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1:
[发明]
【中文】一种太阳能电池专用柔性导电浆料及制备方法 【EN】Flexible conductive paste special for solar cell and preparation method thereof
申请号:
201911126735.8
公开号:CN110853839A 主分类号:H01B13/00
申请人:
【中文】成都新柯力化工科技有限公司【EN】Chengdu Xinkeli Chemical Sci-Tech Co., Ltd.
申请日:2019.11.18 公开日:2020.02.28
发明人:
【中文】陈庆
;
陈文武【EN】Chen Qing
;
Chen Wenwu
摘要:【中文】本发明涉及太阳能电池领域,公开了一种太阳能电池专用柔性导电浆料及制备方法。包括如下制备过程:(1)将弹性微粒使用水玻璃浸润,然后用500目筛网过滤,制得表面粘附硅酸钠液的弹性微粒;(2)将弹性微粒与导电微粒混合后研磨,制得弹性导电微粒;(3)将弹性导电微粒加入导电银浆中混合均匀,制得柔性导电浆料。本发明制得的导电薄膜与传统导电薄膜相比,通过导电微粒牢固包覆弹性微粒制得具有弹性的导电微粒,该导电浆料并刮涂成膜,具有优异的弯曲性和柔性。 【EN】The invention relates to the field of solar cells, and discloses a flexible conductive paste special for a solar cell and a preparation method thereof. The preparation method comprises the following preparation processes: (1) soaking the elastic particles by using water glass, and then filtering by using a 500-mesh screen to prepare the elastic particles with the surface adhered with the sodium silicate solution; (2) mixing the elastic particles and the conductive particles and then grinding to prepare elastic conductive particles; (3) and adding the elastic conductive particles into the conductive silver paste, and uniformly mixing to obtain the flexible conductive paste. Compared with the traditional conductive film, the conductive film prepared by the invention has the advantages that the conductive particles are firmly coated with the elastic particles to prepare the elastic conductive particles, and the conductive slurry is blade-coated to form a film, so that the conductive film has excellent flexibility and flexibility.
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2:
[发明]
【中文】任务失败管理的方法、装置、设备和存储介质 【EN】Method, device, equipment and storage medium for task failure management
申请号:
201911086940.6
公开号:CN110908821A 主分类号:G06F11/07
申请人:
【中文】腾讯音乐娱乐科技(深圳)有限公司【EN】TENCENT MUSIC ENTERTAINMENT TECHNOLOGY (SHENZHEN) Co.,Ltd.
申请日:2019.11.08 公开日:2020.03.24
发明人:
【中文】冯涛
;
陈文武【EN】Feng Tao
;
Chen Wenwu
摘要:【中文】本申请公开了一种任务失败管理的方法、装置、设备和存储介质,属于互联网技术领域。所述方法包括:在任务执行的过程中,当所述任务执行失败时,将与所述任务中执行失败的步骤相对应的失败状态信息,记录在第一文件中;每当达到预设周期时,读取所述第一文件中记录的失败状态信息;基于所述第一文件中记录的失败状态信息,自执行失败的步骤开始重新执行对应的任务。本申请方案在任务执行失败之后不会立即再次执行失败的步骤,通过设置执行周期可以等服务器的处理压力减轻之后再次执行失败的步骤,能够避免服务的雪崩。 【EN】The application discloses a method, a device, equipment and a storage medium for task failure management, and belongs to the technical field of internet. The method comprises the following steps: in the process of task execution, when the task fails to execute, recording failure state information corresponding to the step of the task that fails to execute in a first file; reading failure state information recorded in the first file every time a preset period is reached; and based on the failure state information recorded in the first file, starting to execute the corresponding task again from the step of executing failure. According to the method and the device for executing the tasks, the failed steps cannot be executed again immediately after the tasks are failed to execute, and the steps which are failed to execute again after the processing pressure of the server is relieved can be set in the execution period, so that service avalanche can be avoided.
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3:
[发明]
【中文】一种全自动贴标机 【EN】Full-automatic labeling machine
申请号:
201911296790.1
公开号:CN110949817A 主分类号:B65C9/40
申请人:
【中文】东莞市智晖机械科技有限公司【EN】DONGGUAN ZHIHUI MACHINERY TECHNOLOGY Co.,Ltd.
