当前查询到127条专利与查询词 "Guo Zhipeng"相关,搜索用时0.3124236秒!排序方式:
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申请号:201911132941.X 公开号:CN110897032A 主分类号:A23J1/00
摘要:【中文】本发明公开了一种发酵饲料蛋白及其制备方法与应用。本发明方法利用分步发酵的方式,使辣木籽粕在经过黑曲霉和米根霉发酵后,其纤维素、蛋白质等大分子被降解为小分子,再接种的屎肠球菌可直接利用小分子物质,进一步发酵辣木籽粕,提高发酵效率,更有效地提高辣木籽粕的营养价值。辣木籽粕经过发酵后,产生酸香气味,与单菌发酵相比,其粗蛋白含量、酸溶蛋白含量、中性蛋白酶活性等显著提高,富含益生菌,成为一种优质饲料蛋白。 【EN】The invention discloses a fermented feed protein and a preparation method and application thereof. According to the method, a step-by-step fermentation mode is utilized, so that after the moringa seed meal is fermented by aspergillus niger and rhizopus oryzae, macromolecules such as cellulose, protein and the like are degraded into small molecules, and the inoculated enterococcus faecium can directly utilize the small molecular substances to further ferment the moringa seed meal, so that the fermentation efficiency is improved, and the nutritional value of the moringa seed meal is effectively improved. The moringa oleifera seed meal generates acid-fragrant smell after fermentation, compared with single-bacterium fermentation, the moringa oleifera seed meal has the advantages that the crude protein content, the acid-soluble protein content, the neutral protease activity and the like are obviously improved, and the moringa oleifera seed meal is rich in probiotics and becomes high-quality feed protein.
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申请号:201911255440.0 公开号:CN110919340A 主分类号:B23P19/06
摘要:【中文】本发明公开了一种半导体与散热片组装设备。该种半导体与散热片组装设备包括工作台、驱动单元、转盘、摆放单元、压紧单元、点胶单元、送料单元、锁紧单元、抓取单元,驱动单元安装于工作台,转盘安装于驱动单元,摆放单元安装于转盘,环绕转盘外圈设置有压紧单元、点胶单元、送料单元、锁紧单元、抓取单元,压紧单元用于准确定位散热片,点胶单元用于在散热片表面点胶,送料单元用于将半导体放置于散热片,锁紧单元用于将半导体锁紧于散热片,抓取单元用于将完成锁紧的散热片、半导体从摆放单元移出。通过摆放单元、压紧单元、点胶单元、送料单元、锁紧单元、抓取单元机械化的完成了半导体与散热片的转配,提高了生产效率与产品质量。 【EN】The invention discloses a semiconductor and radiating fin assembling device. The semiconductor and radiating fin assembling equipment comprises a workbench, a driving unit, a turntable, a placing unit, a pressing unit, a glue dispensing unit, a feeding unit, a locking unit and a grabbing unit, wherein the driving unit is installed on the workbench, the turntable is installed on the driving unit, the placing unit is installed on the turntable, the pressing unit, the glue dispensing unit, the feeding unit, the locking unit and the grabbing unit are arranged around the outer ring of the turntable, the pressing unit is used for accurately positioning a radiating fin, the glue dispensing unit is used for dispensing glue on the surface of the radiating fin, the feeding unit is used for placing a semiconductor on the radiating fin, the locking unit is used for locking the semiconductor on the radiating fin, the grabbing unit is used for moving the radiating. The transfer of the semiconductor and the radiating fins is completed mechanically through the placing unit, the pressing unit, the dispensing unit, the feeding unit, the locking unit and the grabbing unit, so that the production efficiency and the product quality are improved.
