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1:
[发明]
【中文】配色汽车远近光灯 【EN】Color matching automobile far and near light lamp
申请号:
201811408372.2
公开号:CN111219677A 主分类号:F21S41/141
申请人:
【中文】华域视觉科技(上海)有限公司【EN】HUAYU VISION TECHNOLOGY (SHANGHAI) Co.,Ltd.
申请日:2018.11.23 公开日:2020.06.02
发明人:
【中文】孙良柱
;
沈海军
;
严彬华【EN】Sun Liangzhu
;
Shen Haijun
;
Yan Binhua
摘要:【中文】本发明涉及汽车照明设备领域,公开了一种配色汽车远近光灯,包括灯体,非白色光源模块,透镜、内配光镜和外配光镜。所述灯体与所述外配光镜可拆卸地连接,形成灯的外壳,所述非白色光源模块、所述透镜、所述内配光镜在所述外壳的内部从所述灯体到所述外配光镜方向依次排列;所述非白色光源模块发出的有色光经过所述透镜、所述内配光镜和/或所述外配光镜组合形成白光,用于汽车远近光照明。本发明的配色汽车前照灯可减轻白光LED前照灯的老化和光衰问题,并为造型师提供了丰富的零部件外观色彩选择。 【EN】The invention relates to the field of automobile lighting equipment, and discloses a color matching automobile far and near light lamp which comprises a lamp body, a non-white light source module, a lens, an inner lens and an outer lens. The lamp body is detachably connected with the outer lens to form a lamp shell, and the non-white light source module, the lens and the inner lens are sequentially arranged in the shell from the lamp body to the outer lens; colored light emitted by the non-white light source module forms white light through the lens, the inner lens and/or the outer lens, and is used for automobile near-far illumination. The color matching automobile headlamp can reduce the aging and light attenuation problems of the white light LED headlamp and provides abundant part appearance color choices for a stylist.
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2:
[发明]
【中文】一种折弯基板支架总成及其制造方法 【EN】Bent substrate bracket assembly and manufacturing method thereof
申请号:
201911156485.2
公开号:CN111023039A 主分类号:F21S43/19
申请人:
【中文】华域视觉科技(上海)有限公司【EN】HUAYU VISION TECHNOLOGY (SHANGHAI) Co.,Ltd.
申请日:2019.11.22 公开日:2020.04.17
发明人:
【中文】沈海军
;
孙良柱
;
耿国庆
;
王耀宇【EN】
Shen Haijun
;
Sun Liangzhu
;
Geng Guoqing
;
Wang Yaoyu
摘要:【中文】本发明涉及车灯配件领域,公开一种折弯基板支架总成及其制造方法。所述折弯基板支架总成包括支架、基板和贴片,支架设置有容纳槽;基板设置于容纳槽内,基板上设置有折弯板;贴片与基板封装为一体式结构,贴片上设置有折弯片,折弯片贴附于折弯板上。所述折弯基板支架总成的制造方法用于制备上述的折弯基板支架总成。本发明在预设折弯位置进行激光切割减小厚度,减小弯折应力,保证基板在弯折的过程中不会有断裂风险,装配后基板与光导片没有接触,避免了因摩擦引起电路断路的风险,安装方便快捷,工序简单,易于制造,装配效率高,对装配空间要求低。 【EN】The invention relates to the field of car lamp accessories and discloses a bent substrate bracket assembly and a manufacturing method thereof. The bending substrate bracket assembly comprises a bracket, a substrate and a patch, wherein the bracket is provided with an accommodating groove; the substrate is arranged in the accommodating groove, and a bending plate is arranged on the substrate; the paster and the base plate are packaged into an integral structure, a bending piece is arranged on the paster, and the bending piece is attached to the bending plate. The manufacturing method of the bent substrate bracket assembly is used for preparing the bent substrate bracket assembly. The invention reduces the thickness and the bending stress by carrying out laser cutting at the preset bending position, ensures that the substrate does not have fracture risk in the bending process, ensures that the substrate does not contact with the light guide sheet after assembly, avoids the risk of circuit breaking caused by friction, has convenient and quick installation, simple working procedure, easy manufacture, high assembly efficiency and low requirement on assembly space.
