in:(Maocheng Li)

Low-purine soy milk powder and preparation method therefor AU2020316414A
[WANG YAO, DENG MAOCHENG, LI JING, XIE JUNHONG, LI RUIMIN, HUANG HUAIXING, CAI LIANG, WANG FUCHENG, HUANG JIEHUA, TAN HONGYE, ZHAO XIANGYUAN, LIN KENGCHUN, LIAO MINCONG, ZOU XIAONA, LI JIANZHONG] CN;CN Low-purine soy milk powder and a preparation method therefor. The method comprises: first, preparing soy milk and a malt extract into a fermentation medium, and decomposing purine substances in the soy milk by means of fermentation with a yeast capable of using purine; and then, treating the fermentation broth by using the technologies of filtration, concentration, sterilization, homogenization, drying and the like to obtain low-purine soy milk powder.
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ARC WELDING CONNECTION ADJUSTMENT DEVICE FOR WELD POOL TEMPERATURE MEASUREMENT PCT/CN2016/089091
[LIU, Lei 刘雷, QIAO, Hongchao 乔红超, LI, Maocheng 李茂程, LIU, Dongju 刘冬菊, TANG, Weidong 唐伟东, QIAO, Yongpeng 谯永鹏, LI, Wenming 李文明] No. 18A-1 Feiyun Road, Hunnan New District 中国辽宁省沈阳市浑南新区飞云路18甲-1号, Liaoning 110168Shenyang, Liaoning 110168 An arc welding connection adjustment device for weld pool temperature measurement. The device comprises a robot connection plate (1), three temperature sensor holding devices (2) provided in different directions, a welding gun connection member (3) and a wire feeder tip connection member (4). One end of the robot connection plate has a structure of a connection flange (11), and the other end thereof is provided with an elongated recess (25). A side edge of the elongated recess is connected with the wire feeder connection plate and a welding gun connection plate. The three sensor holding devices are connected at three edges of the robot connection plate. The measurement points of the three temperature sensors are respectively positioned in front of a weld pool along a moving direction thereof and at left and right sides of the weld pool. The arc welding connection adjustment device for weld pool temperature measurement can flexibly connect an arc welding gun and a temperature measurement sensor together, such that relative positions of the arc welding gun with respect to a weld workpiece, the temperature measurement sensor with respect to the weld workpiece, and the arc welding gun with respect to the temperature measurement sensor can be conveniently adjusted, thus achieving accurate measurement of a weld pool temperature, ensuring the quality of hybrid welding, and providing a good shaping effect. An arc welding connection adjustment device for weld pool temperature measurement. The device comprises a robot connection plate (1), three temperature sensor holding devices (2) provided in different directions, a welding gun connection member (3) and a wire feeder tip connection member (4). One end of the robot connection plate has a structure of a connection flange (11), and the other end thereof is provided with an elongated recess (25). A side edge of the elongated recess is connected with the wire feeder connection plate and a welding gun connection plate. The three sensor holding devices are connected at three edges of the robot connection plate. The measurement points of the three temperature sensors are respectively p
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KR20187003281A
[LIU LEI, QIAO HONGCHAO, LI MAOCHENG, LIU DONGJU, TANG WEIDONG, QIAO YONGPENG, LI WENMING] CN
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LOW-PURINE SOY MILK POWDER AND PREPARATION METHOD THEREFOR PCT/CN2020/098087
[DENG, Maocheng 邓毛程, LI, Jing 李静, XIE, Junhong 谢俊宏, LI, Ruimin 栗瑞敏, WANG, Yao 王瑶, HUANG, Huaixing 黄怀兴, CAI, Liang 蔡亮, WANG, Fucheng 王富程, HUANG, Jiehua 黄洁华, TAN, Hongye 谭宏业, ZHAO, Xiangyuan 赵祥源, LIN, Kengchun 林铿淳, LIAO, Mincong 廖民聪, ZOU, Xiaona 邹小娜, LI, JianZhong 李建忠] No. 152, Xingangxi Road, Haizhu District 中国广东省广州市海珠区新港西路152号, Guangdong 510300Guangzhou, Guangdong 510300;Ecological Culture Education Park, Houjie Town 中国广东省东莞市厚街镇生态文化教育园, Guangdong 523960Dongguan, Guangdong 523960 Low-purine soy milk powder and a preparation method therefor. The method comprises: first, preparing soy milk and a malt extract into a fermentation medium, and decomposing purine substances in the soy milk by means of fermentation with a yeast capable of using purine; and then, treating the fermentation broth by using the technologies of filtration, concentration, sterilization, homogenization, drying and the like to obtain low-purine soy milk powder. Low-purine soy milk powder and a preparation method therefor. The method comprises: first, preparing soy milk and a malt extract into a fermentation medium, and decomposing purine substances in the soy milk by means of fermentation with a yeast capable of using purine; and then, treating the fermentation broth by using the technologies of filtration, concentration, sterilization, homogenization, drying and the like to obtain low-purine soy milk powder.
