MANUFACTURE METHOD OF HIGH-EFFICIENCY NON-ORIENTED SILICON STEEL WITH EXCELLENT MAGNETIC PERFORMANCE
    1.
    发明申请
    MANUFACTURE METHOD OF HIGH-EFFICIENCY NON-ORIENTED SILICON STEEL WITH EXCELLENT MAGNETIC PERFORMANCE 有权
    具有优异磁性能的高效非导向硅钢的制造方法

    公开(公告)号:US20130199675A1

    公开(公告)日:2013-08-08

    申请号:US13637611

    申请日:2011-04-27

    IPC分类号: C21D8/00

    摘要: A manufacture method of high-efficiency non-oriented silicon steel with excellent magnetic property, which comprises the following steps: 1) smelting and casting; chemical compositions of non-oriented silicon steel, by weight percent, are: C≦0.0040%, Si: 0.1˜0.8%, Al: 0.002˜1.0%, Mn: 0.10˜1.50%, P: ≦0.2%, Sb: 0.04˜0.08%, S≦0.0030%, N≦0.0020%, Ti≦0.0020%, and the rest is Fe and unavoidable inclusions; molten steel in accordance with the above compositions is smelted and then casted into billets; 2) hot-rolling and pickling; heating temperature for slab is 1100° C.˜1150° C. and finish-rolling temperature is 860° C.˜920° C.; after rolling, the hot-rolled product is air cooled, during which air cooling time t: (2+30×Sb %)s≦t≦7 s; thereafter reeling at a temperature ≧720° C. ; 3) cold-rolling; rolling to form cold-rolled plate with target thickness at a reduction ratio of 70˜18%; 4) annealing; heating up the cold-rolled plate to 800˜1000° C. at heating rate of ≧15° C./s, and holding time is 10 s˜25 s. Under the precondition to ensure magnetic properties, this invention implements low cost manufacture of high efficiency electric steel by adding elements advantageous to favorable texture during steel making, controlling contents of adverse elements and coordinating air cooling time control during hot-rolling with high temperature reeling.

    摘要翻译: 一种具有优异磁性的高效无取向硅钢的制造方法,包括以下步骤:1)熔炼和铸造; 无取向硅钢的化学组成按重量百分比分别为:C@0.0040%,Si:0.1〜0.8%,Al:0.002〜1.0%,Mn:0.10〜1.50%,P:@ 0.2%,Sb:0.04 〜0.08%,S@0.0030%,N@0.0020%,Ti@0.0020%,其余为Fe和不可避免的夹杂物; 根据上述组成的钢水熔炼,然后铸成坯料; 2)热轧酸洗; 板坯加热温度为1100℃〜1150℃,精轧温度为860℃〜920℃。 轧制后,将热轧制品进行空气冷却,在此空气冷却时间t:(2 + 30×Sb%)s @ t @ 7 s; 然后在> 720℃的温度下卷曲; 3)冷轧; 轧制成型,目标厚度为70〜18%的冷轧板; 4)退火; 将冷轧板加热至800〜1000℃,加热速率> 15℃/ s,保温时间为10秒〜25秒。 在确保磁性能的前提下,本发明通过添加有利于钢铁制造中有利组织的元素,控制不利元素的含量和在高温卷取的热轧过程中协调空气冷却时间控制来实现低成本电钢的低成本制造。

    Manufacture Process Of Non-Oriented Silicon Steel With High Magnetic Induction
    3.
    发明申请
    Manufacture Process Of Non-Oriented Silicon Steel With High Magnetic Induction 审中-公开
    具有高磁感应的非定向硅钢的制造工艺

