当前查询到121条专利与查询词 "李永【EN】Wang Kang"相关,搜索用时0.4999225秒!排序方式:
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申请号:201911241786.5 公开号:CN111029443A 主分类号:H01L33/00
申请人:【中文】松山湖材料实验室【EN】Material Laboratory of Songshan Lake 申请日:2019.12.06 公开日:2020.04.17
摘要:【中文】本发明公开了一种利用金属纳米颗粒增强氮化物基LED发光效率的方法,其包括以下步骤:(1)清洁;(2)配置嵌段共聚物有机溶液;(3)涂覆;(4)配置前驱体溶液;(5)浸泡;(6)固化;本发明提供的方法利用PS‑b‑P4VP嵌段共聚物模板法在GaN基外延薄膜表面自组装高度有序的金属纳米颗粒,且所自组装的金属纳米颗粒,尺寸均一且排列高度有序,通过表面有序金属纳米结构产生等离子体基元提高光提取率,整个增强方法流程简单易行,具有较高的重复性,适合大规模工业化操作,且后续无酸、碱、高温等特殊环境,不会对GaN基外延薄膜结构产生不良影响,保证产品质量。 【EN】The invention discloses a method for enhancing the luminous efficiency of a nitride-based LED by utilizing metal nanoparticles, which comprises the following steps: (1) cleaning; (2) preparing a block copolymer organic solution; (3) coating; (4) preparing a precursor solution; (5) soaking; (6) curing; the method provided by the invention utilizes a PS-b-P4VP block copolymer template method to self-assemble metal nano particles with ordered height on the surface of the GaN-based epitaxial film, the self-assembled metal nano particles have uniform size and ordered arrangement height, plasma elements are generated by the surface ordered metal nano structure to improve the light extraction rate, the whole enhancement method has simple and easy flow, higher repeatability and is suitable for large-scale industrial operation, and no special environments such as acid, alkali, high temperature and the like are carried out subsequently, so that no adverse effect is generated on the GaN-based epitaxial film structure, and the product quality is ensured.
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申请号:201911398319.3 公开号:CN111158302A 主分类号:G05B19/05
摘要:【中文】本申请公开了一种控制风洞运行的控制系统、方法及装置,属于风洞技术领域,该系统包括:控制器以及风洞中至少一个子系统;其中,所述控制器,与所述至少一个子系统连接,用于接收所述至少一个子系统发送的运行数据,并根据所述运行数据向所述至少一个子系统发送控制指令;所述至少一个子系统,用于向所述控制器发送其所述运行数据,并接收所述控制器发送的所述控制指令,以及并根据所述控制指令调整其运行状态。本申请解决了现有技术中风洞中各系统之间协调能力较差的技术问题。 【EN】The application discloses control system, method and device for controlling wind tunnel operation, which belongs to the technical field of wind tunnels, and comprises the following steps: a controller and at least one subsystem in a wind tunnel; the controller is connected with the at least one subsystem and used for receiving operation data sent by the at least one subsystem and sending a control instruction to the at least one subsystem according to the operation data; and the at least one subsystem is used for sending the operation data to the controller, receiving the control instruction sent by the controller and adjusting the operation state of the subsystem according to the control instruction. The method and the device solve the technical problem that in the prior art, coordination capacity among systems in the wind tunnel is poor.
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申请号:202010129573.X 公开号:CN111189111A 主分类号:F24F1/0011
摘要:【中文】本发明提供了一种空调室内机,其包括壳体,其开设有一朝向前下方的出风口;可动面板,可动地安装于壳体,配置成可运动至位于出风口前侧的关闭位置或运动至远离出风口前侧的打开位置;和导风板,可动地安装于壳体,并配置成:在可动面板处于打开位置时,可运动至位于出风口下侧且使其导风面朝上的第一位置,以将送风气流向前方、前上方或前下方引导;或运动至位于出风口前侧以使导风面朝后的第二位置,以将送风气流向下方引导。本发明的空调室内机能实现冷风上扬吹送和热风下沉吹送。 【EN】The invention provides an indoor unit of an air conditioner, which comprises a shell, a fan and a fan, wherein the shell is provided with an air outlet facing forwards and downwards; a movable panel movably mounted to the housing and configured to be movable to a closed position at a front side of the outlet vent or to an open position away from the front side of the outlet vent; and a wind deflector movably mounted to the housing and configured to: when the movable panel is in the opening position, the movable panel can move to a first position which is positioned at the lower side of the air outlet and enables the air guide surface of the movable panel to face upwards so as to guide the air flow of the air supply to the front, the front upper part or the front lower part; or move to a second position which is positioned at the front side of the air outlet and enables the air guide surface to face backwards so as to guide the air flow downwards. The indoor unit of the air conditioner can realize the blowing of cold air and hot air in a rising way.
