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申请号:201911283745.2 公开号:CN111087716A 主分类号:C08L27/06
摘要:【中文】本发明属于高分子材料技术领域,具体涉及一种氯乙烯互穿网络聚合物及其制备方法,氯乙烯互穿网络聚合物包含如下重量份的组份:氯乙烯39.9‑50.4份、丙烯酸酯互穿网络胶乳2.1‑5.6份、丙烯酸丁酯17.5‑24.5份、引发剂0.1‑0.4份、链转移剂0.2‑0.8份、分散剂3.5‑4.9份、去离子水95‑125份。本发明采用多元共聚,引入低玻璃化温度的丙烯酸酯软单体,使得共聚树脂的玻璃化温度降低,获得了极好的加工性能,通过接枝丙烯酸酯互穿网络胶乳,获得了优异的抗冲击性能,多玻璃化温度的结构使其富集了内增塑性能、加工性能及减震性能;本发明采用悬浮聚合,所制备的产品纯度高,助剂残留少。 【EN】The invention belongs to the technical field of high molecular materials, and particularly relates to a vinyl chloride interpenetrating network polymer and a preparation method thereof, wherein the vinyl chloride interpenetrating network polymer comprises the following components in parts by weight: 39.9-50.4 parts of chloroethylene, 2.1-5.6 parts of acrylate interpenetrating network latex, 17.5-24.5 parts of butyl acrylate, 0.1-0.4 part of initiator, 0.2-0.8 part of chain transfer agent, 3.5-4.9 parts of dispersing agent and 95-125 parts of deionized water. The invention adopts multi-component copolymerization, introduces the acrylate soft monomer with low glass transition temperature, reduces the glass transition temperature of the copolymer resin, obtains excellent processing performance, obtains excellent shock resistance by grafting the acrylate interpenetrating network latex, and enriches the internal plasticization performance, the processing performance and the shock absorption performance by the multi-glass transition temperature structure; the invention adopts suspension polymerization, and the prepared product has high purity and little auxiliary agent residue.
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申请号:202010003143.3 公开号:CN110905134A 主分类号:E04D13/08
申请人:【中文】华东交通大学【EN】East China Jiaotong University 申请日:2020.01.02 公开日:2020.03.24
摘要:【中文】本发明公开了一种全自动式建筑雨水膜分离与智能反馈反冲洗系统,其包括屋面、排水管、叶轮弃流装置、污水管、满流蓄能装置、雨水膜分离装置、智能反馈反冲洗装置和蓄水装置。滤网与屋面平齐且位于排水管正上方,排水管与叶轮弃流装置相连,叶轮弃流装置上设有弃流管,弃流管连接污水管,满流蓄能装置安装在排水管上,保证充满管径的水流进入雨水膜分离装置中,智能反馈反冲洗装置与雨水膜分离装置相互连接配合使用,最后经雨水膜分离装置过滤的雨水由排水管传输至蓄水装置中。本发明实现了屋面雨水分离净化、雨水储存等多项功能,达到了获取高品质雨水的目的。整个系统体积小、安全系数高、结构简单、具备智能反冲洗功能,适合大范围推广。 【EN】The invention discloses a full-automatic building rainwater membrane separation and intelligent feedback backwashing system which comprises a roof, a drain pipe, an impeller flow discarding device, a sewage pipe, a full-flow energy storage device, a rainwater membrane separation device, an intelligent feedback backwashing device and a water storage device. The filter screen is parallel and level with the roofing and is located directly over the drain pipe, and the drain pipe is abandoned class device with the impeller and is linked to each other, and the impeller is abandoned class device and is equipped with abandoning the flow tube, abandons class union coupling sewage pipe, and full flow energy storage equipment installs on the drain pipe, guarantees that the rivers that are full of the pipe diameter get into in the rainwater membrane separation device, and intelligent feedback back flush unit and rainwater membrane separation device interconnect and cooperate the use, and the rainwater through rainwater membrane separation device filtration is transmitted to the water storage device in by the drain pipe at last. The invention realizes multiple functions of roof rainwater separation and purification, rainwater storage and the like, and achieves the purpose of obtaining high-quality rainwater. The whole system is small in size, high in safety factor, simple in structure, capable of intelligently backwashing and suitable for large-scale popularization.
