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1:
[发明]
【中文】一种利用杠杆原理安装或拆卸电源模块的电源箱 【EN】Power box for mounting or dismounting power module by utilizing lever principle
申请号:
201911115340.8
公开号:CN110868083A 主分类号:H02M7/00
申请人:
【中文】韶关高尔德防雷科技有限公司【EN】Shaoguan Gauld Lightning Protection Technology Co., Ltd.
申请日:2019.11.14 公开日:2020.03.06
发明人:
【中文】蔡成辉
;
庄丽香【EN】Cai Chenghui
;
Zhuang Lixiang
摘要:【中文】一种利用杠杆原理安装或拆卸电源模块的电源箱,包括电源箱和电源模块,所述电源箱设置电源模块安装槽,所述电源模块可通过电源模块安装槽安装于所述电源箱,所述电源模块上设置锁紧机构,所述电源模块安装槽设置限位槽,所述锁紧机构设有旋转轴,所述锁紧机构通过旋转轴连接在所述电源模块上,所述锁紧机构通过旋转轴可在电源模块上转动,且所述锁紧机构可卡进限位槽后转动将所述电源模块在电源模块安装槽拆卸或锁紧。本发明成功解决了电源模块安装和拆卸不方便的问题,也解决了电源模块需要大力推进和大力拉出的不便,使安装和拆卸更人性化,且保证了两者的平稳运行,确保电源模块在使用、运输和震动过程中不会因为设备的移动造成脱落或松动。 【EN】The utility model provides an utilize lever principle installation or dismantlement power module's power supply box, includes power supply box and power module, the power supply box sets up the power module mounting groove, power module accessible power module mounting groove install in the power supply box, the last locking mechanism that sets up of power module, the power module mounting groove sets up the spacing groove, locking mechanism is equipped with the rotation axis, locking mechanism passes through the rotation axis and connects on the power module, locking mechanism can rotate on power module through the rotation axis, just locking mechanism can block to rotate behind the spacing groove will power module dismantles or locks in the power module mounting groove. The invention successfully solves the problem of inconvenience in mounting and dismounting the power supply module, also solves the inconvenience that the power supply module needs to be pushed in and pulled out greatly, makes the mounting and dismounting more humanized, ensures the stable operation of the power supply module and the power supply module, and ensures that the power supply module cannot fall off or loosen due to the movement of equipment in the using, transporting and vibrating processes.
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2:
[发明]
【中文】一种高分子聚合物熔融纺丝喷丝板的清洗方法 【EN】Cleaning method of high molecular polymer melt spinning spinneret plate
申请号:
201911069499.0
公开号:CN111020716A 主分类号:D01D4/04
申请人:
【中文】福建立亚新材有限公司【EN】FUJIAN LIYA NEW MATERIAL Co.,Ltd.
申请日:2019.11.05 公开日:2020.04.17
发明人:
【中文】蔡武集
;
蔡径昭
;
庄佳慧
;
王强【EN】Cai Wuji
;
Cai Jingzhao
;
Zhuang Jiahui
;
Wang Qiang
摘要:【中文】本发明公开了一种高分子聚合物熔融纺丝喷丝板的清洗方法,将拆取的喷丝板投入至盛有二甲苯的超声波清洗设备中进行浸泡和超声清洗,得到预处理的喷丝板;将预处理的喷丝板进行吹干并对吹干的喷丝板进行纺丝孔检测;将吹干并具有80%以上纺丝孔为通孔的喷丝板放入到盐浴炉中进行预热和盐浴,得到盐浴的喷丝板;将盐浴的喷丝板冷却,后将其进行超声波清洗并吹干,得到一次水洗并吹干的喷丝板;将一次水洗并吹干的喷丝板投入至盛装有稀硝酸的容置槽中浸泡,得到酸洗的喷丝板;将酸洗的喷丝板进行超声波清洗并吹干,得到二次水洗并吹干的喷丝板;将二次水洗并吹干的喷丝板进行纺丝孔检测,直至清洗合格后结束清洗。提高清洗效率,保证了清洁度。 【EN】The invention discloses a cleaning method of a high molecular polymer melt spinning spinneret plate, which comprises the steps of putting the disassembled spinneret plate into ultrasonic cleaning equipment containing dimethylbenzene for soaking and ultrasonic cleaning to obtain a pretreated spinneret plate; carrying out blow-drying on the pretreated spinneret plate and carrying out spinning hole detection on the blow-dried spinneret plate; putting the blow-dried spinneret plate with more than 80% of spinning holes as through holes into a salt bath furnace for preheating and salt bath to obtain the spinneret plate of the salt bath; cooling the spinneret plate of the salt bath, and then carrying out ultrasonic cleaning and blow-drying on the spinneret plate to obtain a spinneret plate which is washed and blow-dried for the first time; putting the spinneret plate which is washed and dried by water for the first time into a containing groove containing dilute nitric acid for soaking to obtain a pickled spinneret plate; carrying out ultrasonic cleaning and blow-drying on the acid-washed spinneret plate to obtain a twice-washed and blow-dried spinneret plate; and (4) carrying out spinning hole detection on the spinneret plate subjected to secondary washing and drying until the spinneret plate is qualified in cleaning, and finishing the cleaning. The cleaning efficiency is improved, and the cleanliness is ensured.