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3:
[发明]
【中文】一种车灯辅助近光微调光结构 【EN】Auxiliary dipped beam fine-tuning light structure of car lamp
申请号:
202010138847.1
公开号:CN111174172A 主分类号:F21S41/657
申请人:
【中文】华域视觉科技(上海)有限公司【EN】HUAYU VISION TECHNOLOGY (SHANGHAI) Co.,Ltd.
申请日:2020.03.03 公开日:2020.05.19
发明人:
【中文】沈海军
;
孙良柱
;
耿国庆
;
王曜宇【EN】
Shen Haijun
;
Sun Liangzhu
;
Geng Guoqing
;
Wang Yaoyu
摘要:【中文】本发明涉及车灯领域,公开一种车灯辅助近光微调光结构。所述车灯辅助近光微调光结构包括光源、X向调节组件和Y向调节组件,光源设置于车灯的反射碗上,X向调节组件用于调节光源在反射碗上的X向位置,以调节光源的光线反射路径的X向偏移,Y向调节组件用于调节光源在反射碗上的Y向位置,以调节光源的光线反射路径的Y向偏移。本发明通过X向调节组件和Y向调节组件实现光源位置变化的调节,更有利于对齐近光截止线的位置,远近光反射镜和辅助近光反射镜可以做成一体结构,模具结构都比较简单,基本没有抽芯结构,在节省反射镜模具费的同时,也能够避免远近光反射镜和辅助近光反射镜之间缝隙过大,还能够避免调光干涉。 【EN】The invention relates to the field of vehicle lamps, and discloses a vehicle lamp auxiliary dipped beam fine-tuning light structure. The supplementary short-distance beam of car light fine setting light structure includes light source, X to adjusting part and Y to adjusting part, and the light source sets up on the reflection bowl of car light, and X is used for adjusting the X position of light source on the reflection bowl to adjusting part to the X of the light reflection route of light source is to the skew, and Y is used for adjusting the Y position of light source on the reflection bowl to adjusting part, with the Y of the light reflection route of adjusting light source to the skew. The invention realizes the adjustment of the position change of the light source through the X-direction adjusting assembly and the Y-direction adjusting assembly, is more beneficial to aligning the position of the cut-off line of the dipped beam, and the high and low beam reflectors and the auxiliary low beam reflector can be made into an integrated structure.
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4:
[发明]
【中文】一种搬运装置 【EN】Carrying device
申请号:
201811300073.7
公开号:CN111137680A 主分类号:B65G49/06
申请人:
【中文】合肥欣奕华智能机器有限公司【EN】HEFEI SINEVA INTELLIGENT MACHINE Co.,Ltd.
申请日:2018.11.02 公开日:2020.05.12
发明人:
【中文】张作军
;
沈洪星
;
熊海军
;
刘晏【EN】Zhang Zuojun
;
Shen Hongxing
;
Xiong Haijun
;
Liu Yan
摘要:【中文】本发明公开了一种搬运装置,以自动调整玻璃产品的位置,提高玻璃产品的定位精度,方便快捷的减小位置偏差,提高设备操作的精度。该搬运装置包括支架,以及安装于支架的支撑单元、校正单元、检测单元、承托单元和搬运单元,还包括控制器,其中:支撑单元用于支撑玻璃;校正单元与支撑单元连接,驱动支撑单元变换位置;检测单元用于监测玻璃的位置;承托单元包括托盘和托盘顶出组件,托盘顶出组件带动托盘上升或者下降;搬运单元包括搬运爪、搬运爪微调组件和搬运爪移动组件,搬运爪抓取托盘,通过搬运爪带动托盘来移动玻璃;控制器用于控制校正单元调整支撑单元的位置,控制搬运单元调整托盘的位置,使玻璃位于设定位置。 【EN】The invention discloses a carrying device, which is used for automatically adjusting the position of a glass product, improving the positioning precision of the glass product, conveniently and quickly reducing the position deviation and improving the precision of equipment operation. This handling device includes the support to and install in support element, correction unit, detecting element, bearing unit and the transport unit of support, still include the controller, wherein: the supporting unit is used for supporting the glass; the correcting unit is connected with the supporting unit and drives the supporting unit to change positions; the detection unit is used for monitoring the position of the glass; the bearing unit comprises a tray and a tray ejection assembly, and the tray ejection assembly drives the tray to ascend or descend; the carrying unit comprises a carrying claw, a carrying claw fine-tuning assembly and a carrying claw moving assembly, wherein the carrying claw grabs the tray and drives the tray to move the glass; the controller is used for controlling the correction unit to adjust the position of the supporting unit and controlling the conveying unit to adjust the position of the tray so that the glass is positioned at the set position.
