超过 20 年的良好声誉!
Our directional spreader offers excellent maneuverability and control on all types of terrain. Its agility results in less ground impact when turning. Its field proven power-steering system and superior quality suspension provide more resistance to obstacles.
The walls of the reservoir are made of high quality steel, 1/4" (6 mm) thick. Baffles are installed inside the reservoir providing excellent manure stability. As all of our manure management line of equipment, our spreaders are coated with a layer of Epoxy primer and 2 layers of Urethane paint making them resistant to extreme conditions. Because we believe that a good product must looked after, we have integrated several easily accessible lubricating points as well as openings for cleaning on top of the reservoir.
经过实地验证的液压助力转向系统的独特之处在于它能够匹配牵引车的转向角。操作员可以在道路上行驶时脱开助力转向,以提高稳定性。脱开时,轮子依靠重负荷压缩弹簧与储罐保持平行。
液压悬挂的优秀质量允许在崎岖地带更平稳地行驶,并减少对储罐产生的压力。悬挂气缸靠近储罐重心。当洒粪车满载时,此独特设计会降低牵引杆上的过载震动,并改善牵引车的牵引。
我们的定向洒粪车在所有类型的地形中均可提供优秀的机动性和操控性。它的灵活性减少了转向时的地面影响。其经过实地验证的助力转向系统和高质量悬挂能够更好地对抗阻力。气压制动系统设计用于保证最大制动力及满足 ASABE 标准。储罐的壁采用高质量钢材制成,厚度为 1/4 英寸(6 毫米)。储罐内装有挡板,提供卓越的粪污稳定性。和我们所有的粪污管理设备系列一样,我们的洒粪车涂有一层环氧底漆和两层氨基甲酸脂面漆,可以在极端环境中工作。因为相信好产品必须进行维护,我们在储罐顶部集成了几个易于接触的润滑油加注点和清洁口。
在道路上提供与田间尽可能一样好的控制和行驶安全性。
专门用于农业用途,该半刚性拖车设计用于支撑自带刚性框架的产品。这些产品必须永久性安装在半刚性拖车的车架上,以平均分布重量。
我们的串联轮轴由完整长度的中心管闭合,相比传统的开放式串联轮轴,提供更高的抗扭强度。其特定的“V”型设计降低了储罐,从而使重心高度降低,提供更高的稳定性。车轮靠近储罐,减少了车轴的弯曲。储罐下可调串联轮轴的安装系统可使车轮前移,以减少牵引杆上的载荷,或后移以增加载荷。
The world's population is growing and with it demand for milk. Dairy is an essential component of many global diets. However, its production can be resource-intensive and impact the environment. GEA’s Christian Müller, Senior Director Sustainability Farm Technologies, sheds light on how technological innovations powered by GEA make milk production more efficient and profitable.
Engineering innovation often takes the form of incremental gains. Once in a while, it takes a leap. Case in point: The washing machine. Launched in September 2022, two new GEA software solutions are upending convention and delivering similarly dramatic efficiency gains in the resource-intensive process of membrane filtration.