会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 74. 发明申请
    • METHOD FOR SURFACE TREATMENT OF A DIE-CASTING DIE
    • 用于表面处理模具的方法
    • US20130042992A1
    • 2013-02-21
    • US13634679
    • 2011-05-11
    • Yasushi HiraokaYuji Kobayashi
    • Yasushi HiraokaYuji Kobayashi
    • B22C9/12B22D17/22
    • C23C8/80C23C8/24C23C8/26C23C8/28C23C8/30C23C8/32C23C8/34C23C8/36C23C8/38
    • The present invention is to provide a method for surface treatment that substantially provides no nitride compound layer that causes heat checks and abrasion to a die, while nitride is introduced in large quantities into the die internally, and as a result a die-casting die with excellent heat check resistance and excellent abrasion resistance can be produced. The method comprises a step of a nitriding process for forming on an aesthetic surface of the die-casting die a nitrided layer that includes at least a compound layer composed of a nitrogen compound by introducing gas containing at least ammonia gas to a heating furnace, a step of decomposing the compound by exhausting the ammonia gas from the heating furnace and for introducing ambient gas to the heating furnace, to carry out a thermal process to decompose the nitrogen compound, and a step of processing a shot peening process on the aesthetic surface of the die. The thickness of the compound layer contained in the nitrogen layer that is formed in the step of nitriding process is within the range of from 2∫m to 7∫m.
    • 本发明提供一种用于表面处理的方法,其基本上不提供对模具进行热检查和磨损的氮化物化合物层,而氮化物在内部大量引入模具中,因此具有 可以产生优异的耐热检查性和优异的耐磨性。 该方法包括氮化过程的步骤,用于在压铸模的美观表面上形成氮化层,该氮化层至少包括由氮化合物构成的化合物层,通过将至少含有氨气的气体引入加热炉, 通过从加热炉排出氨气并将环境气体引入加热炉来分解化合物的步骤,进行热处理以分解氮化合物,以及在美观表面上处理喷丸处理步骤 死了 在氮化工序中形成的氮层中所含的化合物层的厚度为2μm〜7μm的范围。
    • 78. 发明申请
    • METHOD FOR TREATING A METAL ELEMENT WITH ION BEAM
    • 用离子束处理金属元素的方法
    • US20110236592A1
    • 2011-09-29
    • US13132190
    • 2009-11-30
    • Denis Busardo
    • Denis Busardo
    • C23C14/48
    • C23C14/48C23C8/20C23C8/22C23C8/24C23C8/26C23C8/36C23C8/38C23C10/06C23C14/0641
    • The present invention relates to a method for treating a metal element subjected to an ion beam, where: the ions of the beam are selected from among boron, carbon, nitrogen, and oxygen; the ion acceleration voltage, greater than or equal to 10 kV, and the power of the beam, between 1 W and 10 kW, as well as the ion load per surface unit are selected so as to enable the implantation of ions onto an implantation area with a thickness eI of 0.05 μm to 5 μm, and also enable the diffusion of ions into an implantation/diffusion area with a thickness eI+eP, of 0.1 μm to 1,000 μm; the temperature TZF of the area of the metal element located under the implantation/diffusion area is less than or equal to a threshold temperature TSD. In this manner, metal surfaces having remarkable mechanical characteristics are advantageously produced.
    • 本发明涉及一种用于处理经受离子束的金属元素的方法,其中:束的离子选自硼,碳,氮和氧; 选择大于或等于10kV的离子加速电压,以及在1W和10kW之间的光束功率以及每个表面单元的离子负载,使得能够将离子注入到注入区域 其厚度eI为0.05〜5μm,并且还能够将离子扩散至厚度eI + eP为0.1μm〜1000μm的注入/扩散区域; 位于植入/扩散区域下方的金属元件的区域的温度TZF小于或等于阈值温度TSD。 以这种方式,有利地生产具有显着机械特性的金属表面。