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1:
[发明]
【中文】一种利用高炉粉尘生产含锌材料的方法 【EN】Method for producing zinc-containing material by using blast furnace dust
申请号:
201911064009.8
公开号:CN111020214A 主分类号:C22B19/30
申请人:
【中文】石棉县东顺锌业有限责任公司【EN】SHIMIAN DONGSHUN ZINC INDUSTRY Co.,Ltd.
申请日:2019.11.04 公开日:2020.04.17
发明人:
【中文】曾榕
;
曾飞东
;
王勇【EN】
Zeng Rong
;
Zeng Feidong
;
Wang Yong
摘要:【中文】本发明提供了一种利用高炉粉尘生产含锌材料的方法,该方法主要通过湿法提炼的方式,将高炉粉尘中的含锌化合物进行有效的分离和提取,从而有效地避免该含锌化合物在其他提炼工序中发生损耗,以进一步提高对高炉粉尘中含锌化合物的富集化程度,此外该方法还有效地简化含锌材料的提炼工序,从而降低利用高炉粉尘中回收含锌材料的成本。 【EN】The invention provides a method for producing zinc-containing material by using blast furnace dust, which effectively separates and extracts zinc-containing compounds in the blast furnace dust mainly in a wet refining mode, thereby effectively avoiding the loss of the zinc-containing compounds in other refining processes, further improving the enrichment degree of the zinc-containing compounds in the blast furnace dust, and effectively simplifying the refining process of the zinc-containing materials, thereby reducing the cost of recycling the zinc-containing materials in the blast furnace dust.
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2:
[发明]
【中文】一种利用废锌锰电池生产含锌纳米材料的方法 【EN】Method for producing zinc-containing nano material by using waste zinc-manganese battery
申请号:
201911063992.1
公开号:CN111048797A 主分类号:H01M6/52
申请人:
【中文】石棉县东顺锌业有限责任公司【EN】SHIMIAN DONGSHUN ZINC INDUSTRY Co.,Ltd.
申请日:2019.11.04 公开日:2020.04.21
发明人:
【中文】曾榕
;
曾飞东
;
王勇【EN】
Zeng Rong
;
Zeng Feidong
;
Wang Yong
摘要:【中文】本发明提供了一种利用废锌锰电池生产含锌纳米材料的方法,该利用废锌锰电池生产含锌纳米材料的方法通过对废锌锰电池的正负电极进行预拆解处理、提料处理和共混氧化物构造处理,以得到相应的锰‑锌共混氧化物,并再对该锰‑锌共混氧化物进行纳米结构修饰处理,从而获得锰‑锌共混氧化纳米材料这一最终产物,该方法能够省去对废锌锰电池的正负极材料分别采用不同回收工艺的麻烦,采用同一回收工艺将该正负极材料进行同步回收制造,从而有效地提高废锌锰电池的电极材料回收效率以及降低回收成本和回收繁复性。 【EN】The invention provides a method for producing zinc-containing nano material by using waste zinc-manganese batteries, which comprises the steps of carrying out pre-disassembly treatment, material extraction treatment and mixed oxide structural treatment on positive and negative electrodes of the waste zinc-manganese batteries to obtain corresponding manganese-zinc mixed oxide, and carrying out nano structure modification treatment on the manganese-zinc mixed oxide to obtain a final product of manganese-zinc mixed oxide nano material.
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3:
[发明]
【中文】一种基于人工智能的数据处理方法和相关装置 【EN】Data processing method based on artificial intelligence and related device
申请号:
201911084030.4
公开号:CN110841295A 主分类号:A63F13/67
申请人:
【中文】腾讯科技(深圳)有限公司【EN】TENCENT TECHNOLOGY (SHENZHEN) Co.,Ltd.
申请日:2019.11.07 公开日:2020.02.28
发明人:
【中文】曾子骄
;
张榕【EN】Zeng Zijiao
;
Zhang Rong
摘要:【中文】本申请实施例公开了一种基于人工智能的数据处理方法和相关装置,在进行包括多个参与对象的不完美信息博弈场景中,针对第i轮博弈时能确定出已知资源信息,该已知资源信息包括了目标对象在第i轮博弈时持有的资源和通过前i‑1轮该多个参与对象已使用的资源。由于待测对象在第i轮博弈时实际持有的资源无法直接获知,可以通过已知资源信息预测待测对象在第i轮博弈时持有的资源,以完善确定博弈过程资源使用策略所需的相关信息。根据目标对象和待测对象在第i轮博弈时持有的资源,可以确定目标对象在第i轮博弈使用的资源,从而实现人工智能对目标对象的资源使用决策,使得人工智能可以应用于不完美信息博弈,满足了用户对不完美信息博弈的需求。 【EN】The embodiment of the application discloses a data processing method and a related device based on artificial intelligence, and in an imperfect information game scene comprising a plurality of participating objects, known resource information can be determined aiming at the ith round of game, wherein the known resource information comprises resources held by a target object in the ith round of game and resources used by the plurality of participating objects in the previous i-1 round of game. Because the resources actually held by the object to be tested in the ith game cannot be directly known, the resources held by the object to be tested in the ith game can be predicted through the known resource information, so that the relevant information required by determining the resource use strategy in the game process is perfected. According to the target object and the resources held by the object to be detected in the ith game, the resources used by the target object in the ith game can be determined, so that the resource use decision of artificial intelligence on the target object is realized, the artificial intelligence can be applied to the imperfect information game, and the requirement of a user on the imperfect information game is met.