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3:
[发明]
【中文】一种贾卡褶皱立体织物的制作工艺及其织物 【EN】Manufacturing process of jacquard folded three-dimensional fabric and fabric
申请号:
202010090939.7
公开号:CN111254568A 主分类号:D04B21/08
申请人:
【中文】信泰(福建)科技有限公司【EN】Sincetech (Fujian) Technology Co.,Ltd.
申请日:2020.02.13 公开日:2020.06.09
发明人:
【中文】蔡清来
;
刘恋
;
叶美月
;
庄滕雄
;
蔡燕玲【EN】Cai Qinglai
;
Liu Lian
;
Ye Meiyue
;
Zhuang Tengxiong
;
Cai Yanling
摘要:【中文】本发明公开了一种贾卡褶皱立体织物的制作工艺,包括以下步骤:S1、编织准备,在电脑上设计织物的花型,应用自主软件导出上机文件;S2、选取具有五把以上梳栉的纱架经编机,其中五把所述梳栉按其排列位置依次为梳栉GB1、贾卡梳栉JB1.1、贾卡梳栉JB1.2、梳栉GB3和梳栉GB4;S3、上机编织:所述梳栉GB3和梳栉GB4在所述单贾卡经编机上垫纱成圈形成单丝布面,所述贾卡梳栉JB1.1和贾卡梳栉JB1.2做织物的提花,以涤氨纶包芯纱覆盖涤纶单丝布面,一种贾卡褶皱立体织物,采用上述一种贾卡褶皱立体织物的制作工艺制作而成,本发明利用氨纶的弹性和收缩性进行编织固定,在布面上形成褶皱,可以稳定控制皱感、皱度的状态,减少了工作流程,降低了成本,且不会对织物造成伤害。 【EN】The invention discloses a manufacturing process of jacquard fold three-dimensional fabric, which comprises the following steps: s1, preparing weaving, designing the pattern of the fabric on a computer, and exporting a computer file by using autonomous software; s2, selecting a creel warp knitting machine with more than five guide bars, wherein the five guide bars are sequentially a guide bar GB1, a jacquard guide bar JB1.1, a jacquard guide bar JB1.2, a guide bar GB3 and a guide bar GB4 according to arrangement positions of the guide bars; s3, weaving on a machine: the jacquard three-dimensional jacquard folded fabric is manufactured by the manufacturing process of the jacquard three-dimensional folded fabric, and the elasticity and the contractibility of spandex are utilized to weave and fix, folds are formed on the fabric surface, the states of the fold feeling and the fold degree can be stably controlled, the working flow is reduced, the cost is reduced, and the fabric cannot be damaged.
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4:
[发明]
【中文】采用CAN数据加密的通讯方法 【EN】Communication method adopting CAN data encryption
申请号:
201911235145.9
公开号:CN110932852A 主分类号:H04L9/08
申请人:
【中文】苏州科纽普新能源科技有限公司【EN】SUZHOU KENIUPU NEW ENERGY TECHNOLOGY CO., LTD.
