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申请号:202010153355.X 公开号:CN111264950A 主分类号:A41D27/20
申请人:【中文】西京学院【EN】XIJING University 申请日:2020.03.06 公开日:2020.06.12
摘要:【中文】本发明公开了一种梳尺制作口袋的工艺方法,其中包括裁剪好的前衣片及其衣片上的口袋位置绘制,梳子尺,口袋牙条,口袋布,袋盖面和里。设定口袋上边线和口袋下边线,且口袋上边线等于口袋下边线。所述口袋牙条是夹持在梳子尺上形成折叠式牙条并与衣片口袋上边线和口袋下边线固定缝合。所述口袋布是与制作好的口袋牙条在衣片反面进行缝合。所述袋盖是采取裁剪好的袋盖模板进行放缝头裁制袋盖面和里。所述口袋牙条制作出来的口袋为双嵌线型口袋,袋盖插入到双嵌线型口袋口内与口袋布缝合,构成男西服下口袋的造型特征。本发明采用梳尺来折叠口袋牙条,简化了口袋牙条的制作工序且提高了口袋双嵌线的制作效率,提高了袋盖整体制作效率。 【EN】The invention discloses a technological method for manufacturing pockets by a comb ruler, which comprises drawing the positions of cut front garment pieces and pockets on the garment pieces, drawing a comb ruler, pocket tooth bars, pocket cloth, pocket cover surfaces and pockets. And setting an upper edge line and a lower edge line of the pocket, wherein the upper edge line of the pocket is equal to the lower edge line of the pocket. The pocket tooth strips are clamped on the comb ruler to form folding tooth strips which are fixedly sewn with the upper side line of the pocket of the garment piece and the lower side line of the pocket. The pocket cloth is sewn with the manufactured pocket tooth strips on the reverse side of the garment piece. The bag cover is formed by cutting the cut bag cover template to sew the head of the bag cover and cut the surface and the inside of the bag cover. The pocket made of the pocket tooth strips is a double-inlaid-line-type pocket, and the pocket cover is inserted into the double-inlaid-line-type pocket and sewn with pocket cloth to form the modeling characteristic of the lower pocket of the man western-style clothes. The pocket tooth bar is folded by the comb ruler, so that the manufacturing process of the pocket tooth bar is simplified, the manufacturing efficiency of double insert lines of the pocket is improved, and the whole manufacturing efficiency of the pocket cover is improved.
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申请号:201911180394.2 公开号:CN110905765A 主分类号:F04B35/04
摘要:【中文】本发明公开了一种高效利用低品位热能并耦合燃气轮机的储能系统,包括低品位热能输入单元、压缩空气储能单元及燃气轮机高温利用单元。通过增加低品位热能输入单元,使用低品位热源加热储能压缩机组中的空气入口温度,提高压缩机的出口温度,将低品位热能转化为高品位热能利用,实现了低品位能量的高效利用。通过在现有压缩空气储能单元中耦合燃气轮机高温热能利用单元,通过换热提高了燃气轮机空气入口温度,并通过设置回热器充分利用燃气轮机的排气余热,减少了燃气轮机耗功,实现了燃气轮机的排气余热的梯级利用。此外,该发明通过释放储能过程的热量,使膨胀机排气接近常温,实现了零火用排放,进一步提高了系统的能量利用率。 【EN】The invention discloses an energy storage system for efficiently utilizing low-grade heat energy and coupling a gas turbine. By adding the low-grade heat energy input unit, the low-grade heat source is used for heating the temperature of the air inlet in the energy storage compressor unit, the outlet temperature of the compressor is increased, the low-grade heat energy is converted into high-grade heat energy for utilization, and the high-efficiency utilization of the low-grade energy is realized. The high-temperature heat energy utilization unit of the gas turbine is coupled in the existing compressed air energy storage unit, the air inlet temperature of the gas turbine is improved through heat exchange, the exhaust waste heat of the gas turbine is fully utilized through the heat regenerator, the power consumption of the gas turbine is reduced, and the cascade utilization of the exhaust waste heat of the gas turbine is realized. In addition, the invention enables the exhaust of the expansion machine to be close to normal temperature by releasing the heat in the energy storage process, realizes zero-fire emission and further improves the energy utilization rate of the system.
