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1:
[发明]
【中文】一种固定支架和具有其的车辆试验系统 【EN】Fixed bolster and vehicle test system who has it
申请号:
201911357029.4
公开号:CN110884440A 主分类号:B60R11/02
申请人:
【中文】北京汽车集团越野车有限公司【EN】Beijing automobile group cross-country car Co., Ltd.
申请日:2019.12.25 公开日:2020.03.17
发明人:
【中文】王宝国
;
张忠辉【EN】Wang Baoguo
;
Zhang Zhonghui
摘要:【中文】本发明提供一种固定支架和具有其的车辆试验系统,所述固定支架,包括:至少一个吸盘(7),用于固定所述固定支架;和通过锁紧螺栓(6)与所述吸盘(7)连接的T形支架(5);以及通过固定销轴(4)与所述T形支架(5)连接的壳体(3),所述壳体(3)内的空腔用于容纳物体。 【EN】The invention provides a fixed bracket and a vehicle test system with the same, wherein the fixed bracket comprises: at least one suction cup (7) for fixing the fixing support; and a T-shaped bracket (5) connected with the sucker (7) through a locking bolt (6); and the shell (3) is connected with the T-shaped support (5) through a fixed pin shaft (4), and a cavity in the shell (3) is used for accommodating an object.
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2:
[发明]
【中文】磁力笔 【EN】Magnetic pen
申请号:
201811365717.0
公开号:CN111195867A 主分类号:B25B11/00
申请人:
【中文】昆山联滔电子有限公司【EN】Lanto Electronic Ltd.
申请日:2018.11.16 公开日:2020.05.26
发明人:
【中文】张轲
;
蔡宝国【EN】Zhang Ke
;
Cai Baoguo
摘要:【中文】本发明涉及电子产品制造技术领域,提供了一种磁力笔,包括具有中空结构的外壳和笔头,以及设置于所述笔头头端的磁力件,所述磁力笔还包括行程调节机构,所述行程调节机构包括:按键杆,包括分别设置于所述按键杆两头端的按键部和第一连接部,以及连接所述按键部和第一连接部的推杆,所述按键杆套设于所述外壳内;顶出块,包括分别设置于所述顶出块两头端的顶出部和第二连接部,所述顶出部适配于所述笔头头端内,所述第一连接部与所述第二连接部可拆卸连接;通过转动所述按键部调节所述第一连接部和第二连接部的可拆卸连接处的长度,以调整按压所述按键部推动所述顶出块从所述笔头头端伸出的行程范围。借此,本发明提供的磁力笔可针对不同吸磁零件设定不同行程,提高了磁力笔的通用性。 【EN】The invention relates to the technical field of electronic product manufacturing, and provides a magnetic pen, which comprises a shell with a hollow structure, a pen point and a magnetic part arranged at the head end of the pen point, and further comprises a stroke adjusting mechanism, wherein the stroke adjusting mechanism comprises: the key rod comprises a key part and a first connecting part which are respectively arranged at two head ends of the key rod, and a push rod which is connected with the key part and the first connecting part, and the key rod is sleeved in the shell; the ejection block comprises an ejection part and a second connecting part which are respectively arranged at the two head ends of the ejection block, the ejection part is adapted in the head end of the pen point, and the first connecting part is detachably connected with the second connecting part; the length of the detachable connection part of the first connection part and the second connection part is adjusted by rotating the key part, so that the stroke range of the ejection block extending out of the head end of the pen point is adjusted by pressing the key part to push the ejection block. Therefore, the magnetic pen provided by the invention can set different strokes aiming at different magnetic absorption parts, and the universality of the magnetic pen is improved.
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3:
[发明]
【中文】一种红外弱小目标快速检测方法 【EN】Infrared weak and small target rapid detection method
申请号:
201910998142.4
公开号:CN110929574A 主分类号:G06K9/00
申请人:
【中文】中国电子科技集团公司第二十八研究所【EN】THE 28TH RESEARCH INSTITUTE OF CHINA ELECTRONICS TECHNOLOGY GROUP Corp.
