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    • 5. 发明授权
    • Pavement, a paving material and methods of producing said pavement and
said paving material
    • 路面,铺路材料和生产所述路面和所述铺路材料的方法
    • US5403117A
    • 1995-04-04
    • US163545
    • 1993-12-09
    • Hideyuki OkuyamaTetsuya KojimotoMasakazu Tanaka
    • Hideyuki OkuyamaTetsuya KojimotoMasakazu Tanaka
    • B29C67/24E01C7/30E01C13/06C08K9/08
    • E01C7/30B29C67/243E01C13/065
    • The present invention provides pavement and a paving material in which a large quantity of aggregates are bound with one another by a hot melt of thermoplastic resin powder, and also provides producing methods of such pavement and such paving material. The thermoplastic resin powder is neither limited in pot life, nor influenced by working conditions and weather conditions at the time when pavement is laid at a job site. Accordingly, uniform strength can be given to the resulting pavement or paving material. Further, the resulting pavement or paving material is excellent in weather resistance, elasticity and flexibility. Thus, the pavement of the present invention can be suitably used as pavement at play ground, parks, roads and the like. It is also easy to amend pavement, as necessary, after laid. The pavement producing method of the present invention can readily and efficiently produce the pavement.
    • 本发明提供了通过热塑性树脂粉末的热熔融将大量聚集体彼此结合的路面和铺路材料,并且还提供了这种路面和这种铺路材料的制造方法。 热塑性树脂粉末在使用期限内既不受限制,也不受作业现场铺设路面时的工作条件和天气条件的影响。 因此,可以对所得到的路面或铺路材料赋予均匀的强度。 此外,所得到的路面或铺路材料的耐候性,弹性和柔软性优异。 因此,本发明的路面可以适当地用作游乐场,公园,道路等的路面。 铺设后,根据需要修改路面也很容易。 本发明的路面制造方法可以容易且高效地生产路面。
    • 6. 发明授权
    • Intake system for internal combustion engine
    • 内燃机进气系统
    • US09010295B2
    • 2015-04-21
    • US13337929
    • 2011-12-27
    • Naoto YamagishiMasakazu Tanaka
    • Naoto YamagishiMasakazu Tanaka
    • F02M35/10F01M13/00F02B25/00F02M27/00F02M29/00F02M35/16F02M35/024
    • F02M35/162F02M35/024F02M35/10098F02M35/10177F02M35/10216F02M35/10255
    • An intake system for an internal combustion engine, having a structure in which blow-by oil and/or fuel entering into an air cleaner case can be discharged to the outside of the air cleaner case. The intake system for an internal combustion engine is provided in which air is sucked from a clean air chamber in the air cleaner case into a throttle body provided with a throttle valve through a funnel while defining an airflow passage. Concurrently, fuel is sprayed from an injector, thereby feeding the fuel-air mixture into an intake port. A bypass passage different from the airflow passage is provided between the clean air chamber in the air cleaner case and the throttle body. The bypass passage is so structured that a passage inlet thereof on the clean air chamber side opens at an inner wall surface of the air cleaner case.
    • 一种用于内燃机的进气系统,具有能够进入空气滤清器壳体的窜油和/或燃料排出到空气滤清器壳体的外部的结构。 提供了一种用于内燃机的进气系统,其中空气从空气滤清器壳体中的清洁空气室被吸入通过漏斗设置有节流阀的节气门体,同时限定气流通道。 同时,从喷射器喷射燃料,从而将燃料 - 空气混合物进料到进气口中。 在空气滤清器壳体中的清洁空气室和节气门体之间设置有与气流通道不同的旁路通道。 旁通通道的结构使得其在清洁空气室侧的通道入口在空气滤清器壳体的内壁表面处打开。
    • 10. 发明授权
    • Production method of ceramic catalyst body
    • 陶瓷催化剂体的生产方法
    • US07084091B2
    • 2006-08-01
    • US10793953
    • 2004-03-08
    • Kazuhiko KoikeMasakazu TanakaTakumi SuzawaTomomi HaseTomohiko Nakanishi
    • Kazuhiko KoikeMasakazu TanakaTakumi SuzawaTomomi HaseTomohiko Nakanishi
    • B01J23/42B01J23/44B01J23/00B01J23/08B01J20/00
    • B01J35/04B01J23/40
    • This invention provides a method for producing a ceramic catalyst body that can directly support a catalyst on a ceramic support without disposing a coating layer on the ceramic support. In the invention, a catalyst solution containing a catalyst component consisting of a negative complex ion resulting from a catalyst precursor is prepared, and a pH of the catalyst solution is adjusted in such a manner as to satisfy the relation E1>E2 and E1>0 where E1 is a surface potential of a matrix phase consisting of a cordierite-W composite body relative to the pH of the catalyst solution and E2 is a surface potential of a dispersed phase consisting of compounds other than the cordierite-W composite body. After the ceramic support is brought into contact with the catalyst solution to support the catalyst component, heat-treatment is conducted to bond the matrix phase consisting of the cordierite-W composite body and the catalyst component to support the catalyst on the ceramic support.
    • 本发明提供了一种陶瓷催化剂体的制造方法,该陶瓷催化剂体可以直接在陶瓷载体上支撑催化剂,而不在陶瓷载体上设置涂层。 在本发明中,制备含有由催化剂前体产生的负配位离子组成的催化剂成分的催化剂溶液,调节催化剂溶液的pH以满足E 1> E 2和E 1> 0其中E 1是由堇青石-W复合体组成的基质相相对于催化剂溶液的pH的表面电位,E 2是由堇青石-W以外的化合物组成的分散相的表面电位 复合体。 陶瓷载体与催化剂溶液接触以支持催化剂组分之后,进行热处理以将由堇青石-W复合体和催化剂组分组成的基体相结合以将催化剂载持在陶瓷载体上。