申请日:2019.12.05 公开日:2020.03.27
发明人:
【中文】蔡乾
;
陈祺
;
李壮
;
胡谆人【EN】Cai Qian
;
Chen Qi
;
Li Zhuang
;
Hu Zhunren
摘要:【中文】本发明公开了一种采用CAN数据加密的通讯方法。本发明一种采用CAN数据加密的通讯方法,包括:获取CAN总线上的数据,所述数据包括音频数据和视频数据;将获取的CAN总线上的数据进行量子加密得到的加密后的数据;将加密后的数据传输至服务器,进行量子解密得到解密后的数据。本发明的有益效果:利用量子加密CAN总线安全性高,同时将采集到的CAN总线数据实时、及时的上传至服务器,增强了数据的时效性,提升数据的传输效率。 【EN】The invention discloses a communication method adopting CAN data encryption. The invention relates to a communication method adopting CAN data encryption, which comprises the following steps: acquiring data on a CAN bus, wherein the data comprises audio data and video data; carrying out quantum encryption on the acquired data on the CAN bus to obtain encrypted data; and transmitting the encrypted data to a server, and carrying out quantum decryption to obtain decrypted data. The invention has the beneficial effects that: utilize the high security of quantum encryption CAN bus, the CAN bus data that will gather simultaneously is real-time, timely upload to the server, has strengthened the ageing of data, promotes the transmission efficiency of data.
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5:
[发明]
【中文】一种贴合脚部的自适应鞋面 【EN】Self-adaptation vamp of laminating foot
申请号:
201911017060.3
公开号:CN110946366A 主分类号:A43B23/02
申请人:
【中文】晋江市达亿经编织造有限公司【EN】JINJIANG DAYI WARP KNITTING Co.,Ltd.
申请日:2019.10.24 公开日:2020.04.03
发明人:
【中文】蔡金成
;
吴延捷
;
庄斯宁【EN】Cai Jincheng
;
Wu Yanjie
;
Zhuang Sining
摘要:【中文】本发明的自适应鞋面,在鞋面内设置了流体构件和紧固件,流体构件始终接触鞋面,能够吸收鞋面弯折时的弯折力,同时,流体构件为爪型结构,其结构适应鞋面在发生弯曲时的受力情况,流体构件还可以通过膨胀变形来对由于鞋面弯曲时发生弯折的鞋面进行很好的舒展、理顺,从而主动修复该处的鞋面折痕,同时紧固件也适应鞋面弯折进行动作,弯折时扣紧跟骨,防止鞋脱离脚跟,从而能够贴合脚部,同时,分叉部与主体部之间均为连通状态,因此,其可以应对复杂的鞋面弯曲情况,进一步提高了一体鞋面结构的耐磨性和舒适性。 【EN】The self-adaptive vamp is provided with the fluid member and the fastener, the fluid member is always in contact with the vamp and can absorb the bending force when the vamp is bent, meanwhile, the fluid member is of a claw-shaped structure, the structure of the fluid member is suitable for the stress condition when the vamp is bent, the fluid member can well stretch and straighten the vamp bent when the vamp is bent through expansion deformation, so that the crease of the vamp at the position is actively repaired, meanwhile, the fastener is also suitable for the bending action of the vamp, the calcaneus is fastened when the vamp is bent, the shoe is prevented from being separated from the heel, the foot can be attached, and meanwhile, the crotch part and the main body part are in a communicated state, so that the self-adaptive vamp can deal with the complicated bending condition of the vamp, and the wear resistance and the comfort of the integrated vamp structure are further.
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6:
[发明]
【中文】一种自动消除鞋痕的透气网布鞋面 【EN】Breathable mesh vamp capable of automatically eliminating shoe marks
申请号:
201911016729.7
公开号:CN111000327A 主分类号:A43B23/02
申请人:
【中文】晋江市达亿经编织造有限公司【EN】JINJIANG DAYI WARP KNITTING Co.,Ltd.
申请日:2019.10.24 公开日:2020.04.14
发明人:
【中文】蔡金成
;
吴延捷
;
庄斯宁【EN】Cai Jincheng
;
Wu Yanjie
;
Zhuang Sining
摘要:【中文】本发明的自动消除鞋痕的透气网布鞋面,在鞋面内设置了流体构件,流体构件始终接触鞋面,能够吸收鞋面弯折时的弯折力,同时,流体构件为爪型结构,其结构适应鞋面在发生弯曲时的受力情况,流体构件还可以通过膨胀变形来对由于鞋面弯曲时发生弯折的鞋面进行很好的舒展、理顺,从而主动修复该处的鞋面折痕。同时,分叉部与主体部之间均为连通状态,因此,其可以应对复杂的鞋面弯曲情况,进一步提高了鞋面的耐磨性和舒适性。 【EN】The breathable mesh vamp capable of automatically eliminating the shoe marks is characterized in that the fluid component is arranged in the vamp and is always in contact with the vamp, so that the bending force of the vamp during bending can be absorbed, meanwhile, the fluid component is of a claw-shaped structure, the structure of the fluid component is suitable for the stress condition of the vamp during bending, and the fluid component can be used for well unfolding and straightening the vamp bent during bending of the vamp through expansion deformation, so that the crease of the vamp at the position can be actively repaired. Meanwhile, the crotch part and the main body part are communicated, so that the shoe upper can cope with the complex bending condition of the shoe upper, and the wear resistance and the comfort of the shoe upper are further improved.