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5:
[发明]
【中文】一种适用高氯饱和二氧化碳环境的石墨烯水性环氧复合涂层及其制备方法和应用 【EN】Graphene water-based epoxy composite coating suitable for high-chlorine saturated carbon dioxide environment and preparation method and application thereof
申请号:
201911385208.9
公开号:CN111138955A 主分类号:C09D163/02
申请人:
【中文】西安交通大学【EN】XI'AN JIAOTONG University
申请日:2019.12.28 公开日:2020.05.12
发明人:
【中文】胡海军
;
徐灏
;
栗月姣
;
申志远【EN】Hu Haijun
;
Xu Hao
;
Li Yuejiao
;
Shen Zhiyuan
摘要:【中文】本发明公开了一种适用高氯饱和二氧化碳环境的石墨烯水性环氧复合涂层及其制备方法和应用,属于防腐涂料领域。本发明通过将向水性环氧乳液中添加分散剂和防沉剂并混合均匀,并加入少层石墨烯、表面活性剂和水性环氧固化剂后得到复合浆料,并通过涂布、固化得到适用高氯饱和二氧化碳环境的石墨烯水性环氧复合涂层。该适用高氯饱和二氧化碳环境的石墨烯水性环氧复合涂层与纯水性环氧涂层相比,在高氯饱和二氧化碳环境中的防腐蚀性能、防水性能和稳定性均有显著提升。本发明公开的适用高氯饱和二氧化碳环境的石墨烯水性环氧复合涂层能够应用于高氯饱和二氧化碳水溶液环境中,作为油气田生产环境中的管道防护层,为基底金属提供可靠的长效防腐蚀保护。 【EN】The invention discloses a graphene water-based epoxy composite coating suitable for a high-chlorine saturated carbon dioxide environment, and a preparation method and application thereof, and belongs to the field of anticorrosive coatings. According to the invention, a dispersing agent and an anti-settling agent are added into the aqueous epoxy emulsion and uniformly mixed, and a few-layer graphene, a surfactant and an aqueous epoxy curing agent are added to obtain a composite slurry, and the graphene aqueous epoxy composite coating suitable for a high-chlorine saturated carbon dioxide environment is obtained through coating and curing. Compared with a pure water epoxy coating, the graphene water-based epoxy composite coating suitable for the high-chlorine saturated carbon dioxide environment has the advantages that the corrosion resistance, the waterproof performance and the stability in the high-chlorine saturated carbon dioxide environment are remarkably improved. The graphene water-based epoxy composite coating suitable for the high chlorine saturated carbon dioxide environment disclosed by the invention can be applied to the high chlorine saturated carbon dioxide aqueous solution environment, and can be used as a pipeline protection layer in the oil-gas field production environment, so as to provide reliable long-acting anticorrosion protection for base metal.
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6:
[发明]
【中文】一种高温合金锻造过程钢锭或钢坯的保温装置及其方法 【EN】Heat preservation device and method for steel ingot or steel billet in high-temperature alloy forging process
申请号:
201911388600.9
公开号:CN110947899A 主分类号:B21J17/02
申请人:
【中文】江苏集萃先进金属材料研究所有限公司【EN】JIANGSU JICUI ADVANCED METAL MATERIAL INSTITUTE Co.,Ltd.
