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真空水平和与奶流相关的真空下降会影响奶牛的机械挤奶性能和乳头状况。

Vacuum levels and milk-flow-dependent vacuum drops affect machine milking performance and teat condition in dairy cows.

作者信息

Besier J, Bruckmaier R M

机构信息

Veterinary Physiology, Vetsuisse Faculty, University of Bern, Bremgartenstr. 109a, 3012 Bern, Switzerland.

Veterinary Physiology, Vetsuisse Faculty, University of Bern, Bremgartenstr. 109a, 3012 Bern, Switzerland.

出版信息

J Dairy Sci. 2016 Apr;99(4):3096-3102. doi: 10.3168/jds.2015-10340. Epub 2016 Jan 29.

Abstract

Different levels of claw vacuum during machine milking may influence milking performance and teat condition. The claw vacuum acts on the teat and is responsible for removal and transport of milk but is also causing potential effects on the teat tissue. In the absence of milk flow, the claw vacuum is similar as the system vacuum. During milk flow, the claw vacuum drops to lower levels depending on lifting height and tube length and diameter, which may influence milking performance and the mechanical load on the teat tissue. The goal of the present study was to investigate the effects of high system vacuum and extremely low claw vacuum during milk flow on milking performance and teat condition after milking recorded by ultrasound. Treatments were control (treatment 1) with a system vacuum of 42 and a minimum claw vacuum during milk flow of 33 kPa; treatment 2 representing a system vacuum of 50 kPa, with a minimum claw vacuum almost similar as treatment 1 (34 kPa); and treatment 3 with the same system vacuum as treatment 1 but a claw vacuum drop during milk flow down to 24 kPa. Total milk yield was similar in all treatments, but strip yield was lower in treatment 3 than in the other treatments. Milk flow was similar in treatment 1 and treatment 2, but was reduced in treatment 3, thus causing a prolonged milking time in treatment 3. Teat wall thickness was increased and teat cistern diameter was decreased in treatment 2 as compared with the other treatments. The results demonstrate that the minimum claw vacuum had the main influence on milking performance independent of the level of the system vacuum and related vacuum drops and a low minimum claw vacuum caused low milk flow and long milking times. Teat condition at the end of milking, however, was mainly dependent on the system vacuum, and the load on the teat tissue was obviously increased at a system vacuum of 50 kPa. This effect was obviously occurring toward the end of milking when milk flow decreased and hence the milk flow dependent vacuum drop disappeared. Therefore, an early cluster detachment should be considered to avoid an increased effect on the teat tissue. Estimates of simulated early detachment levels in the present study of up to 1,000g/min lead to the assumption of minimal milk loss at simultaneously shorter machine-on time through the avoidance of lowest milk flow at the end of milking.

摘要

机器挤奶过程中不同水平的奶爪真空度可能会影响挤奶性能和乳头状况。奶爪真空作用于乳头,负责牛奶的排出和输送,但也会对乳头组织产生潜在影响。在无奶流时,奶爪真空度与系统真空度相似。在有奶流时,奶爪真空度会根据提升高度、管道长度和直径降至较低水平,这可能会影响挤奶性能以及乳头组织上的机械负荷。本研究的目的是通过超声记录来研究挤奶过程中高系统真空度和极低奶爪真空度对挤奶性能以及挤奶后乳头状况的影响。处理组1为对照组,系统真空度为42,挤奶过程中奶爪最低真空度为33千帕;处理组2的系统真空度为50千帕,奶爪最低真空度与处理组1相近(34千帕);处理组3的系统真空度与处理组1相同,但挤奶过程中奶爪真空度降至24千帕。所有处理组的总产奶量相似,但处理组3的条带产奶量低于其他处理组。处理组1和处理组2的奶流相似,但处理组3的奶流减少,导致处理组3的挤奶时间延长。与其他处理组相比,处理组2的乳头壁厚度增加,乳头池直径减小。结果表明,最低奶爪真空度对挤奶性能起主要影响,与系统真空度水平及相关真空度下降无关,且最低奶爪真空度低会导致奶流低和挤奶时间长。然而,挤奶结束时的乳头状况主要取决于系统真空度,在系统真空度为50千帕时,乳头组织上的负荷明显增加。这种影响在挤奶接近尾声、奶流减少且因此与奶流相关的真空度下降消失时明显出现。因此,应考虑提前脱杯以避免对乳头组织产生更大影响。本研究中模拟的高达1000克/分钟的提前脱杯水平估计表明,通过避免挤奶结束时的最低奶流,在同时缩短机器运行时间的情况下,牛奶损失最小。

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