当前查询到8条专利与查询词 "Zheng Yaofeng"相关,搜索用时0.2656285秒!排序方式:
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申请号:201980000757.1 公开号:CN110914680A 主分类号:G01N27/48
摘要:【中文】本发明提供了一种用于测量电沉积溶液中金属离子浓度的方法。本发明的方法可以实质上减少有机添加剂和不同电极条件对伏安法测量金属离子浓度的干扰。 【EN】The invention provides a method for measuring the concentration of metal ions in an electrodeposition solution. The method of the present invention can substantially reduce interference of organic additives and different electrode conditions on voltammetry measurements of metal ion concentrations.
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申请号:201911234949.7 公开号:CN111125073A 主分类号:G06F16/215
申请人:【中文】苏宁云计算有限公司【EN】Suning Cloud Computing Co.,Ltd. 申请日:2019.12.05 公开日:2020.05.08
摘要:【中文】本申请实施例公开了一种大数据平台数据质量校验的方法、装置及系统,其中方法包括:S1:从质量平台获取质量规则表达式得到预执行计划;S2:对所述预执行计划进行处理,得到编译文件;S3:使用所述编译文件实时抽取目标数据库的缓存内的待同步数据进行计算统计;所述待同步数据为待同步数据库向所述目标数据库实时发送的数据;S4:根据所述计算统计结果生成质量报告,并发送所述质量报告至所述质量平台。通过将规则计算引擎嵌入到数据集成工具中,在数据迁移的过程中完成数据质量的在线分析,避免了数据落盘重复抽取数据造成计算资源和网络资源的消耗。 【EN】The embodiment of the application discloses a method, a device and a system for verifying data quality of a big data platform, wherein the method comprises the following steps: s1, obtaining a quality rule expression from the quality platform to obtain a pre-execution plan; s2, processing the pre-execution plan to obtain a compiled file; s3, extracting the data to be synchronized in the cache of the target database in real time by using the compiled file for calculation and statistics; the data to be synchronized is data sent by the database to be synchronized to the target database in real time; and S4, generating a quality report according to the calculation statistical result, and sending the quality report to the quality platform. By embedding the rule calculation engine into the data integration tool, the online analysis of the data quality is completed in the data migration process, and the consumption of calculation resources and network resources caused by repeated data extraction in a data falling disk is avoided.
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申请号:201911166542.5 公开号:CN111143156A 主分类号:G06F11/30
申请人:【中文】苏宁云计算有限公司【EN】Suning Cloud Computing Co.,Ltd. 申请日:2019.11.25 公开日:2020.05.12
摘要:【中文】本发明公开了一种大数据平台垃圾任务采集系统、方法及计算机系统,采集系统包括:审计日志加载模块,用于加载所述大数据平台在数据处理过程中生成的审计日志;数据处理模块,连接所述审计日志加载模块,用于对所述审计日志进行数据处理;临时表注册模块,连接所述数据处理模块,用于将经数据处理后的所述审计日志注册为对应的临时表并存储;数据分组聚合模块,连接所述临时表注册模块,用于对所述临时表中的数据进行分组聚合,得到一分组聚合结果;数据存储模块,连接所述数据分组聚合模块,用于存储所述数据分组聚合结果,本发明能够自动识别大数据平台执行的垃圾任务,释放了存储资源,降低了计算成本。 【EN】The invention discloses a big data platform garbage task acquisition system, a method and a computer system, wherein the acquisition system comprises: the audit log loading module is used for loading the audit log generated by the big data platform in the data processing process; the data processing module is connected with the audit log loading module and is used for processing the data of the audit log; the temporary table registration module is connected with the data processing module and is used for registering the audit logs after data processing as corresponding temporary tables and storing the temporary tables; the data grouping and aggregating module is connected with the temporary table registration module and is used for grouping and aggregating the data in the temporary table to obtain a grouping and aggregating result; the data storage module is connected with the data grouping and aggregating module and used for storing the data grouping and aggregating result.
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申请号:201911014126.3 公开号:CN110906692A 主分类号:F26B5/04
摘要:【中文】本发明公开了一种新型木材干燥的预处理方法,然而现有的木材干燥方法对木材的干燥效果不好,且在干燥的过程中容易使木材受力不均匀,从而出现干裂现象,提高了成本,且现有的木材干燥方法较为复杂,且干燥的时间较为缓慢,从而降低了干燥的速率,且木材在干燥的过程中容易受外界环境的影响。本发明通过按一定的范围缓慢升高和降低温度,从而使种新型木材干燥的预处理方法对木材的干燥效果更好,且通过将板材A与板材A之间隔条,并通过板材的大小规定不同规格的隔条,从而使板材A与板材A之间留有一定的距离,从而使板材A在干燥的过程中容易使木材受力更均匀,且通过将干燥要内部的湿度升高,从而避免了出现干裂现象,降低了成本。 【EN】The invention discloses a novel wood drying pretreatment method, however, the existing wood drying method has poor wood drying effect, the wood is easy to be stressed unevenly in the drying process, so that the phenomenon of drying crack occurs, the cost is improved, the existing wood drying method is complex, the drying time is slow, the drying speed is reduced, and the wood is easy to be influenced by the external environment in the drying process. The invention slowly raises and lowers the temperature according to a certain range, thereby leading the novel wood drying pretreatment method to have better drying effect on the wood, and leading the distance between the board A and the board A to be certain by the parting strips between the board A and the parting strips with different specifications regulated by the size of the board, thereby leading the stress of the wood to be more uniform easily in the drying process of the board A, and avoiding the occurrence of the dry cracking phenomenon and reducing the cost by raising the humidity inside the board A to be dried.
