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    • 1. 发明申请
    • Method and Apparatus of Continuously Forming Crystallized Glass
    • 连续形成结晶玻璃的方法和装置
    • US20120111058A1
    • 2012-05-10
    • US13237855
    • 2011-09-20
    • Kuo-Chuan HsuYanbin Jiang
    • Kuo-Chuan HsuYanbin Jiang
    • C03B32/02C03B21/02C03B13/00
    • C03B13/04C03B25/08C03B32/02C03C3/097C03C10/0027Y02P40/57
    • One objective of the present invention was to provide a method of continuously forming crystallized glass, so as to reduce the thermal treatment time necessary for crystallizing a belt-shaped glass plate; and to provide an apparatus of continuously forming crystallized glass, so as to shorten the thermal treatment zone necessary for crystallizing a belt-shaped glass plate. A method of continuously forming crystallized glass according to the present invention includes: a melting step of melting a raw glass material to obtain molten glass; a shaping step of rolling the molten glass to form a belt-shaped glass plate; a crystallizing step of retaining the belt-shaped glass plate at a temperature necessary for nuclei formation and crystal growth, thereby forming nuclei and crystallizing the belt-shaped glass plate to a belt-shaped crystallized glass plate, and then slowly cooling the belt-shaped crystallized glass plate; and a cutting step of cutting the belt-shaped crystallized glass plate.
    • 本发明的一个目的是提供一种连续地形成结晶玻璃的方法,以减少结晶带状玻璃板所需的热处理时间; 并且提供连续地形成结晶化玻璃的装置,以缩短结晶带状玻璃板所需的热处理区域。 根据本发明的连续形成结晶玻璃的方法包括:熔化原料玻璃材料以获得熔融玻璃的熔融步骤; 成形步骤,轧制熔融玻璃以形成带状玻璃板; 将带状玻璃板保持在成核和晶体生长所需的温度的结晶步骤,从而形成核并将带状玻璃板结晶成带状结晶玻璃板,然后缓慢冷却带状 结晶玻璃板; 以及切割带状结晶玻璃板的切割步骤。
    • 2. 发明授权
    • Powdery/granular material flowability evaluation apparatus and method
    • 粉状/颗粒状流动性评价装置及方法
    • US07784370B2
    • 2010-08-31
    • US11918901
    • 2006-04-19
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • G01N11/02
    • G01N11/06G01N5/02G01N2033/0091
    • A powdery/granular material flowability evaluation apparatus and a powdery/granular material flowability evaluation method are provided to evaluate the flowability of a powdery/granular material in a dynamic state of the powdery/granular material. The powdery/granular material flowability evaluation apparatus (A) has a hopper (111) for storing a powdery/granular material to be measured, a vertical tube (11) having a flow-in port (1121) connected with a discharge port (1112) of the hopper (111) through which the powdery/granular material is discharged, a vibrator (2) for giving vibration to the tube (11), a laser vibrometer (3) for measuring the amplitude of the tube (11), an electric balance (4) for measuring the weight of the powdery/granular material fallen through the tube 11 from the hopper (111), and an evaluation value calculating section (512) for calculating an evaluation value evaluating the flowability of the powdery/granular material based on the measured amplitude and weight.
    • 提供粉状/粒状材料流动性评价装置和粉末/粒状材料流动性评价方法,以评价粉状/粒状材料的动态状态下的粉末/粒状材料的流动性。 粉体/粒状材料流动性评价装置(A)具有用于储存待测量的粉状/粒状材料的料斗(111),具有与排出口(1112)连接的流入口(1121)的立管 ),用于向管(11)施加振动的振动器(2),用于测量管(11)的振幅的激光振动计(3)),粉末/颗粒材料排出的料斗(111) 用于测量从料斗(111)中通过管11的粉末/颗粒材料的重量的电气平衡(4)和用于计算评估粉末/颗粒材料的流动性的评价值的评估值计算部(512) 基于测量的振幅和重量。
    • 3. 发明授权
    • Powdery/granular material flowability evaluation apparatus and method
    • 粉状/颗粒状流动性评价装置及方法
    • US08087314B2
    • 2012-01-03
    • US12706144
    • 2010-02-16
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • G01N11/02
    • G01N11/06G01N5/02G01N2033/0091
    • A powdery/granular material flowability evaluation apparatus and a powdery/granular material flowability evaluation method are provided to evaluate the flowability of a powdery/granular material in a dynamic state of the powdery/granular material. The powdery/granular material flowability evaluation apparatus (A) has a hopper (111) for storing a powdery/granular material to be measured, a vertical tube (11) having a flow-in port (1121) connected with a discharge port (1112) of the hopper (111) through which the powdery/granular material is discharged, a vibrator (2) for giving vibration to the tube (11), a laser vibrometer (3) for measuring the amplitude of the tube (11), an electric balance (4) for measuring the weight of the powdery/granular material fallen through the tube 11 from the hopper (111), and an evaluation value calculating section (512) for calculating an evaluation value evaluating the flowability of the powdery/granular material based on the measured amplitude and weight.