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申请号:201911303201.8 公开号:CN110849399A 主分类号:G01D5/248
申请人:【中文】东北林业大学【EN】NORTHEAST FORESTRY University 申请日:2019.12.17 公开日:2020.02.28
摘要:【中文】本发明提出了一种磁聚焦分体式一体化传感器及转速、扭矩、角度计算方法,属于传感器技术领域,特别是涉及一种磁聚焦分体式一体化传感器及转速、扭矩、角度计算方法。解决了现有测量轴的转速、扭矩以及角度的传感器对轴的尺寸要求高、匹配性差以及找零点困难的问题。传感器包括待测轴、和采集机构,所述待测轴两端分别为轴输入端和轴输出端,所述采集机构分别设置在轴输入端和轴输出端处,所述采集机构包括转子电路板、接收线圈、壳体和激励线圈,所述转子电路板和接收线圈印制在接收线圈柔性电路板上,接收线圈上印制有信号处理电路。它主要用于对轴的转速、扭矩以及角度进行测量和计算。 【EN】The invention provides a magnetic focusing split type integrated sensor and a rotating speed, torque and angle calculating method, belongs to the technical field of sensors, and particularly relates to a magnetic focusing split type integrated sensor and a rotating speed, torque and angle calculating method. The problems that the existing sensor for measuring the rotating speed, the torque and the angle of the shaft has high requirement on the size of the shaft, is poor in matching performance and is difficult to find a zero point are solved. The sensor includes treats the survey axle and gathers the mechanism, treat that the survey axle both ends are axle input end and axle output end respectively, it sets up respectively in axle input end and axle output end department to gather the mechanism, it includes rotor circuit board, receiving coil, casing and exciting coil to gather the mechanism, rotor circuit board and receiving coil print on the receiving coil flexible circuit board, the printing has signal processing circuit on the receiving coil. The device is mainly used for measuring and calculating the rotating speed, the torque and the angle of the shaft.
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申请号:201911017411.0 公开号:CN110905118A 主分类号:E04C2/288
摘要:【中文】一种保温装饰复合轻质化PC外围护墙体及其制作方法,包括轻骨料混凝土和通过连接件与轻骨料混凝土连接固定的保温装饰一体板,保温装饰一体板包括装饰层和保温层,连接件包括预埋在保温装饰一体板内的第一连接件和与轻骨料混凝土内的结构骨架钢筋连接固定的第二连接件,第一连接件包括用于与装饰层黏贴固定的底板、预埋在保温层内的中空框架和用于与第二连接件钩接的直角钩,第二连接件包括圆弧钩和与结构骨架钢筋固定的连接部。本发明在施工过程中无需再进行饰面处理,减少现场湿作业,节约人工及建造成本,实现装饰‑保温‑围护一体化。 【EN】The utility model provides a compound lightweight PC peripheral revetment body of heat preservation decoration and preparation method thereof, including lightweight aggregate concrete and the heat preservation decoration intergral template of being connected fixedly through connecting piece and lightweight aggregate concrete, heat preservation decoration intergral template includes decorative layer and heat preservation, the connecting piece includes pre-buried first connecting piece in heat preservation decoration intergral template and with lightweight aggregate concrete in the second connecting piece of structural framework reinforcing bar connection fixed, first connecting piece is including being used for pasting fixed bottom plate with the decorative layer, pre-buried in the intraformational hollow frame of heat preservation and being used for the right angle hook with second connecting piece hookup, the second connecting piece includes the circular arc hook and with the fixed connecting portion of structural framework reinforcing bar. The invention does not need to carry out facing treatment in the construction process, reduces on-site wet operation, saves labor and construction cost and realizes decoration-heat preservation-enclosure integration.
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申请号:201911032612.8 公开号:CN110905119A 主分类号:E04C2/288
摘要:【中文】本发明公开了一种可更换密封胶条的龙骨复合墙体结构及密封胶条更换方法,包括龙骨复合墙板和更换式密封胶条,更换式密封胶条设在龙骨复合墙板的四周,并密封相邻的龙骨复合墙板之间的缝隙;所述龙骨复合墙体由外到内依次包括外装饰板层、保温层、空气层、龙骨复合混凝土层和内装饰板层;所述龙骨复合混凝土层包括龙骨框架和内填混凝土;所述更换式密封胶条设在龙骨复合混凝土层的四周侧边上,包括密封胶条和连接节,所述连接节设在相邻的密封胶条的端部,所述密封胶条固定在龙骨框架的侧边上。本发明设置多层墙体实现轻质、保温和装饰一体化的效果,并在墙体四周设置更换式密封胶条增强防水效果,并再后期可对密封胶条进行更换。 【EN】The invention discloses a keel composite wall structure with replaceable sealing rubber strips and a sealing rubber strip replacing method, wherein the keel composite wall structure comprises keel composite wall boards and replaceable sealing rubber strips, the replaceable sealing rubber strips are arranged on the periphery of the keel composite wall boards and seal gaps between the adjacent keel composite wall boards; the keel composite wall body sequentially comprises an outer decorative plate layer, a heat insulation layer, an air layer, a keel composite concrete layer and an inner decorative plate layer from outside to inside; the keel composite concrete layer comprises a keel frame and filled concrete; the replaceable sealing rubber strip is arranged on the peripheral side edge of the keel composite concrete layer and comprises a sealing rubber strip and a connecting joint, the connecting joint is arranged at the end part of the adjacent sealing rubber strip, and the sealing rubber strip is fixed on the side edge of the keel frame. The invention is provided with a plurality of layers of walls to realize the effect of integration of light weight, heat preservation and decoration, and the replacement type sealing rubber strips are arranged around the walls to enhance the waterproof effect, and the sealing rubber strips can be replaced later.