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申请号:202010003150.3 公开号:CN110894817A 主分类号:F03B13/00
申请人:【中文】华东交通大学【EN】East China Jiaotong University 申请日:2020.01.02 公开日:2020.03.20
摘要:【中文】本发明公开了一种全自动式高层建筑雨水分离与多级利用系统,其包括屋面、排水管、叶轮弃流装置、污水管、满流蓄能装置、水轮发电机、蓄电装置和蓄水池。滤网与屋面平齐且位于排水管正上方,排水管与叶轮弃流装置相连,叶轮弃流装置上设有弃流管,弃流管连接污水管,满流蓄能装置安装在排水管上,保证充满管径的水流冲击水轮发电机,发电后储存入蓄电装置内,流经水轮发电机的雨水最后汇集到蓄水池内。本发明实现了屋面雨水分离,雨能蓄积、利用、雨水储存等多项功能,达到了获取洁净雨水、提高发电效率、延长发电装置寿命的目的。整个系统中装置体积小、安全系数高、结构简单、造价低,具有较高的经济效应,适合大范围推广。 【EN】The invention discloses a full-automatic rainwater separation and multistage utilization system for a high-rise building, which comprises a roof, a drain pipe, an impeller flow discarding device, a sewage pipe, a full-flow energy storage device, a hydraulic generator, an electric power storage device and a reservoir. The filter screen just is located directly over the drain pipe with the roofing parallel and level, and the drain pipe is abandoned class device with the impeller and is linked to each other, and the impeller is abandoned class device and is equipped with abandoning the flow tube, abandons class union coupling sewage pipe, and full flow energy storage equipment installs on the drain pipe, guarantees to be full of the rivers impact hydraulic generator of pipe diameter, stores into the electrical storage equipment after the electricity generation, and the rainwater of flowing through hydraulic generator collects in the cistern at last. The invention realizes multiple functions of roof rainwater separation, rainwater energy accumulation, utilization, rainwater storage and the like, and achieves the purposes of obtaining clean rainwater, improving the power generation efficiency and prolonging the service life of the power generation device. The device in the whole system has small volume, high safety factor, simple structure, low cost and higher economic effect, and is suitable for large-scale popularization.
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申请号:201911162764.X 公开号:CN110850099A 主分类号:G01N33/68
申请人:【中文】中国计量科学研究院【EN】NATIONAL INSTITUTE OF METROLOGY 申请日:2019.11.25 公开日:2020.02.28
摘要:【中文】本发明公开了一种血清中C反应蛋白的定值方法,包括以下步骤:(1)血清C反应蛋白(CRP)的纯化富集;(2)C反应蛋白纯度检测;(3)酶切;(4)C反应蛋白定量分析。该方法无需考虑蛋白质提取率、酶切效率、仪器稳定性等因素,整个实验只需要考虑纯品CRP浓度的准确性,而本发明使用的纯品CRP溶液是国家一级标准物质(由中国计量院研制),数值可靠、可溯源至SI单位,并且原料是天然CRP,也无需考虑结构的差异,而这也是相较于同位素标记的全蛋白优异的地方。 【EN】The invention discloses a method for valuing C reactive protein in serum, which comprises the following steps: (1) purifying and enriching serum C-reactive protein (CRP); (2) c reaction protein purity detection; (3) enzyme digestion; (4) and C-reactive protein quantitative analysis. The method does not need to consider factors such as protein extraction rate, enzyme digestion efficiency and instrument stability, the whole experiment only needs to consider the accuracy of the concentration of the pure CRP, the pure CRP solution used by the method is a national first-class standard substance (developed by China measurement institute), the numerical value is reliable and traceable to SI unit, the raw material is natural CRP, and the difference of the structure does not need to be considered, which is a place superior to isotope-labeled holoprotein.
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申请号:201911162765.4 公开号:CN110865193A 主分类号:G01N33/68
申请人:【中文】中国计量科学研究院【EN】NATIONAL INSTITUTE OF METROLOGY 申请日:2019.11.25 公开日:2020.03.06
摘要:【中文】本发明公开了一种多孔PVDF模板几何约束免疫磁珠复合材料制备方法及应用,包括以下步骤:(1)传统法制备单分散SiO2微球;(2)丁二酸改性;(3)浸渍SiO2微球;(4)多孔PVDF膜的制备;(5)多孔PVDF模板几何约束免疫磁珠复合材料的制备。将制备的多孔PVDF模板几何约束免疫磁珠复合材料应用于C肽定量限考察,通过与未分散免疫磁珠对比,用多孔PVDF模板几何约束免疫磁珠复合材料提取C肽纯品后将定量限由柱上0.3ng降低至0.05ng,与日本计量院发表的C肽潜在参考测量程序相比,不通过衍生化处理后就能达到定量正常人血清C肽的目标,简化了检测流程,同时减少了磁珠和抗体的用量。 【EN】The invention discloses a preparation method and application of a porous PVDF template geometric constraint immunomagnetic bead composite material, which comprises the following steps: (1) tradition ofMethod for preparing monodisperse SiO2Microspheres; (2) modifying succinic acid; (3) impregnated SiO2Microspheres; (4) preparing a porous PVDF membrane; (5) and (3) preparing the porous PVDF template geometric constraint immunomagnetic bead composite material. The prepared porous PVDF template geometric constraint immunomagnetic bead composite material is applied to C peptide quantitative limit investigation, and compared with undispersed immunomagnetic beads, the porous PVDF template geometric constraint immunomagnetic bead composite material is used for extracting pure C peptide products, and then the quantitative limit is reduced from 0.3ng to 0.05ng on a columnThe method simplifies the detection process and reduces the use amount of magnetic beads and antibodies.
