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    • 2. 发明申请
    • ROLLER NIP GAUGE
    • 罗勒NIP量具
    • WO2003027623A1
    • 2003-04-03
    • PCT/SE2002/001735
    • 2002-09-24
    • CERVITROL ABCRONVALL, Leif
    • CRONVALL, Leif
    • G01L5/00
    • G01L5/0085B41F33/0072
    • The present invention refers to a method for dynamic measurement of a nip between two units (5, 6, 7, 10, 12) . The invention also refers to a Roller Nip Gauge. Said units may be rollers (10, 12) , cylinders (5, 6, 7) or a surface having a non-circular cross section. The length (n) and pressure of the nip is measured by clocking the length of time at least two pressure sensitive elements (3, 4, 27, 28) are passing within the nip. In some embodiment also a temperature sensor (26) is provided. The Roller Nip Gauge comprises a housing (1, 14) and a tongue (2, 15) extending from the housing (1, 14) .Two pressure sensitive elements (3, 4; 27, 28) are arranged at a distance (L) from each other at the outer end of the tongue (2, 15) .
    • 本发明涉及用于动态测量两个单元(5,6,7,10,12)之间的辊隙的方法。 本发明还涉及一种辊式压力计。 所述单元可以是辊(10,12),圆筒(5,6,7)或具有非圆形横截面的表面。 辊隙的长度(n)和压力通过计时至少两个压敏元件(3,4,27,28)在辊隙内通过的时间长度来测量。 在一些实施例中,还提供了温度传感器(26)。 滚筒接头表包括从壳体(1,14)延伸的壳体(1,14)和舌部(2,15)。两个压敏元件(3,4; 27,28)被布置成一定距离(L )在舌部(2,15)的外端处彼此相对。
    • 4. 发明申请
    • MEASUREMENT OF CURING
    • 测量固化
    • WO2010005375A1
    • 2010-01-14
    • PCT/SE2009/050830
    • 2009-06-29
    • REOSENSE ABCRONVALL, LeifLUNDBERG, Jonas
    • CRONVALL, LeifLUNDBERG, Jonas
    • G01N29/024B29C35/02C08J3/24
    • B29C35/0288C08J3/248G01N29/024G01N2291/0251
    • The present invention refers to a method for increasing productivity and quality in production of cured polymer, such as vulcanization of rubber or thermosetting of plastic, by a real time measurement of the progress of curing, in a mould cavity (8), which being filled with a compound to be cured, wherein a signal is generated by a wave at an ultrasonic or equivalent frequency, which is transmitted through the mould cavity (11), the time for the wave to pass through the compound in the mould (8) and back is detected, and the detected signal being analyzed in a suitable data processing computer (15), to establish a graph showing a relationship between the time for the wave to pass through the compound in the mould (8) and back, and the time of the curing of the compound. According to the present invention, the graph is used to determine a feature of the compound by identifying at least one specific parameter of the graph, and using said parameter to control the production. Said feature includes determine a maximum number of cross-links in the compound or determine when the compound has settle in the mould cavity.
    • 本发明涉及一种用于提高固化聚合物的生产率和生产质量的方法,例如橡胶硫化或塑料热固化,通过实际测量固化过程,在模腔(8)中,其被填充 与待固化的化合物,其中通过超声波或等效频率的波产生信号,其通过模腔(11)传输,波通过模具(8)中的化合物的时间和 检测到的信号,并且在合适的数据处理计算机(15)中分析检测到的信号,以建立示出波形通过模具(8)中的复合物的时间与时间之间的关系的曲线图,以及时间 的化合物的固化。 根据本发明,该图用于通过识别图的至少一个特定参数并使用所述参数来控制生产来确定化合物的特征。 所述特征包括确定化合物中的最大数量的交联或确定化合物何时沉降在模腔中。