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Low-purine soy milk powder and preparation method therefor AU2020316414A
[WANG YAO, DENG MAOCHENG, LI JING, XIE JUNHONG, LI RUIMIN, HUANG HUAIXING, CAI LIANG, WANG FUCHENG, HUANG JIEHUA, TAN HONGYE, ZHAO XIANGYUAN, LIN KENGCHUN, LIAO MINCONG, ZOU XIAONA, LI JIANZHONG] CN;CN Low-purine soy milk powder and a preparation method therefor. The method comprises: first, preparing soy milk and a malt extract into a fermentation medium, and decomposing purine substances in the soy milk by means of fermentation with a yeast capable of using purine; and then, treating the fermentation broth by using the technologies of filtration, concentration, sterilization, homogenization, drying and the like to obtain low-purine soy milk powder.
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A STRAIN OF YARROWIA LIPOLYTICA AND ITS USE IN PREPARING A LOW-SUGAR AND LOW-FAT NUTRITIONAL POWDER OF DESICCATED COCONUT US17770631
[Jing LI, Maocheng DENG, Yao WANG, Sheng LI, Jidong GU, Yongxin WEI, Shiting CHEN, Fengyu WU, Liang CAI, Huaixing HUANG, Linjie WU, Fucheng WANG, Jiajun LI, Zhidong WU, Jiehua HUANG, Mincong LIAO, Kengchun LIN, Xiaona ZOU, Xiangyuan ZHAO, Jiewen XIE] CN Guangzhou City, Guangdong Province A strain of Yarrowia lipolytica has a deposit number of GDMCC No: 60782, and has been deposited on Sep. 20, 2019, in Guangdong Microbial Culture Collection Center located at Guangdong Institute of Microbiology, 5th Floor, Building 59, No. 100 Xianliezhong Road, Guangzhou City. A low-sugar and low-fat nutritional powder of desiccated coconut is prepared by: mixing a desiccated coconut with water, and heating; then pulping the heat-treated desiccated coconut, homogenizing an obtained coconut milk, adjusting a pH value, and sterilizing, to obtain a desiccated coconut suspension; inoculating a culture solution of the Yarrowia lipolytica in the desiccated coconut suspension after being cooled, and fermenting; and sterilizing an obtained fermentation broth, spray drying, and pulverizing, to obtain the low-sugar and low-fat nutritional powder of desiccated coconut. The above-mentioned nutritional powder of desiccated coconut is abundant in nutrition, has a strong coconut flavor, and is suitably used as instant drinks for all people.
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YARROWIA LIPOLYTICA STRAIN AND USE OF SAME IN PREPARATION OF LOW-SUGAR LOW-FAT DESSICATED COCONUT NUTRITIONAL POWDER PCT/CN2020/098116
[LI, Jing 李静, DENG, Maocheng 邓毛程, LI, Sheng 李胜, WANG, Yao 王瑶, WU, Fengyu 吴丰裕, CAI, Liang 蔡亮, GU, Jidong 顾继东, HUANG, Huaixing 黄怀兴, WU, Linjie 吴林杰, WANG, Fucheng 王富程, LI, Jiajun 李嘉俊, WU, Zhidong 吴志东, HUANG, Jiehua 黄洁华, LIAO, Mincong 廖民聪, LIN, Kengchun 林铿淳, ZOU, Xiaona 邹小娜, ZHAO, Xiangyuan 赵祥源, XIE, Jiewen 谢杰文] No. 152, Xingangxi Road, Haizhu District 中国广东省广州市海珠区新港西路152号, Guangdong 510300Guangzhou, Guangdong 510300;No. 152, Xingangxi Road, Haizhu District 中国广东省广州市海珠区新港西路152号, Guangdong 510300Guangzhou, Guangdong 510300;No. 152, Xingangxi Road, Haizhu District 中国广东省广州市海珠区新港西路152号, Guangdong 510300Guangzhou, Guangdong 510300 Provided are a Yarrowia lipolytica strain and the use of same in the preparation of a low-sugar low-fat dessicated coconut nutritional powder, the deposit number of the Yarrowia lipolytica strain being GDMCC No: 60782. Mixing dessicated coconut and water, and heating; beating the heated dessicated coconut, homogenising the obtained coconut paste, adjusting the pH level, and sterilising to obtain a dessicated coconut suspension; adding a culture solution of the Yarrowia lipolytica to the cooled dessicated coconut suspension and fermenting; sterilising the obtained fermentation broth, spray drying, and pulverising to obtain the low-sugar low-fat dessicated coconut nutritional powder. Provided are a Yarrowia lipolytica strain and the use of same in the preparation of a low-sugar low-fat dessicated coconut nutritional powder, the deposit number of the Yarrowia lipolytica strain being GDMCC No: 60782. Mixing dessicated coconut and water, and heating; beating the heated dessicated coconut, homogenising the obtained coconut paste, adjusting the pH level, and sterilising to obtain a dessicated coconut suspension; adding a culture solution of the Yarrowia lipolytica to the cooled dessicated coconut suspension and fermenting; sterilising the obtained fermentation broth, spray drying, and pulverising to obtain the low-sugar low-fat dessicated coconut nutritional powder.