申请日:2019.12.16 公开日:2020.04.03
发明人:
【中文】周小志
;
陈文武【EN】Zhou Xiaozhi
;
Chen Wenwu
摘要:【中文】本发明公开了一种全自动贴标机,包括控制室和工作室,控制室设有控制系统,工作室设有连接于控制系统的标签组件、自动贴标组件、流水线组件和摄像感应组件;标签组件用于提供待贴的标签,自动贴标组件用于将标签移动并贴至产品工件上,流水线组件用于将产品工件移动至贴标处并将成品移动至置物框,摄像感应组件用于根据标签的位置响应自动贴标组件抓取标签、根据产品工件的位置响应自动贴标组件为产品工件贴标;有益效果是:所有的组件相互独立且配合工作,完成了产品工件贴标的全自动工作,贴标效率高,且无需过多的人工操作。 【EN】The invention discloses a full-automatic labeling machine, which comprises a control room and a working room, wherein the control room is provided with a control system, and the working room is provided with a label assembly, an automatic labeling assembly, a production line assembly and a camera shooting induction assembly which are connected with the control system; the automatic labeling assembly is used for moving and attaching the label to a product workpiece, the assembly line assembly is used for moving the product workpiece to a labeling position and moving a finished product to the storage frame, and the camera sensing assembly is used for responding to the automatic labeling assembly according to the position of the label to grab the label and responding to the automatic labeling assembly according to the position of the product workpiece to label the product workpiece; the beneficial effects are that: all the components are mutually independent and work in a matched mode, full-automatic work of labeling of the product workpiece is completed, labeling efficiency is high, and excessive manual operation is not needed.
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4:
[发明]
【中文】根据触摸区域区分单指划线变双指并拢划线的方法、装置及触控显示装置 【EN】Method and device for distinguishing single-finger scribing line from double-finger converging scribing line according to touch area and touch display device
申请号:
201911108602.8
公开号:CN110851069A 主分类号:G06F3/0488
申请人:
【中文】南京信息工程大学【EN】Nanjing University of Information Science and Technology
申请日:2019.11.13 公开日:2020.02.28
发明人:
【中文】范京津
;
毕硕本
;
贺文武
;
陈昌春
;
陈烨洲【EN】Fan Jingjin
;
Bi Shuoben
;
He Wenwu
;
Chen Changchun
;
Chen Yezhou
摘要:【中文】本发明提供一种根据触摸区域区分单指划线变双指并拢划线的方法,包括检测坐标轨迹,确定当前正在进行单指划线动作;查找在当前按压区域周围的十六宫格内是否有满足预定第一阈值的单元;如果有,则取下一帧数据,查找按压区域周围的四十宫格内是否有满足预定第二阈值的单元及其附属单元;如果有,则连续取十五帧数据,分别查找每一帧数据的按压区域周围的四十宫格内是否有满足预定第三阈值的单元及其附属单元;如果都有,则判断此时已由单指划线变为双指并拢划线;本发明还提供一种基于上述方法的触控识别装置及触控显示装置。本发明能够确定是否由单指划线变为双指并拢划线,改善了由单指变两指并拢划线过程中产生的锯齿、毛刺状轨迹问题。 【EN】The invention provides a method for distinguishing a single-finger scribing line from a double-finger gathering scribing line according to a touch area, which comprises the steps of detecting a coordinate track and determining that the single-finger scribing action is currently carried out; searching whether a unit meeting a preset first threshold exists in sixteen grids around the current pressing area; if yes, taking down the next frame of data, and searching whether a unit meeting a preset second threshold value and auxiliary units thereof exist in forty grids around the pressing area; if yes, continuously taking fifteen frames of data, and respectively searching whether a unit meeting a preset third threshold value and auxiliary units thereof exist in forty grids around the pressing area of each frame of data; if both the two fingers are available, judging that the single-finger scribing is changed into double-finger gathering scribing at the moment; the invention also provides a touch identification device and a touch display device based on the method. The invention can determine whether the single-finger drawing is changed into the double-finger gathering drawing, and solves the problem of sawtooth and burr-shaped tracks generated in the process of changing the single-finger into the double-finger gathering drawing.
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5:
[发明]
【中文】一种命名实体识别方法及装置 【EN】Named entity identification method and device
申请号:
201911033416.2
公开号:CN110852103A 主分类号:G06F40/295
申请人:
【中文】青岛聚好联科技有限公司【EN】Qingdao Juhaolian Technology Co., Ltd.
