METHOD FOR ADJUSTING AN INLET GUIDE OF A PEELING MACHINE AND PEELING MACHINE

    公开(公告)号:US20220143663A1

    公开(公告)日:2022-05-12

    申请号:US17427198

    申请日:2019-12-16

    申请人: SMS group GmbH

    IPC分类号: B21B45/04

    摘要: A method for adjusting an inlet guide of a peeling machine controls a peeling material using the inlet guide in relation to a peeling head carrying peeling tools in such a way that the volume per unit length of the peeling material, which volume is to be machined by the peeling machine, is minimized while producing a bright steel having excellent surface quality. Furthermore, a peeling machine provides appropriate measuring equipment in order to be able to carry out the method described above.

    Method and device for descaling metal wire

    公开(公告)号:US10589329B2

    公开(公告)日:2020-03-17

    申请号:US15552718

    申请日:2015-03-25

    申请人: Kobe Steel, Ltd.

    摘要: Provided are a method and a device for descaling that make it possible to effectively remove oxide scale from the surface of a metal wire. The descaling includes spraying the surface of a metal wire (W) with a mixture (9) of water and hard particles from a plurality of nozzles (8). The plurality of nozzles (8) include a plurality of self-cleaning nozzles that spray at a spray angle (θ) of 90° or smaller with respect to the metal wire (W). The spray angle (θ) is the angle formed by the central axis (X) of the spraying and a vector (Vt) indicating a conveyance direction that originates at the intersection (P) of the central axis (X) and the metal wire surface.

    Method and device for in-line surface treatment of slabs
    5.
    发明授权
    Method and device for in-line surface treatment of slabs 有权
    板坯在线表面处理的方法和装置

    公开(公告)号:US08572826B2

    公开(公告)日:2013-11-05

    申请号:US13522355

    申请日:2011-01-10

    IPC分类号: B21B45/04 B21B45/06

    摘要: A method and a device for improving the outer surface quality by an in-line outer surface treatment of slabs, which are produced in a continuous process from strand casting to hot rolling, with a heating furnace arranged between a CSP-casting machine and a hot rolling train. A defined surface of the slab with a layer thickness per slab side of up to 4 mm is oxidized in a targeted manner by an oxidation device. An oxidation treatment of the slab surface is combined with the following processing in-line method steps: prior to the oxidation treatment the outer surface of the slab is freed of naturally occurring scale by a scale washer, after the oxidation treatment a created oxidation layer as well as the newly formed scale is cooled, mechanically broken up in a roll pair and removed from the surface of the slab by a scale washer.

    摘要翻译: 一种通过线材外表面处理来提高外表面质量的方法和装置,该方法和装置通过在CSP铸造机和热喷涂机之间设置的加热炉在从钢坯铸造到热轧的连续方法中制造的板坯的外表面处理 滚动列车 具有高达4mm的板厚度的板坯的限定表面通过氧化装置以目标方式被氧化。 将板坯表面的氧化处理与以下处理在线方法步骤相结合:在氧化处理之前,平板的外表面通过垢洗涤器免于天然存在的氧化处理,氧化处理后产生氧化层为 以及新形成的刻度盘被冷却,机械地分解成卷对,并通过刻度盘从板的表面移除。

    Battery can, method for producing the same, and battery
    6.
    发明授权
    Battery can, method for producing the same, and battery 有权
    电池罐,其制造方法和电池

    公开(公告)号:US07951484B2

    公开(公告)日:2011-05-31

    申请号:US12519651

    申请日:2008-12-03

    申请人: Katsuhiko Mori

    发明人: Katsuhiko Mori

    IPC分类号: H01M2/02 B21B45/04

    摘要: The method for producing a battery can according to this invention includes the steps of: (1) producing a battery can having a cylindrical side wall, a bottom, and an opening from a steel plate by a can-making process; (2) washing the battery can with tap water or industrial water; (3) washing the battery can with water having a conductivity of 80 μS/cm or less after the step (2); and (4) drying the battery can after the step (3).

    摘要翻译: 根据本发明的电池罐的制造方法包括以下步骤:(1)通过制罐工艺制造具有圆柱形侧壁,底部和从钢板开口的电池壳; (2)用自来水或工业用水清洗电池罐; (3)在步骤(2)之后用电导率为80μS/ cm以下的水洗涤电池罐; 和(4)在步骤(3)之后干燥电池罐。

    Method of removing scale and inhibiting oxidation and cold rolling sheet metal
    7.
    发明申请
    Method of removing scale and inhibiting oxidation and cold rolling sheet metal 失效
    去除锈垢和抑制氧化和冷轧金属板的方法

    公开(公告)号:US20050199266A1

    公开(公告)日:2005-09-15

    申请号:US10983941

    申请日:2004-11-08

    申请人: Kevin Voges

    发明人: Kevin Voges

    摘要: A method of removing iron oxide scale and cold reducing sheet metal leaves a wustite layer on the sheet metal. The iron oxide scale on the sheet metal generally comprises three layers prior to surface conditioning: a wustite layer, a magnetite layer, and a hematite layer. The wustite layer is bonded to a base metal substrate of the sheet metal. The magnetite layer is bonded to the wustite layer, and the hematite layer is bonded to the magnetite layer. Conditioning the surface of the sheet metal includes bringing a surface conditioning member into engagement with the surface of the sheet metal in a manner to remove substantially all of the hematite and magnetite layers from the surface, and in a manner to remove some but not all of the wustite layer from the surface. The portion of the wustite layer that remains bonded to the base metal substrate of the sheet metal protects the surface from oxidation, even after subsequent cold reduction of the sheet metal.

