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    • 3. 发明授权
    • Radiant burner surfaces and method of making same
    • 辐射式燃烧器表面及其制作方法
    • US5782629A
    • 1998-07-21
    • US589423
    • 1996-01-22
    • John J. Lannutti
    • John J. Lannutti
    • F23D14/16F23D3/40
    • F23D14/16F23D2203/105F23D2203/106F23D2212/101F23D2212/103
    • A porous surface radiant burner assembly provided with a porous burner substrate having a surface including a layer of zircon and an overlying layer of zirconia formed in situ upon exposing the zircon layer to radiant burner operating conditions. The porous surface burner substrate can be in the form of a mat of randomly oriented fibers coated with zircon, a solid parted plate of zircon or a different ceramic provided with a coating layer of zircon, or a reticulated foam comprising either zircon or a different ceramic material coated with zircon. Preferably in the method of making the porous burner substrate, the zircon layer is merely exposed to the intended operating conditions of the radiant burner wherein during the initial degradation of the zircon layer, a continuous, adherent layer of zirconia is formed in overlying relationship to the layer of zircon to resist further degradation.
    • 一种多孔表面辐射燃烧器组件,其设置有多孔燃烧器基底,该多孔燃烧器基底具有包括锆层的表面和在将锆石层暴露于辐射燃烧器操作条件时原位形成的氧化锆上覆层。 多孔表面燃烧器基底可以是涂覆有锆石的随机取向纤维垫的形式,锆石的固体分隔板或设置有锆石涂层的不同陶瓷或包含锆石或不同陶瓷的网状泡沫 涂有锆石的材料。 优选地,在制造多孔燃烧器基材的方法中,锆石层仅暴露于辐射燃烧器的预期操作条件,其中在锆石层的初始降解过程中,形成连续的氧化锆粘附层,其与 锆石层可抵抗进一步降解。
    • 4. 发明授权
    • Method for detecting density gradients
    • 密度梯度检测方法
    • US06598663B1
    • 2003-07-29
    • US09544016
    • 2000-04-06
    • John J. Lannutti
    • John J. Lannutti
    • B22C102
    • B22C1/02G01N21/6447G01N21/88
    • The present invention includes molding additives and molded materials. This invention also includes machines or electronic apparatus using these aspects of the invention. The present invention also includes methods and processes for making and using these devices and systems. In a preferred embodiment, a dye that fluoresces via ultraviolet absorption is dispersed in an organic additive. The additive is mixed with a molding material that is then formed into a shaped article by compaction. The resultant shaped article is then observed under an ultraviolet lamp to determine fluorescence variation, such variation corresponding to density gradients in the article.
    • 本发明包括成型添加剂和成型材料。 本发明还包括使用本发明的这些方面的机器或电子设备。 本发明还包括制造和使用这些装置和系统的方法和方法。 在优选的实施方案中,通过紫外吸收发荧光的染料分散在有机添加剂中。 将添加剂与成型材料混合,然后通过压实将其形成成型制品。 然后在紫外灯下观察所得的成形制品以确定荧光变化,这种变化对应于制品中的密度梯度。