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申请号:201911338958.0 公开号:CN111017626A 主分类号:B65H37/04
摘要:【中文】本发明公开了一种贴膜装置以及贴膜方法,该贴膜装置包括工作台、承托组件、撑膜件和压膜组件,工作台上设置至少一个用于放置基板的贴膜工位,承托组件设置在工作台上,承托组件用于放置第一膜卷和第二膜卷,撑膜件以可分离的方式设置在工作台上且位于贴膜工位的外侧,用于支撑第二膜卷的第二膜,压膜组件以可移动的方式设置在工作台上,用于对第一膜卷的第一膜和第二膜进行压膜操作。通过在基板的保留区域贴合第一膜(例如UV膜),在基板的待切除区域贴合第一膜(例如普通胶膜),减少了第一膜(例如UV膜)的使用,避免了第一膜(例如UV膜)的浪费,降低了产品的制造成本。通过使用贴膜装置能够有效提高贴膜的效率,保证了基板的贴膜质量。 【EN】The invention discloses a film sticking device and a film sticking method, wherein the film sticking device comprises a workbench, a bearing component, a film supporting component and a film pressing component, at least one film sticking station for placing a substrate is arranged on the workbench, the bearing component is arranged on the workbench and used for placing a first film roll and a second film roll, the film supporting component is arranged on the workbench in a separable mode and positioned at the outer side of the film sticking station and used for supporting a second film of the second film roll, and the film pressing component is movably arranged on the workbench and used for performing film pressing operation on the first film and the second film of the first film roll. By attaching the first film (such as a UV film) to the reserved area of the substrate and attaching the first film (such as a common adhesive film) to the area to be cut of the substrate, the use of the first film (such as the UV film) is reduced, the waste of the first film (such as the UV film) is avoided, and the manufacturing cost of the product is reduced. The film sticking device can effectively improve the film sticking efficiency and ensure the film sticking quality of the substrate.
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申请号:201911149346.7 公开号:CN111020487A 主分类号:C23C14/24
摘要:【中文】本发明公开了一种取向可控的准一维结构材料的薄膜制备方法,该方法基于立式蒸发管式炉,具体包括以下步骤:(1)将蒸发源材料及待沉积的基底放置在所述立式蒸发管式炉中;(2)抽真空处理,使所述立式蒸发管式炉的真空度保持在预设真空度附近波动不超过±1Pa;(3)加热区加热处理,使蒸发源材料蒸发并沉积在基底上,形成薄膜;在制备过程中,通过控制蒸发工艺参数,使形成的准一维材料的薄膜取向可控。本发明通过对制备方法关键的工艺参数的改进,采用特定结构的立式蒸发管式炉进行沉积,实现准一维材料薄膜的沉积和取向控制,得到不依赖于基底的取向可控的半导体薄膜,与现有技术相比能够有效解决无法控制准一维材料取向的问题。 【EN】The invention discloses a method for preparing a film of a quasi-one-dimensional structure material with controllable orientation, which is based on a vertical evaporation tube furnace and specifically comprises the following steps: (1) placing an evaporation source material and a substrate to be deposited in the vertical evaporation tube furnace; (2) vacuumizing, wherein the fluctuation of the vacuum degree of the vertical evaporation tube furnace is kept near a preset vacuum degree and is not more than +/-1 Pa; (3) heating in a heating area to evaporate and deposit the evaporation source material on the substrate to form a film; in the preparation process, the film orientation of the formed quasi-one-dimensional material is controllable by controlling evaporation process parameters. According to the invention, through improvement of key process parameters of the preparation method, the deposition and orientation control of the quasi-one-dimensional material film are realized by adopting the vertical evaporation tube furnace with a specific structure for deposition, and the orientation-controllable semiconductor film independent of the substrate is obtained.
