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    • 1. 发明专利
    • Adhesion evaluation method for die-cast mold release agent and adhesion evaluation device for the same
    • 用于模具脱模剂的胶粘剂评价方法及其粘合性评价装置
    • JP2014057972A
    • 2014-04-03
    • JP2012203130
    • 2012-09-14
    • Toyota Central R&D Labs Inc株式会社豊田中央研究所Aisin Seiki Co Ltdアイシン精機株式会社
    • TACHIKAWA HIDEOITO HIROSHISUZUKI KAZUHIKOEZAKI YASUOYAMADA KENICHIYAMADA HIROYUKIKAJINO MASAKITAKEUCHI HISATOIWABORI HIROAKIIWATA YASUSHIKIN SEIKIHAYAFUJI TETSUNORIHISANAGA MASARU
    • B22D17/20B22C9/00B22C9/10
    • PROBLEM TO BE SOLVED: To provide an adhesion evaluation method for a die-cast mold release agent enabling appropriate evaluation of an adhering state of the mold release agent applied to a molding surface of a mold.SOLUTION: An adhesion evaluation method for a die-cast mold release agent includes: an irradiation step of irradiating a coated surface that is formed by spray coating of a coating fluid obtained by dissolving or dispersing the mold release agent and a fluorescent agent in water on a heated molding surface of a mold, with excitation light that corresponds to the fluorescent agent; and a measurement step of receiving fluorescence emitted from the fluorescent agent to measure fluorescence intensity. The measurement step is an intensity distribution measurement step of continuously measuring fluorescence intensity in a specific region of the coated surface to obtain intensity distribution. The adhesion evaluation method further includes an identification step of identifying an index value indexing an adhesion state of the mold release agent in the specific region on the basis of the intensity distribution. Using the index value enables appropriate evaluation of the adhesion state of the mold release agent and thus releasability during die casting even if coating unevenness of the mold release agent is large.
    • 要解决的问题:提供一种压铸脱模剂的粘合性评价方法,其能够适当地评价施加到模具的成型面上的脱模剂的附着状态。解决方案: 脱模剂包括:照射步骤,其通过将通过将脱模剂和荧光剂溶解或分散在水中而获得的涂布液喷雾涂布在加热的模具的表面上来照射涂布表面, 对应于荧光剂的光; 以及接收从荧光剂发出的荧光以测量荧光强度的测量步骤。 测量步骤是强度分布测量步骤,连续地测量涂覆表面的特定区域中的荧光强度,以获得强度分布。 粘合性评价方法还包括识别步骤,其基于强度分布来识别指定脱模剂在特定区域中的粘附状态的指标值。 使用该指标值能够适当地评价脱模剂的粘附状态,并因此即使在脱模剂的涂布不均匀性大的情况下也能够进行压铸时的剥离性。
    • 3. 发明专利
    • Briquette and method for production thereof
    • 其生产方法及其生产方法
    • JP2009074135A
    • 2009-04-09
    • JP2007244164
    • 2007-09-20
    • Aichi Steel Works LtdAisin Seiki Co Ltdアイシン精機株式会社愛知製鋼株式会社
    • HAYAFUJI TETSUNORIYAMADA TETSUOKAMIYA YASUHIKO
    • C22B1/248C22B1/00C22B7/00
    • Y02P10/212
    • PROBLEM TO BE SOLVED: To provide a briquette by which characteristics of magnesium can be effectively utilized while recycling machining chips of a magnesium material and aiming at the effective utilization of resources and which, in itself, has satisfactory strength, and also to provide a method for production thereof. SOLUTION: The magnesium material is used as a combustion improver for metallic material production (e.g. steelmaking), and high calorific value at combustion reaction, as a characteristic of magnesium, is effectively utilized. The magnesium material composed of machining chips is mixed with an aluminum material composed of machining chips, and the resulting mixture is pressed. Since adhesion between the magnesium material and the aluminum material in the mixture is increased, the mixture can be briquetted at ordinary temperature. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够有效利用镁的特性的砖块,同时回收镁材料的加工芯片,并旨在有效利用资源,本身具有令人满意的强度,并且还可以 提供其生产方法。 解决方案:镁材料用作金属材料生产(例如炼钢)的燃烧改进剂,并且作为镁的特性,在燃烧反应中的高热值得到有效利用。 由加工芯片组成的镁材料与由加工芯片组成的铝材料混合,并将所得混合物压制。 由于混合物中镁材料和铝材料之间的粘合性增加,所以可以在常温下压块。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Molten metal surface detection sensor
    • 金属表面检测传感器
    • JP2005189054A
    • 2005-07-14
    • JP2003429592
    • 2003-12-25
    • Aisin Seiki Co Ltdアイシン精機株式会社
    • HAYAFUJI TETSUNORI
    • G01F23/00B22D11/16
    • PROBLEM TO BE SOLVED: To provide a molten metal surface detection sensor for surely detecting a fall of a molten metal surface even in cases where a solidified material is easily formed from the molten metal on the surface of the molten metal, as to a contact-type molten metal surface detection sensor for detecting the fall of the molten metal surface based on whether contact has taken place with the molten metal.
      SOLUTION: This sensor comprises a sensor body 3 and a cylinder 11 for vertically moving the sensor body 3 at prescribed time intervals. A rising end side metal plate 10 and a falling end side metal plate 9 are disposed on a rising end A and a falling end B of the sensor body 3, respectively. When the sensor body 3 is positioned at the rising end A or the falling end B, a part of the sensor body 3 collides with the metal plate 10 or 9. This impact propagates through the sensor body 3 to break down the solidified material of the molten metal deposited on an end part 3a of the sensor body 3. This can prevent erroneous determination in detection caused by the deposition of the solidified material of the molten metal on the sensor body 3, making it possible to surely detecting that the molten metal surface has fallen lower than a reference height.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种熔融金属表面检测传感器,即使在熔融金属表面上的熔融金属容易形成凝固材料的情况下,也能够可靠地检测熔融金属表面的下落,至于 接触型熔融金属表面检测传感器,用于基于是否与熔融金属发生接触来检测熔融金属表面的下落。 解决方案:该传感器包括用于以规定的时间间隔垂直移动传感器主体3的传感器主体3和气缸11。 上升端金属板10和下端侧金属板9分别设置在传感器主体3的上升端A和下降端B上。 当传感器主体3位于上升端A或下降端B时,传感器主体3的一部分与金属板10或9碰撞。该冲击传播通过传感器主体3以分解固体材料 熔融金属沉积在传感器体3的端部3a上。这可以防止由于熔融金属凝固材料沉积在传感器体3上而导致的检测错误的确定,使得可以可靠地检测熔融金属表面 已经低于参考高度。 版权所有(C)2005,JPO&NCIPI