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申请号:201911282980.8 公开号:CN110926952A 主分类号:G01N3/10
申请人:【中文】哈尔滨工程大学【EN】HARBIN ENGINEERING University 申请日:2019.12.13 公开日:2020.03.27
摘要:【中文】本发明属于舰船复合材料上层建筑结构的强度和刚度试验技术领域,具体涉及一种舰船实尺度复合材料上层建筑测试装置及方法。本发明可靠、经济、易操作、精度高,自动化程度高,解决了舰船实尺度复合材料上层建筑在风力作用下刚度实验无法直接模拟出风压载荷压力与拉力共存且压力梯度较大的特性,能够对呈梯度分布的风载载荷提供更精确的模拟,且模拟精度能够提升一个量级,更完成对所有结构表面进行多点协调加载的难题。 【EN】The invention belongs to the technical field of strength and rigidity tests of ship composite superstructure structures, and particularly relates to a ship real-scale composite superstructure testing device and method. The simulation system is reliable, economical, easy to operate, high in precision and high in automation degree, solves the problem that the rigidity experiment of the ship real-scale composite superstructure under the action of wind power cannot directly simulate the coexistence of wind pressure load pressure and tensile force and has a large pressure gradient, can provide more accurate simulation for wind load in gradient distribution, can improve the simulation precision by one order of magnitude, and further completes the multi-point coordination loading on all the structure surfaces.
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申请号:201911321376.1 公开号:CN110903993A 主分类号:C12N1/19
摘要:【中文】本发明提供了一种产生菜籽甾醇的酿酒酵母工程菌及其构建方法和应用,属于代谢工程技术领域,所述酿酒酵母工程菌含有甾醇Δ7‑还原酶基因和葡萄糖脱氢酶基因。本发明提供的酿酒酵母工程菌能够将麦角甾醇还原成菜籽甾醇。在本发明中,所述酿酒酵母工程菌中共表达甾醇Δ7‑还原酶和葡萄糖脱氢酶,就可以葡萄糖脱氢酶形成的NADPH作为辅因子,利用甾醇Δ7‑还原酶将酿酒酵母固有的麦角甾醇还原成菜籽甾醇,从而达到生物制备菜籽甾醇的目的。 【EN】The invention provides a saccharomyces cerevisiae engineering bacterium for producing brassicasterol, a construction method and application thereof, and belongs to the technical field of metabolic engineering. The saccharomyces cerevisiae engineering bacteria provided by the invention can reduce ergosterol into brassicasterol. In the invention, sterol delta 7-reductase and glucose dehydrogenase are co-expressed in the saccharomyces cerevisiae engineering bacteria, NADPH formed by the glucose dehydrogenase can be used as a cofactor, and the inherent ergosterol of the saccharomyces cerevisiae is reduced into brassicasterol by using the sterol delta 7-reductase, thereby achieving the aim of biologically preparing the brassicasterol.
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申请号:201911298353.3 公开号:CN110894065A 主分类号:C01B19/02
申请人:【中文】中南大学【EN】CENTRAL SOUTH University 申请日:2019.12.18 公开日:2020.03.20
摘要:【中文】一种制备高纯碲的设备及方法,包括真空蒸馏装置、抽真空装置、氢气净化循环装置、高频感应加热装置和产品收集装置,所述抽真空装置用于提供真空环境,包括单孔真空抽滤机和双孔真空抽滤机,所述单孔真空抽滤机与真空蒸馏釜上的抽气口相连接;所述氢气净化循环装置用于给收集装置提供氢气还原环境。利用本发明设备制备高纯碲,流程短,能耗低,减去了常规制备高纯碲过程中碲复熔工序,避免复熔过程中所带来的高能耗和装料过程引起的局部氧化问题。 【EN】The equipment and the method for preparing the high-purity tellurium comprise a vacuum distillation device, a vacuumizing device, a hydrogen purification circulating device, a high-frequency induction heating device and a product collecting device, wherein the vacuumizing device is used for providing a vacuum environment and comprises a single-hole vacuum suction filter and a double-hole vacuum suction filter, and the single-hole vacuum suction filter is connected with a suction opening on a vacuum distillation kettle; the hydrogen purification circulating device is used for providing a hydrogen reduction environment for the collecting device. The equipment for preparing high-purity tellurium has short flow and low energy consumption, omits the tellurium remelting process in the conventional process of preparing high-purity tellurium, and avoids the problems of high energy consumption in the remelting process and local oxidation caused by the charging process.