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4:
[发明]
【中文】一种角色控制的方法、模型训练的方法以及相关装置 【EN】Role control method, model training method and related device
申请号:
201911142931.4
公开号:CN110930483A 主分类号:G06T13/40
申请人:
【中文】腾讯科技(深圳)有限公司【EN】TENCENT TECHNOLOGY (SHENZHEN) Co.,Ltd.
申请日:2019.11.20 公开日:2020.03.27
发明人:
【中文】张榕
;
曾子骄【EN】Zhang Rong
;
Zeng Zijiao
摘要:【中文】本申请公开了一种角色控制的方法,包括:获取目标角色在第一时刻的第一状态信息,其中,目标角色包括M个关节,第一状态信息用于表示M个关节的信息;基于第一状态信息,通过状态预测模型获取目标角色在第二时刻的第一动作信息,第一动作信息用于表示(M‑1)个关节的信息;根据第一动作信息获取第一力矩,其中,第一力矩包括(M‑1)个关节中每个关节在第二时刻下的力矩;基于第一力矩,通过物理引擎控制目标角色执行第一动作。本申请还公开了一种模型训练的方法。本申请能够根据动作信息计算出作用于角色各个关节的力矩,进而在物理引擎中基于力矩对角色进行控制,从而生成逼真的动作序列,提升了角色的动作效果。 【EN】The application discloses a role control method, which comprises the following steps: acquiring first state information of a target role at a first moment, wherein the target role comprises M joints, and the first state information is used for representing information of the M joints; acquiring first motion information of the target character at a second moment through a state prediction model based on the first state information, wherein the first motion information is used for representing information of (M-1) joints; acquiring a first moment according to the first action information, wherein the first moment comprises the moment of each joint in the (M-1) joints at a second moment; and controlling the target role to execute a first action through the physical engine based on the first moment. The application also discloses a model training method. According to the method and the device, the moment acting on each joint of the role can be calculated according to the action information, and then the role is controlled in the physical engine based on the moment, so that a vivid action sequence is generated, and the action effect of the role is improved.
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5:
[发明]
【中文】一种水泥熟料性能预测方法 【EN】Cement clinker performance prediction method
申请号:
201911162698.6
公开号:CN110929936A 主分类号:G06Q10/04
申请人:
【中文】华润水泥技术研发(广西)有限公司【EN】China Resources Cement Technology Research and Development (Guangxi) Co., Ltd.
申请日:2019.11.25 公开日:2020.03.27
发明人:
【中文】劳里林
;
曾荣
;
班龙【EN】Lao Lilin
;
Zeng Rong
;
Ban Long
摘要:【中文】本发明公开了一种水泥熟料性能预测方法,该方法包括如下步骤:获取水泥熟料的基本物理化学数据及其相应的实测性能数据的数据集;对数据预处理后,采用数据分析方法将基本物理化学数据与其相应的实测性能数据相关联,得到计算模型;利用计算模型对待测熟料进行预测。所述的基本物理化学数据是指X射线衍射图谱;所述的实测性能数据为水泥胶砂的标准稠度、凝结时间、抗折强度、抗压强度、水化热和安定性中的至少一种。本发明方法中所需的基本物理化学数据易于获得、所需时间较短,不需要获得熟料的矿物组成和结晶学特性,X射线衍射图谱的获得时间则为20分钟左右,熟料性能预测可在1个小时内完成。 【EN】The invention discloses a cement clinker performance prediction method, which comprises the following steps: acquiring basic physical and chemical data of cement clinker and a data set of corresponding actually measured performance data; after data are preprocessed, basic physicochemical data and corresponding actually measured performance data are correlated by adopting a data analysis method to obtain a calculation model; and predicting the clinker to be detected by using the calculation model. The basic physical and chemical data refer to an X-ray diffraction pattern; the actually measured performance data is at least one of standard consistency, setting time, breaking strength, compressive strength, hydration heat and stability of the cement mortar. The method has the advantages that the required basic physical and chemical data are easy to obtain, the required time is short, the mineral composition and the crystallography characteristics of the clinker are not required to be obtained, the obtaining time of an X-ray diffraction pattern is about 20 minutes, and the clinker performance prediction can be completed within 1 hour.