申请日:2019.10.21 公开日:2020.03.27
发明人:
【中文】姚瑶
;
陆保国
;
张广庆【EN】Yao Yao
;
Lu Baoguo
;
Zhang Guangqing
摘要:【中文】本发明公开了一种红外弱小目标快速检测方法,包括:获取包含红外弱小目标的三通道彩色RGB图像,转换为灰度图像后进行分形特征提取,得到分形系数显著图;将灰度图像进行快速傅里叶变换,得到相位谱和幅度谱;将幅度谱进行滑动窗口均值滤波后进行显著性谱残差操作得到残差图;将残差图与相位谱进行傅里叶反变换,得到谱残差显著图;将红外谱残差显著图与分形系数显著图进行归一化加权融合得到融合显著图,对融合显著图进行二值化,最终得到红外弱小目标显著图。采用前述方法可有效提升目标检测的正确率,并能避免噪声信息的误检,提升检测速度,从而实现红外弱小目标检测。 【EN】The invention discloses a method for quickly detecting infrared small and weak targets, which comprises the following steps: acquiring a three-channel color RGB image containing an infrared weak target, converting the three-channel color RGB image into a gray image, and then extracting fractal characteristics to obtain a fractal coefficient saliency map; performing fast Fourier transform on the gray level image to obtain a phase spectrum and a magnitude spectrum; carrying out sliding window mean filtering on the amplitude spectrum, and then carrying out significance spectrum residual error operation to obtain a residual error map; carrying out Fourier inversion on the residual image and the phase spectrum to obtain a spectrum residual obvious image; and carrying out normalization weighting fusion on the infrared spectrum residual significant map and the fractal coefficient significant map to obtain a fusion significant map, and carrying out binarization on the fusion significant map to finally obtain the infrared small target significant map. By adopting the method, the accuracy of target detection can be effectively improved, the false detection of noise information can be avoided, and the detection speed is improved, so that the infrared weak and small target detection is realized.
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4:
[发明]
【中文】一种液态脱脂乳及其制备方法 【EN】Liquid skim milk and preparation method thereof
申请号:
201911007564.7
公开号:CN110897008A 主分类号:A23C9/152
申请人:
【中文】北京工商大学【EN】Beijing Technology and Business University
申请日:2019.10.22 公开日:2020.03.24
发明人:
【中文】张晓梅
;
艾娜丝
;
孙宝国【EN】Zhang Xiaomei
;
Ai Nasi
;
Sun Baoguo
摘要:【中文】本发明公开了一种液态脱脂乳及其制备方法,其步骤包括:1)将脂肪酶、醇类物质加入全脂乳中,进行酶解反应,得到酶解牛乳脂肪香基;2)取适量步骤1)中的酶解牛乳脂肪香基,离心分离得上层脂状物;3)将步骤2)中的上层脂状物加入脱脂乳中,经搅拌或均质,得到本发明的液态脱脂乳。本发明的液态脱脂乳及其制备方法选择全脂乳作为酶解底物,进行了全脂乳相关代表性成分的保存、富集并转移至脱脂乳中,使获得的脱脂乳产品在满足脱脂的条件下,同时具有良好的风味感官品质与结构状态品质。 【EN】The invention discloses a liquid skim milk and a preparation method thereof, and the method comprises the following steps: 1) adding lipase and alcohol substances into whole milk, and performing enzymolysis reaction to obtain enzymolysis milk fat essence; 2) taking a proper amount of the enzymolysis cow milk fat flavor base in the step 1), and performing centrifugal separation to obtain an upper-layer grease-like substance; 3) adding the upper-layer lipid substance in the step 2) into the skim milk, and stirring or homogenizing to obtain the liquid skim milk. The liquid skim milk and the preparation method thereof select the whole milk as an enzymolysis substrate, store, enrich and transfer the related representative components of the whole milk into the skim milk, so that the obtained skim milk product has good flavor sensory quality and structural state quality under the condition of meeting the condition of degreasing.
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5:
[发明]
【中文】一种钐钴永磁材料的制备方法 【EN】Preparation method of samarium cobalt permanent magnet material
申请号:
201911146324.5
公开号:CN110957089A 主分类号:H01F1/055
申请人:
【中文】杭州科德磁业有限公司【EN】HANGZHOU KEDE MAGNETIC INDUSTRY Co.,Ltd.
