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Improvements in and relating to methods and apparatus for measurement of the mass and/or moisture content of dielectric materials

机译:测量介电材料的质量和/或水分含量的方法和设备的改进

摘要

939,669. Determining relative quantities of constituents. INDUSTRIAL NUCLEONICS CORPORATION. July 11, 1961 [July 11, 1960], No. 25138/61. Class 37. In a system for measuring the amount of at least one constituent in a material having a number of constituents with different dielectric characteristics, wherein the material is passed between the plates of a capacitor, the plates are energized from a number of A.G. sources of different frequency, the number being the same as the number of constituents. The invention is particularly directed to determining the weight and moisture content of a cigarette rod during manufacture. Bridge 10, Fig. 1, including capacitive probe 12 is fed with frequencies f 1 , f 2 from sources 16, 17 over transformer 13, 14, 15 and an initial balance is obtained by the adjustment of resistorcapacitor network 22, the outputs at the two frequencies being selected by filters 25, 26 after amplification in amplifiers 23, 24. The detected signals S L , S H are applied to a computer 29 to determine the weight p and moisture content q which are indicated on meters 31, 32, respectively. Curves S L , S H , Fig. 3, and a derived function S L /S H /S H for a range of moisture content from 0-30% obtained with frequencies of 50 kc/s. and 3 mc/s. are used as a basis for the computer design, the computer relating the derived function shown as K(q) with q in accordance with the relation shown graphically to exist. The signals S L , S H are applied to a subtraction circuit 44, Fig. 4, and the resulting signal is applied with a signal KS H derived from the input S H by a wiper 48 on a potentiometer 47, to an amplifier 46 feeding a servomotor 49. The servomotor which establishes the fractional position K of the wiper is ganged to a further wiper 51 on a potentiometer 52 which establishes a signal K(Q) on an input lead 53 to an amplifier 55 feeding a winding of a further servomotor 56. The potentiometer is fed with a constant voltage through a limiting amplifier 66 and drives the servomotor 56 to a position where the potential tapped from a potentiometer 58 wound in accordance with the q/K(q) relationship of Fig. 3 equals the potential on line 53, when it stops. The position of wiper 57 is equal to the value q and the value is indicated at 83 by an indicator connected to an auxiliary wiper 81 on potentiometer 82 the potentiometer being energized from a constant source. The filling factor P is determined both for high and low frequencies by averaging the tapping outputs from potentiometer 86, 87, wound respectively according to the functions f H (q) and f L (Q) and supplied respectively with signals S H and S L . A correction for P may be made in accordance with the indication in 92 of the difference between the values of P obtained at the two frequencies. The change of values of K(Q) on either side of q = 10% approximately is corrected for by antiphase voltages being applied simultaneously to the limiting amplifier 66, the supply from source 69 taking over when the signal S L falls below the value corresponding with the peak of K(q). A simple linear computer which may be used when the moisture content is known to be within a predetermined narrow range, is described with reference to Figs. 6 and 7 (not shown) in another linear servo arrangement for a range of about 10% of moisture content, signals S H and S L , Fig. 8, are reduced by adjustable reference voltages selected by wipers 117, 119 which determine the location of the range and applied with the signals S H , S L to chopper stabilized amplifiers 118, 121, the former including a phase inverter stage 122 to obtain an output on terminal 123 of opposite polarity to that on 124. Servomotor 130 sets to a position representative of moisture content, which is indicated on meter 139, in response to the potential at point 127 and the potential tapped off by wiper 133 from potentiometer 131, 132 supplied by signal S H . The filling factor P which is proportional to S H/q is derived from a potentiometer 141 the wiper 142 of which is also driven by motor 130. Variations in output from H.F. generator 16 may be compensated by comparison of the output from 142 with a supply from generator 16 applied at 145 and adjusted by potentiometer 146 to balance the signal at 142. As the output at 142 may be indicative of a design requirement, a change from balance of the two signals indicates deviation from design, and control may be effected.
机译:939,669。确定成分的相对数量。工业核子公司。 1961年7月11日[1960年7月11日],编号25138/61。等级37.在一种用于测量具有许多具有不同介电特性的成分的材料中至少一种成分的量的系统,其中,该材料在电容器的极板之间通过,该极板由多个AG源供电频率不同,其数目与成分的数目相同。本发明尤其涉及在制造过程中确定烟杆的重量和水分含量。图1的桥10(包括电容式探头12)通过变压器13、14、15从电源16、17馈入频率f 1,f 2,并通过调节电阻-电容器网络22来获得初始平衡。在放大器23、24中放大之后,由滤波器25、26选择两个频率。将检测到的信号SL,SH施加到计算机29以确定分别在仪表31、32上指示的重量p和水分含量q。曲线S L,S H,图3以及在50 kc / s的频率下获得的0-30%水分含量范围内的推导函数S L / S H / S H。和3 mc / s。作为计算机设计的基础,计算机根据存在的图形关系将表示为K(q)的导出函数与q相关联。信号SL,SH施加到图4的减法电路44,并且所得信号与通过电位器47上的抽头48从输入SH导出的信号KS H一起施加到向伺服电动机49馈送的放大器46。确立刮水器的小数位置K的伺服电机与电位计52上的另一刮水器51联动,该电位计在输入引线53上建立信号K(Q)到放大器55,放大器55向另一伺服电机56的绕组供电。电位计通过限制放大器66供给恒定电压,并将伺服电机56驱动到一个位置,在该位置上,根据图3的q / K(q)关系卷绕的电位计58抽出的电位等于线53上的电位,何时停止。抽头57的位置等于值q,并且该值在83处通过连接到电位器82上的辅助抽头81的指示器指示,该电位器由恒定电源供电。通过对电位计86、87的分接输出进行平均来确定针对高频和低频的填充因子P,分别根据函数f H(q)和f L(Q)缠绕并分别提供信号S H和S L。可以根据在92中指示在两个频率处获得的P值之间的差来对P进行校正。通过同时将反相电压施加到限幅放大器66来校正q = 10%左右的K(Q)值的变化,信号SL低于对应于该值的值时,来自电源69的电源将接管。 K(q)的峰值。参照图1至图4,对已知水分含量在预定的窄范围内时可以使用的简单的线性计算机进行说明。如图6和7(未示出)所示,在另一线性伺服装置中,对于大约10%的水分含量,图8的信号SH和SL通过由刮水器117、119选择的可调参考电压而减小,所述刮水器117、119确定所述传感器的位置。范围并施加信号SH,SL到斩波稳定放大器118、121,斩波稳定放大器118、121包括相逆变器级122,以在端子123上获得与124极性相反的输出。伺服电动机130设置为代表水分含量的位置响应于点127处的电势以及由抽头133从信号SH提供的电位器131、132分接的电势,抽头电势被指示在仪表139上。与SH / q成正比的填充系数P是从电位计141得出的,电位计141的抽头142也由电动机130驱动。HF发生器16的输出变化可通过将142的输出与电源的供给进行比较来补偿。发生器16在145处应用并且由电位计146调节以在142处平衡信号。由于142处的输出可以指示设计要求,所以两个信号的平衡的变化指示偏离设计,并且可以进行控制。

著录项

  • 公开/公告号GB939669A

    专利类型

  • 公开/公告日1963-10-16

    原文格式PDF

  • 申请/专利权人 INDUSTRIAL NUCLEONICS CORPORATION;

    申请/专利号GB19610025138

  • 发明设计人

    申请日1961-07-11

  • 分类号G01N27/22;

  • 国家 GB

  • 入库时间 2022-08-23 16:57:21

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