面食废料回收系统

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模型可以有不同的尺寸,手动或自动喂食。它们可以是稳定的,或安装在带有轮子或脚的结构上,可以很容易地从不同的线移动到揉捏机。更高级的单位干磨的残渣和作为定量配料机控制流的面粉揉捏机,以确保获得一个更喂料斗和有一个稳定和标准化质量面团,散布均匀的白色斑点或肿块的再生粗粒小麦粉可能导致最终的产品。通常,包含尺寸的废料撕碎单元耦合在线路的每一个最终部分,而不是用皮带网络将废料输送到一个大尺寸的单个单元。意大利面机器可以有一个简单的运输皮带收集和运输废料在钢或pvc托盘。这些容器被手动移动到一个特殊的回收单元,由电梯提供,将产品倒入粉碎罐中。磨碎的碎料可以通过气动或皮带输送到一台或多台捏合机或不同用途的槽中。当再生的小麦粉被气动输送时,离心风机将粉碎后的碎末吸入揉制料斗上方的旋流器,以便与原料均匀混合。气动自动提升塔可将粉末输送到不同的高度,管道较长,料斗可到达的高度较高,所需功率Kw较大。必须提供详细的清洁计划,因为污染和有缺陷的机器使用可能会影响整个回收过程。 During the production the accumulation of dust on the edges can cause microbial contamination, waste of energy and uneven flow of the power. Machines should be easy to disassemble with quick openings on the entire equipment, taking care especially of engines, pipe bends, rotors, grinders and filters. An aspect to take in account for this stage of processing and reusing of scraps is the traceability. This information collected during the production and the refilling with scraps powder will be retained and integrated into the final product lot in order to return an immediate traceability of the product. For this purpose softwares are designed to monitor the movements of the powder during the production and detecting any variation on the process.

由弗拉维奥Levati

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