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    • 5. 发明申请
    • BLAST TREATMENT METHOD AND BLAST TREATMENT DEVICE
    • BLAST处理方法和BLAST处理装置
    • US20130160635A1
    • 2013-06-27
    • US13820750
    • 2011-10-11
    • Masaya UedaKenji Koide
    • Masaya UedaKenji Koide
    • F42D5/04
    • F42B33/06F42D3/00F42D5/04F42D5/045
    • A blast treatment method capable of more reliably treating an object to be treated which is accommodated in an outer container is provided. The blast treatment method includes: a step for spacing a plurality of blasting explosives (20) from one another at positions on the outer side surface of an outer container (60) in a direction surrounding a central axis (C2) of the outer container (60) and arranging the blasting explosives (20) in such a manner as to extend approximately parallel to the central axis (C2); a step for installing the outer container (60) within a chamber (90); and a step for detonating the blasting explosives (20) within the chamber to perform blast treatment of an object (10) to be treated with the detonation energy, wherein the blasting explosives (20) are detonated at the blast timing at which fragments of the outer container (60) or shock waves, which are generated in the vicinity of the blasting explosives (20) by the detonation energy of the blasting explosives (20), collide with or propagate to a bombshell (10) in less time difference than that in the case in which the plurality of blasting explosives (20) are detonated at the same time.
    • 提供一种能够更可靠地处理容纳在外部容器中的被处理体的喷射处理方法。 喷砂处理方法包括:在围绕外容器的中心轴线(C2)的方向上,在外容器(60)的外侧表面上的位置处将多个爆破炸药(20)间隔开的步骤 并且以大致平行于中心轴线(C2)的方式设置爆破炸药(20); 用于将外容器(60)安装在室(90)内的步骤; 以及用于引爆所述室内的爆破炸药(20)的步骤,以对待被处理的物体(10)进行爆炸处理,其中所述爆炸能量被爆炸,其中爆炸爆炸物(20) 在爆破爆炸物(20)附近产生的爆炸爆炸物(20)附近的外容器(60)或冲击波与爆炸物(20)的爆炸能量相比碰撞或传播到炸弹(10),时间差小于 在多个爆破炸药(20)同时被引爆的情况下。
    • 9. 发明授权
    • Elongated magnetic sensor
    • 细长磁传感器
    • US07589527B2
    • 2009-09-15
    • US10595407
    • 2005-03-07
    • Tamotsu MinamitaniMasaya UedaKoji ShinmuraMasanaga Nishikawa
    • Tamotsu MinamitaniMasaya UedaKoji ShinmuraMasanaga Nishikawa
    • G01R33/02
    • G01R33/09
    • A magnetoresistive device disposed in an elongated magnetic sensor, for example, has two parallel arrays of magnetosensitive elements arranged at regular intervals in the longitudinal direction. The magnetosensitive elements are connected in series through connection conductors, in a meandering pattern. The magnetoresistive device is disposed between two other magnetoresistive devices. The magnetoresistive devices are arranged such that the intervals between the magnetosensitive elements disposed at the ends of a magnetoresistive in the longitudinal direction and the opposed magnetosensitive elements of the magnetoresistive devices, respectively, are equal to the intervals between the magnetoresistive elements within the magnetoresistive devices.
    • 例如,设置在细长磁传感器中的磁阻器件具有在纵向上以规则间隔布置的两个平行的磁敏元件阵列。 磁感应元件通过连接导体以蜿蜒图案串联连接。 磁阻器件设置在两个其它磁阻器件之间。 磁阻器件被布置成使得分别设置在纵向磁阻的端部的磁敏元件与磁阻器件的相对的磁敏元件之间的间隔等于磁阻元件内的磁阻元件之间的间隔。