加工参数和刀具磨损对三聚氰胺刨花板铣削分层过程的影响

IF 0.8 4区 农林科学 Q3 MATERIALS SCIENCE, PAPER & WOOD
K. Szwajka, T. Trzepieciński
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引用次数: 8

摘要

本文介绍了高速钢双钻头铣刀加工三聚氰胺刨花板时的磨损情况。实验研究确定了切削速度和每齿进给量对切削过程中力参数值的影响以及对刨花板边缘分层因子值的影响。采用多变量方差分析确定了切削工艺参数和刀具磨损对分层因子值影响的显著性。在研究中,我们使用了工业切削力传感器。探讨了用工业传感器测量铣削过程中力参数信号的可能性。在每齿进给量的情况下,该参数对分层现象的加剧没有明显的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The influence of machining parameters and tool wear on the delamination process during milling of melamine-faced chipboard
The results of investigations into the wear of a high-speed steel double-bit mill during the milling of melamine-faced chipboard are presented in this paper. The experimental investigations identified the effect of the cutting speed and feed per tooth on the value of force parameters in the cutting process as well as on the value of the factor of chipboard edge delamination. The significance of the effect of cutting process parameters and tool wear on the value of the delamination factor was determined using multivariate analysis of variance. In the research, we used an industrial cutting force sensor. The possibility of the application of the industrial sensor to measure the signals of force parameters during milling is investigated. In the case of feed per tooth, there was no clear effect of this parameter on intensification of the delamination phenomenon.
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来源期刊
Drewno
Drewno MATERIALS SCIENCE, PAPER & WOOD-
CiteScore
1.10
自引率
12.50%
发文量
0
审稿时长
>12 weeks
期刊介绍: Wood. Research papers. Reports. Announcements" ("Drewno") is an international scientific journal that publishes original results of innovatory basic and applied research concerning technological, technical, economic and ecological issues important for the wood science and forest-based industries, including their environment, and interesting to the international recipients. "Drewno" is an Open Access biannual journal. Aims and scope: wood science: anatomy, biology, chemistry, physics wood mechanical and chemical technology, inter alia, sawmilling, composite wood products, wooden construction, furniture making, wood pulp, paper making material engineering, biocomposites, nanocomposites material management environmental protection, safety of the processes, products and working stations biotechnology bioenergy, biofuels forestry: harvesting and wood quality wood-based industries economics The Editorial Board of the journal especially welcomes articles concerning increase in wood resources (wood mobilisation); innovative composites and lignocellulosic materials; new trends in the protection, modification and finishing of wood; biorefining of raw wood material; "green" building; new technologies of wood waste recycling; sustainable development; innovation management; and business networks.
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