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WELDING TEMPERATURE FIELD CONTROL SYSTEM AND METHOD PCT/CN2016/089586
[LIU, Lei 刘雷, QIAO, Hongchao 乔红超, LI, Maocheng 李茂程, LIU, Dongju 刘冬菊, TANG, Weidong 唐伟东, QIAO, Yongpeng 谯永鹏, LI, Wenming 李文明] No. 18A-1 Feiyun Road, Hunnan New District 中国辽宁省沈阳市浑南新区飞云路18甲-1号, Liaoning 110168Shenyang, Liaoning 110168 A welding temperature field control system. An output end of a Dahlin controller is connected to a welding power supply of a welding machine system, and a welding pool temperature measurement unit transmits detected welding pool data to a collected signal input end of the Dahlin controller. A welding temperature field control method. The method comprises: divide a weld seam and heat effect zone into three welding zones, namely, a high-temperature welding zone, a medium-temperature welding zone and a low-temperature welding zone; a welding pool temperature measurement unit acquires images of heat radiation fields of two wave bands on the back sides of the welding zones by means of a CCD camera; carry out filtering on the collected images of the heat radiation fields to obtain a correspondence between gray scale values and temperatures; obtain distribution of a whole welding temperature field according to the correspondence; calculate the width of an isotherm; and a Dahlin controller outputs a control value to a welding power supply of a welding machine system. By means of the welding temperature field control system and method, closed-loop control over the width of the isotherm of the back side of a weld seam and heat effect zone is implemented, residual errors in automatic welding objects are eliminated, the production efficiency is improved, costs are reduced, and rapid, accurate and convenient detection and quality control are implemented.
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KR20187003278A
[LIU LEI, QIAO HONGCHAO, LI MAOCHENG, LIU DONGJU, TANG WEIDONG, QIAO YONGPENG, LI WENMING] CN
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ORGANIC/INORGANIC FERROELECTRIC COMPOSITE MATERIAL HAVING ULTRAHIGH DIELECTRIC CONSTANT, PREPARATION METHOD THEREFOR AND USE THEREOF PCT/CN2019/111756
[QI, Jianquan 齐建全, CHANG, Juanxiong 常娟雄, MA, Zhenwei 马振伟, HAN, Xiumei 韩秀梅, WANG, Jinkuan 汪晋宽, WANG, Tinghui 王亭惠, JIANG, Maocheng 姜茂成, CHENG, Jing 程静, ZHOU, Jixiang 周吉祥, LI, Mengying 李梦莹, WANG, Jia 王佳, SUN, Jinyue 孙金月, WU, Jingjing 吴晶晶, ZHANG, Jun 张君, SUN, Qingwen 孙晴雯, LI, Yan 李妍] No.195, Chuangxin Road, Hunnan 中国辽宁省沈阳市浑南区创新路195号, Liaoning 110169Shenyang, Liaoning 110169 The present invention relates to an organic/inorganic ferroelectric composite material having an ultrahigh dielectric constant, a preparation method therefor, and use thereof. A novel organic/inorganic ferroelectric composite material is formed by filling, in a matrix composite formed by organic ferroelectric macromolecules and ferroelectric high-molecular polymers, inorganic powder having a ferroelectric property. At room temperature, said material has a relative dielectric constant of greater than 105 at a power frequency. Said preparation method has simple operation, low cost, and is easy for large-scale industrial production. The novel ultrahigh dielectric material can be used for preparing a high-capacity all-solid novel capacitor material suitable for surface mounting. Said material has multiple types of interfacial charge polarization, which breaks through the pre-percolation theory of the currently available dielectric theory, and provides a new approach for material application and further research. The present invention relates to an organic/inorganic ferroelectric composite material having an ultrahigh dielectric constant, a preparation method therefor, and use thereof. A novel organic/inorganic ferroelectric composite material is formed by filling, in a matrix composite formed by organic ferroelectric macromolecules and ferroelectric high-molecular polymers, inorganic powder having a ferroelectric property. At room temperature, said material has a relative dielectric constant of greater than 105 at a power frequency. Said preparation method has simple operation, low cost, and is easy for large-scale industrial production. The novel ultrahigh dielectric material can be used for preparing a high-capacity all-solid novel capacitor material suitable for surface mounting. Said material has multiple types of interfacial charge polarization, which breaks through the pre-percolation theory of the currently available dielectric theory, and provides a new approach for material application and further research.
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