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6:
[发明]
【中文】一种注入泡沫液体的酸化方法 【EN】Acidification method for injecting foam liquid
申请号:
201911302728.9
公开号:CN111022024A 主分类号:E21B43/27
申请人:
【中文】陕西务本能源科技有限公司【EN】Shaanxi Wuben Energy Technology Co., Ltd
申请日:2019.12.19 公开日:2020.04.17
发明人:
【中文】曾亚勤
;
陈荣【EN】Zeng Yaqin
;
Chen Rong
摘要:【中文】本发明涉及一种注入泡沫液体的酸化方法。该方法包括以下步骤:1)注入泡沫液体:通过泡沫液体压力设备将泡沫液体注入地层;3)酸化:对注入泡沫液体后的地层进行酸化。本发明具有利于残酸返排、减少地层的二次伤害的优点。 【EN】The invention relates to an acidification method for injecting foam liquid. The method comprises the following steps: 1) injecting a foaming liquid: injecting a foamed liquid into the formation through a foamed liquid pressure device; 3) acidifying: and acidizing the stratum after the foam liquid is injected. The invention has the advantages of being beneficial to residual acid flowback and reducing secondary damage of stratum.
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7:
[发明]
【中文】一种基于迟早环的到达时间差跟踪方法 【EN】Arrival time difference tracking method based on early-late loop
申请号:
201911080242.5
公开号:CN110995627A 主分类号:H04L25/02
申请人:
【中文】杭州电子科技大学【EN】HANGZHOU DIANZI University
申请日:2019.11.07 公开日:2020.04.10
发明人:
【中文】张玥
;
曾嵘【EN】Zhang Yue
;
Zeng Rong
摘要:【中文】一种基于迟早环的到达时间差跟踪方法,包括如下步骤:步骤1:基站向移动台发送导频序列,移动台估计出不同天线接收信号的到达时间差TDOA初值;步骤2:基站利用移动台反馈的TDOA时延因子
构造正交恢复预编码矩阵;步骤3:移动台利用估计得到的TDOA时延因子
构成迟早环,迟早环跟踪范围为
通过迟早环构造
个解码矩阵分别对接收信号进行
次解码;步骤4:估计迟早环中不同时延因子构成的解码矩阵对应的解码结果的信噪比,取这些估计信噪比中取值最大的SNR,利用其对应迟早环中的TDOA时延因子
来更新TDOA时延因子
的取值,将修正后的TDOA时延因子
通过上行信道反馈给基站;步骤5:基站根据修正后的TDOA时延因子
构造相应的正交恢复预编码矩阵。 【EN】A method for tracking arrival time difference based on an early-late loop comprises the following steps: step 1: a base station sends a pilot frequency sequence to a mobile station, and the mobile station estimates the initial value of the time difference of arrival (TDOA) of signals received by different antennas; step 2: TDOA time delay factor fed back by base station by using mobile station
Constructing an orthogonal recovery precoding matrix; and step 3: TDOA time delay factor obtained by mobile station through estimation
Form an early-late loop with a tracking range of
By early-late ring construction
The decoding matrixes respectively carry out on the received signals
Secondary decoding; and 4, step 4: estimating the signal-to-noise ratio of the decoding result corresponding to the decoding matrix formed by different delay factors in the early-late loop, taking the SNR with the maximum value in the estimated signal-to-noise ratios, and utilizing the TDOA delay factor in the corresponding early-late loop
To update the TDOA delay factor
Is to be corrected TDOA delay factor
Feeding back to the base station through an uplink channel; and 5: the base station delays the factor according to the corrected TDOA
And constructing a corresponding orthogonal recovery precoding matrix.
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8:
[发明]
【中文】车身结构及车辆 【EN】Vehicle body structure and vehicle
申请号:
201811420124.X
公开号:CN111216797A 主分类号:B62D21/15
申请人:
【中文】宝沃汽车(中国)有限公司【EN】BORGWARD AUTOMOTIVE (CHINA) Co.,Ltd.