申请日:2019.12.30 公开日:2020.04.03
发明人:
【中文】王资兴
;
沈海军
;
陈国胜
;
王建伟
;
张思允【EN】Wang Zixing
;
Shen Haijun
;
Chen Guosheng
;
Wang Jianwei
;
Zhang Siyun
摘要:【中文】本发明提供了一种高温合金锻造过程钢锭或钢坯的保温装置及其方法,包括右臂、左臂、底座、保温隔热毯和钢锭;所述右臂和左臂固定在底座上,均由数个关节组成,每个关节可在0‑180度角度内向内转动;所述底座上设置有凹槽,用于支撑保温隔热毯,并使钢锭可固定在底座上,所述支撑保温隔热毯上粘附玻璃粘贴剂,使保温隔热毯可粘贴在钢锭上。本发明采用自动包套装置和自粘贴保温绝热毯,实现钢锭在加热后快速自动包套,有效降低热量损失,满足棒材的细晶和超细晶组织要求,大幅度改善操作人员工作环境。 【EN】The invention provides a heat preservation device and a method for steel ingots or steel billets in a high-temperature alloy forging process, wherein the heat preservation device comprises a right arm, a left arm, a base, a heat preservation and insulation blanket and the steel ingots; the right arm and the left arm are fixed on the base and are composed of a plurality of joints, and each joint can rotate inwards at an angle of 0-180 degrees; the base is provided with a groove for supporting the heat-preservation and heat-insulation blanket and enabling the steel ingot to be fixed on the base, and the glass adhesive is adhered to the supporting heat-preservation and heat-insulation blanket so that the heat-preservation and heat-insulation blanket can be adhered to the steel ingot. The invention adopts the automatic sheathing device and the self-adhesive heat-insulating blanket to realize the quick and automatic sheathing of the steel ingot after heating, effectively reduce the heat loss, meet the requirements of fine-grained and ultra-fine-grained structures of bars and greatly improve the working environment of operators.
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7:
[发明]
【中文】一种激光3D打印用氧化物陶瓷粉末的制备方法 【EN】Preparation method of oxide ceramic powder for laser 3D printing
申请号:
201911393298.6
公开号:CN110981445A 主分类号:C04B35/10
申请人:
【中文】浙江省科创新材料研究院【EN】Zhejiang Institute of science and innovation new materials
申请日:2019.12.30 公开日:2020.04.10
发明人:
【中文】苏海军
;
刘海方
;
申仲琳
;
张军
;
刘林
;
郭敏
;
傅恒志【EN】Su Haijun
;
Liu Haifang
;
Shen Zhonglin
;
Zhang Jun
;
Liu Lin
;
Guo Min
;
Fu Hengzhi
摘要:【中文】本发明涉及3D打印材料领域,尤其涉及一种激光3D打印用氧化物陶瓷粉末的制备方法,本发明将陶瓷粉末和聚乙烯醇溶液在球磨介质中球磨,得到混合粉末;所述陶瓷粉末包括Al
2
O
3
粉末和Gd
2
O
3
粉末,所述Al
2
O
3
粉末和Gd
2
O
3
粉末的粒径独立地为2~5μm,所述球磨介质为无水乙醇;将所述混合粉末分散在水中,得到混合浆料;将所述混合浆料进行离心喷雾干燥,得到球形陶瓷粉末;将所述球形陶瓷粉末进行恒温烧结,得到氧化物陶瓷粉末。本发明通过上述方法将不规则的氧化物粉末改性为粒径为10~50μm的均匀氧化物陶瓷粉末,提高粉末的粒度均匀性和流动性。 【EN】The invention relates to the field of 3D printing materials, in particular to a preparation method of oxide ceramic powder for laser 3D printing, which comprises the steps of ball-milling ceramic powder and polyvinyl alcohol solution in a ball-milling medium to obtain mixed powder; the ceramic powder comprises Al
2
O
3
Powder and Gd
2
O
3
Powder of said Al
2
O
3
Powder and Gd
2
O
3
The particle size of the powder is independently 2-5 mu m, and the ball milling medium is absolute ethyl alcohol; dispersing the mixed powder in water to obtain mixed slurry; carrying out centrifugal spray drying on the mixed slurry to obtain spherical ceramic powder; sintering the spherical ceramic powder at constant temperature to obtain oxide ceramicsPorcelain powder. According to the invention, irregular oxide powder is modified into uniform oxide ceramic powder with the particle size of 10-50 μm by the method, so that the particle size uniformity and the flowability of the powder are improved.