    公开(公告)号:US20120285584A1

    公开(公告)日:2012-11-15

    申请号:US13492984

    申请日:2012-06-11

    IPC分类号: C21D8/00

    摘要: A manufacture process of non-oriented silicon steel with high magnetic induction includes smelting and casting steel having a chemical composition by weight percent: Si 0.1˜1%, Al 0.005˜1.0%, C≦0.004%, Mn=0.10˜1.50%, P≦0.2%, S≦0.005%, N≦0.002, Nb+V+Ti≦0.006%, and the rest is Fe. The steel is cast into a billet, which is heated and hot-rolled to 1150˜1200° C. into a plate at a finish-rolling temperature 830˜900° C. The plate is cooled to a temperature ≧570° C. and cold-roll flattened at compression ratio 2˜5%. The flattened plate is normalized at temperature not below 950° C. for 30˜180s, and then pickled and cold-rolled into a sheet with thickness of the finished product. The sheet is finish-annealed quickly heating the sheet to 800˜1000° C. at temperature rise rate ≧100° C./s, soaking the heated sheet for 5˜60s at the temperature, and then slowly cooling the sheet to 600˜750° C.

    摘要翻译: 具有高磁感应性的非取向硅钢的制造方法包括以重量%计的化学组成的熔炼和铸造钢:Si 0.1〜1%,Al 0.005〜1.0%,C n N eE 0.004%,Mn = 0.10〜1.50% Pnn; 0.2%,S&NlE; 0.005%,N& NlE; 0.002,Nb + V + Ti&NlE; 0.006%,其余为Fe。 钢被铸造成坯料,将其在830〜900℃的精轧温度下进行加热并热轧至1150〜1200℃。将板冷却至570℃以上的温度, 冷轧压扁比为2〜5%。 将扁平板在不低于950℃的温度下归一化30至180秒,然后酸洗并冷轧成具有成品厚度的片材。 该片材经过完全退火,将片材快速加热至800〜1000℃,升温速度≥100℃/ s,在加热的温度下浸泡5〜60s,然后缓慢冷却至600〜 750°C

    Induction system with common actuator for plenum and runner valves
    5.
    发明授权
    Induction system with common actuator for plenum and runner valves 有权
    感应系统,带有通风和通风阀的通用执行器

    公开(公告)号:US07540269B2

    公开(公告)日:2009-06-02

    申请号:US11694162

    申请日:2007-03-30

    IPC分类号: F02M35/10

    摘要: An example induction system for an engine includes a plenum in fluid communication with multiple primary runners. A plenum valve is arranged between first and second chambers of the plenum, which are respectively in fluid communication with first and second sets of the primary runners. The plenum valve is configured to move between open and closed positions and regulate flow between the first and second chambers. A second runner is arranged upstream from and in fluid communication with the plenum. A runner valve is arranged in the secondary runner and configured to vary the amount of flow through the secondary runner. A common actuator is interconnected to both the plenum and runner valves and is configured to move both of the plenum and runner valves between desired positions to achieve desired valve configurations that tune the engine.

    摘要翻译: 用于发动机的示例感应系统包括与多个主流道流体连通的增压室。 增压阀布置在气室的第一和第二室之间,其分别与第一组和第二组主流体流体连通。 增压阀构造成在打开和关闭位置之间移动并且调节第一和第二室之间的流动。 第二个跑步者被安排在气室的上游并与气室连通。 流道阀设置在次级流道中并且构造成改变通过次级流道的流量。 常见的致动器互连到增压室和转向阀两者,并且构造成使所述增压室和流量阀之间的所需位置移动,以实现调节发动机的期望的阀配置。

    Active induction system tuning with multiple valves
    6.
    发明授权
    Active induction system tuning with multiple valves 有权
    主动感应系统调节多个阀门

    公开(公告)号:US07370622B2

    公开(公告)日:2008-05-13

    申请号:US11694135

    申请日:2007-03-30

    IPC分类号: F02M35/10

    摘要: An induction system is designed for an engine that includes a manifold having a plenum in fluid communication with primary runners. A plenum valve is arranged between first and second chambers of the plenum that are respectively in fluid communication with first and second sets of the primary runners. The plenum valve is configured to move between open and closed positions to regulate flow between the first and second chambers. A secondary runner is arranged upstream from and in fluid communication with the plenum. The secondary runner includes first and second runner portions with the second runner portion being shorter than the first runner portion. A runner valve is arranged in the secondary runner between the first and second runner portions and is configured to selectively direct flow through the first and second runner portions to the plenum to obtain a desired effective tuning length. Accordingly, the example induction system provides a more effective configuration for tuning an engine that is more simple, cost effective and easier to package.

