当前查询到26条专利与查询词 "Li Bingsheng"相关,搜索用时0.2186687秒!排序方式:
发明专利:7实用新型: 19外观设计: 0
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申请号:202010077287.3 公开号:CN111197262A 主分类号:D06L1/14
摘要:【中文】本发明公开了一种阻燃保暖面料的制备方法及用其制得的阻燃保暖复合网布,属于面料技术领域。本发明的阻燃保暖面料的制备方法包括如下步骤:配布、退浆、一次洗涤、染色、一次烘干、浸轧、二次烘干、检测和定型。本发明的制备方法精巧,可生产出色牢度高,具有优异的阻燃效果的面料。 【EN】The invention discloses a preparation method of a flame-retardant warm-keeping fabric and a flame-retardant warm-keeping composite mesh fabric prepared by using the same, and belongs to the technical field of fabrics. The preparation method of the flame-retardant warm-keeping fabric comprises the following steps: preparing cloth, desizing, washing for the first time, dyeing, drying for the first time, padding, drying for the second time, detecting and shaping. The preparation method is exquisite, and the fabric with excellent fastness and excellent flame retardant effect can be produced.
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申请号:202010077286.9 公开号:CN111270508A 主分类号:D06L1/01
摘要:【中文】本发明公开了一种基于石墨烯的透气保温面料的制备方法,属于面料技术领域。本发明的基于石墨烯的透气保温面料的制备方法,包括如下步骤:配布、退浆、浸轧、一次烘干、染色、二次烘干,定型,其中,所述浸轧液包括按照质量份数计的如下组份:石墨烯粉末15~20份,珍珠粉4~7份,液态熔盐3~5份,石蜡1~3份,硬脂酸正丁酯1~3份,分散剂4~6份,聚二甲基硅氧烷1~2份。本发明制得的基于石墨烯的透气保温面料柔软度高,和人体接触时舒适度高,具有优异的保温效果。 【EN】The invention discloses a preparation method of a graphene-based breathable heat-insulation fabric, and belongs to the technical field of fabrics. The preparation method of the graphene-based breathable heat-preservation fabric comprises the following steps: preparing cloth, desizing, padding, primary drying, dyeing, secondary drying and sizing, wherein the padding liquid comprises the following components in parts by mass: 15-20 parts of graphene powder, 4-7 parts of pearl powder, 3-5 parts of liquid molten salt, 1-3 parts of paraffin, 1-3 parts of n-butyl stearate, 4-6 parts of a dispersing agent and 1-2 parts of polydimethylsiloxane. The graphene-based breathable heat-insulation fabric disclosed by the invention is high in softness, high in comfort when in contact with a human body, and excellent in heat-insulation effect.
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申请号:201811231209.3 公开号:CN111072057A 主分类号:C01G15/00
申请人:【中文】哈尔滨工业大学【EN】HARBIN INSTITUTE OF TECHNOLOGY 申请日:2018.10.22 公开日:2020.04.28
摘要:【中文】本发明公开了一种氧化镓微米线的制备方法,涉及化学材料制备技术领域,包括:一、将氧化镓和碳粉混合,研磨,得到混合粉末;二、取步骤一得到的混合粉末放入刚玉舟中,将衬底置于刚玉舟正上方,然后放入洁净的石英管中,将石英管放入水平管式炉的生长区;向石英管中通入保护气,在常压下以恒定的升温速率加热升温到反应温度;保温一定时间,然后自然冷却至室温;在衬底上得到氧化镓微米线。本发明通过化学气相沉积的方法生长超长氧化镓微米线。氧化镓微米线形貌均一,长度可达1cm,可在肉眼下进行手工操作,方便了电极的引入和器件的制备。 【EN】The invention discloses a preparation method of gallium oxide microwire, which relates to the technical field of chemical material preparation and comprises the following steps: firstly, mixing gallium oxide and carbon powder, and grinding to obtain mixed powder; secondly, putting the mixed powder obtained in the first step into a corundum boat, putting the substrate right above the corundum boat, then putting the substrate into a clean quartz tube, and putting the quartz tube into a growth area of a horizontal tube furnace; introducing protective gas into the quartz tube, and heating to the reaction temperature at a constant heating rate under normal pressure; preserving the heat for a certain time, and then naturally cooling to room temperature; and obtaining the gallium oxide microwire on the substrate. The invention grows the ultra-long gallium oxide micron line by a chemical vapor deposition method. The gallium oxide microwire has uniform appearance and length up to 1cm, can be manually operated under naked eyes, and is convenient for introducing electrodes and preparing devices.