申请日:2019.11.21 公开日:2020.04.03
发明人:
【中文】向俊尤
;
张保国
;
付勇兵【EN】Xiang Junyou
;
Zhang Baoguo
;
Fu Yong
摘要:【中文】本发明公开了一种钐钴永磁材料的制备方法,本发明按照Sm(Co
1‑u‑v‑w
Cu
u
Fe
v
Zr
w
)
z
进行配料,其中u=0.08‑0.09,v=0.08‑0.09,w=0.02‑0.03和z=7.1‑7.2;将配得的原材料按照Fe‑Zr‑Fe‑Co‑Cu‑Sm的顺序依次置入真空感应熔炼炉进行高温熔炼,得到成分均匀的钐钴合金锭将合金锭经过粗碎、中碎和气流磨逐级破碎,最终得到混后粒度SDM在3.2‑3.8μm范围内的粉体;将粉体采用垂直压制方式进行压型,后再经过等静压得到压坯;将压坯置入真空烧结炉进行烧结、固溶和时效。本发明可以在不添加微量元素(Mn和Er等)的前提下通过金属钴(Co)、金属钐(Sm)、金属铁(Fe)、金属铜(Cu)和金属锆(Zr)五种金属的组合以及过程的工艺控制解决2:17型钐钴永磁500℃下耐高温且室温高矫顽力的问题。 【EN】The invention discloses a preparation method of a samarium cobalt permanent magnet material, which is based on Sm (Co)
1‑u‑v‑w
Cu
u
Fe
v
Zr
w
)
z
Compounding, wherein u is 0.08-0.09, v is 0.08-0.09, w is 0.02-0.03 and z is 7.1-7.2; sequentially putting the prepared raw materials into a vacuum induction melting furnace according to the sequence of Fe-Zr-Fe-Co-Cu-Sm for high-temperature melting to obtain samarium cobalt alloy ingots with uniform components, and crushing the alloy ingots by coarse crushing, medium crushing and jet milling to finally obtain powder with the mixed particle size SDM within the range of 3.2-3.8 mu m; pressing the powder in a vertical pressing mode, and then performing isostatic pressing to obtain a pressed blank; and putting the pressed compact into a vacuum sintering furnace for sintering, solid solution and aging. The invention can solve the problem 2 by the combination of five metals of metal cobalt (Co), metal samarium (Sm), metal iron (Fe), metal copper (Cu) and metal zirconium (Zr) and the process control of the process on the premise of not adding trace elements (Mn, Er and the like)17 type samarium cobalt permanent magnet resists high temperature at 500 ℃ and has high coercivity at room temperature.
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6:
[发明]
【中文】一种单壁碳纳米管复合材料导电神经套管及其制备方法与应用 【EN】Single-walled carbon nanotube composite material conductive nerve sleeve and preparation method and application thereof
申请号:
201911315612.9
公开号:CN111001036A 主分类号:A61L27/08
申请人:
【中文】北京大学人民医院(北京大学第二临床医学院)【EN】PEKING UNIVERSITY PEOPLE'S HOSPITAL (PEKING UNIVERSITY SECOND CLINICAL MEDICAL COLLEGE)
申请日:2019.12.19 公开日:2020.04.14
发明人:
【中文】张培训
;
姜保国
;
方幸幸【EN】Zhang Peixun
;
Jiang Baoguo
;
Fang Xingxing
摘要:【中文】本发明公开了一种单壁碳纳米管复合材料导电神经套管及其制备方法与应用。该单壁碳纳米管复合材料导电神经套管,由包括管体和覆盖在所述管体表面的涂层组成;所述管体为含羧基的单壁碳纳米管;所述涂层与所述管体之间通过物理吸附和化学键结合的方式结合在一起;所述涂层为复合水凝胶。本发明制备的导电神经套管具有良好的生物相容性、导电性等优良特性,实现了修复大段神经缺损并促进外周神经修复。 【EN】The invention discloses a single-walled carbon nanotube composite material conductive nerve sleeve and a preparation method and application thereof. The single-walled carbon nanotube composite material conductive nerve sleeve consists of a tube body and a coating covering the surface of the tube body; the tube body is a single-walled carbon nanotube containing carboxyl; the coating and the pipe body are combined together in a physical adsorption and chemical bond combination mode; the coating is composite hydrogel. The conductive nerve sleeve prepared by the invention has the excellent characteristics of good biocompatibility, conductivity and the like, and realizes the repair of large-section nerve defects and promotes the repair of peripheral nerves.
