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    • 52. 发明授权
    • Water purifying system
    • 净水系统
    • US07699968B2
    • 2010-04-20
    • US11294596
    • 2005-12-06
    • Masanobu OsawaSatoshi Yamada
    • Masanobu OsawaSatoshi Yamada
    • B01D61/00
    • C02F9/00B01D61/025B01D61/422B01D61/58C02F1/285C02F1/441C02F1/4695C02F1/683C02F2103/04Y02A20/131Y02A20/134
    • The present invention provides a water purifying system capable of efficiently producing treated water containing boron at a low concentration. Water to be treated is first fed to the RO membrane apparatus 1 and the passed water is fed through the boron absorptive apparatus 2. Water which was passed through the boron absorptive apparatus 2 and of which boron was thus removed is fed through the electrodeionization apparatus 3. In this manner, water treated by electrodeionization is taken out as treated water. The condensed water of the electrodeionization apparatus 3 may be discharged or returned to the upstream side of the RO membrane apparatus 1 through a return pipe 4 so that the condensed water is added to water to be treated. Suitably used as the absorptive agent accommodated in the boron absorptive apparatus 2 is a boron selective absorptive agent capable of selectively absorbing boron.
    • 本发明提供一种能够以低浓度有效地生产含硼的处理水的水净化系统。 待处理的水首先进料到RO膜装置1,并且通过的水通过硼吸收装置2进料。通过硼吸收装置2并且其中被除去的硼的水通过电去离子装置3 以这种方式,通过电去离子处理的水作为处理水取出。 电除去装置3的冷凝水可以通过返回管4排出或返回到RO膜装置1的上游侧,从而将冷凝水加入待处理的水中。 容纳在硼吸收装置2中的适合用作吸收剂的是选择性吸收硼的硼选择吸收剂。
    • 59. 发明授权
    • Column-and-beam join structure
    • 柱梁连接结构
    • US06739099B2
    • 2004-05-25
    • US10163475
    • 2002-06-05
    • Toru TakeuchiYasushi MaedaKazuaki SuzukiKen OkadaSatoshi YamadaAkira Wada
    • Toru TakeuchiYasushi MaedaKazuaki SuzukiKen OkadaSatoshi YamadaAkira Wada
    • E04B198
    • E04B5/10E04B1/2403E04B2001/2415E04B2001/2439E04B2001/2442E04B2001/2448E04B2001/2454E04C3/04E04C3/30E04C2003/0413E04C2003/0421E04C2003/043E04C2003/0434E04C2003/0452E04C2003/0465Y10T403/73
    • The present invention provides a column-and-beam join structure which absorbs energy caused by a large earthquake or the like by split tees surely yielding at a prescribed value, does not cause other members to fracture, and thus makes it possible to replace only the split tees which have become unusable, and, more specifically, a column-and-beam join structure constructed by attaching and connecting, using bolts 9, the ends 8a of both the upper and lower flanges 8 of a steel beam (H-shaped steel beam) 7 between the webs 6 of a pair of upper and lower split tees 4 the flanges 5 of which are connected to a steel column 1 using bolts 3. The upper limit of the yield stress of the steel material used for the split tees 4 is defined to be not more than twice the lower limit thereof. Further, in order for the web 6 extending from the flange 5 of a split tee 4 in the axial direction of an H-shaped steel beam 7 to absorb earthquake energy by its plasticization, the cross-sectional area of the web 6 is reduced partially and the base end portion 6a of the web 6 is divided from the tip portion 6b which is connected to the flange 8 of the H-shaped steel beam 7.
    • 本发明提供了一种柱形梁接合结构,其通过分开的三通,由大的地震等引起的能量确定地产生规定的值,不会导致其他构件断裂,从而可以仅替换 更具体地说,是使用螺栓9连接和连接钢梁(H型钢)的上下凸缘8的端部8a而构成的柱梁连接结构 横梁)7在一对上,下开口三通4的腹板6之间,其凸缘5使用螺栓3连接到钢柱1上。用于分体三通4的钢材的屈服应力的上限 被定义为不超过其下限的两倍。 此外,为了从H形钢梁7的轴向方向从裂缝三通4的凸缘5延伸的纤维网6通过其增塑而吸收地震能量,纤维网6的横截面积部分地减小 腹板6的基端部6a与H形钢梁7的凸缘8连接的前端部6b分开。
    • 60. 发明授权
    • Holderless clamping hose
    • 无夹紧软管
    • US06438801B1
    • 2002-08-27
    • US09669071
    • 2000-09-22
    • Satoshi Yamada
    • Satoshi Yamada
    • F16L3300
    • F16L33/03Y10T24/1457Y10T24/1484
    • A hose clamp comprises a clamp ring made of a metal strip rolled into a loop with its ends overlapping each other. First and second pinches are projected up from the ends of the metal strip in the radial direction. The first pinch has a frame, which defines an opening inside the frame, and a stopper wall swelling into the inside opening from a corner of the frame. The second pinch has an operation chip extending in the width direction of the cram ring. A stopper rises from the clamp ring near the root of the second pinch. The hose clamp has a clamping position, at which the first and second pinches are apart from each other, and a loosened position, at which the first and second pinches are very close to each other. At the loosened position, the operation chip of the second pinch sticks out from the clamp ring in the width direction of the clamp ring.
    • 软管夹具包括由金属带制成的夹环,该金属带卷成环,其端部彼此重叠。 第一和第二夹紧物沿着径向从金属带的端部向上突出。 第一夹具具有框架,其限定框架内部的开口,以及从框架的角部向内部开口膨胀的止动壁。 第二夹具具有在密封环的宽度方向上延伸的操作芯片。 止动件从第二夹紧根部附近的夹紧环上升。 软管夹具具有夹持位置,第一和第二夹子彼此分开,夹紧位置处于第一和第二夹紧件彼此非常接近的松开位置。 在松动的位置,第二夹具的操作芯片在夹紧环的宽度方向上从夹紧环伸出。