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    • 91. 发明授权
    • Coated metal article and method of making the same
    • 涂层金属制品及其制作方法
    • US3867166A
    • 1975-02-18
    • US27052872
    • 1972-07-10
    • TYCON SPA
    • SULLIVAN JAMES D
    • C03C4/00C03C10/00C23D5/02C23D5/04B32B15/00
    • C23D5/04C03C4/00C03C10/00C23D5/02Y10T428/252
    • A method of producing a mixed crystalline-glass coated metal article. A devitrifiable glass frit is initially heat treated to devitrify the frit and produce an amorphous glass matrix containing a multiplicity of devitrified silicate crystals. The devitrified frit is subsequently milled with a corrosion resistant glass frit and the mixture is applied to the metal article. The coated metal article is fired at an elevated temperature to fuse the glass to the metal, and during the firing, the amorphous glass matrix tends to dissolve in the corrosion resistant glass frit. The resulting coating, which is a mixture of glass and crystalline particles, has a high impact resistance and toughness as well as having excellent resistant to corrosive attack.
    • 一种混合玻璃涂层金属制品的制造方法。 玻璃料首先进行热处理以使玻璃料失透,并产生含有多量失透的硅酸盐晶体的无定形玻璃基体。 随后用耐腐蚀玻璃料研磨失透玻璃料并将混合物施加到金属制品上。 涂覆的金属制品在升高的温度下烧制以将玻璃与金属熔合,并且在烧制期间,无定形玻璃基体倾向于溶解在耐腐蚀玻璃料中。 所得到的涂层是玻璃和结晶颗粒的混合物,具有高抗冲击性和韧性,并且具有优异的耐腐蚀性。
    • 93. 发明授权
    • Process for continuously annealed silicon steel using tension-producing glass
    • 使用拉伸生产玻璃的连续退火硅钢的工艺
    • US3833431A
    • 1974-09-03
    • US20651171
    • 1971-12-09
    • WESTINGHOUSE ELECTRIC CORP
    • FOSTER KSHILLING J
    • H01F1/16C21D1/70C21D8/12C21D9/46C23C22/00C23D5/00H01F1/147H01F1/18H01F1/04
    • H01F1/14783C21D1/70C21D8/1288C23D5/00
    • A process is described for producing silicon steel containing nominally 3.25 percent silicon, by a continuous annealing process. The magnetic characteristics exhibited by the fully processed steel approach those of commercially available silicon steel but without the necessity of extensively desulfurizing the steel from that sulfur content which is usually obtained employing a commercial process. Essentially, the process consists of selecting a cold worked, decarburized semiprocessed silicon steel which is thereafter subjected to a continuous strand annealing at a temperature in the range between about 1,000*C and about 1,100*C in order to substantially completely recrystallize the steel by a secondary recrystallization process and the application of a tensile stress of at least 200 psi to the underlying steel for producing improved watt losses over that material having substantially the same sulfur content but which was manufactured by regular commercial processes.
    • 描述了通过连续退火工艺生产含有3.25%硅的硅钢的方法。 完全加工的钢所表现出的磁特性与市售硅钢的磁特性无关,但不需要通过采用商业方法得到的硫含量大量脱硫。 基本上,该方法包括选择冷加工的脱碳半加工硅钢,然后在约1000℃至约1100℃之间的温度下进行连续退火退火,以使钢基本上完全再结晶 二次再结晶工艺和至少200psi的拉伸应力施加到下面的钢上,以产生具有基本上相同硫含量但通过常规商业方法制造的材料的改进的瓦特损失。