申请日:2019.10.28 公开日:2020.02.28
发明人:
【中文】胡伟凤
;
高雪松
;
曲文武
;
张晓霞
;
陈维强【EN】Hu Weifeng
;
Gao Xuesong
;
Qu Wenwu
;
Zhang Xiaoxia
;
Chen Weiqiang
摘要:【中文】本发明公开了一种命名实体识别方法及装置,该方法包括获取用户输入的语句,根据用户输入的语句和多任务联合实体识别模型,确定出用户输入的语句的实体识别标签序列和分词识别标签序列,多任务联合实体识别模型包括命名实体识别模型和实体边界识别模型,命名实体识别模型和实体边界识别模型共用字符嵌入层和第一特征学习层,第一概率预测层的损失函数和第二概率预测层的损失函数相关。通过多任务联合模型进行命名实体的识别,由于命名实体识别中的概率预测层的损失函数与实体边界识别模型中的概率预测层的损失函数有关联,需要依赖于实体边界识别模型中的概率预测层的损失函数,从而可以通过加强对实体边界的识别能力来提升命名实体识别的准确率。 【EN】The invention discloses a named entity recognition method and a device, the method comprises the steps of obtaining a sentence input by a user, determining an entity recognition tag sequence and a word segmentation recognition tag sequence of the sentence input by the user according to the sentence input by the user and a multi-task combined entity recognition model, wherein the multi-task combined entity recognition model comprises a named entity recognition model and an entity boundary recognition model, the named entity recognition model and the entity boundary recognition model share a character embedding layer and a first characteristic learning layer, and a loss function of the first probability prediction layer is related to a loss function of the second probability prediction layer. The named entity is identified through the multitask joint model, and the loss function of the probability prediction layer in the named entity identification is related to the loss function of the probability prediction layer in the entity boundary identification model, so that the loss function of the probability prediction layer in the entity boundary identification model needs to be depended on, and therefore the accuracy of the named entity identification can be improved by enhancing the identification capability of the entity boundary.
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6:
[发明]
【中文】催化裂化装置烟机在线清垢方法 【EN】On-line scale cleaning method for smoke machine of catalytic cracking unit
申请号:
201811020145.2
公开号:CN110871199A 主分类号:B08B7/00
申请人:
【中文】中国石油化工股份有限公司
;
中国石油化工股份有限公司青岛安全工程研究院【EN】China Petroleum & Chemical Corp.
;
Qingdao Institute of Safety Engineering, China Petrochemical Co., Ltd.
申请日:2018.09.03 公开日:2020.03.10
发明人:
【中文】陈文武
;
兰正贵
;
谢守明
;
邱志刚
;
屈定荣【EN】
Chen Wenwu
;
Lan Zhenggui
;
Xie Shouming
;
Qiu Zhigang
;
Qu Dingrong
摘要:【中文】本发明涉及一种催化裂化装置烟机在线清垢方法,主要解决现有技术中清垢效率较低的问题。本发明通过采用一种催化裂化装置烟机在线清垢方法,利用催化剂垢层与烟气轮机转子膨胀系数的不同,通过改变烟机轮盘温度,使沉积物分层、脱落、吹除,达到在线改善烟机转子动平衡,降低振动的目的的技术方案较好地解决了上述问题,可用于催化裂化装置烟机在线清垢中。 【EN】The invention relates to an on-line scale cleaning method for a smoke machine of a catalytic cracking unit, which mainly solves the problem of low scale cleaning efficiency in the prior art. The invention adopts the technical scheme that the online scale cleaning method of the smoke machine of the catalytic cracking device is adopted, the temperature of a wheel disc of the smoke machine is changed by utilizing the difference of the expansion coefficients of a catalyst scale layer and a rotor of a smoke turbine, so that the deposits are layered, fall off and blown off, the dynamic balance of the rotor of the smoke machine is improved online, and the vibration is reduced, so that the problems are well solved, and the online scale cleaning method can be used for online scale cleaning of the smoke machine of the catalytic cracking device.