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申请号:201911327436.0 公开号:CN111077568A 主分类号:G01V1/28
摘要:【中文】本发明实施例提供一种致密油气储层流体因子检测油气储层的方法及设备,该方法包括:根据实际的致密储层的岩心样品及其测试数据,构建致密砂岩的基质模量预测模型;根据实测的岩心孔隙度和声波速度,采用胶结砂岩理论,构建致密储层干燥状况下岩石物理模型;采用Gassmann方程,结合干燥致密砂岩岩石物理模型的预测结果,进行流体替换分析和拉梅模量相关参数转换,并进行拉梅模量相关参数的流体敏感性分析;根据流体替换计算的属性参数,结合实际钻测井资料,确定等效流体因子;采用地震反演方法获取目的层的弹性参数,结合测井资料,计算地震流体因子数据体;根据新构建的地震流体因子进行地震流体检测分析,预测地震油气储层的分布。 【EN】The embodiment of the invention provides a method and equipment for detecting a hydrocarbon reservoir by using a fluid factor of a tight hydrocarbon reservoir, wherein the method comprises the following steps: constructing a matrix modulus prediction model of the tight sandstone according to the actual core sample of the tight reservoir and the test data thereof; according to the actually measured core porosity and sound wave speed, a rock physical model under the dry condition of a compact reservoir is constructed by adopting a cemented sandstone theory; adopting a Gassmann equation, and combining the prediction result of the dry compact sandstone rock physical model to perform fluid replacement analysis and conversion of parameters related to the Lame modulus, and performing fluid sensitivity analysis of the parameters related to the Lame modulus; determining an equivalent fluid factor according to the attribute parameters of fluid replacement calculation and by combining actual drilling logging information; acquiring elastic parameters of a target layer by adopting a seismic inversion method, and calculating a seismic fluid factor data volume by combining logging data; and performing seismic fluid detection analysis according to the newly constructed seismic fluid factor to predict the distribution of the seismic oil and gas reservoir.
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申请号:201911389331.8 公开号:CN111123354A 主分类号:G01V1/28
摘要:【中文】本发明实施例提供了一种基于频变反射振幅衰减预测致密气层的方法及设备,方法包括:分析油气储层衰减随频率变化的范围及特征频率;确定盖层、油气储层和水层的孔弹性参数;正演模拟油气储层或水层在不同频率条件下反射振幅随偏移距或入射角的衰减特征;计算得到有效频率范围的叠前时频数据体;确定油气储层振幅频变变化剧烈的偏移距范围;根据交会图确定的偏移距或入射角度大小,结合频变反射振幅正演结果,计算叠前反射振幅属性参数AMO;根据低频和高频衰减属性参数AAI,计算依赖频率变化的叠前反射振幅衰减指标参数FDAAI,确定FDAAI剖面,进行油气储层的位置识别,能够准确地识别致密气藏储层。 【EN】The embodiment of the invention provides a method and equipment for predicting a dense gas layer based on frequency-dependent reflection amplitude attenuation, wherein the method comprises the following steps: analyzing the range and characteristic frequency of the attenuation of the oil and gas reservoir along with the change of the frequency; determining pore elasticity parameters of a cover layer, an oil and gas reservoir and a water layer; forward modeling the attenuation characteristics of the reflection amplitude of an oil and gas reservoir or a water layer along with offset or incidence angles under different frequency conditions; calculating to obtain a pre-stack time-frequency data body of an effective frequency range; determining an offset range with violent amplitude frequency change of the oil and gas reservoir; calculating a prestack reflection amplitude attribute parameter AMO according to the offset or the incident angle determined by the intersection graph and a frequency-dependent reflection amplitude forward modeling result; according to the low-frequency and high-frequency attenuation attribute parameters AAI, calculating a prestack reflection amplitude attenuation index parameter FDAAI depending on frequency change, determining an FDAAI profile, carrying out position identification on the oil and gas reservoir, and accurately identifying the compact gas reservoir.
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申请号:201911171637.6 公开号:CN110922364A 主分类号:C07D251/24
摘要:【中文】本发明提供了一种含氮类化合物及其制备方法以及有机发光器件,该含氮类化合物如式1所示。本发明是将新型非对称含氮诱导体与电子传输性相连接,可用做电子传输材料,提高了发光效率和发光亮度,从而极大的改善了有机电致发光器件的各方面性能。 【EN】The invention provides a nitrogen-containing compound, a preparation method thereof and an organic light-emitting device, wherein the nitrogen-containing compound is shown as a formula 1. The invention connects the novel asymmetric nitrogenous inducer with electron transmission property, can be used as an electron transmission material, and improves the luminous efficiency and the luminous brightness, thereby greatly improving various performances of the organic electroluminescent device.