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7:
[发明]
【中文】基于传感器阵列与脉冲响应原理的建筑空间中泄漏源识别装置及方法 【EN】Leakage source identification device and method in building space based on sensor array and impulse response principle
申请号:
202010193728.6
公开号:CN111257519A 主分类号:G01N33/00
申请人:
【中文】南京工业大学【EN】NANJING TECH University
申请日:2020.03.18 公开日:2020.06.09
发明人:
【中文】李斐
;
周康
;
庄俊亿
;
蔡浩【EN】Li Fei
;
Zhou Kang
;
Zhuang Junyi
;
Cai Hao
摘要:【中文】本发明实施例公开了一种利用浓度传感器阵列与脉冲响应原理在建筑内发生污染物释放或危险气体泄漏时,快速识别出泄漏源位置与泄漏源强度的装置及方法。该装置包括气体浓度传感器阵列、示踪气体脉冲释放装置和处理器。所述处理器连接浓度传感器并分析其数据,脉冲释放装置在建筑不同区间以脉冲方式释放示踪气体。该方法首先获得潜在泄漏源对应浓度传感器阵列的响应矩阵,然后可根据传感器阵列实时监测反馈的数值,结合正则化方法与贝叶斯概率模型计算出泄漏源的强度与位置。本发明方法能在不依赖数值模拟的情况下,对建筑内泄漏源位置和强度进行准确的反演估计,对保障建筑环境安全具有重要意义。 【EN】The embodiment of the invention discloses a device and a method for rapidly identifying the position of a leakage source and the intensity of the leakage source when a concentration sensor array and a pulse response principle are utilized to release pollutants or leak dangerous gas in a building. The apparatus includes an array of gas concentration sensors, a trace gas pulse release device, and a processor. The processor is connected with the concentration sensor and analyzes the data of the concentration sensor, and the pulse release device releases the tracer gas in different sections of the building in a pulse mode. According to the method, a response matrix of a concentration sensor array corresponding to a potential leakage source is obtained, and then the intensity and the position of the leakage source can be calculated by combining a regularization method and a Bayesian probability model according to a feedback value monitored by the sensor array in real time. The method can accurately perform inversion estimation on the position and the strength of the leakage source in the building without depending on numerical simulation, and has important significance for guaranteeing the safety of the building environment.
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8:
[发明]
【中文】基于脉冲响应法与传感器阵列的综合管廊燃气泄漏源识别方法 【EN】Comprehensive pipe gallery gas leakage source identification method based on pulse response method and sensor array
申请号:
202010193729.0
公开号:CN111256043A 主分类号:F17D5/02
申请人:
【中文】南京工业大学【EN】NANJING TECH University
申请日:2020.03.18 公开日:2020.06.09
发明人:
【中文】周康
;
李斐
;
庄俊亿
;
蔡浩【EN】Zhou Kang
;
Li Fei
;
Zhuang Junyi
;
Cai Hao
摘要:【中文】本发明公布了一种利用脉冲响应与浓度传感器阵列在综合管廊燃气管道发生泄漏时,快速识别出泄漏源位置与泄漏源释放量大小的方法。该方法首先在潜在泄漏源位置进行脉冲源释放获得对应的响应矩阵,然后即可根据综合管廊舱内浓度传感器的实时监测反馈的数值,再结合正则化方法与贝叶斯概率模型计算出泄漏源的强度与位置。本发明方法能快速布置并对综合管廊燃气管道泄漏源位置进行准确的反演估计,对安全工程具有很大意义,同时该方法也可拓展到室内空间的污染源辨识之中。 【EN】The invention discloses a method for rapidly identifying the position and release amount of a leakage source when a gas pipeline of a comprehensive pipe rack leaks by using an impulse response and concentration sensor array. According to the method, firstly, pulse source release is carried out at the position of a potential leakage source to obtain a corresponding response matrix, then, the strength and the position of the leakage source can be calculated according to the real-time monitoring feedback numerical value of a concentration sensor in a comprehensive pipe gallery cabin by combining a regularization method and a Bayesian probability model. The method can be used for quickly arranging and accurately performing inversion estimation on the position of the leakage source of the gas pipeline of the comprehensive pipe gallery, has great significance to safety engineering, and can be expanded to the identification of pollution sources in indoor space.
