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    • 52. 发明授权
    • Method for tolerance compensation of a position transducer
    • 位置传感器公差补偿方法
    • US5229957A
    • 1993-07-20
    • US578896
    • 1990-09-04
    • Klaus HahnGerhard Kolberg
    • Klaus HahnGerhard Kolberg
    • B60K26/00F02D41/24
    • F02D41/2474F02D41/28B60K26/00F02D2250/16
    • In a method for tolerance compensation of a position signal (W) of a position transducer, which has two mechanical end stops, first and second end values (W1, W2) of the position signal that are assigned to the two end stops and are stored in a read-write memory. Starting values (W1S, W2S) are stored in a read-write memory of the evaluation circuit and are set within the tolerance limits of the actual signal (Wd) detected by the position transducer. The starting values (W1S, W2S) are initially taken over as the ned values (W1, W2) into a read-write memory and cyclically compared with the actual or detected position signal (Wd). If a stored end value (W2) is exceeded by the detected position signal (Wd) or if within a predetermined time period (P) no position signal above the stored end value (W2) has been detected, the position signal is taken over as a new end value (W2) into the read-write memory, and the previous value is erased. The position signal is referred to a reference value ascertained from the two end values (W1, W2) and converted into a standardized output position signal (U).
    • 在具有两个机械终点的位置传感器的位置信号(W)的公差补偿方法中,分配给两个端点的位置信号的第一和第二端值(W1,W2)被存储 在一个读写存储器中。 起始值(W1S,W2S)存储在评估电路的读写存储器中,并被设置在由位置传感器检测到的实际信号(Wd)的公差范围内。 起始值(W1S,W2S)最初作为ned值(W1,W2)被取代到读写存储器中,并与实际或检测到的位置信号(Wd)循环地进行比较。 如果检测到的位置信号(Wd)超过存储的结束值(W2),或者如果在预定时间段(P)内没有检测到高于存储的结束值(W2)的位置信号,则将位置信号作为 写入存储器中的新的结束值(W2),并且擦除先前的值。 位置信号被称为从两个端值(W1,W2)确定的参考值,并被转换成标准化的输出位置信号(U)。
    • 55. 发明授权
    • Pre-expanded plastic beads based on poly-para-methylstyrene
    • 基于聚对甲基苯乙烯的预膨胀塑料珠
    • US4459373A
    • 1984-07-10
    • US531823
    • 1983-09-13
    • Klaus HahnIsidoor De GraveRupert Schick
    • Klaus HahnIsidoor De GraveRupert Schick
    • C08F2/18C08F2/38C08F2/44C08F12/12C08J9/20C08J9/18
    • C08J9/20C08F12/12C08J2325/00
    • The invention relates to pre-expanded plastic beads based on poly-para-methylstyrene with the following properties:(a) the bead size lies between 0.2 and 3 cm,(b) the thermal stability, measured in accordance with DIN 53,424 is above 110.degree. C., and(c) the bulk density is below 35 g/l.The corresponding expandable plastic beads are prepared through the polymerization of para-methylstyrene in an aqueous suspension with the addition of volatile organic blowing agents during or after polymerization, whereby polymerization occurs in the presence of molecular-weight-regulating substances. Typical molecular-weight-regulating substances are organic chain transfer agents with a transfer constant K between 0.1 and 50, said agents being added in amounts ranging from 0.1 percent by weight to 1 percent by weight when a yield ranging from 20 to 95 percent is reached. Oligomers of the styrene or para-methylstyrene in quantities from 0.1 percent by weight to 10 percent by weight may also be employed.
