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    • 41. 发明申请
    • DISPENSING DEVICE AND ANALYZER
    • 分配设备和分析仪
    • US20120156098A1
    • 2012-06-21
    • US13388451
    • 2010-07-15
    • Minoru SanoKazutoshi OnukiYoshiyuki ShojiIsao Yamazaki
    • Minoru SanoKazutoshi OnukiYoshiyuki ShojiIsao Yamazaki
    • G01N33/00B01L3/02
    • G01N35/10G01N2035/103
    • Provided are a dispensing device and an analyzer capable of improving dispensing accuracy as well as improving jamming detection accuracy by realizing a short distance between a syringe and a suction tip. The dispensing device 10 comprises an upper fixed unit 10A, a lower movable unit 10B which is connected to the upper fixed unit 10A, the movable unit being relatively movable with respect to the upper fixed unit 10A, and a Z-axis movement mechanism 55Z which moves the upper fixed unit to and fro. A syringe 4 and a plunger 13 are held by the upper fixed unit 10A. A tip nozzle 8 is attached to the lower movable unit 10B. Interior space of the syringe 4 and interior space of the tip nozzle 8 are connected with each other by a connection tube 1 having flexibility.
    • 提供了一种能够通过实现注射器和吸嘴之间的短距离来提高分配精度以及提高干扰检测精度的分配装置和分析装置。 分配装置10包括上固定单元10A,下可动单元10B,其连接到上固定单元10A,可移动单元相对于上固定单元10A相对移动;以及Z轴移动机构55Z,Z轴运动机构55Z 上下固定单元来回移动。 注射器4和柱塞13由上固定单元10A保持。 尖端喷嘴8附接到下部可移动单元10B。 注射器4的内部空间和尖端喷嘴8的内部空间通过具有柔性的连接管1彼此连接。
    • 45. 发明授权
    • Device for transporting liquid and system for analyzing
    • 液体输送装置及分析系统
    • US07922885B2
    • 2011-04-12
    • US11430857
    • 2006-05-10
    • Sakuichiro AdachiKunio HaradaHideo EnokiIsao Yamazaki
    • Sakuichiro AdachiKunio HaradaHideo EnokiIsao Yamazaki
    • G01N27/26
    • G02B26/004G01N35/08Y10T436/2575
    • In a device for transporting liquid, liquid to be transported is enclosed by an oil droplet, which is fractionated with air, for manipulation. Moreover, as a method for supplying liquids wherein a plurality of liquids are enclosed by an oil droplet sequentially and treated, liquid enclosed by an oil droplet is formed by associating one oil with one liquid in a liquid introducing section. According to the present invention, even in the case where a plurality of liquids are manipulated, it is possible to manipulate stably without affecting other liquids. Moreover, it is possible to treat as a liquid enclosed by an oil droplet successively in the device for transporting liquid, thereby allowing the invention to be applied to a system for analyzing easily.
    • 在用于输送液体的装置中,待运输的液体被用空气分馏的油滴包围,用于操纵。 此外,作为用于供给液体的方法,其中多个液体被油滴依次包围并进行处理,通过在液体引入部分中将一种油与一种液体相关联来形成由油滴包围的液体。 根据本发明,即使在操作多种液体的情况下,也可以稳定地操作而不影响其他液体。 此外,可以在用于输送液体的装置中连续地将油封包围的液体作为液体进行处理,从而将本发明应用于容易分析的系统。
    • 46. 发明授权
    • Automatic analyzer
    • 自动分析仪
    • US07625524B2
    • 2009-12-01
    • US10676020
    • 2003-10-02
    • Tetsuya IsobeKatsuaki TakahashiIsao Yamazaki
    • Tetsuya IsobeKatsuaki TakahashiIsao Yamazaki
    • G01N21/00G01N31/00B01L3/02
    • G01N35/1002G01N35/1079
    • A highly-reliable, inexpensive and small-sized automatic analyzer is provided which can eliminate the need of an additional space for piercing a seal of a reagent bottle and can prevent a deviation of a reagent sampling nozzle from the position of a pierced hole. A piercing tool for piercing the seal of the reagent bottle is fitted over a nozzle of a reagent sampling mechanism, and a stripper for automatically fitting and removing the piercing tool is provided. By fitting the piercing tool for piercing the seal of the reagent bottle over the nozzle of the reagent sampling mechanism, the seal of the reagent bottle can be pierced in situ on a reagent disk by using the piercing tool. An additional space so far required for the seal piercing is no longer needed and a deviation between the seal piercing position and the reagent sampling position is prevented.
