐,其顶部设有进料口,底部设有下料口,该贮存罐内设有搅拌器,所述贮存罐内以下至上的顺序依次间隔设有底部充气环管组、一级充气管组、二级充气管组、三级充气管组、四级充气管组;真空泵,其通过排气总管连接所述贮存罐的上部;冷冻干燥机,其出口分别通过管路与所述底部充气环管组、一级充气管组、二级充气管组、三级充气管组、四级充气管组连接;以及充气装置,其与所述冷冻干燥机的入口连接。该装置使得干冷气体能够充分和易潮物料接触,达到贮存干燥效果,也解决易潮物料板结的问题。 【EN】The invention relates to the field of storage drying equipment, and particularly discloses a storage drying device for moisture-sensitive materials, which comprises: the top of the storage tank is provided with a feeding hole, the bottom of the storage tank is provided with a feed opening, a stirrer is arranged in the storage tank, and a bottom inflation circular pipe group, a primary inflation pipe group, a secondary inflation pipe group, a tertiary inflation pipe group and a quaternary inflation pipe group are sequentially arranged in the storage tank from bottom to top at intervals; a vacuum pump connected to an upper portion of the storage tank through an exhaust manifold; the outlet of the freeze dryer is respectively connected with the bottom inflation ring pipe group, the primary inflation pipe group, the secondary inflation pipe group, the tertiary inflation pipe group and the quaternary inflation pipe group through pipelines; and an aerating device connected with an inlet of the freeze dryer. The device makes dry cold gas can be abundant and the easily damp material contact, reaches storage drying effect, also solves the problem that the easily damp material hardens.
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9:
[发明]
【中文】涉密纸张回收设备 【EN】Secret-related paper recycling equipment
申请号:
201911145872.6
公开号:CN110861947A 主分类号:B65H7/06
申请人:
【中文】北京融诚信达科技发展有限公司【EN】Beijing Rongxingda Technology Development Co.,Ltd.
申请日:2019.11.21 公开日:2020.03.06
发明人:
【中文】朱贝利
;
杨晓东
;
李永锋
;
甘俊
;
邢达
;
齐颖【EN】Zhu Beili
;
Yang Xiaodong
;
Li Yongfeng
;
Gan Jun
;
Xing Da
;
Qi Ying
摘要:【中文】本发明涉及一种涉密纸张回收设备,包括:纸张存储仓,纸张存储仓设置有落纸口;设置在落纸口下游工序的纸张识别结构,纸张识别机构用于识别待回收涉密纸张;设置在纸张识别结构下游工序的落纸控制组件,落纸控制组件用于将待回收涉密纸张回收至纸张存储仓;设置于纸张存储仓上的操作控制台,操作控制台用于控制纸张识别结构的工作模式,工作模式包括自动识别模式和手动识别模式,操作控制台还用于控制落纸控制组件的回收或停止;设置于纸张存储仓上的身份验证器,身份验证器用于对操作控制台的操作者的身份信息进行验证,当身份信息验证成功后,身份验证器授予操作控制台的操作权限,有效地提高了对涉密纸张的回收效率。 【EN】The invention relates to a confidential paper recycling device, which comprises: the paper storage bin is provided with a paper falling port; the paper identification mechanism is arranged in a downstream process of the paper dropping port and is used for identifying the confidential paper to be recovered; the paper falling control assembly is arranged in a downstream process of the paper identification structure and is used for recovering the classified paper to be recovered to the paper storage bin; the operation console is arranged on the paper storage bin and is used for controlling the working modes of the paper identification structure, the working modes comprise an automatic identification mode and a manual identification mode, and the operation console is also used for controlling the recovery or stop of the paper falling control assembly; the identity verifier is arranged on the paper storage bin and used for verifying identity information of an operator of the operation console, and after the identity information is verified successfully, the identity verifier grants the operation authority of the operation console, so that the recovery efficiency of the confidential paper is effectively improved.
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10:
[发明]
【中文】砌体管线直埋施工方法 【EN】Masonry pipeline direct-buried construction method
申请号:
201911213039.0
公开号:CN110924692A 主分类号:E04G21/14
申请人:
【中文】中建三局第三建设工程有限责任公司【EN】The Third Construction Engineering Limited Company of China Construction Third Engineering Bureau
申请日:2019.12.02 公开日:2020.03.27
发明人:
【中文】张志华
;
王军
;
黎绪建
;
甘晓琴
;
陈建
;
陈华江【EN】Zhang Zhihua
;
Wang Jun
;
Li Xujian
;
Gan Xiaoqin
;
Chen Jian
;
Chen Huajiang
摘要:【中文】本发明公开了一种砌体管线直埋施工方法,属于建筑施工领域。它包括步骤如下:基层清理,基层面严格按施工工艺标准及规范要求进行处理,必须保证基层表面平整、洁净、密实,将结构面楼层水泥浮浆、施工垃圾清理干净,墙根部提前浇水湿润;墙体放线,在基层清理完成后,施测出主要轴线、墙体边线、墙体控制线、门窗洞口边线及楼层标高控制线;植筋、构造柱钢筋绑扎,根据弹线定位点,植入墙体拉结筋与构造柱钢筋;植筋完成后,对其进行抗拔试验;配管及定位,砌体放线结束后,按照管线固化图将线管、线盒底座、强弱电箱底盒安装到位,端头封闭严实,并进行加固和固定;浇筑止水带,根据弹线定位尺寸,在有防水要求的位置设置止水带;最后再进行砌体组砌。 【EN】The invention discloses a masonry pipeline direct-buried construction method, and belongs to the field of building construction. It comprises the following steps: cleaning a base layer, wherein the surface of the base layer is strictly treated according to the construction process standard and the standard requirement, the surface of the base layer is required to be smooth, clean and compact, the cement laitance and the construction waste of the floors of the structural surface are cleaned, and the root of the wall is watered and moistened in advance; paying off the wall, and measuring a main axis, a wall side line, a wall control line, a door and window opening side line and a floor elevation control line after the base layer is cleaned; planting ribs, binding constructional column steel bars, and planting wall tie bars and constructional column steel bars according to the elastic line positioning points; after the bar planting is finished, carrying out an anti-pulling test on the bar; piping and positioning, namely after the brickwork is unreeled, installing the line pipe, the line box base and the strong and weak current box bottom box in place according to a line curing diagram, sealing the end head tightly, and reinforcing and fixing; pouring a water stop belt, and arranging the water stop belt at a position with a waterproof requirement according to the positioning size of the elastic line; and finally, masonry group building is carried out.
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