Comparative Optimisation of the Cutting Parameters for Surface Quality and Energy Efficiency during the Machining Manufacturing of Teak, Saligna and Pine Wood Materials

N. Tayisepi, Rindai Svosve, Godfrey Tigere, Albert Nkulumo Mnkandla, Innocent Mapindu
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Abstract

The rapid increase in electricity demand has resulted in the nation and state governments enforcing and implementing various forms of energy conservation conversations as well as seeking alternative energy sources in order to meet demand of the production sector. Manufacturing Industries of wood materials, in modern day trends, are principally focused on the achievement of highest quality products and quality planed surface generation at minimum input factor of resources such as machining energy. In wood artifacts manufacturing practice, the appropriateness of the cost-quality-time matrix normally depend on supreme selection of cutting parameters for the operation. Machining response factors, such as generation of smooth wood surface roughness is a vital metric of the product quality, granted it significantly influence the performance of machined wood parts, affects how the machined component will interact with the   environment as well as impacting on the artifact production costs. Energy use optimisation, in order to continue and enhance competitiveness in business operations, is a prime priority concern for the modern day wood machining manufacturing industry.  The challenges of ever increasing energy prices, against mounting demand for more energy demanding machinery, increasing pressure from environmentalists and increasing nation state legislation, for reduced energy generation prompted environmental pollution, mean that manufacturers are expected to pay more money and attention towards energy use reduction. Thus, it is imperative, during machining process planning of wood materials, to determine the optimum cutting parameters combination which fosters easy and economical machining which simultaneously deliver good surface quality at reduced energy consumption. This Taguchi design of experiment study analysed and comparatively optimised the cutting parameters of three wood species in order to realise consistent surface quality at minimum energy use during the planing machining of Pine, Saligna and Teak materials. Analysis of variance showed the dominant factors influencing the respective response parameters whilst the optimum cutting conditions were established with the aid of the main effects plot of the signal to noise ratio.
在加工制造柚木、水曲柳和松木材料过程中对切削参数进行比较优化,以提高表面质量和能源效率
电力需求的快速增长促使国家和各州政府执行和实施各种形式的节能对话,并寻求替代能源,以满足生产部门的需求。木质材料制造业在当今的发展趋势中,主要关注的是以最低的资源投入(如加工能源)获得最高质量的产品和优质的刨光表面。在木制品生产实践中,成本-质量-时间矩阵的适当性通常取决于操作中切削参数的最佳选择。加工响应因素,如生成光滑的木材表面粗糙度,是产品质量的一个重要指标,因为它极大地影响着加工木制部件的性能,影响着加工部件与环境的相互作用,同时也影响着木制品的生产成本。为了保持和提高企业运营的竞争力,优化能源使用是现代木材加工制造业的首要任务。 能源价格不断上涨,对高能耗机械的需求不断增加,环保主义者的压力不断增大,国家立法对减少能源消耗和环境污染的要求不断提高,这一切都意味着制造商需要投入更多的资金和精力来减少能源消耗。因此,在对木质材料进行加工工艺规划时,必须确定最佳切削参数组合,以促进轻松、经济的加工,同时在降低能耗的同时获得良好的表面质量。这项田口试验设计研究分析并比较优化了三种木材的切削参数,以便在刨削加工松木、水曲柳和柚木材料时,以最少的能耗获得一致的表面质量。方差分析显示了影响各响应参数的主要因素,同时借助信噪比主效应图确定了最佳切削条件。
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