    摘要翻译: 去除氧化铁垢和冷还原金属板的方法在金属板上留下方铁矿层。 在金属板材之间的氧化铁垢通常包括三层在表面调节之前:方铁矿层,磁铁矿层和赤铁矿层。 方铁矿层与金属板的基底金属基体结合。 磁铁矿层与方铁矿层结合,赤铁矿层与磁铁矿层接合。 调整钣金的表面包括使表面调节构件以与金属板的表面接合的方式,以从表面去除基本上所有的赤铁矿和磁铁矿层,并且以某种方式除去一些但不是全部 方土层从表面。 即使在随后的金属板的冷还原之后,保留结合到金属板的母材金属基材的方钨矿层的部分保护表面免受氧化。

    Apparatus for the descaling of metal
    8.
    发明申请
    Apparatus for the descaling of metal 审中-公开
    金属除锈设备

    公开(公告)号:US20050198794A1

    公开(公告)日:2005-09-15

    申请号:US11057560

    申请日:2005-02-14

    摘要: A method and apparatus for the descaling of metal surfaces without the use of caustic substances is provided. The apparatus includes a first and second blast heads containing nozzles that spray high velocity jets of media at a scale covered continuous sheet of steel. The continuous sheet of steel is advanced into an abrading station containing a pair of brush assemblies that include stainless steel bristled brushes. The stainless steel brushes engage the surface of the sheet of steel and abrade away the cracked scale, leaving a surface clean of scale. The surface produced is pH neutral and therefore resists additional corrosion and does not require oil coatings, or other protective treatments. Eliminating these steps makes for a faster, more robust process and saves considerable cost.

    摘要翻译: 提供了不使用苛性物质来除去金属表面的方法和装置。 该装置包括第一和第二鼓风头,其包含喷嘴,其喷射在覆盖有连续钢板的刻度上的介质的高速射流。 连续的钢板被推进到包括一对包括不锈钢刷毛刷的刷子组件的研磨台中。 不锈钢刷与钢板表面接合,磨掉破裂的鳞片,表面清洁。 所生产的表面是pH中性的,因此可以抵抗额外的腐蚀,不需要油涂层或其他保护处理。 消除这些步骤使得更快,更健壮的过程节省了可观的成本。

    Method of removing scale and inhibiting oxidation and galvanizing sheet metal
    9.
    发明申请
    Method of removing scale and inhibiting oxidation and galvanizing sheet metal 失效
    去除锈垢和抑制氧化和镀锌金属板的方法

    公开(公告)号:US20050136184A1

    公开(公告)日:2005-06-23

    申请号:US10958832

    申请日:2004-10-05

    申请人: Kevin Voges

    发明人: Kevin Voges

    摘要: A method of removing iron oxide scale and galvanizing sheet metal bonds galvanizing zinc to a wustite layer of the sheet metal. The iron oxide scale on the sheet metal generally comprises three layers prior to surface conditioning: a wustite layer, a magnetite layer, and a hematite layer. The wustite layer is bonded to a base metal substrate of the sheet metal. The magnetite layer is bonded to the wustite layer, and the hematite layer is bonded to the magnetite layer. Conditioning the surface of the sheet metal includes bringing a surface conditioning member into engagement with the surface of the sheet metal in a manner to remove substantially all of the hematite and magnetite layers from the surface, and in a manner to remove some but not all of the wustite layer from the surface. The portion of the wustite layer that remains bonded to the base metal substrate of the sheet metal protects the surface from oxidation until the surface is galvanized.

    摘要翻译: 一种去除氧化铁垢和镀锌金属锌的方法将镀锌锌镀到金属板的方铁矿层。 在金属板材之间的氧化铁垢通常在表面调节之前包括三层:方铁矿层,磁铁矿层和赤铁矿层。 方铁矿层与金属板的基底金属基体结合。 磁铁矿层与方铁矿层结合,赤铁矿层与磁铁矿层接合。 调整钣金的表面包括使表面调节构件以与金属板的表面接合的方式,以从表面去除基本上所有的赤铁矿和磁铁矿层,并且以某种方式除去一些但不是全部 方土层从表面。 保留结合到金属钣金基体的方钨矿层的部分保护表面免于氧化直到表面被镀锌。