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7:
[发明]
【中文】常压油罐油水分离方法 【EN】Oil-water separation method for normal pressure oil tank
申请号:
201811020806.1
公开号:CN110872525A 主分类号:C10G33/00
申请人:
【中文】中国石油化工股份有限公司
;
中国石油化工股份有限公司青岛安全工程研究院【EN】China Petroleum & Chemical Corp.
;
Qingdao Institute of Safety Engineering, China Petrochemical Co., Ltd.
申请日:2018.09.03 公开日:2020.03.10
发明人:
【中文】陈文武
;
韩磊
;
黄贤滨
;
屈定荣【EN】
Chen Wenwu
;
Han Lei
;
Huang Xianbin
;
Qu Dingrong
摘要:【中文】本发明涉及一种常压油罐油水分离方法,主要解决现有技术中安全性较差、污染大气的问题。本发明通过采用一种常压油罐油水分离方法,通过常压储罐、油水分离器、污水污油泵,实现储罐密闭脱水,外送污水至污水汽提装置或污水处理场,或将污油回收至储罐,实现含油污水的分级处理的技术方案较好地解决了上述问题,可用于常压油罐油水分离中。 【EN】The invention relates to an oil-water separation method for an atmospheric oil tank, which mainly solves the problems of poor safety and air pollution in the prior art. The invention adopts the technical scheme that the oil-water separation method of the normal-pressure oil tank is adopted, the sealed dehydration of the storage tank is realized through the normal-pressure storage tank, the oil-water separator and the sewage and dirty oil pump, the sewage is sent to a sewage stripping device or a sewage treatment field, or the dirty oil is recycled to the storage tank, and the classified treatment of the oily sewage is realized, so that the problems are well solved, and the method can be used for the oil-water separation of the normal-pressure oil tank.
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8:
[发明]
【中文】一种锂离子电池负极活性材料、其制备方法和锂离子电池 【EN】Lithium ion battery negative electrode active material, preparation method thereof and lithium ion battery
申请号:
201911325702.6
公开号:CN110980672A 主分类号:C01B25/08
申请人:
【中文】广东工业大学【EN】GUANGDONG UNIVERSITY OF TECHNOLOGY
申请日:2019.12.20 公开日:2020.04.10
发明人:
【中文】李文武
;
沈鹏飞
;
陈霆熙
;
马齐斌
;
张海燕【EN】Li Wenwu
;
Shen Pengfei
;
Chen Tingxi
;
Ma Qibin
;
Zhang Haiyan
摘要:【中文】本发明提供了一种锂离子电池负极活性材料,为式(I)所示结构的化合物AlGe
X
P式(I)。本发明采用高能球磨法首次将具有锂反应活性的铝、锗、磷(P)元素同时引入到一个组元的闪锌矿结构中合成了AlGe
6
P材料。由于Al,Ge,P之间的协同作用,使得该材料具有高的初始首效库伦效率、高容量的优点。本发明合成了AlGe
X
P(1≤X≤6,x可以是整数的,也可以是小数的)系列材料,从而降低材料的成本,并且Ge含量最少的AlGeP材料的理论比容量在该系列材料的容量最高,同样该材料也具有高的初始首效库伦效率,容量高,成本低,充放电电压平台差别小的优点。 【EN】The invention provides a lithium ion battery cathode active material which is a compound AlGe with a structure shown in a formula (I)
X
P is formula (I). The invention adopts a high-energy ball milling method to simultaneously introduce aluminum, germanium and phosphorus (P) elements with lithium reaction activity into a constituent zinc blende structure for the first time to synthesize AlGe
6
And P material. Due to the synergistic effect of Al, Ge and P, the material has the advantages of high initial first-effect coulombic efficiency and high capacity. The invention synthesizes AlGe
X
P (1 is less than or equal to X is less than or equal to 6, and X can be integer or decimal) series materials, thereby reducing the cost of the materials, and the theoretical specific capacity of the AlGeP material with the minimum Ge content is the highest in the capacity of the series materials,the material also has the advantages of high initial first-effect coulombic efficiency, high capacity, low cost and small difference of charge and discharge voltage platforms.
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9:
[发明]
【中文】用于折弯成型的凹模、自动折弯撕膜一体化装置 【EN】Die and automatic bending and film tearing integrated device for bending forming
申请号:
202010041485.4
公开号:CN111151654A 主分类号:B21D37/10
申请人:
【中文】博众精工科技股份有限公司【EN】BOZHON PRECISION INDUSTRY TECHNOLOGY Co.,Ltd.
