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1:
[发明]
【中文】一种实现未成年人手机之管理与应用深度契合的方法 【EN】Method for realizing deep matching of management and application of mobile phone of minor
申请号:
201910830018.7
公开号:CN111083280A 主分类号:H04M1/725
申请人:
【中文】朱德全【EN】
Zhu Dequan
申请日:2019.09.04 公开日:2020.04.28
发明人:
【中文】朱德全【EN】
Zhu Dequan
摘要:【中文】本发明提出一种实现未成年人手机之管理与应用深度契合的方法,是一种使用互联网技术,以及手机应用技术,对未成年人手机进行有效监管,并为未成年人提供跟管理深度契合之手机应用的方法。本发明包括管理和应用两个层面;管理层面采用网络监管、状态评估、应用分析策略,实现对手机的动态、自动管理,并把视力相关手机应用分为内部应用和外部应用两类,实施不同的调用策略;应用层面采用协议运行、终止报告等策略。本发明对学龄前儿童和未建立学校管理人制度的中小学校学生的手机管理,采用家管模式;对已建立学校管理人制度的中小学校学生的手机管理,采用校管模式。 【EN】The invention provides a method for realizing deep fit of management and application of a mobile phone of a minor, which is a method for effectively supervising the mobile phone of the minor by using an internet technology and a mobile phone application technology and providing the mobile phone application matched with the management depth for the minor. The invention comprises two layers of management and application; the management layer adopts network supervision, state evaluation and application analysis strategies to realize dynamic and automatic management of the mobile phone, divides the vision-related mobile phone application into an internal application and an external application and implements different calling strategies; and the application layer adopts strategies such as protocol operation, report termination and the like. The invention adopts a home management mode for the mobile phone management of preschool children and students in middle and primary schools without establishing a school administrator system; a school administration mode is adopted for the mobile phone management of students in middle and primary schools with a school administrator system established.
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2:
[发明]
【中文】小型光伏分体接线盒 【EN】Small photovoltaic split junction box
申请号:
201911238519.2
公开号:CN110855238A 主分类号:H02S40/34
申请人:
【中文】江西晶科光伏材料有限公司【EN】JIANGXI JINKO PHOTOVOLTAIC MATERIALS CO., LTD.
申请日:2019.12.06 公开日:2020.02.28
发明人:
【中文】杨龙
;
周德全
;
祝菊芬【EN】Yang Long
;
Zhou Dequan
;
Zhu Jufen
摘要:【中文】本发明公开了一种小型光伏分体接线盒,所述小型光伏分体接线盒包括底盒和盒盖,该底盒具有上部开口的内腔,且该内腔中固定有左端子和右端子,该左端子上设有在前后方向上进行延伸的左汇流带穿孔,该右端子上设有在前后方向上进行延伸的右汇流带穿孔,且该左端子的右侧前部设有向右延伸的前连接板、该右端子的左侧后部设有向左延伸的后连接板,同时,有一二极管的2个极分别焊接在该前连接板和该后连接板上,该前连接板和后连接板之间具有间隙,该二极管的中心的向下投影落在该间隙内。本发明的优点是:体积小巧、散热较佳、品质较好。 【EN】The invention discloses a small photovoltaic split junction box which comprises a bottom box and a box cover, wherein the bottom box is provided with an inner cavity with an opening at the upper part, a left terminal and a right terminal are fixed in the inner cavity, a left bus belt perforation extending in the front-back direction is arranged on the left terminal, a right bus belt perforation extending in the front-back direction is arranged on the right terminal, a front connecting plate extending rightwards is arranged at the front part of the right side of the left terminal, a rear connecting plate extending leftwards is arranged at the rear part of the left side of the right terminal, 2 poles of a diode are respectively welded on the front connecting plate and the rear connecting plate, a gap is formed between the front connecting plate and the rear connecting plate, and the downward projection of the center of the diode falls into the gap. The invention has the advantages that: small volume, better heat dissipation and better quality.
