SUBSTANTIATING DESIGN PARAMETERS OF A MULTI FUNCTIONAL MILKING MACHINE

Authors:

Sergey A. Borodin,Evgenii A. Andrianov,Aleksei A. Andrianov,Tatiana N. Tertychnaya,

DOI NO:

https://doi.org/10.26782/jmcms.spl.8/2020.04.00014

Keywords:

Subteat and interstitial chambers, milking mode,stimulating,capacity,milking machine,massage,

Abstract

Nowadays, large-scale dairy units, where milking machines are completed with automatic controls for milking mode control, are built alongside with farms with tie-up housing of small groups of cows. In these farms it is expedient to use multi-functional milking machines that allow performing such major process operations as increasing the milk yield of newly-calved cows in the maternity barn and milking the core herd. The goal of this study is to make the machine-based milking of cows more efficient by developing a multi-functional milking machine with substantiated operation modes. The research objectives are to determine the area of upgrades and develop the design and process layout of a multi-functional milking machine; identify the operating parameters of the milking machine’s upgraded vibration pulser; identify the physiological parameters of the milking machine’s effect on the mammary gland in various milking modes and substantiate the operating parameters of the multi-functional milking machine. To stimulatea full milk flow reflex at the beginning and the end of the milking process, the developed design and process layout allows massaging the udder by microscale vibrations of the teatrubber of 1 to 2 mm in amplitude and affecting the udder nipples with a low vacuum pressure of 33 to 38 kPa, taking account of the animals’ physiological features. To identify the operating parameters of the milking machine and determine the physiological parameters of its effect on the mammary gland, laboratory plants with a Pulso Test Comfort vacuum and pulsingmeter and an Artificial-Udder test bench were used. Characteristic curves were derived to show the vacuum pressure-time relation in the interstitial and subte at areas of the teat cups; in addition, these relations were summated to derive the characteristic curve of differential pressure in the chambers. The physiological parameters of the milking excitants’ effect on the mammary glands were calculated. The operating modes of the test machine (single-phase low-vacuum mode with continuous stimulation and three-phase mode with controlled stimulation) and their parameters were set.

Refference:

I. Brand S. Ma S. Stimulation by the milking machine. Proceeding Symposium on machine milking, Reading (England). 1998. Pp.119-130.
II. В.А. Zakharov, V.F. Nekrashevich, V.M. Ulyanov, V.V. Utolin. The patent of the Russian Federation No. 2115304 RU, A01J 5/04 (1995.01). Milking machine. No. 97108417. Declared on 20.05.1997; Publ. July 20, 1998, bul. No. 20.

III. E. A. Andrianov, V. P. Shatsky, A. A. Andrianov, and S. A. Borodin. Modelling of lactation. Asian journal of microbiology, biotechnology and environmental sciences. 2017. Vol. 19. No. 3. Pp. 594-597.

IV. E.A. Andrianov, S.A. Borodin, A.A. Andrianov, T.N. Tertychnaya. Justification of the regime parameters of the multifunctional stimulating milking unit [Teoreticheskoye obosnovaniye konstruktivnykh parametrov ustroystva upravleniya rezhimom doyeniya]// Engineering and equipment for the village. 2018. No. 4. Pp. 18-23.
V. H. J. Schuiling. Teat cleaning and stimulating, in: A.H. Ipema et al. Pro-ceedings of the international symposium on prospects for automatic milking, EAAP publication 65. 1992. Wageningen: Wageningen Pers. The Netherlands. Pp. 164-168.
VI. I. Ohnstad, R. Blowey, N. Frame., R. Laven, A. Norton, A. White. Assessment of milking systems. Clinical Forum UK Vet. 2006. Vol. 11. No. 1. Рp. 28-34.
VII. J. A. Hoekstra. A not on a partial adjustment model to beseribe lactation curves. Anim. Product. 1986.
VIII. M. D. Rasmussen. Influence of switch level of automatic cluster removers on milking performance and udder health. Journal of Dairy Research. 1993. Vol. 60. No. 3. Рp. 287-297.
IX. M. Grossman, A. L. Kuck, H. W. Norton Lactation curves of purebred and gross-bred dairy cattle. Doiry Sc. 1986.
X. M. Shou Entwicklungstendenzen des maschinellen Milkhentzuges. Bayer Landw. 1987. Vol. 64. No. 4
XI. O.V. Uzhik. Development and theoretical justification of technologies and technical means for dairy cattle breeding: thesis for the degree of Doctor of Engineering Sciences. Michurinsk. Russia. 2015. 384 p.
XII. S.A. Borodin, E.A. Andrianov, V.P. Shatsky, A.A. Andrianov. Approximation of the milk yield curve [Approksimatsiya krivoy molokootdachi]. Rural mechanic. 2017. No. 11. Pp. 24-25.
XIII. S.А. Borodin, E.A. Andrianov, V.P. Shatsky, A.A. Andrianov. Theoretical substantiation of design parameters of the milking control device [Teoreticheskoye obosnovaniye konstruktivnykh parametrov ustroystva upravleniya rezhimom doyeniya]. Bulletin of the Voronezh State Agrarian University. 2017. No. 2 (53). Pp. 105-112.
XIV. S. I. Shchukin. Justification of the parameters of the actuating mechanisms of the milking machine of a pairwise action: thesis for the degree of Candidate of Engineering Sciences. Moscow, 2006. 146 p.
XV. V. F. Uzhik, A. I. Teteryadchenko, O. V. Uzhik, D. O. Kutovoy. Patent No. 2621015 RU, IPC A01J 5/04 (2006.01). Milking machine / – №2015150676. Declared on November 25, 2015; Publ. 05/30/2017. Bul. №16.
XVI. V. M. Ulyanov. Improvement of the technology of machine milking of cows by developing stimulating-adapted milking machines and manipulators: thesis for the degree of Doctor of Engineering Sciences. Ryazan: Ryazan State Agricultural Academy. 2008. 300 p.
XVII. V.F. Uzhik, A.I. Teteryadchenko, O.V. Kitaeva. Substantiation of the constructive-regime parameters of the hydraulic circuit of a gyrostabilized pulser of an adaptive milking machine [Obosnovaniye konstruktivno-rezhimnykh parametrov gidravlicheskogo kontura gidrostabilizirovannogo pul’satora adaptivnogo doil’nogo apparata]. Bulletin of the Voronezh State Agrarian University. 2017. No. 2 (53). Pp. 112-120.
XVIII. V.M. Ulyanov, V.A. Khripin. Physiologically adapted milking machine [Fiziologicheski adaptirovannyy doil’nyy apparat]. Rural mechanic. 2007. No. 1. Pp. 12-13.
XIX. V.M. Ulyanov. Improving the milking of cows of tie-up housing [Sovershenstvovaniye doyeniya korov pri privyaznom soderzhanii]. Engineering in agriculture. 2008. No. 3. Pp. 12-14.
XX. Y.A. Tsoi. “Nurlat” milking machine [Doil’nyy apparat «Nurlat»]. Rural mechanic. 2006. No. 1. Pp. 28-29.

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