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申请号:201911337594.4 公开号:CN110987259A 主分类号:G01L3/10
申请人:【中文】东北林业大学【EN】NORTHEAST FORESTRY University 申请日:2019.12.23 公开日:2020.04.10
摘要:【中文】本发明公开了一种基于磁聚焦式测量静态扭矩的测量系统及其测量方法。静态扭矩传感器包括转动轴、第一磁导单元和第二磁导单元,第一磁导单元包括激励装置A和接收线圈A,激励装置A包括一个磁引导装置A和一组激励线圈A,转动轴的一端外部套接接收线圈A,接收线圈A的外端均布三个磁引导装置A,每个磁引导装置A外设置一组激励线圈A,三个激励线圈A外罩有罩壳A‑1和罩壳A‑2,罩壳A‑1和罩壳A‑2配合使用形成一个环形罩壳A,第二磁导单元与第一磁导单元结构相同。转动轴接收到启动信号,开始启动到实际转动阶段,这个过程需要克服的系统阻力和其他摩擦阻力的力矩,可由该传感器测得。 【EN】The invention discloses a measuring system and a measuring method for measuring static torque based on a magnetic focusing mode. Static torque sensor includes the axis of rotation, first magnetic conductance unit and second magnetic conductance unit, first magnetic conductance unit includes excitation device A and receiving coil A, excitation device A includes a magnetic guidance device A and a set of excitation coil A, receiving coil A is cup jointed to the one end outside of axis of rotation, three magnetic guidance device A of receiving coil A's outer end equipartition, every magnetic guidance device A sets up a set of excitation coil A outward, three excitation coil A dustcoat has housing A-1 and housing A-2, housing A-1 and housing A-2 cooperate and use and form an annular housing A, second magnetic conductance unit is the same with first magnetic conductance unit structure. The rotating shaft receives the starting signal and starts to start to the actual rotating stage, and the torque of the system resistance and other frictional resistance which needs to be overcome in the process can be measured by the sensor.
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申请号:202010028713.4 公开号:CN111074346A 主分类号:C30B29/08
申请人:【中文】中南大学【EN】CENTRAL SOUTH University 申请日:2020.01.11 公开日:2020.04.28
摘要:【中文】本发明公开了一种提拉法制备单晶锗的装置及方法,该装置包括腔内设有坩埚的锗单晶生长炉,坩埚周围设有加热装置,加热装置在单晶提拉方向的截面形状为“<>”形对称结构,将坩埚包围在中间,加热装置分为上部加热器和下部加热器,上部加热器和下部加热器的夹角为110°~160°,上部加热器和下部加热器内均设置有由上到下均布的若干个高频涡流感应线圈,以控制单晶周围温度场的轴向和径向梯度。本发明装置可以根据生产需要对制备单晶锗过程调控,具有极高的操作灵活性和自动化潜力。本发明所制备得到的晶体结晶性能良好,晶体无开裂、位错、气泡、夹杂、散射等缺陷,单晶重复率较高,达到了良好的长晶效果。 【EN】The invention discloses a device and a method for preparing single crystal germanium by a pulling method, the device comprises a germanium single crystal growth furnace, a crucible is arranged in a cavity of the germanium single crystal growth furnace, a heating device is arranged around the crucible, the section shape of the heating device in the single crystal pulling direction is a symmetrical structure in a shape of 'less', the crucible is surrounded in the middle, the heating device is divided into an upper heater and a lower heater, the included angle between the upper heater and the lower heater is 110-160 degrees, and a plurality of high-frequency eddy current induction coils are uniformly distributed in the upper heater and the lower heater from top to bottom so as to control the axial gradient and the radial gradient of a temperature field around the single crystal. The device can regulate and control the process of preparing the single crystal germanium according to production requirements, and has extremely high operation flexibility and automation potential. The crystal prepared by the invention has good crystallization performance, no defects of cracking, dislocation, bubbles, inclusion, scattering and the like, and high single crystal repetition rate, and achieves good crystal growth effect.
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