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申请号:201911338861.X 公开号:CN111037455A 主分类号:B24B37/005
摘要:【中文】本发明涉及电子机械技术领域,具体涉及一种晶圆研磨设备和方法。本发明主要解决现有晶圆研磨设备无法识别晶圆是否装反的技术问题。为此目的,本发明提供了一种晶圆研磨设备,晶圆研磨设备包括:研磨台,研磨台用于放置晶圆;摄像装置,摄像装置设置于研磨台的上方,用于拍摄研磨台上的晶圆图像;控制器,控制器与摄像装置电连接,用于接收摄像装置拍摄的晶圆图像;报警器,控制器与报警器电连接,控制器根据晶圆图像通过报警器发出提示信息。本发明的晶圆研磨设备能够通过摄像装置拍摄的晶圆图像识别晶圆的状态,并根据晶圆图像判断晶圆是否装反,当晶圆装反时,晶圆研磨设备能够通过报警器发出提示信息。 【EN】The invention relates to the technical field of electronic machinery, in particular to a wafer grinding device and a wafer grinding method. The invention mainly solves the technical problem that the existing wafer grinding equipment cannot identify whether the wafer is reversely mounted. To this end, the present invention provides a wafer polishing apparatus including: the grinding table is used for placing a wafer; the camera device is arranged above the grinding table and is used for shooting a wafer image on the grinding table; the controller is electrically connected with the camera device and used for receiving the wafer image shot by the camera device; and the controller is electrically connected with the alarm, and sends prompt information through the alarm according to the wafer image. The wafer grinding equipment can identify the state of the wafer through the wafer image shot by the camera device, judge whether the wafer is reversely mounted according to the wafer image, and send prompt information through the alarm when the wafer is reversely mounted.
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申请号:202010121226.2 公开号:CN111249235A 主分类号:A61K9/127
申请人:【中文】哈尔滨医科大学【EN】HARBIN MEDICAL University 申请日:2020.02.26 公开日:2020.06.09
摘要:【中文】本发明涉及一种载有正电聚合物/miR‑195复合物的脑靶向纳米脂质体及其制备方法与应用,属于靶向给药技术领域。为提高核酸治疗药物的稳定性和血脑屏障穿透性,本发明提供了一种载有正电聚合物/miR‑195复合物的脑靶向纳米脂质体,以含有糖基修饰聚乙二醇化磷脂和细胞穿透肽修饰聚乙二醇化磷脂的脂质体为药物载体包载正电聚合物/miR‑195复合物。本发明通过正电聚合物和药物载体提高了miR‑195的稳定性,通过糖基联合细胞穿透肽修饰的脑靶向纳米脂质体提高了药物靶向脑部并穿透细胞膜的能力,使所携带的药物高效的特异性靶向脑组织治疗阿尔茨海默症和血管性痴呆,尤其是由阿尔兹海默症和脑缺血引起的认知功能障碍。 【EN】The invention relates to a brain targeting nanoliposome loaded with a positive polymer/miR-195 compound, a preparation method and application thereof, and belongs to the technical field of targeting drug delivery. In order to improve the stability and blood brain barrier penetrability of nucleic acid therapeutic drugs, the invention provides a brain targeting nanoliposome loaded with a positive polymer/miR-195 compound, wherein the positive polymer/miR-195 compound is loaded by taking a liposome containing glycosyl modified polyethylene glycol phospholipid and cell penetrating peptide modified polyethylene glycol phospholipid as a drug carrier. The invention improves the stability of miR-195 through a positive polymer and a drug carrier, improves the ability of the drug to target the brain and penetrate cell membranes through the brain targeting nanoliposome modified by glycosyl combined cell penetrating peptide, and leads the carried drug to be efficiently and specifically targeted to the brain tissue to treat Alzheimer disease and vascular dementia, in particular to cognitive dysfunction caused by Alzheimer disease and cerebral ischemia.