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8:
[发明]
【中文】双酚S制备快速结晶PET工程塑料的方法 【EN】Method for preparing rapid crystallization PET engineering plastic from bisphenol S
申请号:
202010059660.2
公开号:CN111171303A 主分类号:C08G63/688
申请人:
【中文】浙江万凯新材料有限公司【EN】ZHEJIANG WANKAI NEW MATERIALS Co.,Ltd.
申请日:2020.01.19 公开日:2020.05.19
发明人:
【中文】罗丹
;
沈志刚
;
郑兵
;
肖海军
;
刘青松
;
朱炅
;
蒲新明【EN】Luo Dan
;
Shen Zhigang
;
Zheng Bing
;
Xiao Haijun
;
Liu Qingsong
;
Zhu Gui
;
Pu Xinming
摘要:【中文】本发明公开了一种双酚S制备快速结晶PET工程塑料的方法,其特征在于包括以下工艺流程:①双酚S/PET快速结晶粒子的制备;②双酚S/PET快速结晶粒子干燥、注塑制备双酚S/PET工程塑料;所述流程①双酚S/PET快速结晶粒子的制备包括以下步骤:第一阶段酯化反应:将对苯二甲酸、乙二醇、双酚S、催化剂、稳定剂加入到反应釜中,反应釜的温度为230~270℃,反应釜的压力为200~400KPa,反应时间为1~3h,酯化率达到90~99%时,酯化反应结束,泄除压力,排出酯化水。本发明制备的双酚S/PET快速结晶粒子能够快速结晶,从而能够有效缩短后期制品成型周期,成型过程中制品易脱模、不易变形。 【EN】the invention discloses a method for preparing rapidly crystallized PET engineering plastic from bisphenol S, which is characterized by comprising the following process flows of preparing rapidly crystallized bisphenol S/PET particles and preparing rapidly crystallized bisphenol S/PET engineering plastic from the rapidly crystallized bisphenol S/PET particles through drying and injection molding, wherein the first-stage esterification reaction comprises the steps of adding terephthalic acid, ethylene glycol, bisphenol S, a catalyst and a stabilizer into a reaction kettle, wherein the temperature of the reaction kettle is 230-270 ℃, the pressure of the reaction kettle is 200-400 KPa, the reaction time is 1-3 h, when the esterification rate reaches 90-99%, the esterification reaction is finished, the pressure is released, and esterified water is discharged.
