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    • 4. 发明授权
    • Silver halide color photographic material containing a magenta color
image-forming coupler
    • 含有品红色成像成色剂的卤化银彩色照相材料
    • US4639415A
    • 1987-01-27
    • US776442
    • 1985-09-16
    • Yutaka KanekoToshihiko KimuraKenji Kadokura
    • Yutaka KanekoToshihiko KimuraKenji Kadokura
    • G03C7/30G03C7/392G03C1/06G03C1/08G03C7/26G03C7/32
    • G03C7/301G03C7/3924
    • A silver halide color photographic material is disclosed which contains a magenta color image-forming coupler represented by the following formula (I) and a compound represented by the following formula (II): ##STR1## wherein Z represents the group of nonmetallic atoms necessary for forming a nitrogen-containing heterocyclic ring, provided that the ring to be formed by said Z may have a substitutent;X represents a hydrogen atom or a substituent capable of leaving upon reaction with the oxidized product of a color developing agent; andR represents a hydrogen atom or a substituent. ##STR2## wherein R.sub.1 is an aliphatic group, a cycloalkyl group or an aryl group; andY represents the group of nonmetallic atoms necessary for forming a 5- to 7-membered heterocyclic ring taken together with the nitrogen atom, provided that at least two hetero atoms among the heterocyclic ring-forming nonmetallic atoms including the nitrogen atom are not adjacent to each other.
    • 公开了一种卤化银彩色照相材料,其包含由下式(I)表示的品红色成像剂和由下式(II)表示的化合物:其中Z表示非金属基团 用于形成含氮杂环所必需的原子,条件是由所述Z形成的环可具有取代基; X表示氢原子或能够与彩色显影剂的氧化产物反应而残留的取代基; R表示氢原子或取代基。 (II)其中R1是脂族基,环烷基或芳基; Y表示与氮原子一起形成5-至7-元杂环所必需的非金属原子团,条件是包含氮原子的杂环形成非金属原子中的至少两个杂原子不与 彼此。
    • 6. 发明授权
    • Coupler for photography
    • 摄影耦合器
    • US4532202A
    • 1985-07-30
    • US564241
    • 1983-12-21
    • Takashi SasakiYutaka KanekoFumio IshiiYasuo TsudaKazuhiko KimuraKatsunori Kato
    • Takashi SasakiYutaka KanekoFumio IshiiYasuo TsudaKazuhiko KimuraKatsunori Kato
    • G03C7/34G03C7/26
    • G03C7/346
    • There is disclosed a coupler for photography represented by the formula: ##STR1## wherein R.sub.1 represents a branched alkyl group having 3 to 5 carbon atoms; R.sub.2 represents an aryl group; X represents a divalent linking group; Ar represents an aryl group; and Z is a hydrogen atom or a group eliminable through the coupling reaction with the oxidized product of an aromatic primary amine type color developing agent,and a light-sensitive silver halide photographic material comprising the same.The coupler mentioned above is not only excellent in solubility in organic solvents, but also can be easily purified, thus being capable of exhibiting excellent characteristics with respect to spectral absorption characteristics, sensitivity, color density, color staining as well as with respect to image storability such as light resistance, heat resistance and humidity resistance.