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3:
[发明]
【中文】一种空气隙结构的消偏振分光装置 【EN】Depolarization beam splitting device with air gap structure
申请号:
201911319811.7
公开号:CN110927985A 主分类号:G02B27/28
申请人:
【中文】福建福特科光电股份有限公司【EN】Foctek Photonics, Inc.
申请日:2019.12.19 公开日:2020.03.27
发明人:
【中文】朱元强
;
郭少琴
;
魏德全【EN】Zhu Yuanqiang
;
Guo Shaoqin
;
Wei Dequan
摘要:【中文】本发明涉及一种空气隙结构的消偏振分光装置,包括第一直角棱镜和第二直角棱镜,所述的第一直角棱镜的第一分光斜面和第二直角棱镜的第二分光斜面平行相对设置且沿外周边缘相互胶合形成中间中空的空气空隙,第一直角棱镜和第二直角棱镜的棱边相互平行,且所述的第一直角棱镜和第二直角棱镜的折射率n=1.73;所述的第一分光斜面到第二分光斜面之间的距离为67‑136nm;第一直角棱镜和第二直角棱镜的直角面与分光斜面的角度在44‑46°之间。可实现极佳的宽波段消偏振效果:紫外、可见和红外,只要棱镜的材料能透过都可。 【EN】The invention relates to a depolarization beam splitting device with an air gap structure, which comprises a first right-angle prism and a second right-angle prism, wherein a first beam splitting inclined plane of the first right-angle prism and a second beam splitting inclined plane of the second right-angle prism are oppositely arranged in parallel and are mutually glued along the peripheral edge to form a hollow air gap in the middle, edges of the first right-angle prism and the second right-angle prism are mutually parallel, and the refractive index n of the first right-angle prism and the refractive index n of the second right-angle prism is 1.73; the distance between the first light splitting inclined plane and the second light splitting inclined plane is 67-136 nm; the right-angle surfaces of the first right-angle prism and the second right-angle prism form an angle of 44-46 degrees with the light splitting inclined surface. Can realize excellent broadband depolarization effects of ultraviolet, visible and infrared, as long as the material of the prism can transmit.
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4:
[发明]
【中文】一种大角度偏振分光棱镜 【EN】Large-angle polarization beam splitter prism
申请号:
202010010327.2
公开号:CN111025669A 主分类号:G02B27/28
申请人:
【中文】福建福特科光电股份有限公司【EN】FOCTEK PHOTONICS, Inc.
申请日:2020.01.06 公开日:2020.04.17
发明人:
【中文】朱元强
;
郭少琴
;
魏德全【EN】Zhu Yuanqiang
;
Guo Shaoqin
;
Wei Dequan
摘要:【中文】本发明涉及一种偏振分光装置,包括第一直角棱镜、第二直角棱镜及夹设于第一两直角棱镜分光斜面和第二直角棱镜分光斜面之间的偏振分光膜,第一直角棱镜和第二直角棱镜的直角面与分光斜面的夹角角度在44‑46°之间;所述的直角棱镜和直角棱镜的折射率n=1.8281‑1.8654;所述的所述偏振分光膜由23层膜层组成。 【EN】The invention relates to a polarization beam splitting device, which comprises a first right-angle prism, a second right-angle prism and a polarization beam splitting film clamped between the beam splitting inclined planes of the first two right-angle prisms and the second right-angle prism, wherein the included angle between the right-angle surfaces of the first right-angle prism and the second right-angle prism and the beam splitting inclined planes is 44-46 degrees; the refractive index n of the right-angle prism and the refractive index n of the right-angle prism are 1.8281-1.8654; the polarization beam splitting film consists of 23 film layers.
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5:
[发明]
【中文】一种使用电信号的工件到位检测系统 【EN】Workpiece in-place detection system using electric signals
申请号:
201911357507.1
公开号:CN111141324A 主分类号:G01D21/00
申请人:
【中文】北京工研精机股份有限公司【EN】BEIJING PRECISION MACHINERY & ENGINEERING RESEARCH Co.,Ltd.