    • 提供粉状/粒状材料流动性评价装置和粉末/粒状材料流动性评价方法,以评价粉状/粒状材料的动态状态下的粉末/粒状材料的流动性。 粉体/粒状材料流动性评价装置(A)具有用于储存待测量的粉状/粒状材料的料斗(111),具有与排出口(1112)连接的流入口(1121)的立管 ),用于向管(11)施加振动的振动器(2),用于测量管(11)的振幅的激光振动计(3)),粉末/颗粒材料排出的料斗(111) 用于测量从料斗(111)中通过管11的粉末/颗粒材料的重量的电气平衡(4)和用于计算评估粉末/颗粒材料的流动性的评价值的评价值计算部(512) 基于测量的振幅和重量。
    • 4. 发明申请
    • POWDERY/GRANULAR MATERIAL FLOWABILITY EVALUATION APPARATUS AND METHOD
    • 粉末/颗粒材料流动性评估装置和方法
    • US20100153028A1
    • 2010-06-17
    • US12706144
    • 2010-02-16
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • G01N11/00G06F19/00
    • G01N11/06G01N5/02G01N2033/0091
    • A powdery/granular material flowability evaluation apparatus and a powdery/granular material flowability evaluation method are provided to evaluate the flowability of a powdery/granular material in a dynamic state of the powdery/granular material. The powdery/granular material flowability evaluation apparatus (A) has a hopper (111) for storing a powdery/granular material to be measured, a vertical tube (11) having a flow-in port (1121) connected with a discharge port (1112) of the hopper (111) through which the powdery/granular material is discharged, a vibrator (2) for giving vibration to the tube (11), a laser vibrometer (3) for measuring the amplitude of the tube (11), an electric balance (4) for measuring the weight of the powdery/granular material fallen through the tube 11 from the hopper (111), and an evaluation value calculating section (512) for calculating an evaluation value evaluating the flowability of the powdery/granular material based on the measured amplitude and weight.
    • 提供粉状/粒状材料流动性评价装置和粉末/粒状材料流动性评价方法,以评价粉状/粒状材料的动态状态下的粉末/粒状材料的流动性。 粉体/粒状材料流动性评价装置(A)具有用于储存待测量的粉状/粒状材料的料斗(111),具有与排出口(1112)连接的流入口(1121)的立管 ),用于向管(11)施加振动的振动器(2),用于测量管(11)的振幅的激光振动计(3)),粉末/颗粒材料排出的料斗(111) 用于测量从料斗(111)中通过管11的粉末/颗粒材料的重量的电气平衡(4)和用于计算评估粉末/颗粒材料的流动性的评价值的评价值计算部(512) 基于测量的振幅和重量。
    • 5. 发明授权
    • Method and apparatus to optimize an integrated circuit design using transistor folding
    • 使用晶体管折叠优化集成电路设计的方法和装置
    • US06968524B2
    • 2005-11-22
    • US10240436
    • 2001-03-30
    • Yanbin JiangIlhami TorunogluCyrus Bamji
    • Yanbin JiangIlhami TorunogluCyrus Bamji
    • G06F17/50H01L27/02
    • H01L27/0207G06F17/5068
    • A method and system are disclosed to optimize an integrated circuit layout design by determining possible lengths of layout rows that will reduce the total area of the integrated circuit layout (FIG. 4B). The possible row lengths (401B) are determined and stored in a memory unit as a set of possible optimal row length values. A set of possible optimal row heights corresponding to the determined set of possible rowlengths is determined and the total chip area is iteratively calculated. Optimal values of rowlength and row height are chosen based upon the maximum chip area reduction. Once the optimal row length and height parameters are chosen, transistor devices placed in each row of the integrated circuit layout are folded to achieve the optimal row length and height.
    • 公开了一种通过确定将减小集成电路布局的总面积的布局行的可能长度来优化集成电路布局设计的方法和系统(图4B)。 可能的行长度(401B)被确定并存储在存储器单元中,作为一组可能的最佳行长度值。 确定对应于确定的可能行长度的集合的一组可能的最佳行高,并且迭代地计算总芯片面积。 根据最大芯片面积减少量选择行长和行高的最优值。 一旦选择了最佳的行长度和高度参数,放置在集成电路布局的每一行中的晶体管器件被折叠以实现最佳的行长和高度。
    • 6. 发明申请
    • Powdery/granular material flowability evaluation apparatus and method
    • 粉状/颗粒状流动性评价装置及方法
    • US20090078029A1
    • 2009-03-26
    • US11918901
    • 2006-04-19
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • Shuji MatsusakaHiroaki MasudaYanbin JiangMasatoshi Yasuda
    • G01N11/02
    • G01N11/06G01N5/02G01N2033/0091
    • The present invention aims to provide a powdery/granular material flowability evaluation apparatus and a powdery/granular material flowability evaluation method capable of evaluating the flowability of a powdery/granular material in a dynamic state of the powdery/granular material. A powdery/granular material flowability evaluation apparatus A according to the present invention is provided with a hopper part 111 for storing a powdery/granular material to be measured, a vertical tube 11 having a flow-in port 1121 thereof connected with a discharge port 1112 of the hopper part 111 through which the powdery/granular material is discharged, a vibrator 2 for giving vibration to the tube 11, a laser vibrometer 3 for measuring the amplitude of the tube 11, an electric balance 4 for measuring the weight of the powdery/granular material fallen through the tube 11 from the hopper part 111, and an evaluation value calculating section 512 for calculating an evaluation value evaluating the flowability of the powdery/granular material based on the measured amplitude and weight.
    • 本发明的目的在于提供一种粉末/粒状材料流动性评价装置和粉末/粒状材料流动性评价方法,其能够评价粉状/粒状物料的动态状态下的粉末/粒状材料的流动性。 根据本发明的粉末/颗粒状材料流动性评估装置A设置有用于储存待测量的粉末状/粒状材料的料斗部111,具有与排出口1112连通的流入口1121的立管11 通过粉末/颗粒材料排出的料斗部111,用于给管11施加振动的振动器2,用于测量管11的振幅的激光测振仪3,用于测量粉末状颗粒重量的电动余量4 /颗粒材料从料斗部分111落下通过管11,以及评估值计算部512,用于基于测量的振幅和重量来计算评估粉状/粒状材料的流动性的评价值。