    • 本发明涉及基于聚对甲基苯乙烯的预发泡塑料珠,具有以下特性:(a)珠粒尺寸在0.2和3厘米之间,(b)根据DIN 53,424测量的热稳定性高于110 ℃,(c)体积密度低于35g / l。 通过在水性悬浮液中聚合对甲基苯乙烯来制备相应的可膨胀塑料珠,在聚合期间或之后加入挥发性有机发泡剂,由此在分子量调节物质存在下进行聚合。 典型的分子量调节物质是转移常数K为0.1至50的有机链转移剂,当达到20至95%的产率时,所述试剂的加入量为0.1重量%至1重量% 。 也可以使用0.1重量%至10重量%的量的苯乙烯或对甲基苯乙烯的低聚物。
    • 58. 发明授权
    • PS foams with low metal content
    • PS泡沫金属含量低
    • US09309365B2
    • 2016-04-12
    • US12990615
    • 2009-04-30
    • Frank BraunIngo BellinKlaus Hahn
    • Frank BraunIngo BellinKlaus Hahn
    • C08J9/00
    • C08J9/0019C08J9/0066C08J2325/04
    • The present invention relates to an expandable styrene polymer, comprising at least one flame retardant as component (A), from 0.0001 to 2% by weight, based on component (A), of at least one metal as component (B), and athermanous particles as component (C), to a process for the production of this expandable styrene polymer, to an expanded styrene polymer bead, comprising at least one flame retardant as component (A), from 0.0001 to 2% by weight, based on component (A), of at least one metal as component (B), and athermanous particles as component (C), to a process for the production of this expanded styrene polymer bead, to a foam, capable of production from this expandable styrene polymer, to a process for the production of this foam, and also to the use of this foam for thermal insulation, including that of machines and of household devices, and as packaging material.
    • 本发明涉及一种发泡性苯乙烯聚合物,其包含至少一种作为组分(A)的阻燃剂,基于组分(A)的0.0001至2重量%的至少一种作为组分(B)的金属,以及无机物 作为组分(C)的颗粒,涉及一种生产该可发性苯乙烯聚合物的方法,涉及一种发泡苯乙烯聚合物珠,其包含至少一种作为组分(A)的阻燃剂,基于组分(重量)的0.0001-2% A),作为组分(B)的至少一种金属和作为组分(C)的惰性颗粒,涉及用于生产该发泡苯乙烯聚合物珠粒的方法,能够从该可发性苯乙烯聚合物生产的泡沫,至 生产这种泡沫的方法,以及这种泡沫用于保温的方法,包括机器和家用设备以及作为包装材料。
    • 59. 发明授权
    • Arrangement and method for the anticipatory assessment of plants to be gathered with a harvesting machine
    • 用收割机收集植物的预期评估的安排和方法
    • US09301446B2
    • 2016-04-05
    • US13585539
    • 2012-08-14
    • Ole PetersBenedikt JungKlaus HahnCristian Dima
    • Ole PetersBenedikt JungKlaus HahnCristian Dima
    • A01D41/127
    • A01D41/127
    • A arrangement is provided for the anticipatory assessment of plants to be gathered by a harvesting machine, disclosed as a combine harvester, and includes a non-contact sensor arrangement for the generation of signals representing at least one characteristic of plants located ahead of the machine, a measurement device for recording at least one characteristic of the plants actually gathered by the machine, and an evaluation device for producing calibration data with the aid of signals generated by the measurement device and from statistical parameters derived from the signals of the sensor arrangement and for the calculation of the characteristic of plants to be gathered with the aid of statistical parameters, which were derived from the signals of the sensor arrangement, corresponding to the plants to be gathered, and with the aid of the calibration data.
    • 提供了一种布置,用于对作为联合收割机公开的采收机收集的植物的预期评估,并且包括用于产生表示位于机器前方的植物的至少一个特性的信号的非接触传感器装置, 用于记录由机器实际收集的植物的至少一个特征的测量装置,以及用于通过由测量装置产生的信号和从传感器装置的信号导出的统计参数来产生校准数据的评估装置, 借助统计参数,计算要收集的植物的特征,这些统计参数是从传感器装置的信号导出的,对应于要收集的植物,并借助于校准数据。