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申请号:202010121215.4 公开号:CN111249234A 主分类号:A61K9/127
申请人:【中文】哈尔滨医科大学【EN】HARBIN MEDICAL University 申请日:2020.02.26 公开日:2020.06.09
摘要:【中文】本发明涉及一种糖基联合细胞穿透肽修饰的脑靶向纳米脂质体及其制备方法与应用,属于靶向给药技术领域。为解决糖基修饰的脂质体穿透细胞膜能力弱而使药物聚积在细胞外,难以发挥药效的问题,本发明提供了一种糖基联合细胞穿透肽修饰的脑靶向纳米脂质体,该脂质体包含一定摩尔比的EPC、CHO、糖基修饰聚乙二醇化磷脂和细胞穿透肽修饰聚乙二醇化磷脂。通过在纳米脂质体表面同时修饰糖基和细胞穿透肽,使其兼具主动靶向于脑部和穿透细胞膜的能力。将其用于药物载体,可使所携带的药物高效的特异性靶向脑组织并进入脑细胞发挥作用。经体外细胞试验和体内分布实验均证明本发明提供的脑靶向纳米脂质体可以顺利到达脑部并蓄积在脑细胞中发挥药效。 【EN】The invention relates to a brain-targeted nano-liposome modified by glycosyl combined with cell penetrating peptide, a preparation method and application thereof, belonging to the technical field of targeted drug delivery. In order to solve the problem that the glycosyl-modified liposome has weak capability of penetrating cell membranes so that a drug is accumulated outside cells and the drug effect is difficult to exert, the invention provides the brain-targeted nano-liposome modified by glycosyl combined with cell penetrating peptide, wherein the liposome comprises EPC, CHO, glycosyl-modified pegylated phospholipid and cell penetrating peptide-modified pegylated phospholipid in a certain molar ratio. The glycon and the cell penetrating peptide are simultaneously modified on the surface of the nanoliposome, so that the nanoliposome has the capacity of actively targeting to the brain and penetrating cell membranes. When the carrier is used for a drug carrier, the carried drug can be efficiently and specifically targeted to brain tissues and enter brain cells to play a role. In vitro cell tests and in vivo distribution tests prove that the brain-targeted nano liposome provided by the invention can smoothly reach the brain and accumulate in brain cells to play the drug effect.
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申请号:201811426824.X 公开号:CN111224045A 主分类号:H01M2/16
摘要:【中文】本发明公开了一种具有热关断功能的陶瓷复合隔膜及其制备方法,该陶瓷复合隔膜,包括聚烯烃微孔膜、涂覆于聚烯烃微孔膜单面或双面的厚度为2‑5μm的复合涂层,所述复合涂层由质量比为(1‑9):(9‑1)的高分子聚合物颗粒、无机陶瓷颗粒组成,所述高分子聚合物颗粒为聚乙烯、聚丙烯类及聚丙烯/聚乙烯共聚物、聚丙烯/橡胶共聚物、聚乙烯/橡胶共聚物中的至少一种,所述无机陶瓷颗粒为氧化铝、二氧化钛、二氧化硅、氧化镁、氧化锌、二氧化锆、硫酸钡、勃姆石中的至少一种。本发明制备的陶瓷复合隔膜可避免电池在高温下引发的危险,提高了电池的安全性。 【EN】The invention discloses a ceramic composite diaphragm with a thermal shutdown function and a preparation method thereof, wherein the ceramic composite diaphragm comprises a polyolefin microporous membrane and a composite coating which is coated on one side or two sides of the polyolefin microporous membrane and has the thickness of 2-5 mu m, and the composite coating is prepared from the following components in percentage by mass (1-9): (9-1) and inorganic ceramic particles, wherein the high-molecular polymer particles are at least one of polyethylene, polypropylene/polyethylene copolymer, polypropylene/rubber copolymer and polyethylene/rubber copolymer, and the inorganic ceramic particles are at least one of alumina, titania, silica, magnesia, zinc oxide, zirconia, barium sulfate and boehmite. The ceramic composite diaphragm prepared by the invention can avoid the danger of the battery caused at high temperature, and the safety of the battery is improved.
