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    • 1. 发明申请
    • Method and Device for the Continuous Creation of a Bainite Structure in a Carbon Steel, Particularly in a Strip Steel
    • 在碳钢,特别是带钢中连续生产贝氏体组织的方法和装置
    • US20090139616A1
    • 2009-06-04
    • US12084660
    • 2006-10-31
    • Werner KaiserHeinz HofinghoffHans-Toni JuniusMichael HellmannPeter EbnerHeribert Lochner
    • Werner KaiserHeinz HofinghoffHans-Toni JuniusMichael HellmannPeter EbnerHeribert Lochner
    • C21D1/63C21D6/00
    • C21D1/20C21D1/25C21D1/607C21D1/63C21D8/02C21D8/04C21D9/561C21D9/563C21D9/573C21D9/58Y02P10/212
    • The invention relates to a method for continuously creating a bainite structure in a carbon steel, especially a strip steel. The method comprises the following steps: the carbon steel (1) is austenitized (3) at a temperature exceeding the austenitizing temperature; the austenitized carbon steel (1) is introduced into a bath (2) containing a quenching agent (21) in order to cool the carbon steel (1) to a temperature lying below the austenitizing temperature; the carbon steel (1) is adjusted to the transformation temperature for bainite and is maintained (13) at the transformation temperature for a certain period of time; and the carbon steel is then cooled (17). In order to further develop the method, the carbon steel (1) penetrates a bath (2) containing a quenching agent (21) until a defined percentage of the bainite structure relative to the total structure of the carbon steel (1) has formed in the bath (2) containing the quenching agent (21) following the austenitizing process, residues of the quenching agent (21) are removed from the surface of the carbon steel (1) by blowing the same off when the carbon steel (1) is discharged from the bath (2), and the remaining structure components of the carbon steel (1) are then transformed into bainite in an isothermal tempering station (13) without deflecting the carbon steel (1) at all when the same penetrates the isothermal tempering station (13).
    • 本发明涉及一种在碳钢,特别是钢带钢中连续生产贝氏体组织的方法。 该方法包括以下步骤:在超过奥氏体化温度的温度下将碳钢(1)奥氏体化(3) 将奥氏体化碳钢(1)引入含有淬火剂(21)的浴(2)中,以将碳钢(1)冷却至低于奥氏体化温度的温度; 将碳钢(1)调节至贝氏体的转变温度,并在相变温度下保持(13)一定时间; 然后将碳钢冷却(17)。 为了进一步开发该方法,碳钢(1)穿透含有淬火剂(21)的浴(2),直到贝氏体组织相对于碳钢(1)的总体结构的规定百分比形成 在奥氏体化过程中含有淬火剂(21)的浴(2),通过将碳钢(1)为碳素钢(1)的碳钢(1)的残留物从碳钢(1)的表面除去,淬火剂 从浴中排出,然后在等温回火站(13)中将碳钢(1)的其余结构部件转变成贝氏体,而当同样穿过等温回火时,碳钢(1)完全不会发生偏转 车站(13)。
    • 8. 发明授权
    • Disposable microwave food shield
    • 一次性微波食品防护罩
    • US07586068B2
    • 2009-09-08
    • US11437327
    • 2006-05-19
    • Peter ShawMichael Hellmann
    • Peter ShawMichael Hellmann
    • H05B6/80
    • A47J36/027A47J37/101H05B6/6408
    • A device and method are provided for protecting the inside of a microwave oven from food splattering during cooking. The device is made of breathable food grade paper, is a truncated cone in shape with a pleated side wall for rigidity and at least one reinforcing structure on a top surface. Top surface reinforcement may be one or more folded paper reinforcement bars or folded paper reinforcement members, shaped as circles, squares, or any other convenient shape. Reinforcement bars may be radial across the top surface or nonradial, and may be linear or curvilinear. The food shield device is made by conventional paper die stamping methods.
    • 提供了一种用于在烹饪期间保护微波炉内部不受食物飞溅的装置和方法。 该装置由透气食品级纸制成,是具有用于刚性的褶皱侧壁的形状的截头圆锥体和在顶部表面上的至少一个加强结构。 顶部表面加强件可以是一个或多个折叠纸张加强条或折叠纸加强件,形状为圆形,正方形或任何其他方便的形状。 加强筋可以在顶部表面或非直线上是径向的,并且可以是线性的或曲线形的。 食品防护装置由传统的纸模冲压方法制成。