申请日:2020.01.15 公开日:2020.05.15
发明人:
【中文】陈骅
;
秦连熠
;
赵文武
;
刘武雷【EN】Chen Hua
;
Qin Lianyi
;
Zhao Wenwu
;
Liu Wulei
摘要:【中文】本发明提供用于折弯成型的凹模,包括由凹模驱动装置驱使运动的折弯凹模;折弯凹模包括若干个第一成型凸块、第二成型凸块;其中,相邻两第一成型凸块形成用以弯折成型的凹腔;第二成型凸块位于相邻两第一成型凸块之间;折弯凹模上还设有用以分离薄片类工件上离型纸的撕膜组件的连接结构;成型后,撕膜组件将离型纸压至折弯凹模,凹模驱动装置的驱动部驱使折弯凹模远离成型凸模本体,以使离型纸脱离薄片类工件。本发明还涉及自动折弯撕膜一体化装置。本发明采用配置有撕膜结构的凹模,实现薄片类工件的折弯与撕膜的一次完成。本发明结构巧妙,设计合理,符合弯折工件生产实际需求,便于弯折模具领域推广应用。 【EN】The invention provides a female die for bending forming, which comprises a bending female die driven by a female die driving device to move; the bending female die comprises a plurality of first forming convex blocks and second forming convex blocks; wherein, a concave cavity for bending and forming is formed on two adjacent first forming convex blocks; the second forming convex blocks are positioned between two adjacent first forming convex blocks; the bending female die is also provided with a connecting structure for separating a film tearing assembly of release paper on the thin-sheet workpiece; after the forming, the film tearing assembly presses the release paper to the bending female die, and the driving part of the female die driving device drives the bending female die to be away from the forming male die body, so that the release paper is separated from the sheet workpiece. The invention also relates to an automatic bending and tearing integrated device. The invention adopts the female die provided with the film tearing structure to realize the bending of the sheet workpiece and the film tearing at one time. The bending die is ingenious in structure and reasonable in design, meets the actual production requirements of bent workpieces, and is convenient to popularize and apply in the field of bending dies.
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10:
[发明]
【中文】一种自动驾驶农机田间作业路径规划系统及规划方法 【EN】Automatic driving agricultural machinery field operation path planning system and planning method
申请号:
202010224567.2
公开号:CN111189444A 主分类号:G01C21/00
申请人:
【中文】洛阳智能农业装备研究院有限公司【EN】LUOYANG INTELLIGENT AGRICULTURAL EQUIPMENT RESEARCH INSTITUTE Co.,Ltd.
申请日:2020.03.26 公开日:2020.05.22
发明人:
【中文】李莹玉
;
王鹏
;
王文武
;
陈进富
;
张鹏锐【EN】Li Yingyu
;
Wang Peng
;
Wang Wenwu
;
Chen Jinfu
;
Zhang Pengrui
摘要:【中文】本发明公开了一种自动驾驶农机田间作业路径规划系统及规划方法,包括数据采集单元、用户操作单元和处理单元,所述数据采集单元和用户操作单元连接,所述数据采集单元和用户操作单元分别与处理单元连接;所述数据采集单元包括多种传感器,目的是采集作业区域与农机周围的环境信息,用户操单元用于人机交互;自动驾驶农机田间作业路径规划方法包括八个步骤;本发明利用高精度的定位装置,通过车辆控制器,可以实现农机位姿的精准控制,通过科学的田间作业路径规划系统及方法,可以有效的提高农机的作业效率和作业质量。 【EN】The invention discloses a planning system and a planning method for field operation paths of an automatic driving agricultural machine, which comprise a data acquisition unit, a user operation unit and a processing unit, wherein the data acquisition unit is connected with the user operation unit; the data acquisition unit comprises various sensors and aims to acquire environmental information of an operation area and the periphery of the agricultural machinery, and the user operation unit is used for man-machine interaction; the planning method of the field operation path of the automatic driving agricultural machine comprises eight steps; the invention can realize the accurate control of the position and the posture of the agricultural machine by utilizing the high-precision positioning device and the vehicle controller, and can effectively improve the operation efficiency and the operation quality of the agricultural machine by a scientific field operation path planning system and method.
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