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申请号:202010126457.2 公开号:CN111219216A 主分类号:F01K7/02
摘要:【中文】本发明公开了一种可利用外界热源和冷源的热泵蓄能系统,该系统通过通过在高温蓄热单元中耦合低温蓄冷单元和压缩膨胀单元,使系统能够利用外界冷源(如LNG)和外界热源(如可再生能源和工业余热),通过在绝热压缩膨胀回路中增加等温压缩膨胀旁路,使系统储能时减少冷能储存、释能时增加热源处流量,使系统各处流量存在差别,进而提高系统的能量密度和能源利用率。储能时,通过部分旁路膨胀机侧,减少冷量的储存以便释能时冷源的利用,释能时,通过增加涡轮增加装置,形成内循环,提高热源处和膨胀机侧的流量,增大对热源热量的吸收和系统出功,在本系统中,由于热量的梯级利用,在实现系统利用外界热源的条件下可提高系统效率。 【EN】The invention discloses a heat pump energy storage system capable of utilizing an external heat source and a cold source, which can utilize the external cold source (such as LNG) and the external heat source (such as renewable energy and industrial waste heat) by coupling a low-temperature cold accumulation unit and a compression expansion unit in a high-temperature heat accumulation unit, and reduce the flow at the position of the heat source when the system stores energy and increase the flow at the position of the heat source when the system releases energy by adding an isothermal compression expansion bypass in an adiabatic compression expansion loop, so that the flow at each position of the system is different, and the energy density and the energy utilization rate of the system are further improved. During energy storage, the cold quantity is reduced through the side of a part of bypass expanders, so that the cold source is utilized during energy release, and during energy release, the turbine increasing device is added to form internal circulation, so that the flow of the heat source and the side of the expanders is improved, the heat absorption of the heat source and the work output of a system are increased, and in the system, the system efficiency can be improved under the condition that the system utilizes an external heat source due to the gradient utilization of heat.
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申请号:202010138510.0 公开号:CN111207969A 主分类号:G01N1/24
摘要:【中文】本发明的目的是一种超标气体自动留样负压法收集系统,包括留样收集箱、PLC控制器和真空泵,所述的留样收集箱通过水平安装板分为收集控制室和采样室,所述的水平安装板上分别设有电磁阀、负压显示开关和真空泵,所述的收集控制室内侧壁上的安装导轨处设有PLC控制模块,所述的电磁阀、负压显示开关和真空泵分别与PLC控制模块通过线性连接构成负压法收集系统,所述的采样室内设有真空收集箱,所述的真空收集箱内设有多组气体采样袋,减少人工操作频率,维护方便、简单、性能可靠,用户可根据不同的工艺环境对数据进行设置。 【EN】The invention aims to provide an automatic sample reserving and negative pressure method collecting system for overproof gas, which comprises a sample reserving collecting box, a PLC (programmable logic controller) and a vacuum pump, wherein the sample reserving collecting box is divided into a collecting control chamber and a sampling chamber through a horizontal mounting plate, the horizontal mounting plate is respectively provided with an electromagnetic valve, a negative pressure display switch and the vacuum pump, a PLC control module is arranged at a mounting guide rail on the inner side wall of the collecting control chamber, the electromagnetic valve, the negative pressure display switch and the vacuum pump are respectively connected with the PLC control module through linear connection to form the negative pressure method collecting system, the sampling chamber is internally provided with the vacuum collecting box, a plurality of groups of gas sampling bags are arranged in the vacuum collecting box, the manual operation frequency is reduced, the maintenance is convenient and simple, the performance is reliable, and a user can set.
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