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7:
[发明]
【中文】节能方法、装置、计算机设备和存储介质 【EN】Energy saving method and device, computer equipment and storage medium
申请号:
202010026191.4
公开号:CN111212463A 主分类号:H04W52/02
申请人:
【中文】京信通信系统(中国)有限公司【EN】Comba Telecom System (China) Ltd.
申请日:2020.01.10 公开日:2020.05.29
发明人:
【中文】丁宝国
;
区洋
;
刘震
;
张琼【EN】Ding Baoguo
;
District Ocean
;
Liu Zhen
;
Zhang Qiong
摘要:【中文】本申请涉及一种节能方法、装置、计算机设备和存储介质,基于小区中各远端单元包括小区内邻近远端单元的邻近关系表,确定给出每个远端单元对应的节能方案,并从各节能方案中确定出目标节能方案,然后根据目标节能方案执行节能操作。该方法无需考虑各远端单元的具体位置,以及周围环境的变化,只需获取当前时刻各远端单元的邻近关系表,就可确定出目标节能方案,整个节能操作更加灵活,在适用性上更加广泛;且采用该节能方法在节能的同时还可以保证小区中用户的通信服务。 【EN】The application relates to an energy-saving method, an energy-saving device, computer equipment and a storage medium, wherein an energy-saving scheme corresponding to each remote unit is determined based on a proximity relation table of each remote unit in a cell including the adjacent remote units in the cell, a target energy-saving scheme is determined from each energy-saving scheme, and then energy-saving operation is executed according to the target energy-saving scheme. According to the method, the specific position of each remote unit and the change of the surrounding environment are not required to be considered, and the target energy-saving scheme can be determined only by acquiring the adjacent relation table of each remote unit at the current moment, so that the whole energy-saving operation is more flexible, and the applicability is wider; and the energy-saving method can save energy and ensure the communication service of users in the cell.
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8:
[发明]
【中文】一种移动床生物质气化燃烧机 【EN】Moving bed biomass gasification burner
申请号:
201811444867.0
公开号:CN111237741A 主分类号:F23B90/06
申请人:
【中文】天津盛世新源能源科技有限公司【EN】TIANJIN SHENGSHI XINYUAN ENERGY SCIENCE & TECHNOLOGY Co.,Ltd.
申请日:2018.11.29 公开日:2020.06.05
发明人:
【中文】张宝国
;
王永亮
;
杜小顺【EN】
Zhang Baoguo
;
Wang Yongliang
;
Du Xiaoshun
摘要:【中文】本发明公开了一种移动床生物质气化燃烧机,包括炉体,所述炉体上设置有进料燃烧机构,所述喷火嘴开在所述炉体一侧表面,所述水箱设置在所述炉体内,所述连通管道A开在所述水箱上端且一端连通所述炉体内部另一端连通所述炉体外侧,所述连通管道B一端与所述联通管道A相连通且另一端连通所述喷火嘴处,所述风机B输出端与所述连通管道A相连通,所述机械炉排设置在所述炉体内下端,所述水封排渣机设置在所述炉体下端。本发明结构简单运行可靠,通过本燃烧机产生的蒸汽从而使其生物质充分燃烧,并且由于生物质完全气化后所产生的碳经过水蒸气物理活化后,落入水封除渣机增加了其具有活性炭的性质,提高了生物质炭的利用范围。 【EN】The invention discloses a moving bed biomass gasification burner which comprises a furnace body, wherein a feeding combustion mechanism is arranged on the furnace body, a flame nozzle is arranged on the surface of one side of the furnace body, a water tank is arranged in the furnace body, a communicating pipeline A is arranged at the upper end of the water tank, one end of the communicating pipeline A is communicated with the inside of the furnace body, the other end of the communicating pipeline A is communicated with the outside of the furnace body, one end of a communicating pipeline B is communicated with the communicating pipeline A, the other end of the communicating pipeline B is communicated with the flame nozzle, the output end of a fan B is communicated with the communicating pipeline A, a mechanical grate is arranged at the lower end in the furnace body, and a water seal. The biomass gasification furnace has a simple structure and reliable operation, biomass is fully combusted through steam generated by the combustion machine, and carbon generated after the biomass is completely gasified falls into the water seal slag remover after being physically activated by steam, so that the property of active carbon is increased, and the utilization range of the biomass carbon is enlarged.