    • 提供了一种高度可靠,便宜且小型的自动分析仪,其可以消除用于刺穿试剂瓶的密封的额外空间的需要,并且可以防止试剂取样嘴从穿孔的位置偏离。 用于刺穿试剂瓶的密封件的穿刺工具安装在试剂取样机构的喷嘴上,并且提供用于自动装配和移除穿孔工具的剥离器。 通过将刺穿工具穿过试剂瓶的密封件穿过试剂取样机构的喷嘴,可以通过使用穿孔工具在试剂盘上原位刺穿试剂瓶的密封。 不再需要目前为止进行密封刺穿所需的额外空间,并且防止了密封穿刺位置和试剂取样位置之间的偏差。
    • 48. 发明申请
    • Automatic analyzer
    • 自动分析仪
    • US20060062692A1
    • 2006-03-23
    • US11221837
    • 2005-09-09
    • Hitoshi TokiedaIsao YamazakiMasaaki Hanawa
    • Hitoshi TokiedaIsao YamazakiMasaaki Hanawa
    • G01N35/00
    • G01N35/109G01N35/0092G01N35/0099G01N35/025G01N35/1065G01N2035/0094G01N2035/0443G01N2035/0444G01N2035/0453G01N2035/0455G01N2035/1093Y10T436/11
    • An automatic analyzer having a smaller size, allowing a larger number of reagents to be loaded, and having a higher processing capability. Reagent disks are disposed inside and outside a reaction disk. Reagent probes are disposed to be able to suck reagents from the reagent disks and eject the reagents at common positions. A plurality of reagent probes are alternately accessed one by one to each of the reagent disks per cycle. Each reagent probe comprises two arms rotatable independently of each other so that the reagent probe is able to access a plurality of points and interference between the plurality of reagent probes can be avoided. A first reagent and a second reagent can be loaded on each of the reagent disks, and the number of loadable reagents can be increased without enlarging an overall system size. Thus, an automatic analyzer having a shorter cycle time and a higher processing capability can be realized.
    • 具有较小尺寸的自动分析仪,允许加载更多数量的试剂,并具有较高的处理能力。 试剂盘设置在反应盘的内部和外部。 将试剂探针设置成能够从试剂盘吸取试剂并将试剂喷射在共同位置。 多个试剂探针​​每循环一个接一个地交给每个试剂盘。 每个试剂探针​​包括彼此独立旋转的两个臂,使得试剂探针能够接近多个点,并且可以避免多个试剂探针​​之间的干扰。 可以在每个试剂盘上装载第一试剂和第二试剂,并且可以增加可加载试剂的数量而不增加整个系统尺寸。 因此,可以实现具有更短的循环时间和更高处理能力的自动分析仪。
    • 49. 发明授权
    • Titanium-based alloy
    • 钛基合金
    • US5939651A
    • 1999-08-17
    • US60556
    • 1998-04-15
    • Kazutaka IsobeNobuyuki KitagawaIsao Yamazaki
    • Kazutaka IsobeNobuyuki KitagawaIsao Yamazaki
    • C22C29/00C22C29/10
    • C22C29/10C22C29/00B22F2998/00
    • A titanium carbonitride-based alloy which is excellent in chipping resistance and wear resistance is disclosed. A hard phase is a carbide (TiMC), a nitride (TiMN) or a carbonitride (TiMCN) of Ti and at least one metal (M), other than Ti, selected from those belonging to the groups IVa, Va and VIa of the periodic table. A binder phase contains Co and Ni as main components. When the structure of the titanium-based alloy is observed with a scanning electron microscope, particles forming the hard phase in the alloy have black core parts which are located on core portions to appear black and peripheral parts which are located around the black core parts to appear gray. Assuming that A and B represent particles having the black core parts occupying areas of at least 30% of the overall particles A and those having the black core parts occupying areas of not more than 30% of the overall particles B respectively, the area ratio of the particles A to the particles B satisfies a condition of 0.3.ltoreq.A/(A+B).ltoreq.0.8.
    • 公开了一种耐崩裂性和耐磨性优异的碳氮化钛系合金。 硬质相是选自Ti中的TiA族,Ⅴa族和Ⅵa族的Ti(Ti)以及除Ti以外的至少一种金属(M)的碳化物(TiMC),氮化物(TiMN)或碳氮化物(TiMCN) 周期表。 粘结相包含Co和Ni作为主要成分。 当用扫描电子显微镜观察钛基合金的结构时,合金中形成硬质相的颗粒具有位于芯部分上的黑色芯部分,以出现位于黑色芯部周围的黑色和周边部分, 出现灰色 假设A和B表示具有占整个颗粒A的至少30%的黑色核心部分的颗粒和具有黑色芯部分占据总体颗粒B的不超过30%的面积的颗粒,则面积比 粒子A的粒子A满足0.3≤A/(A + B)≤0.8的条件。