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9:
[发明]
【中文】一种隐患数据知识图谱的构建方法及装置、设备、介质 【EN】Hidden danger data knowledge graph construction method, device, equipment and medium
申请号:
201910652010.6
公开号:CN110851611A 主分类号:G06F16/36
申请人:
【中文】华瑞新智科技(北京)有限公司【EN】Huarui Xinzhi Technology (Beijing) Co., Ltd.
申请日:2019.07.18 公开日:2020.02.28
发明人:
【中文】刘鑫
;
庄浩
;
张继勇
;
蔡恒
;
喻磊【EN】Liu Xin
;
Zhuang Hao
;
Zhang Jiyong
;
Cai Heng
;
Yu Lei
摘要:【中文】本申请公开了一种隐患数据知识图谱的构建方法及装置、设备、介质。所述方法包括:获取隐患数据;通过预先训练的分类模型,从隐患数据中提取关系特征数据,关系特征数据反映了多种隐患属性之间的语义关系;根据关系特征数据,生成图谱节点数据;根据图谱节点数据,生成隐患数据知识图谱。本申请利用基于机器学习的分类模型从隐患数据中提取关系特征数据,再据此生成隐患数据知识图谱,从而有效地组织了隐患数据,便于可视化查看隐患数据的内在联系,发现有用信息,起到提前预警隐患出现的设备和部位的作用,并可采取相应的预防措施和决策准备。 【EN】The application discloses a method, a device, equipment and a medium for constructing a hidden danger data knowledge graph. The method comprises the following steps: acquiring hidden danger data; extracting relation characteristic data from the hidden danger data through a pre-trained classification model, wherein the relation characteristic data reflects semantic relations among various hidden danger attributes; generating graph node data according to the relation characteristic data; and generating a hidden danger data knowledge graph according to the graph node data. The method and the device have the advantages that the classification model based on machine learning is utilized to extract the relation characteristic data from the hidden danger data, and then the hidden danger data knowledge graph is generated, so that the hidden danger data is effectively organized, the internal relation of the hidden danger data is conveniently and visually checked, useful information is found, the effect of early warning of equipment and parts where the hidden danger appears is played, and corresponding preventive measures and decision making preparation can be taken.
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10:
[发明]
【中文】半导体器件及其制造方法 【EN】Semiconductor device and method for manufacturing the same
申请号:
201910753783.3
公开号:CN110890352A 主分类号:H01L25/04
申请人:
【中文】台湾积体电路制造股份有限公司【EN】Taiwan Semiconductor Manufacturing Company, Ltd.
申请日:2019.08.15 公开日:2020.03.17
发明人:
【中文】蔡柏豪
;
庄博尧
;
游明志
;
郑心圃【EN】Cai Baihao
;
Zhuang Boyao
;
You Mingzhi
;
Zheng Xinpu
摘要:【中文】一种器件包括再分布结构;第一半导体器件、第一天线和第一导电柱,位于再分布结构上并且电连接到再分布结构;天线结构,位于第一半导体器件上方,其中,天线结构包括与第一天线不同的第二天线,其中天线结构包括接合到第一导电柱的外部连接件,以及在天线结构和再分布结构之间延伸的模制材料,模制材料围绕第一半导体器件、第一天线、外部连接件和第一导电柱。本发明的实施例还涉及半导体器件及其制造方法。 【EN】A device includes a redistribution structure; a first semiconductor device, a first antenna, and a first conductive pillar located on and electrically connected to the redistribution structure; an antenna structure located over the first semiconductor device, wherein the antenna structure includes a second antenna different from the first antenna, wherein the antenna structure includes an external connection bonded to the first conductive pillar, and a molding material extending between the antenna structure and the redistribution structure, the molding material surrounding the first semiconductor device, the first antenna, the external connection, and the first conductive pillar. Embodiments of the invention also relate to semiconductor devices and methods of manufacturing the same.
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