申请日:2019.12.25 公开日:2020.05.12
发明人:
【中文】王得全
;
朱生根
;
康荣芝【EN】Wang Dequan
;
Zhu Shenggen
;
Kang Rongzhi
摘要:【中文】本发明公开了一种使用电信号的工件到位检测系统,包括V型块、定位元件和接线端子,所述定位元件安装在所述V型块的内侧两斜面上,并且所述定位元件与所述接线端子电性连接;所述定位元件为导体,并且所述定位元件与所述V型块之间绝缘;所述接线端子设置在所述定位元件的侧面。本发明提供了一种使用电信号的工件到位检测系统,利用金属导电特性检查工件与定位元件是否接触,定位元件接24V直流电,工件通过工作台、床身接地,当工件两端的定位轴外圆与定位元件完全接触时,继电器闭合,输出信号,系统判定工件与定位元件接触,工件到位;否则判定工件没有到位;本发明提高了装夹的精度,缩短了装夹时间,降低了劳动强度。 【EN】The invention discloses a workpiece in-place detection system using an electric signal, which comprises a V-shaped block, a positioning element and a wiring terminal, wherein the positioning element is arranged on two inclined planes on the inner side of the V-shaped block and is electrically connected with the wiring terminal; the positioning element is a conductor, and the positioning element is insulated from the V-shaped block; the connecting terminal is arranged on the side surface of the positioning element. The invention provides a workpiece in-place detection system using an electric signal, which utilizes the metal conductive property to check whether a workpiece is in contact with a positioning element, the positioning element is connected with 24V direct current, the workpiece is grounded through a workbench and a lathe bed, when the excircle of a positioning shaft at two ends of the workpiece is in complete contact with the positioning element, a relay is closed, a signal is output, the system judges that the workpiece is in place when the workpiece is in contact with the positioning element; otherwise, judging that the workpiece is not in place; the invention improves the clamping precision, shortens the clamping time and reduces the labor intensity.
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6:
[发明]
【中文】保偏膜、全反射保偏棱镜及实现全反射保偏的方法 【EN】Polarization maintaining film, total reflection polarization maintaining prism and method for realizing total reflection polarization maintaining
申请号:
202010244047.8
公开号:CN111239871A 主分类号:G02B5/04
申请人:
【中文】福建福特科光电股份有限公司【EN】FOCTEK PHOTONICS, Inc.
申请日:2020.03.31 公开日:2020.06.05
发明人:
【中文】朱元强
;
黄木旺
;
郭少琴
;
魏德全【EN】Zhu Yuanqiang
;
Huang Muwang
;
Guo Shaoqin
;
Wei Dequan
摘要:【中文】本发明涉及一种用于全反射棱镜的保偏膜,它由厚度为81.3‑85.4nm且折射率为1.46的SiO
2
膜层和厚度为73.4‑77.7nm且折射率为2.4的TiO
2
膜层堆叠而成,且所述SiO
2
膜层为贴近全反射棱镜的全反射面的里层,TiO
2
膜层为外层。该发明方案采用全反射棱镜的全反射原理来消除反射损耗,实现100%反射率的效果;该发明方案采用全反射棱镜的全反射原理来消除反射光的偏振相关损耗,使得P偏振光和S偏振光的反射率相等。 【EN】The invention relates to a polarization maintaining film for a total reflection prism, which is made of SiO with the thickness of 81.3-85.4nm and the refractive index of 1.46
2
A film layer and TiO with the thickness of 73.4-77.7nm and the refractive index of 2.4
2
Film layers are stacked, and the SiO
2
The film layer is an inner layer close to the total reflection surface of the total reflection prism, and TiO
2
The film layer is an outer layer. The scheme of the invention adopts the total reflection principle of the total reflection prism to eliminate the reflection loss and realize the effect of 100 percent of reflectivity; the scheme of the invention adopts the total reflection principle of the total reflection prism to eliminate the polarization correlation loss of the reflected light, so that the reflectivities of the P polarized light and the S polarized light are equal.
