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    • 3. 发明授权
    • Method for managing construction machine, and arithmetic processing apparatus
    • 施工机械管理方法及运算处理装置
    • US06832175B2
    • 2004-12-14
    • US10240117
    • 2002-09-27
    • Hiroyuki AdachiToichi HirataGenroku SugiyamaHiroshi WatanabeShuichi MiuraKoji MitsuyaYoshiaki SaitoAtsushi Sato
    • Hiroyuki AdachiToichi HirataGenroku SugiyamaHiroshi WatanabeShuichi MiuraKoji MitsuyaYoshiaki SaitoAtsushi Sato
    • G04F100
    • E02F9/20G07C5/008G07C5/085
    • A hydraulic excavator 1 working in fields includes a controller 2 for measuring a working time for each of an engine 32, a front 15, a swing body 13, and a travel body 12, storing measured data in a memory of the controller 2, and then transferring it to a base station computer 3 via satellite communication, an FD, etc. The transferred data is stored as a database 100 in the base station computer 3. The base station computer 3 reads the data stored in the database 100 for each hydraulic excavator, calculates a working time of a part belonging to each section on the basis of the working time of that section, and compares the calculated working time with a preset target replacement time interval of the relevant part, thereby calculating a remaining time up to next replacement of the relevant part and managing the scheduled replacement timing thereof. Thus, the appropriate scheduled replacement timing of parts can be determined even in a construction machine having a plurality of sections that differ in working time from each other.
    • 在田间工作的液压挖掘机1包括控制器2,用于测量发动机32,前15,摆动体13和行驶体12的工作时间,将测量数据存储在控制器2的存储器中,以及 然后通过卫星通信,FD等将其传送到基站计算机3.将传送的数据作为数据库100存储在基站计算机3中。基站计算机3读取存储在数据库100中的每个液压的数据 挖掘机根据该部分的工作时间计算属于每个部分的部分的工作时间,并将计算出的工作时间与相关部分的预设目标更换时间间隔进行比较,从而计算直至下一个的剩余时间 更换相关部件并管理其定时更换时间。 因此,即使在具有彼此不同的工作时间的多个部分的建筑机械中,也可以确定部件的适当的计划更换定时。
    • 5. 发明申请
    • AUTOMATIC ANALYZER
    • 自动分析仪
    • US20140170023A1
    • 2014-06-19
    • US14236659
    • 2012-06-29
    • Yoshiaki SaitoKazuhiro NakamuraNaoto SuzukiToshihide Orihashi
    • Yoshiaki SaitoKazuhiro NakamuraNaoto SuzukiToshihide Orihashi
    • G01N35/04
    • G01N35/04G01N35/0095G01N35/026G01N2035/0415G01N2035/0462
    • In determining whether a rack inputted to the automatic analyzer by the user is to be transferred to an analysis section or not, samples existing in a route from a buffer to a sample dispensing position in the analysis section are identified, and the number of items in which suction by a nozzle has not been completed in analysis items requested for the samples is managed. When the number of items is reduced to be smaller than a given number, the conveyance of a next rack from the buffer to the analysis section is controlled, thereby limiting the number of analysis items requested for samples in a waiting state for analysis in the analysis section constantly to be smaller than a fixed number. As a result, a period of time until a measurement result of emergency samples is outputted can be reduced even when emergency samples are newly inputted.
    • 在确定用户输入到自动分析器的机架是否要转移到分析部分时,识别存在于分析部分中从缓冲器到样品分配位置的路线中的样本,并且在 在对样品所要求的分析项目进行管理的情况下,由喷嘴抽吸尚未完成。 当项目数量减少到小于给定数量时,控制从缓冲器到分析部分的下一个机架的传送,从而限制在分析中用于分析的等待状态下的样品请求的分析项目的数量 部分不断小于固定数。 结果,直到紧急样本的测量结果输出的时间段即使在新输入紧急样本时也可以减少。