ABSTRACT A method for assessing teatcup liner performance during the peak milk flow period
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A method for assessing teatcup liner performance during the peak milk flow period

机译:在高峰奶流量时期评估奶杯内胆性能的方法

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摘要

ABSTRACTThe objective of this study was to develop a method to quantify the milking conditions under which circulatory impairment of teat tissues occurs during the peak flow period of milking. A secondary objective was to quantify the effect of the same milking conditions on milk flow rate during the peak flow rate period of milking. Additionally, the observed milk flow rate was a necessary input to the calculation of canal area, our quantitative measure of circulatory impairment. A central composite experimental design was used with 5 levels of each of 2 explanatory variables (system vacuum and pulsator ratio), creating 9 treatments including the center point. Ten liners, representing a wide range of liner compression (as indicated by overpressure), were assessed, with treatments applied using a novel quarter-milking device. Eight cows (32 cow-quarters) were used across 10 separate evening milkings, with quarter being the experimental unit. The 9 treatments, with the exception of a repeated center point, were randomly applied to all quarters within each individual milking. Analysis was confined to the peak milk flow period. Milk flow rate (MFR) and teat canal cross sectional area (CA) were normalized by dividing individual MFR, or CA, values by their within-quarter average value across all treatments. A multiple explanatory variable regression model was developed for normalized MFR and normalized CA. The methods presented in this paper provided sufficient precision to estimate the effects of vacuum (both at teat-end and in the liner mouthpiece), pulsation, and liner compression on CA, as an indicator of teat-end congestion, during the peak flow period of milking. Liner compression (as indicated by overpressure), teat-end vacuum, vacuum in the liner mouthpiece, milk-phase time, and their interactions are all important predictors of MFR and teat-end congestion during the peak milk flow period of milking. Increasing teat-end vacuum and milk-phase time increases MFR and reduces CA (indicative of increased teat-end congestion). Increasing vacuum in the liner mouthpiece also acts to reduce CA and MFR. Increasing liner compression reduces the effects of teat-end congestion, resulting in increased MFR and increased CA at high levels of teat-end vacuum and milk-phase time. These results provide a better understanding of the balance between milking speed and milking gentleness.
机译: 抽象 这项研究的目的是开发一种方法来量化挤奶条件,在挤奶高峰期,在这种情况下奶嘴组织的循环损伤会发生。第二个目的是量化在挤奶高峰流量期间相同挤奶条件对牛奶流量的影响。此外,观察到的乳汁流速是计算运河面积(我们对循环障碍的定量测量)的必要输入。使用中央复合实验设计,其中2个解释变量(系统真空度和脉动比)各有5个级别,创建了包括中心点在内的9种处理方法。评估了十个代表广泛衬垫压缩(如超压指示)的衬垫,并使用新型四分之一挤奶装置进行了处理。在10次单独的夜间挤奶中使用了八头母牛(32牛季度),其中四分之一为实验单位。除重复中心点外,这9种处理均随机应用于每个挤奶过程中的所有季度。分析仅限于高峰奶流时期。通过将所有治疗中的单个MFR或CA值除以它们四分之一的平均值,将牛奶流速(MFR)和奶头横截面积(CA)标准化。针对归一化的MFR和归一化的CA,开发了一个多解释变量回归模型。本文介绍的方法提供了足够的精度来估计峰值流量期间真空(在奶嘴端和衬套烟嘴中),脉动和衬套压缩对CA的影响,CA是奶嘴端拥塞的指标。挤奶。挤奶高峰期间,内胆压迫(如超压所指示),奶头端真空度,衬套吹口中的真空度,奶相时间及其相互作用都是MFR和奶头端充血的重要预测指标。增大奶头末期真空度和奶相时间会增加MFR并降低CA(表明奶头末期拥堵增加)。衬套咬嘴中真空度的增加也可降低CA和MFR。内胆压缩的增加会降低奶头末端拥塞的影响,从而在高水平的奶头末端真空和奶相时间下导致MFR升高和CA升高。这些结果可以更好地理解挤奶速度和挤奶柔和度之间的平衡。

著录项

  • 来源
    《Journal of dairy science》 |2018年第1期|649-660|共12页
  • 作者单位

    Department of Dairy Science, University of Wisconsin-Madison;

    Animal and Grassland Research and Innovation Centre, Teagasc Moorepark;

    Department of Health, Animal Science and Food Safety;

    Department of Biological Systems Engineering, University of Wisconsin-Madison;

    Department of Biological Systems Engineering, University of Wisconsin-Madison;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    liner performance; peak milk flow; vacuum; pulsation; congestion;

    机译:班轮性能;峰值牛奶流量;真空;脉动;充血;
  • 入库时间 2022-08-17 23:22:31

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