申请日:2018.11.26 公开日:2020.06.02
发明人:
【中文】张洁
;
曾榕【EN】Zhang Jie
;
Zeng Rong
摘要:【中文】本公开涉及一种车身结构及车辆,所述车身结构包括前防撞梁、纵梁、侧边加强梁、前端盖板以及吸能盒,吸能盒为钣金件,吸能盒包括主体部和从主体部上伸出的分支部,沿车身的横向分支部位于主体部的外侧,纵梁的前端和侧边加强梁的前端均连接于前端盖板,主体部的前端与前防撞梁相连,主体部的后端和分支部的后端均与前端盖板相连。通过增设分支部,可以增加主体部与前端盖板的连接强度,当单侧的主体部受力时,另一侧的主体部不会发生撕裂的情况,结构稳定性高。 【EN】The utility model relates to a vehicle body structure and vehicle, vehicle body structure includes preceding crashproof roof beam, longeron, side stiffening beam, front end apron and energy-absorbing box, the energy-absorbing box is the sheet metal component, the energy-absorbing box includes main part and the branch portion that stretches out from the main part, lie in the outside of main part along the horizontal branch portion of automobile body, the front end of longeron and the front end of side stiffening beam all connect in front end apron, the front end of main part links to each other with preceding crashproof roof beam, the rear end of main part and the rear end of branch portion all link to each other with front end apron. Through addding branch portion, can increase the joint strength of main part and front end apron, when the main part atress of unilateral, the tearing condition can not take place for the main part of opposite side, and structural stability is high.
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9:
[发明]
【中文】一种注入气体的酸化方法 【EN】Acidification method of injected gas
申请号:
201911289254.9
公开号:CN111058823A 主分类号:E21B43/27
申请人:
【中文】陕西务本能源科技有限公司【EN】Shaanxi Wuben Energy Technology Co., Ltd
申请日:2019.12.19 公开日:2020.04.24
发明人:
【中文】曾亚勤
;
陈荣【EN】Zeng Yaqin
;
Chen Rong
摘要:【中文】本发明涉及一种注入气体的酸化方法。该方法包括以下步骤:1)注入气体:连接气体压力设备管线,通过气体压力设备将气体注入地层;3)酸化:对注入气体后的地层进行酸化。本发明具有补充地层能量、缓解二次伤害、提高地层渗透率、提高油井增产能力和改善酸化效果的优点。 【EN】The invention relates to an acidification method of injected gas. The method comprises the following steps: 1) gas injection: connecting a gas pressure equipment pipeline, and injecting gas into the stratum through the gas pressure equipment; 3) acidifying: and acidizing the stratum after the gas is injected. The invention has the advantages of supplementing stratum energy, relieving secondary damage, improving stratum permeability, improving oil well production increasing capability and improving acidification effect.
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10:
[发明]
【中文】一种低温耐撕裂硅酮密封胶及其制备方法 【EN】Low-temperature tear-resistant silicone sealant and preparation method thereof
申请号:
201911420395.X
公开号:CN111057519A 主分类号:C09J183/04
申请人:
【中文】广州市白云化工实业有限公司【EN】GUANGZHOU BAIYUN CHEMICAL INDUSTRY Co.,Ltd.
申请日:2019.12.31 公开日:2020.04.24
发明人:
【中文】曾容
;
郭嘉玲【EN】
Zeng Rong
;
Guo Jialing
摘要:【中文】本发明涉及一种低温耐撕裂硅酮密封胶及其制备方法,低温耐撕裂硅酮密封胶包括如下质量份的原料组分:第一有机聚硅氧烷聚合物80~100份、第二有机聚硅氧烷聚合物15~30份、改性纳米碳酸钙60~80份、增塑剂10~30份、交联剂5~15份、偶联剂2~5份、以及催化剂0.5~3份,上述低温耐撕裂硅酮密封胶中各组分配比合理,采用低粘端羟基封端聚二甲基硅氧烷与高粘端羟基封端聚二甲基硅氧烷进行复配,并通过加入经复合改性剂处理的改性纳米碳酸钙,加强有机聚硅氧烷聚合物与其他填料组分在低温下的界面相互作用,同时在交联剂的作用下,使得在‑50℃以下,低温耐撕裂硅酮密封胶的撕裂强度提高。 【EN】The invention relates to a low-temperature tear-resistant silicone sealant and a preparation method thereof, wherein the low-temperature tear-resistant silicone sealant comprises the following raw material components in parts by mass: the low-temperature tear-resistant silicone sealant comprises, by weight, 80-100 parts of a first organopolysiloxane polymer, 15-30 parts of a second organopolysiloxane polymer, 60-80 parts of modified nano calcium carbonate, 10-30 parts of a plasticizer, 5-15 parts of a cross-linking agent, 2-5 parts of a coupling agent and 0.5-3 parts of a catalyst, wherein the low-temperature tear-resistant silicone sealant is reasonable in component ratio, low-viscosity-end hydroxyl-terminated polydimethylsiloxane and high-viscosity-end hydroxyl-terminated polydimethylsiloxane are compounded, the interface interaction of the organopolysiloxane polymer and other filler components at a low temperature is enhanced by adding the modified nano calcium carbonate treated by the composite modifying agent, and the tear strength of the low-temperature tear-resistant silicone sealant is improved at a temperature below 50 ℃ below zero under the action of the cross-linking agent.
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