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申请号:202010027346.6 公开号:CN111200235A 主分类号:H01S5/024
申请人:【中文】松山湖材料实验室【EN】Material Laboratory of Songshan Lake 申请日:2020.01.10 公开日:2020.05.26
摘要:【中文】本发明公开了一种片上集成AlGaN脉冲激光器制备方法及其器件,发明提供的方法步骤简洁,易于实现,生长具有AlGaN波导层和AlGaN载流子限制层的外延结构,并结合芯片工艺制备具有多段功能区的器件,该器件具有脊型波导区、锥形放大区和吸收调制区,各个区域的功能不一样,利用片上集成的AlGaN紫外光放大技术,可以有效地减少器件的尺寸,降低波长,经测试可以达到百瓦级的脉冲功率功率输出;采用高散热系数基板进行封装散热处理,散热效果好,确保器件的正常工作。本发明器件即激光器,采用锥型光放大技术,实现脉冲激光的片上集成放大,能够产生脉冲光,波长为紫外波段,可以应用于生物医疗、紫外通讯、光谱分析等领域。 【EN】The invention discloses a method for preparing an on-chip integrated AlGaN pulse laser and a device thereof, the method provided by the invention has simple steps and is easy to realize, an epitaxial structure with an AlGaN waveguide layer and an AlGaN carrier limiting layer is grown, and a chip process is combined to prepare a device with a multi-section functional area, the device is provided with a ridge waveguide area, a conical amplification area and an absorption modulation area, the functions of all the areas are different, the size of the device can be effectively reduced by utilizing the on-chip integrated AlGaN ultraviolet amplification technology, the wavelength is reduced, and the pulse power output of hundred watt level can be achieved through testing; the substrate with high heat dissipation coefficient is adopted for packaging and heat dissipation treatment, the heat dissipation effect is good, and normal work of the device is ensured. The device, namely the laser, adopts a tapered light amplification technology to realize on-chip integrated amplification of pulse laser, can generate pulse light, has the wavelength of an ultraviolet band, and can be applied to the fields of biological medical treatment, ultraviolet communication, spectral analysis and the like.
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申请号:201911348513.0 公开号:CN111253440A 主分类号:C07F15/00
摘要:【中文】本发明公开了一种磷光化合物及其制备方法与应用,本发明公开的有机金属铱配合物通过利用金属铱与特定的杂环配体结合制得,具体结构通式如说明书所示。通过调节化合物的波长,得到的有机金属化合物在用于有机电致发光器件后,使得器件的发光效率提高,而且使用寿命长。且本发明中的制备方法简单宜操作,更加适用于大工业化生产。 【EN】The invention discloses a phosphorescent compound and a preparation method and application thereof, and an organic metal iridium complex disclosed by the invention is prepared by combining metal iridium with a specific heterocyclic ligand, and the specific structural general formula is shown in the specification. By adjusting the wavelength of the compound, the obtained organic metal compound is used for an organic electroluminescent device, so that the luminous efficiency of the device is improved, and the service life is long. The preparation method is simple and easy to operate, and is more suitable for large-scale industrial production.
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申请号:201911362626.6 公开号:CN111141505A 主分类号:G01M13/00
摘要:【中文】本发明涉及一种非侵入式真空分压力快速测量仪器,属于真空分压力测量技术领域。本发明所述仪器采用光学频率梳作为气体探针,将双光梳外差光谱技术与腔增强技术相结合,有效增加工作波段和光谱分辨率,提升信噪比与灵敏度,缩短测试时间,实现了对多种气体的真空分压力的非接触、高精度、高速度、宽量程的测量。 【EN】The invention relates to a non-invasive vacuum partial pressure rapid measuring instrument, and belongs to the technical field of vacuum partial pressure measurement. The instrument adopts the optical frequency comb as a gas probe, combines the double-optical comb heterodyne spectrum technology with the cavity enhancement technology, effectively increases the working waveband and the spectral resolution, improves the signal-to-noise ratio and the sensitivity, shortens the test time, and realizes the non-contact, high-precision, high-speed and wide-range measurement of the vacuum partial pressure of various gases.
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申请号:201911236372.3 公开号:CN110921788A 主分类号:C02F1/461
摘要:【中文】本发明属于环保水处理技术领域,具体涉及一种具有高催化活性的铁碳微电解材料及其制备方法。本发明提供的具有高催化活性的铁碳微电解材料主要由0价活性铁、碳组分、高催化活性催化剂、辅助组分组成,其中,高催化活性催化剂由硝酸、金属氧化物、水、固体有机酸或金属硝酸盐、水、固体有机酸组成。本发明提供的具有高催化活性的铁碳微电解材料中的高催化活性催化剂粒径小,达到纳米级,表面活性高,比表面积大,分散性更好,更易于在最终产品中均匀分布。本发明提供的具有高催化活性的铁碳微电解材料具有良好的污水处理效果。 【EN】The invention belongs to the technical field of environment-friendly water treatment, and particularly relates to an iron-carbon micro-electrolysis material with high catalytic activity and a preparation method thereof. The iron-carbon micro-electrolysis material with high catalytic activity mainly comprises 0-valent active iron, a carbon component, a high catalytic activity catalyst and an auxiliary component, wherein the high catalytic activity catalyst comprises nitric acid, metal oxide, water, solid organic acid or metal nitrate, water and solid organic acid. The high catalytic activity catalyst in the iron-carbon micro-electrolysis material with high catalytic activity provided by the invention has small particle size, high surface activity, large specific surface area and better dispersibility, reaches the nanometer level, and is easier to be uniformly distributed in the final product. The iron-carbon micro-electrolysis material with high catalytic activity provided by the invention has a good sewage treatment effect.
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