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申请号:201811383084.6 公开号:CN111196021A 主分类号:B29C45/73
申请人:【中文】泰瑞机器股份有限公司【EN】TEDERIC MACHINERY Co.,Ltd. 申请日:2018.11.20 公开日:2020.05.26
摘要:【中文】本发明公开了一种热固性塑料超声波模塑成型合模装置,主要包括动模板、定模板、成套模具、注塑附件以及超声波发生器、连接电缆、换能器、增幅顶出杆和密封组件等,数个换能器在顶出板上呈中心对称分布并和顶出板用螺纹连接件连接,增幅顶出杆穿过动模预留位置,参与构成制品模腔封闭面,动模板内密封组件中的弹簧压块在弹簧弹力作用下与增幅顶出杆紧贴,起到密封作用。本发明提出增幅顶出杆的结构设计,将传统的增幅杆和注塑机顶出杆结合在一起,将超声波系统引入到热固性塑料注塑机的顶出机构中。摒弃了传统热固性塑料注塑机模具内加热的固化方式,改为利用超声波加热,有效简化了整体机械模具的设计和制造,节省能源,提高生产效率和制品质量。 【EN】The invention discloses a thermosetting plastic ultrasonic molding forming mold closing device, which mainly comprises a movable mold plate, a fixed mold plate, a set of molds, an injection molding accessory, an ultrasonic generator, a connecting cable, transducers, an amplification ejector rod, a sealing assembly and the like, wherein the transducers are distributed on the ejector plate in a central symmetry manner and are connected with the ejector plate through threaded connecting pieces, the amplification ejector rod penetrates through the reserved position of the movable mold to participate in forming a closed surface of a mold cavity of a product, and a spring pressing block in the sealing assembly in the movable mold plate is tightly attached to the amplification ejector rod under the action of spring force to play a role in sealing. The invention provides a structural design of an amplification ejector rod, which combines a traditional amplification rod and an ejector rod of an injection molding machine together and introduces an ultrasonic system into an ejection mechanism of a thermosetting plastic injection molding machine. The curing mode of heating in the traditional thermosetting plastic injection molding machine mould is abandoned, and ultrasonic heating is utilized instead, so that the design and manufacture of the whole mechanical mould are effectively simplified, the energy is saved, and the production efficiency and the product quality are improved.
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申请号:201911179621.X 公开号:CN111144691A 主分类号:G06Q10/06
摘要:【中文】本发明提出了一种灾备调控管理方法及其系统,基于广州电网信息中心企业级系统的应用级灾备系统建设项目,整合了灾备系统切换控制调度、灾备切换流程展现、灾难恢复预案(DRP)管理等功能为一体的综合性集中管理和调度,在生产系统发生灾难时通过灾备调控管理系统按照预定义的流程将生产系统切换到灾备系统,在生产系统恢复正常后从灾备系统切换回生产系统。 【EN】The invention provides a disaster recovery backup regulation and control management method and a system thereof, which are based on application-level disaster recovery system construction projects of an enterprise-level system of a Guangzhou power grid information center, integrate comprehensive centralized management and scheduling integrating functions of disaster recovery system switching control scheduling, disaster recovery backup switching flow presentation, Disaster Recovery Plan (DRP) management and the like, switch a production system to a disaster recovery backup system according to a predefined flow through the disaster recovery backup regulation and control management system when the production system has a disaster, and switch the production system from the disaster recovery backup system back to the production system after the production system is recovered to be normal.