    摘要翻译: 感应系统设计用于发动机,其包括具有与初级流道流体连通的增压室的歧管。 集气室阀设置在气室的第一和第二室之间,其分别与第一和第二组主流道流体连通。 增压阀构造成在打开和关闭位置之间移动以调节第一和第二室之间的流动。 次级流道设置在气室的上游并与气室流体连通。 次级流道包括第一和第二流道部分,其中第二流道部分比第一流道部分短。 在第二和第二流道部分之间的次级流道中布置有流道阀,并且构造成选择性地将流经第一和第二流道部分的流量引导到增压室以获得期望的有效调谐长度。 因此,示例感应系统提供了更简单,成本有效且更容易打包的用于调谐发动机的更有效的配置。

    ACTIVE INDUCTION SYSTEM TUNING WITH MULTIPLE VALVES
    8.
    发明申请
    ACTIVE INDUCTION SYSTEM TUNING WITH MULTIPLE VALVES 有权
    主动感应系统用多个阀门进行调谐

    公开(公告)号:US20070234992A1

    公开(公告)日:2007-10-11

    申请号:US11694135

    申请日:2007-03-30

    IPC分类号: F02M35/10

    摘要: An induction system is designed for an engine that includes a manifold having a plenum in fluid communication with primary runners. A plenum valve is arranged between first and second chambers of the plenum that are respectively in fluid communication with first and second sets of the primary runners. The plenum valve is configured to move between open and closed positions to regulate flow between the first and second chambers. A secondary runner is arranged upstream from and in fluid communication with the plenum. The secondary runner includes first and second runner portions with the second runner portion being shorter than the first runner portion. A runner valve is arranged in the secondary runner between the first and second runner portions and is configured to selectively direct flow through the first and second runner portions to the plenum to obtain a desired effective tuning length. Accordingly, the example induction system provides a more effective configuration for tuning an engine that is more simple, cost effective and easier to package.

    摘要翻译: 感应系统设计用于发动机,其包括具有与初级流道流体连通的增压室的歧管。 集气室阀设置在气室的第一和第二室之间,其分别与第一和第二组主流道流体连通。 增压阀构造成在打开和关闭位置之间移动以调节第一和第二室之间的流动。 次级流道设置在气室的上游并与气室流体连通。 次级流道包括第一和第二流道部分,其中第二流道部分比第一流道部分短。 在第二和第二流道部分之间的次级流道中布置有流道阀,并且构造成选择性地将流经第一和第二流道部分的流量引导到增压室以获得期望的有效调谐长度。 因此,示例感应系统提供了更简单,成本有效且更容易打包的用于调谐发动机的更有效的配置。

    Hand gesture detection
    10.
    发明授权
    Hand gesture detection 有权
    手势检测

    公开(公告)号:US08970479B1

    公开(公告)日:2015-03-03

    申请号:US13562734

    申请日:2012-07-31

    IPC分类号: G09G5/00 G06F3/01

    CPC分类号: G06F3/017 G06K9/00355

    摘要: Techniques are described for detecting a hand gesture made by a user. Fingertips of a hand may be identified and tracked over time. When a user contracts the fingertips from an extended position, hand spread may be calculated based on the area of the hand and fingers. The hand spread over time may be compared to a Gaussian function to evaluate whether the observed motion represents a grasping motion.

    摘要翻译: 描述了用于检测由用户做出的手势的技术。 一只手的指尖可能随时间被识别和跟踪。 当用户从伸展位置收缩指尖时,可以基于手和手指的面积来计算手伸。 随着时间推移的手可以与高斯函数进行比较,以评估观察到的运动是否表示抓握运动。