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7:
[发明]
【中文】一种增强超亲水涂层对聚合物表面附着力的方法 【EN】Method for enhancing adhesion of super-hydrophilic coating to polymer surface
申请号:
201910976741.6
公开号:CN111112027A 主分类号:B05D3/12
申请人:
【中文】昆明理工大学【EN】Kunming University of Science and Technology
申请日:2019.10.15 公开日:2020.05.08
发明人:
【中文】李文博
;
杨得全
;
沈韬
;
朱艳【EN】Li Wenbo
;
Yang Dequan
;
Shen Tao
;
Zhu Yan
摘要:【中文】本发明公开一种增强超亲水涂层对聚合物表面附着力的方法,属于聚合物表面改性领域。本发明所述方法以普通PET/PTFE(聚对苯二甲酸乙二醇酯/聚四氟乙烯)等聚合物薄片为材料,通过简单的机械打磨构造粗糙表面,并用超亲水涂料修饰,紫外处理后得到超亲水表面;本发明所述方法工艺过程简单,对设备要求低,增强了超亲水涂料对聚合物基底的附着力。 【EN】The invention discloses a method for enhancing the adhesion of a super-hydrophilic coating to the surface of a polymer, and belongs to the field of polymer surface modification. The method takes polymer sheets such as common PET/PTFE (polyethylene terephthalate/polytetrafluoroethylene) and the like as materials, a rough surface is constructed by simple mechanical polishing, the rough surface is modified by super-hydrophilic coating, and the super-hydrophilic surface is obtained after ultraviolet treatment; the method has simple process and low requirement on equipment, and enhances the adhesive force of the super-hydrophilic coating to the polymer substrate.
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8:
[发明]
【中文】一种高效播种施肥系统 【EN】High-efficient seeding and fertilizing system
申请号:
202010031429.2
公开号:CN111034426A 主分类号:A01C7/06
申请人:
【中文】安徽农业大学【EN】Anhui Agricultural University
申请日:2020.01.13 公开日:2020.04.21
发明人:
【中文】朱梅
;
顾佳林
;
李晓乐
;
储诚癸
;
潘中
;
谢传流
;
朱德泉【EN】Zhu Mei
;
Gu Jialin
;
Li Xiaole
;
Chu Chenggui
;
Pan Zhong
;
Xie Chuanliu
;
Zhu Dequan
摘要:【中文】本发明提供了农业机械技术领域内的一种高效播种施肥系统,包括机架,机架上连接有种箱,种箱的底部排布有若干落种口,每个落种口所在位置对应的种箱下侧分别固定连接有排种器,其特征在于,机架上连接有液肥箱,种箱在液肥箱的后方,种箱均可上下活动,种箱的下侧固定连接有若干与排种器一一对应的种箱重量传感器,种箱后方的机架上连接有高度可调的喷嘴,液肥箱上连接有出液管,出液管与喷嘴连接,液肥箱内的下部连接有浮子开关;本发明保证播种的均匀性,实现液肥的实施。 【EN】The invention provides a high-efficiency seeding and fertilizing system in the technical field of agricultural machinery, which comprises a rack, wherein a seed box is connected on the rack, a plurality of seed dropping ports are arranged at the bottom of the seed box, and the lower side of the seed box corresponding to the position of each seed dropping port is respectively and fixedly connected with a seed sowing device; the invention ensures the uniformity of seeding and realizes the implementation of liquid fertilizer.
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9:
[发明]
【中文】丁基橡胶的生产方法及装置 【EN】Production method and device of butyl rubber
申请号:
202010259405.2
公开号:CN111234077A 主分类号:C08F210/12
申请人:
【中文】浙江信汇新材料股份有限公司【EN】ZHEJIANG CENWAY NEW SYNTHETIC MATERIALS Co.,Ltd.
