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    • 35. 发明申请
    • CONSTRUCTION MACHINE
    • 建筑机械
    • US20110219762A1
    • 2011-09-15
    • US12672081
    • 2009-02-10
    • Tamio KobayashiMakoto Matsushita
    • Tamio KobayashiMakoto Matsushita
    • F16D31/02
    • E02F9/00B60K11/08E02F9/0866E02F9/0891F01P3/18F01P11/10F01P11/12F01P2003/187
    • A top cover (17) is provided at an upper position of a supporting structure (12) of heat exchange device (11), and an upper opening (20C) is configured to be provided in a detachable type cover (20) for constituting this top cover (17) at a position corresponding to a clearance (16) between a radiator (13) and an intercooler (15) which overlap in the flowing direction (A) of cooling air. Accordingly, when a cooling fan (7B) is rotatively driven, the upper opening (20C) allows cool cooling air to flow into the supporting structure (12) and to be supplied to the radiator (13) through the clearance (16) between the radiator (13) and the intercooler (15). As a result, only the radiator (13) which overlaps with the intercooler (15) can be efficiently cooled by the cool cooling air from the upper opening (20C).
    • 顶盖(17)设置在热交换装置(11)的支撑结构(12)的上部位置,并且上部开口(20C)构造成设置在可拆卸式盖(20)中,用于构成 顶盖(17)在对应于在冷却空气的流动方向(A)上重叠的散热器(13)和中间冷却器(15)之间的间隙(16)的位置。 因此,当冷​​却风扇(7B)被旋转驱动时,上部开口(20C)允许冷却的冷却空气流入支撑结构(12)并通过间隙(16)供应到散热器(13) 散热器(13)和中间冷却器(15)。 结果,只有与中间冷却器(15)重叠的散热器(13)能够被来自上部开口(20C)的冷却空气有效地冷却。
    • 37. 发明申请
    • CONSTRUCTION MACHINE
    • 建筑机械
    • US20100242313A1
    • 2010-09-30
    • US12740218
    • 2009-04-21
    • Kazumasa OkadaMasao NakamuraMakoto Matsushita
    • Kazumasa OkadaMasao NakamuraMakoto Matsushita
    • E02F9/00
    • B62D25/12B66C23/62E02F9/00E02F9/0816E02F9/0891
    • An intermediate plate member (22) having a plate thickness equal to or less than that of a door body (19) is provided between the door body (19) and a reinforcing member (24) constituting a right side door (18). The door body (19) and the intermediate plate member (22) are jointed by spot welding, and the intermediate plate member (22) and the reinforcing member (24) are jointed by fillet welding, thereby jointing the reinforcing member (24) through the intermediate plate member (22) on the inner side surface (19A) of the door body (19). Through the use of the intermediate plate member (22), the generation of distortion in the door body (19) is reduced and the outer appearance of the right side door (18) is maintained in good condition.
    • 在门体(19)和构成右侧门(18)的加强构件(24)之间设有板厚等于或小于门体(19)的中间板构件(22)。 门体(19)和中间板构件(22)通过点焊接合,中间板构件(22)和加强构件(24)通过角焊接合,从而将加强构件(24)通过 在门体(19)的内侧表面(19A)上的中间板构件(22)。 通过使用中间板构件(22),门体(19)的变形减少,右侧门(18)的外观保持良好状态。
    • 38. 发明申请
    • Software component importance evaluation system
    • 软件组件重要性评估系统
    • US20050120333A1
    • 2005-06-02
    • US10504868
    • 2002-10-02
    • Katsuro InoueShinji KusumotoMakoto MatsushitaHikaru Fujiwara
    • Katsuro InoueShinji KusumotoMakoto MatsushitaHikaru Fujiwara
    • G06F9/06G06F9/44
    • G06F8/36
    • A system of measuring software significance for reusing the software based on a certain objective metric is provided. In this system, in inter-file relationship extraction (S212), Java source code files 230 are analyzed, and inter-class inheritance is extracted as reuse relationships. In addition, in SMMT (S222), similarity among Java source code files 230 is calculated. In cluster analysis (S224), cluster analysis is carried out based on the similarity obtained by the SMMT (S222), and a set of files is categorized into M component groups. Relationships among component groups are extracted (S214) from the results of the cluster analysis (S224) and extraction of inter-file relationships (S212). Evaluation is carried out based on the values of relative significance for component groups using the inter-component group relationships (S216). Finally, the values of relative significance for component groups are converted to file (software component) evaluated values (S218).
    • 提供了一种基于特定客观度量来测量软件重用软件的系统。 在该系统中,在文件间关系提取(S 212)中,分析Java源代码文件230,提取类间继承作为重用关系。 此外,在SMMT(S 222)中,计算出Java源代码文件230之间的相似度。 在聚类分析(S 224)中,基于由SMMT获得的相似度执行聚类分析(S 222),并且一组文件被分类为M个组分组。 从群集分析的结果(S 224)中提取组件组之间的关系(S 214)和文件间关系的提取(S 212)。 基于使用组分间组合关系的组分组的相对含量的值来进行评估(S 216)。 最后,将组件组的相对重要性的值转换为文件(软件组件)评估值(S 218)。