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9:
[发明]
【中文】一种醒酒机 【EN】Sobering machine
申请号:
201911181457.6
公开号:CN110840291A 主分类号:A47J43/00
申请人:
【中文】山东省葡萄研究院
;
山东职业学院【EN】SHANDONG GRAPE RESEARCH INSTITUTE
;
Shandong Polytechnic
申请日:2019.11.27 公开日:2020.02.28
发明人:
【中文】李保国
;
张颖超
;
于磊娟
;
余波
;
王树庆【EN】Li Baoguo
;
Zhang Yingchao
;
Yu Leijuan
;
Yu Bo
;
Wang Shuqing
摘要:【中文】本发明公开一种醒酒机,涉及醒酒机技术领域,主要结构包括储罐、调温装置、定量添加装置、进液泵、出液泵、循环泵和控制系统;通过定量添加装置将改性壳聚糖添加到过滤网上,在葡萄酒循环的过程中,葡萄酒与空气充分接触进行醒酒,并由改性壳聚糖去除葡萄酒中的亚硫酸盐,同时通过半导体制冷器调节温度,使葡萄酒达到更加适宜饮用的温度,实现了醒酒、脱硫、调温的一体化。 【EN】The invention discloses a sobering machine, which relates to the technical field of sobering machines and mainly comprises a storage tank, a temperature adjusting device, a quantitative adding device, a liquid inlet pump, a liquid outlet pump, a circulating pump and a control system, wherein the temperature adjusting device is arranged on the storage tank; modified chitosan is added to the filter screen through the quantitative adding device, in the process of wine circulation, wine is fully contacted with air for sobering up, sulfite in the wine is removed through the modified chitosan, and meanwhile, the temperature of the wine is adjusted through the semiconductor refrigerator, so that the wine reaches a more suitable drinking temperature, and the integration of sobering up, desulfurization and temperature adjustment is realized.
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10:
[发明]
【中文】注塑各向异性粘结钕铁硼磁瓦辐射取向成型方法及装置 【EN】Injection molding anisotropic bonding neodymium iron boron magnetic tile radiation orientation forming method and device
申请号:
201911143339.6
公开号:CN110931236A 主分类号:H01F41/02
申请人:
【中文】杭州科德磁业有限公司【EN】Hangzhou Kede Magnetic Industry Co., Ltd.
申请日:2019.11.20 公开日:2020.03.27
发明人:
【中文】丁月
;
张保国
;
陈沂
;
裴世龙【EN】Ding Yue
;
Zhang Baoguo
;
Chen Yi
;
Pei Shilong
摘要:【中文】本发明提供一种注塑各向异性粘结钕铁硼磁瓦辐射取向成型方法及装置,包括A类型取向永磁体、B类型取向永磁体、C类型取向永磁体、导磁流道及内模仁、不导磁外模仁,解决了各向异性注塑钕铁硼粘结磁体采用常规内置式永磁取向取向场低,产品取向度不高等问题,通过基于HALBACH阵列及不同规格永磁体组合实现模具内取向磁场大于1T,从而满足于注塑钕铁硼取向过程。本发明基于永磁取向磁路组合设计,实现各向异性注塑钕铁硼瓦型磁体辐射取向,材料性能(BH)max>11MGOe,产品表面磁感应强度>2000Gs。 【EN】The invention provides a radiation orientation forming method and a device for an injection molding anisotropic bonded neodymium iron boron magnetic shoe, which comprises an A-type oriented permanent magnet, a B-type oriented permanent magnet, a C-type oriented permanent magnet, a magnetic conduction flow channel, an inner mold core and a non-magnetic conduction outer mold core, solves the problems that the anisotropy injection molded neodymium iron boron bonded magnet adopts a conventional built-in permanent magnet oriented field, the product orientation degree is not high and the like, and realizes that the orientation magnetic field in a mold is more than 1T by combining permanent magnets with different specifications based on an HALBACH array, thereby meeting the orientation process of injection molding neodymium iron boron. The invention realizes the radiation orientation of the anisotropic injection molding neodymium iron boron tile type magnet based on the permanent magnet orientation magnetic circuit combination design, the material performance (BH) max is more than 11MGOe, and the magnetic induction intensity of the product surface is more than 2000 Gs.
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