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Towards zero waste in additive manufacturing: a case study investigating one pressurised rapid tooling mould to ensure resource efficiency

机译:在添加剂制造中零浪费:一种调查一种加压快速工具模具以确保资源效率的案例研究

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In addition to series production of products for sale, tools used for internal company production processes are manufactured by means of additive manufacturing. This rapid tooling enables innovative production processes, which exceed the performance limit of conventional manufacturing processes. Tools, e.g., moulds for laminating with complex geometries can be produced cost-effectively. Currently, rapid tooling moulds are designed in a conservative manner. They are usually made of solid material. However, this solid design leads to a waste of resources. Additive manufacturing is well suited to lightweight design due to the layering process. The core of the mould can be hollowed out completely or pointwise without increased production effort. As a result, the consumption of material can be minimised. However, the moulds from this process simultaneously lose stiffness, which means the necessary manufacturing precision cannot be met. This represents an optimisation problem between low material consumption and low build time but retaining sufficient stiffness of the mould. The scope of this paper is the investigation of factors of influence based on vacuum pressure laminating as an application scenario. Using finite element simulation as well as the simulation of the building process, different core structures of the mould were investigated in relation to its deformation, its manufacturing time, and its consumption of material for production.
机译:除了销售产品的系列产品外,还通过添加剂制造制造了用于内部公司生产工艺的工具。这种快速的工具使创新的生产过程能够超过传统制造过程的性能限制。工具,例如,用于层叠复杂几何形状的模具可以成本有效地生产。目前,快速的工具模具以保守的方式设计。它们通常由固体材料制成。然而,这种坚实的设计导致资源浪费。由于分层过程,添加剂制造非常适合于轻质设计。模具的核心可以完全或一点地挖空,而不会增加生产努力。结果,可以最小化材料的消耗。然而,来自该过程的模具同时失去刚度,这意味着无法满足必要的制造精度。这代表了低材料消耗和低构建时间而是保持模具足够的刚度之间的优化问题。本文的范围是基于真空压力层压为应用场景的影响因素调查。使用有限元模拟以及建筑工程的模拟,研究了模具的不同核心结构,研究了其变形,其制造时间及其生产材料的消耗。

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