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    • 65. 发明授权
    • Digital signal processing apparatus and information processing system
    • 数字信号处理装置及信息处理系统
    • US5864706A
    • 1999-01-26
    • US693005
    • 1996-08-06
    • Masuyoshi KurokawaSeiichiro IwaseTakao YamazakiKenichiro Nakamura
    • Masuyoshi KurokawaSeiichiro IwaseTakao YamazakiKenichiro Nakamura
    • G06F15/80G06F15/78G06F12/00
    • G06F15/7857
    • A digital signal processing apparatus and information processing system provide sufficient arithmetic operation performance to process high rate signals in real time and high programming performance to deal with various applications. A group of processor elements is constituted by individual processor elements each formed by disposing an arithmetic and logic unit on the bit lines of a multiport memory wherein their number is equal to or larger than the number of the data bits in a series of serial data, and the plurality of processor elements constituting the group of processor elements are uniformly controlled by controllers mounted on the same silicon chip. Consequently, the multiport memory functioning as a buffer for input data and the arithmetic and logic unit are closely joined together, so data can be communicated smoothly between them. Since the plurality of processor elements are controlled by a single controller so as to operate as a parallel computer, a digital signal processor with a high processing speed can be implemented.
    • 数字信号处理装置和信息处理系统提供足够的算术运算性能,以实时处理高速率信号和高编程性能来处理各种应用。 一组处理器元件由各个处理器元件构成,每个处理器元件通过在多端口存储器的位线上设置算术和逻辑单元而形成,其中它们的数量等于或大于一系列串行数据中的数据位数, 并且构成处理器元件组的多个处理器元件由安装在同一硅芯片上的控制器均匀地控制。 因此,用作输入数据的缓冲器的多端口存储器和算术和逻辑单元紧密地连接在一起,因此可以在它们之间平滑地传送数据。 由于多个处理器元件由单个控制器控制以便作为并行计算机操作,因此可以实现具有高处理速度的数字信号处理器。
    • 67. 发明授权
    • Cutting method to be applied to producing helical springs by
cold-forming thick high-strength wire
    • 通过冷成型厚的高强度丝来制造螺旋弹簧的切割方法
    • US4705580A
    • 1987-11-10
    • US863253
    • 1986-05-14
    • Takao Yamazaki
    • Takao Yamazaki
    • B23D33/00B21F3/02B21F11/00C21D9/52
    • B21F99/00B21F11/005B21F3/02
    • A cutting method to be applied to producing helical springs by cold-forming a thick high-strength wire having a tensile strength in the range of 1765 to 2157 N/mm.sup.2 and a diameter in the range of 8 to 16 mm on a coiling machine, and then the wire is cut at the end coil of the coiled portion to provide a helical spring. A predetermined range about a position on the wire at a distance coresponding to the length of wire in the helical spring from the free end of the wire fed to the coiling machine is heated to a temperature within a predetermined temperature range. Therefore, the end coil of the helical spring is formed by the heated portion of the wire, and hence the helical spring is cut off the wire at a position in the heated portion. Accordingly, the helical spring can be cut with the cutting mandrel and the cutting blade or the coiling machine by a small shearing force and, since the cut end is only a portion of the end coil of the helical spring, the mechanical properties of the helical spring are not affected by cutting in the least.
    • 一种通过在卷取机上冷成型拉伸强度为1765〜2157N / mm 2,直径为8〜16mm的厚的高强度丝来制造螺旋弹簧的切断方法, 然后在线圈部分的端部线圈处切断线以提供螺旋弹簧。 与馈送到卷取机的线的自由端的螺旋弹簧中的线的长度相对应的距离处的线上的位置的预定范围被加热到预定温度范围内的温度。 因此,螺旋弹簧的端部线圈由线的加热部分形成,因此螺旋弹簧在加热部分中的位置处被切断。 因此,螺旋弹簧可以用切割心轴和切割刀片或卷绕机通过小的剪切力切割,并且由于切割端仅是螺旋弹簧的端部线圈的一部分,所以螺旋弹簧的机械性能 春天不会受到切割的影响。
    • 68. 发明授权
    • High-strength spring steel and its manufacturing process
    • 高强度弹簧钢及其制造工艺
    • US4222799A
    • 1980-09-16
    • US960561
    • 1978-11-14
    • Toshio HijikataTakao YamazakiKiyohiko Fujita
    • Toshio HijikataTakao YamazakiKiyohiko Fujita
    • C21D1/34C21D9/02C21D1/18
    • C21D1/34C21D9/02Y10S148/908
    • The present invention relates to a high-strength spring steel and its manufacturing process. More specifically, it relates to a high-strength spring steel characterized in that it is obtained by heating the surface of the material steel to over the AC.sub.3 transformation point by the high-frequency induction heating or the like, stopping the heating and then decreasing the surface temperature of said material steel to below the Ar.sub.1 transformation point, this short-time heating of the surface being repeated to secure heating throughout the entire steel body or a condition close to it, under which the steel is quenched, whereby the crystal grains in the steel become increasingly finer from the core to the surface layer of the steel, the crystal grain size of the metal in the surface layer being extraordinarily fine; the invention also relates to the process of manufacturing the steel.
    • 本发明涉及一种高强度弹簧钢及其制造方法。 更具体地说,本发明涉及一种高强度弹簧钢,其特征在于,通过高频感应加热等将材料钢的表面加热到AC3相变点以上,停止加热,然后减少 所述材料钢的表面温度低于Ar1相变点,重复该表面的短时间加热以确保整个钢体的加热或接近其的状态,钢被淬火,由此使晶粒在 钢从核心到表面层越来越细,表层金属的晶粒尺寸非常好; 本发明还涉及钢的制造方法。