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申请号:202010065053.7 公开号:CN111103253A 主分类号:G01N21/3577
摘要:【中文】本发明提出了一种绝缘油快速区分装置,包括:壳体,壳体上设置有样品仓;液体池设置在样品仓内,用于放置待测绝缘油;红外光谱采集单元用于采集待测绝缘油的红外透过率图;处理单元与红外光谱采集单元电连接,用于接收红外透过率图,并将红外透过率图与不同厂家、不同型号的绝缘油的典型谱图进行对比,以确定待测绝缘油的型号及厂家信息。通过对绝缘油进行取样扫描,将扫描结果与各厂家、各型号变压器油的典型图谱进行对比,从而确定待测绝缘油的型号及厂家信息,能够快速区分出变压器油的厂家以及型号,从而确保高电压等级变压器优质油源的供应和变压器油的安全可靠使用,防止劣质油源影响电网设备的安全运行,提高了电网设备的安全性能。 【EN】The invention provides a device for quickly distinguishing insulating oil, which comprises: the device comprises a shell, a sample bin and a control device, wherein the shell is provided with the sample bin; the liquid pool is arranged in the sample bin and used for placing insulating oil to be tested; the infrared spectrum acquisition unit is used for acquiring an infrared transmittance map of the insulating oil to be detected; the processing unit is electrically connected with the infrared spectrum acquisition unit and used for receiving the infrared transmittance map and comparing the infrared transmittance map with typical spectrograms of insulating oil of different manufacturers and different types so as to determine the type and the manufacturer information of the insulating oil to be detected. By sampling and scanning the insulating oil, the scanning result is compared with typical maps of various manufacturers and types of transformer oil, so that the type and the manufacturer information of the insulating oil to be detected are determined, the manufacturers and the types of the transformer oil can be rapidly distinguished, the supply of a high-quality oil source of a high-voltage-grade transformer and the safe and reliable use of the transformer oil are ensured, the safe operation of power grid equipment is prevented from being influenced by the poor-quality oil source, and the safety performance of the power grid equipment is improved.
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申请号:201910999742.2 公开号:CN110890199A 主分类号:H01F27/14
摘要:【中文】本发明提供了一种灭火试验用大型换流变压器油箱,包括:油箱本体;顶盖,顶盖盖设于油箱本体的顶部,并且,顶盖保留升高座法兰接口和第一储油柜;第二储油柜,第二储油柜与油箱本体相连通;第一支架,第一支架与油箱本体相连接,使油箱本体所处高度与真型变压器油箱所处高度相同。第一支架将油箱本体支撑于与真型变压器油箱相同的高度位置,顶盖与真型变压器的顶盖大小完全一致,去掉了升高座,又保留了升高座法兰接口和第一储油柜,既简化了试验用油箱的结构,在完全模拟真型换流变压器实体火灾的同时,最大限度地降低了用油量和试验风险,有效模拟了灭火试验时火焰在换流变压器顶部燃烧的情况。 【EN】The invention provides a large-scale converter transformer oil tank for fire extinguishing tests, which comprises: an oil tank body; the top cover is arranged at the top of the oil tank body in a covering manner, and the top cover keeps the flange interface of the lifting seat and the first oil conservator; the second oil storage cabinet is communicated with the oil tank body; the first support is connected with the oil tank body, so that the height of the oil tank body is the same as that of the true transformer oil tank. The oil tank body is supported in the same height position with true transformer oil tank by the first support, the top cover is identical with the top cover size of true transformer completely, the lifting seat is removed, the lifting seat flange interface and the first oil conservator are reserved, the structure of the oil tank for testing is simplified, the oil consumption and the testing risk are reduced to the maximum extent when the fire of the true converter transformer entity is completely simulated, and the condition that flame burns at the top of the converter transformer during the fire extinguishing test is effectively simulated.
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申请号:201911017379.6 公开号:CN110927478A 主分类号:G01R31/00
摘要:【中文】本发明提供一种确定电力系统变压器设备的状态的方法和系统。所述方法和系统通过对采集的确定电力系统变压器设备的状态的N种气体的特征值数据进行处理后,生成有效样本集,按照预先设置的比例对有效样本集进行分配,生成训练集和测试集;根据建立的logistic回归模型,以及训练集和测试集确定最优logistic分类器,并利用所述最优logistic分类器,根据变压器设备的实际运行中的N种气体的特征值数据,输出电力系统变压器的状态。所述方法利用正样本合成算法,对模型的精准度有一定的提升,而且模型对数据的要求较低,对于海量的变压器气体特征值的分析能力较强,能够较好地实现分类,进而对变压器的运行状态做出判断。 【EN】The invention provides a method and a system for determining the state of a power system transformer device. The method and the system generate an effective sample set after processing the collected characteristic value data of N gases for determining the state of the transformer equipment of the power system, distribute the effective sample set according to the preset proportion and generate a training set and a testing set; and determining an optimal logistic classifier according to the established logistic regression model and the training set and the test set, and outputting the state of the transformer of the power system according to the characteristic value data of the N gases in the actual operation of the transformer equipment by using the optimal logistic classifier. The method utilizes a positive sample synthesis algorithm, improves the accuracy of the model to a certain extent, has low requirements on data, has strong analysis capability on massive transformer gas characteristic values, can better realize classification, and further judges the running state of the transformer.
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