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申请号:201811267838.1 公开号:CN111097543A 主分类号:B01J31/38
申请人:【中文】哈尔滨工业大学【EN】HARBIN INSTITUTE OF TECHNOLOGY 申请日:2018.10.29 公开日:2020.05.05
摘要:【中文】一种利用金纳米棒局域表面等离激元增强水合二氧化钛可见光光催化性能的复合材料的制备,属于光催化纳米材料制备领域。本发明通过水热反应的方法制备水合二氧化钛,并用种子生长法制备的金纳米棒,将水合二氧化钛浸泡于一定浓度的3‑巯基丙酸水溶液中过夜,然后将离心过的金纳米棒胶体沉淀加入到水合二氧化钛乳浊液中混合,最终即得到金纳米棒表面修饰的水合二氧化钛。本发明能够有效地增强水合二氧化钛在可见光波段的催化效果。本发明制备方法简单,得到的产物具备极佳的可见光催化活性,在光催化,光解水等领域能够展现出广阔的应用前景。 【EN】A preparation method of a composite material for enhancing the photocatalytic performance of hydrated titanium dioxide visible light by utilizing the local surface plasmon of a gold nanorod belongs to the field of preparation of photocatalytic nano materials. The method comprises the steps of preparing hydrated titanium dioxide by a hydrothermal reaction method, soaking the hydrated titanium dioxide in a 3-mercaptopropionic acid aqueous solution with a certain concentration overnight by using a gold nanorod prepared by a seed growth method, adding a centrifuged gold nanorod colloid precipitate into a hydrated titanium dioxide emulsion, and mixing to obtain the hydrated titanium dioxide with the surface modified by the gold nanorod. The invention can effectively enhance the catalytic effect of the hydrated titanium dioxide in the visible light wave band. The preparation method is simple, and the obtained product has excellent visible light catalytic activity and can show wide application prospects in the fields of photocatalysis, water photolysis and the like.
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申请号:201911148857.7 公开号:CN110863562A 主分类号:E04B1/00
摘要:【中文】本发明公开了一种可周转定型化钢结构施工电梯基础,适用于市面上主流厂家通用型施工电梯的基础。所述钢结构主架体为主梁1和次梁2连接成基础主架体,其余部件通过螺栓连接成基础整体,基础与基础下方的钢筋混凝土结构顶板通过螺栓与固定部7固定。根据施工电梯使用说明书的各项参数,通过受力分析对比及三维建模深化设计形成可周转定型化钢结构电梯基础施工图,由施工电梯厂家进行加工制作。施工电梯基础可现场安装,一次成型,施工简单快捷,通用性强,可周转使用,有效节约工期,节约成本。 【EN】The invention discloses a construction elevator foundation with a rotatable and stereotyped steel structure, which is suitable for a universal construction elevator foundation of mainstream manufacturers in the market. The steel structure body frame body connects into basic body frame body for girder 1 and secondary beam 2, and all the other parts pass through the bolted connection and become the basis whole, and the reinforced concrete structure roof of basis and basis below passes through the bolt and fixes with fixed part 7. According to various parameters of a construction elevator use specification, a recyclable and finalized steel structure elevator foundation construction drawing is formed through stress analysis comparison and three-dimensional modeling deepening design and is processed and manufactured by a construction elevator manufacturer. The construction elevator foundation can be installed on site, is formed in one step, is simple and quick to construct, high in universality and capable of being used in a circulating mode, effectively saves the construction period and saves the cost.
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申请号:201910304273.8 公开号:CN111101205A 主分类号:D01B1/08
摘要:【中文】本发明公开了一种轧花机及在线控制方法,所提供轧花机将前箱和中箱作为一个部分,将后箱作为一个部分,两个部分之间通过转轴连接,从而可以使前箱和中箱的机架部分基于转轴可以调整其转角,转角的变化会产生工作点B、伸出量A和压力角C的变化,从而能够据此调整皮棉质量。而用于调整构成前箱和中箱基体部分的第一机架转角调整机构属于可由控制装置直接控制的转动量,实现起来也非常容易。 【EN】The invention discloses an cotton gin and an online control method, the cotton gin takes a front box and a middle box as one part, takes a rear box as one part, and the two parts are connected through a rotating shaft, so that the rotating angles of the frame parts of the front box and the middle box can be adjusted based on the rotating shaft, and the change of the rotating angles can generate the changes of a working point B, an extension A and a pressure angle C, so that the quality of ginned cotton can be adjusted. The first frame corner adjusting mechanism for adjusting the base parts of the front box and the middle box belongs to the rotation quantity which can be directly controlled by the control device, and is very easy to realize.
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申请号:201911011983.8 公开号:CN111090177A 主分类号:G02B27/42
申请人:【中文】奇景光电股份有限公司【EN】Himax Technologies Ltd. 申请日:2019.10.23 公开日:2020.05.01
摘要:【中文】本发明公开一种绕射光学元件模块,其包括透明基板、第一电极、第二电极、第一感测线、感测层、绕射光学元件层以及绝缘层。第一电极设置在透明基板上,且第二电极设置在透明基板上。第一感测线分布在透明基板上并与第一电极电连接。感测层设置在透明基板上并与第二电极电连接。第一感测线与感测层绝缘,以在第一感测线与感测层之间形成电容。绕射光学元件层设置在透明基板上。绝缘层覆盖第一感测线以及感测层。绝缘层具有分别暴露出第一电极与第二电极的第一开口与第二开口。 【EN】The invention discloses a diffraction optical element module which comprises a transparent substrate, a first electrode, a second electrode, a first sensing line, a sensing layer, a diffraction optical element layer and an insulating layer. The first electrode is disposed on the transparent substrate, and the second electrode is disposed on the transparent substrate. The first sensing lines are distributed on the transparent substrate and electrically connected with the first electrodes. The sensing layer is arranged on the transparent substrate and is electrically connected with the second electrode. The first sensing line is insulated from the sensing layer to form a capacitance between the first sensing line and the sensing layer. The diffraction optical element layer is disposed on the transparent substrate. The insulating layer covers the first sensing line and the sensing layer. The insulating layer has a first opening and a second opening respectively exposing the first electrode and the second electrode.
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