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申请号:201911051351.4 公开号:CN110936698A 主分类号:B32B37/12
摘要:【中文】本发明公开了一种隔音效果好的建筑装饰板的制造方法,具体包括以下步骤:S1、基板的制备:分别选取相应比份的玻璃纤维、硅藻土和滑石粉,并将选取的玻璃纤维、硅藻土和滑石粉倒入搅拌机中,然后向搅拌机中投入相应比分的发泡剂、草木灰和无机胶黏剂,然后将搅拌完成的原料倒入到液压机的模具中,本发明涉及建筑装饰板技术领域。该隔音效果好的建筑装饰板的制造方法,通过隔音材料板保持密封效果好,隔音效果好,设置的隔音板采用的材料和制备方法保持隔音效果持久,使用寿命长,通过采用多个投料设备将各原料在相同的时间内按照重量份投入,之后快速混合均匀,再将混合料置于发泡设备中静默发泡即可,其操作简单。 【EN】The invention discloses a manufacturing method of a building decorative plate with good sound insulation effect, which specifically comprises the following steps: s1, preparation of a substrate: the invention relates to the technical field of building decorative plates, and discloses a building decorative plate which is prepared by the steps of respectively selecting glass fiber, diatomite and talcum powder in corresponding parts, pouring the selected glass fiber, diatomite and talcum powder into a stirrer, then adding a foaming agent, plant ash and an inorganic adhesive in corresponding parts into the stirrer, and then pouring the stirred raw materials into a mould of a hydraulic press. The manufacturing method of the building decorative board with good sound insulation effect keeps good sealing effect through the sound insulation material board, has good sound insulation effect, keeps the sound insulation effect lasting through the materials adopted by the arranged sound insulation board and the preparation method, has long service life, puts in all the raw materials according to parts by weight in the same time through adopting a plurality of feeding devices, then quickly mixes the raw materials uniformly, and puts the mixture into the foaming device for silent foaming, and has simple operation.
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申请号:201911002817.1 公开号:CN110882848A 主分类号:B03C3/41
摘要:【中文】本发明公开了一种电除尘器阴极装置,包括框架和放电极线,框架包括至少两个横向框架管和至少两个纵向框架管,在每个横向框架管上开设有多组等距间隔布置的通孔组,每组通孔组包括两个间隔布置的第一极线安装通孔和第二极线安装通孔;每个横向框架管上的第一极线安装通孔与其相邻的横向框架管上的第二极线安装通孔纵向一一对应贯通并形成一组能供单根放电极线连接的纵向通孔;每组纵向通孔中,同侧的第一极线安装通孔通过缓冲伸缩组件与放电极线的一端柔性连接,相对侧的第二极线安装通孔与放电极线的另一端刚性连接。采用本发明,既能解决刚性接触在振打清灰时因疲劳累积而造成阴极装置破坏问题,又能解决因热胀冷缩造成的极线变形或断裂的问题。 【EN】The invention discloses a cathode device of an electric dust collector, which comprises a frame and discharge electrode wires, wherein the frame comprises at least two transverse frame tubes and at least two longitudinal frame tubes, each transverse frame tube is provided with a plurality of groups of through holes arranged at equal intervals, and each group of through holes comprises two first electrode wire mounting through holes and two second electrode wire mounting through holes arranged at intervals; the first pole wire mounting through hole on each transverse frame tube is longitudinally communicated with the second pole wire mounting through holes on the adjacent transverse frame tubes one by one to form a group of longitudinal through holes for connecting single discharge pole wires; in each group of longitudinal through holes, the first pole wire mounting through hole on the same side is flexibly connected with one end of the discharge pole wire through the buffering telescopic assembly, and the second pole wire mounting through hole on the opposite side is rigidly connected with the other end of the discharge pole wire. The invention can solve the problem of cathode device damage caused by fatigue accumulation during vibration and dust removal in rigid contact, and can also solve the problem of polar line deformation or fracture caused by thermal expansion and cold contraction.
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