    • 公开了一种用于摄影的耦合器,由下式表示:其中R1表示碳原子数为3〜5的支链烷基; R2表示芳基; X表示二价连接基团; Ar表示芳基; Z是氢原子或通过与芳族伯胺型彩色显影剂的氧化物的偶联反应可消除的基团,和含有该原子的感光卤化银照相材料。 上述成色剂不仅在有机溶剂中的溶解性优异,而且可以容易地进行纯化,因此能够在光谱吸收特性,灵敏度,色密度,颜色染色以及相对于图像保存性方面表现出优异的特性 如耐光性,耐热性和耐湿性。
    • 9. 发明授权
    • Expansion valve, heat pump type refrigeration cycle apparatus, and air handling unit
    • 膨胀阀,热泵式制冷循环装置和空气处理单元
    • US08157183B2
    • 2012-04-17
    • US12402134
    • 2009-03-11
    • Takahito HayashiHideki SekiguchiYutaka Kaneko
    • Takahito HayashiHideki SekiguchiYutaka Kaneko
    • F25B41/04F25B41/06
    • F25B41/062F25B13/00F25B2341/0652Y02B30/72
    • A first expansion valve is provided in an outdoor unit, and a second expansion valve is provided in an indoor unit. A pipe line connects a first joint pipe of the first expansion valve and a second joint pipe of the second expansion valve. When a refrigerant flows in from the second joint pipe and flows out from the first joint pipe, the first and second expansion valves are in a full open state due to pressure of the refrigerant. When the refrigerant flows in from the first joint pipe and flows out from the second joint pipe, the first and second expansion valves are in semi-closed state (flow rate controlling state). In a cooling mode, the second expansion valve expands the refrigerant just before an indoor heat exchanger, and in a heating mode, the first expansion valve expands the refrigerant just before an outdoor heat exchanger. In both heating and cooling mode, a large amount of refrigerant flows through the pipe line to reduce pressure loss.
    • 第一膨胀阀设置在室外机中,第二膨胀阀设置在室内机。 管路连接第一膨胀阀的第一接头管和第二膨胀阀的第二接头管。 当制冷剂从第二关节管流入并从第一关节管流出时,第一和第二膨胀阀由于制冷剂的压力而处于全开状态。 当制冷剂从第一关节管流入并从第二关节管流出时,第一和第二膨胀阀处于半闭合状态(流量控制状态)。 在冷却模式中,第二膨胀阀刚好在室内热交换器之前膨胀制冷剂,并且在加热模式下,第一膨胀阀在室外热交换器之前膨胀制冷剂。 在加热和冷却两种模式下,大量制冷剂流过管道,以减少压力损失。
    • 10. 发明申请
    • EXPANSION VALVE, HEAT PUMP TYPE REFRIGERATION CYCLE APPARATUS, AND AIR HANDLING UNIT
    • 膨胀阀,热泵式制冷循环装置和空气处理装置
    • US20090293520A1
    • 2009-12-03
    • US12402134
    • 2009-03-11
    • Takahito HayashiHideki SekiguchiYutaka Kaneko
    • Takahito HayashiHideki SekiguchiYutaka Kaneko
    • F25B41/04F25B13/00
    • F25B41/062F25B13/00F25B2341/0652Y02B30/72
    • A first expansion valve is provided in an outdoor unit, and a second expansion valve is provided in an indoor unit. A pipe line connects a first joint pipe of the first expansion valve and a second joint pipe of the second expansion valve. When a refrigerant flows in from the second joint pipe and flows out from the first joint pipe, the first and second expansion valves are in a full open state due to pressure of the refrigerant. When the refrigerant flows in from the first joint pipe and flows out from the second joint pipe, the first and second expansion valves are in semi-closed state (flow rate controlling state). In a cooling mode, the second expansion valve expands the refrigerant just before an indoor heat exchanger, and in a heating mode, the first expansion valve expands the refrigerant just before an outdoor heat exchanger. In both heating and cooling mode, a large amount of refrigerant flows through the pipe line to reduce pressure loss.
    • 第一膨胀阀设置在室外机中,第二膨胀阀设置在室内机。 管路连接第一膨胀阀的第一接头管和第二膨胀阀的第二接头管。 当制冷剂从第二关节管流入并从第一关节管流出时,第一和第二膨胀阀由于制冷剂的压力而处于全开状态。 当制冷剂从第一关节管流入并从第二关节管流出时,第一和第二膨胀阀处于半闭合状态(流量控制状态)。 在冷却模式中,第二膨胀阀刚好在室内热交换器之前膨胀制冷剂,并且在加热模式下,第一膨胀阀在室外热交换器之前膨胀制冷剂。 在加热和冷却两种模式下,大量制冷剂流过管道,以减少压力损失。