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9:
[发明]
【中文】一种真空镀膜过程中薄膜厚度与蒸发速率测控方法 【EN】Method for measuring and controlling film thickness and evaporation rate in vacuum coating process
申请号:
202010056528.6
公开号:CN111155056A 主分类号:C23C14/24
申请人:
【中文】石家庄铁道大学【EN】SHIJIAZHUANG TIEDAO University
申请日:2020.01.18 公开日:2020.05.15
发明人:
【中文】牛江川
;
贺自名
;
李素娟
;
申永军
;
杨绍普
;
邢海军
;
王军【EN】Niu Jiangchuan
;
He Ziming
;
Li Sujuan
;
Shen Yongjun
;
Yang Shaopu
;
Xing Haijun
;
Wang Jun
摘要:【中文】本发明公开了一种真空镀膜过程中薄膜厚度与蒸发速率测控方法,搭建监控系统,并进行在线监控,所述在线监控具体步骤包括:(1)开启测控系统,输入RBF网络和PID参数初始数据,(2)打开真空镀膜设备,(3)利用晶体探头传感器测量附加质量负载的石英晶体振荡的谐振频率,通过谐振频率的改变来确定沉积薄膜质量,然后计算出蒸发速率v和实时膜厚的数值h;(4)蒸发速率发生偏移时,通过RBF神经网络自校正PID控制算法及时调整控制功率以维持蒸发速率的稳定。本发明可以实时监测薄膜厚度、蒸发速率并控制速率的稳定,工作人员通过观察镀膜过程中参数的数值显示与变化情况可以实时的了解工作状况以确保镀膜质量以及镀膜过程中的安全性。 【EN】The invention discloses a method for measuring and controlling the thickness and the evaporation rate of a film in a vacuum coating process, which is used for building a monitoring system and carrying out online monitoring, wherein the online monitoring comprises the following specific steps: (1) starting a measurement and control system, inputting RBF network and PID parameter initial data, (2) starting vacuum coating equipment, (3) measuring the resonance frequency of quartz crystal oscillation of an additional mass load by using a crystal probe sensor, determining the quality of a deposited film through the change of the resonance frequency, and then calculating the evaporation rate v and the real-time film thickness value h; (4) when the evaporation rate deviates, the control power is timely adjusted through a RBF neural network self-correction PID control algorithm to maintain the stability of the evaporation rate. The invention can monitor the thickness and the evaporation rate of the film in real time and control the stability of the rate, and workers can know the working condition in real time by observing the numerical value display and the change condition of the parameters in the film coating process so as to ensure the film coating quality and the safety in the film coating process.
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10:
[发明]
【中文】节能抗紫外聚对苯二甲酸丙二醇酯的制备方法 【EN】Preparation method of energy-saving uvioresistant polytrimethylene terephthalate
申请号:
202010061931.8
公开号:CN111154079A 主分类号:C08G63/183
申请人:
【中文】浙江万凯新材料有限公司【EN】ZHEJIANG WANKAI NEW MATERIALS Co.,Ltd.
申请日:2020.01.19 公开日:2020.05.15
发明人:
【中文】蒲新明
;
肖海军
;
沈志刚
;
华云
;
郑兵
;
章延举
;
刘青松【EN】Pu Xinming
;
Xiao Haijun
;
Shen Zhigang
;
Hua Yun
;
Zheng Bing
;
Zhang Yanju
;
Liu Qingsong
摘要:【中文】本发明公开了一种节能抗紫外聚对苯二甲酸丙二醇酯的制备方法,其特征在于包括如下步骤:第一阶段酯化反应:将精对苯二甲酸、丙二醇、含有稳定剂和负载有金属离子的钛系催化剂的助剂、选自纳米氮化钛、纳米氧化钛、纳米钛酸锌中的至少一种的钛化合物加入聚合釜中;以惰性气体置换聚合釜内空气,控制聚合釜内压力在0.1~0.4MPa,搅拌器的转速在50~120r/min,控制聚合釜内温度120~230℃,通过出水率计算酯化效率,当对苯二甲酸的转化率达到90~100%时酯化反应结束。本发明制备的聚对苯二甲酸丙二醇酯具有节能、抗紫外的优异性能,同时具有不易降解、色泽性好的优势。 【EN】The invention discloses a preparation method of energy-saving uvioresistant polytrimethylene terephthalate, which is characterized by comprising the following steps: first-stage esterification: adding purified terephthalic acid, propylene glycol, an assistant containing a stabilizer and a titanium catalyst loaded with metal ions, and at least one titanium compound selected from nano titanium nitride, nano titanium oxide and nano zinc titanate into a polymerization kettle; replacing air in the polymerization kettle with inert gas, controlling the pressure in the polymerization kettle to be 0.1-0.4 MPa, controlling the rotating speed of a stirrer to be 50-120 r/min, controlling the temperature in the polymerization kettle to be 120-230 ℃, calculating the esterification efficiency through the water yield, and finishing the esterification reaction when the conversion rate of the terephthalic acid reaches 90-100%. The polytrimethylene terephthalate prepared by the invention has excellent performances of energy conservation and ultraviolet resistance, and has the advantages of difficult degradation and good color and luster.
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