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Control system for a continuous compaction large square baler

机译:用于连续压实大型方形打包机的控制系统

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Bale density impacts the cost to harvest, aggregate, store and transport hay or biomass. To achieve legal transport weight limits in many countries, the large square bale (LSBe) wet basis density should be approximately 240 kg.m(-3). Current large-square balers (LSBers) create density by employing a reciprocating plunger to apply pressures in excess of 700 kPa to the bale face, but densification by a reciprocating plunger is inefficient because of the intermittent manner that the pressure is applied. What is explored here is an alternative bale densification method that uses an auger and conical compaction rollers to compact material in a continuous fashion. Compared to conventional LSBers, this new baler concept has the potential to create high-density bales with a machine that is less complicated and lighter weight. An important component of this baling mechanism was a closed-loop control system developed to achieve a desired bale density, as well as control bale separation and bale length. The control system varied bale chamber compression panel pressure to alter auger force and subsequent bale density. Using this control system enabled the baler to achieve dry basis densities ranging from 166 to 334 kg.m(-3) with auger forces less than 44 kN, nearly a fifteen-fold reduction in force compared to a conventional plunger type LSBer.
机译:捆包密度会影响成本收获,骨料,商店和运输干草或生物量。为实现许多国家的法律运输重量限制,大型方形捆包(LSBE)湿基密度应约为240kg.m(-3)。当前的大型大型打捆机(LSBERS)通过采用往复式柱塞产生密度以将超过700kPa的压力施加到捆包面上,但由于施加压力的间歇性方式,通过往复式柱塞的致密化效率低。这里探索的是一种替代的捆包致密化方法,使用螺旋钻和锥形压实辊以连续的方式紧凑。与传统的LSBER相比,这种新的打捆机概念有可能产生具有更复杂和重量较轻的机器的高密度包。该捆包机构的一个重要组成部分是开发的闭环控制系统,以实现所需的捆包密度,以及控制捆包分离和捆包长度。控制系统改变了吹置室压缩面板的压力,以改变螺旋钻力和随后的捆包密度。使用该控制系统使得BALER以螺旋桨力小于44kn的螺旋钻,与传统的柱塞型LSBER相比,螺旋桨达到166至334kg.m(-3)的干基密度。

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