申请日:2020.04.03 公开日:2020.06.05
发明人:
【中文】任纪文
;
代俊明
;
朱德权
;
张晓玲
;
邱正茂【EN】Ren Jiwen
;
Jun Ming Dai
;
Zhu Dequan
;
Zhang Xiaoling
;
Qiu Zhengmao
摘要:【中文】本发明涉及一种丁基橡胶的高单浓、高转化率生产方法,属于橡胶生产技术领域。该方法包括以下步骤:a、催化剂和溶剂,从第一通路入聚合反应釜;b、异戊二烯单体、异丁烯单体和淤浆稳定剂,从第二通路入聚合反应釜;c、于聚合反应釜内聚合生成丁基橡胶悬浮液;d、使丁基橡胶胶液从聚合反应釜内流入脱气釜内,于此同时在悬浮液内通入蒸汽和热水;e、脱气釜处理;f、汽提釜处理;g、振动脱水筛处理,再经后续处理得到丁基橡胶。本发明采用了聚合稳定剂以及配套的工艺,使得本发明在生产过程中产生含丁基橡胶胶粒的氯甲烷淤浆,并且淤浆中的丁基橡胶胶粒含量达到40wt%以上;明显超过现有技术中的30wt%;从而使得本发明的方法具有淤浆浓度高,并且稳定的特点。 【EN】The invention relates to a high-single-concentration and high-conversion-rate production method of butyl rubber, belonging to the technical field of rubber production. The method comprises the following steps: a. catalyst and solvent enter the polymerization reaction kettle from the first passage; b. isoprene monomer, isobutene monomer and slurry stabilizer are fed into the polymerization reaction kettle from the second path; c. polymerizing in a polymerization reaction kettle to generate butyl rubber suspension; d. allowing the butyl rubber glue solution to flow into a degassing kettle from a polymerization reaction kettle, and introducing steam and hot water into the suspension liquid at the same time; e. degassing kettle treatment; f. treating in a stripping kettle; g. and (4) treating by using a vibrating dewatering screen, and then carrying out subsequent treatment to obtain the butyl rubber. The invention adopts the polymerization stabilizer and the matched process, so that the invention generates methyl chloride slurry containing butyl rubber particles in the production process, and the content of the butyl rubber particles in the slurry reaches more than 40 wt%; significantly more than 30wt% of the prior art; therefore, the method of the invention has the characteristics of high slurry concentration and stability.
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10:
[发明]
【中文】一种基于数据处理过程模型的全链路数据管控方法 【EN】Full link data control method based on data processing process model
申请号:
201911369700.7
公开号:CN111125152A 主分类号:G06F16/242
申请人:
【中文】积成电子股份有限公司【EN】INTEGRATED ELECTRONIC SYSTEMS LAB Co.,Ltd.
申请日:2019.12.26 公开日:2020.05.08
发明人:
【中文】张永庆
;
林国春
;
王建功
;
侯培彬
;
朱英刚
;
马娇玉
;
辛德全【EN】Zhang Yongqing
;
Lin Guochun
;
Wang Jiangong
;
Hou Peibin
;
Zhu Yinggang
;
Ma Jiaoyu
;
Xin Dequan
摘要:【中文】一种基于数据处理过程模型的全链路数据管控方法,该方法包括:构建数据处理过程描述模型与存储结构;采集数据处理过程模型信息;收集任务执行状态信息;对数据处理过程进行可视化处理;利用可视化界面对数据全链路进行管控。可以采用图形化的方式展示数据处理全过程的运行状态和数据质量,对数据处理全链路进行监控,并在出现问题时进行数据跟踪分析,定位问题根源。通过应用此种方法,可帮助数据运维人员有效提升数据管理效率,及时发现并解决问题。 【EN】A full link data management and control method based on a data processing process model comprises the following steps: constructing a data processing process description model and a storage structure; collecting data processing process model information; collecting task execution state information; carrying out visualization processing on the data processing process; and managing and controlling the data full link by using a visual interface. The running state and the data quality of the whole data processing process can be displayed in a graphical mode, the whole data processing link is monitored, data tracking analysis is carried out when problems occur, and the problem root is located. By applying the method, data operation and maintenance personnel can be helped to effectively improve the data management efficiency and find and solve problems in time.
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