Natalia Szczotkarz, Krzysztof Adamczuk, D. Dębowski, M.K. Gupta
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引用次数: 0
摘要
最近,环保意识促使人们寻求各种方法,尽量减少加工操作中威胁操作员健康和环境的负面因素。钛合金很难切削,因此冷却切削区对减少刀具磨损至关重要。最小量润滑(MQL)切削液中 Al 2 O 3 纳米粒子浓度的变化会影响 Ti6Al4V 合金车削过程中的切削楔磨损。纳米粒子的直径为 15 nm,质量浓度分别为 0.25、0.5、0.75 和 1 wt%。在实验中,测量了侧面磨损带宽度 VB B 和凹坑宽度 KB。此外,还使用干切工具和不含纳米颗粒的 MQL 方法进行了比较。X 射线显微分析用于定量和定性评估所选耙面微区的化学成分。研究表明,在车削难切削合金时,Al 2 O 3 纳米粒子的质量浓度会影响刀具磨损。在四种质量浓度中,0.5 和 0.75 wt% 质量浓度的侧面和耙面磨损最小。扫描电子显微镜检查显示,0.5 wt% 质量浓度对粘着磨损的影响最大。
Influence of Aluminium Oxide Nanoparticles Mass Concentrations on the Tool Wear Values During Turning of Titanium Alloy Under Minimum Quantity Lubrication Conditions
Recently, environmental consciousness has led to the quest for ways to minimise negative elements in machining operations that threaten operator health and the environment. Titanium alloys are hard to cut, thus cooling the cut - ting zone is essential to reduce tool wear. Variations in Al 2 O 3 nanoparticle concentrations supplied to the minimum quantity lubrication (MQL) cutting fluid affect cutting wedge wear during Ti6Al4V alloy turning. A diameter of 15 nm nanoparticles were utilised at 0.25, 0.5, 0.75, and 1 wt% mass concentrations. In the experiments, the flank face wear band width VB B and crater width KB were measured. Comparisons were also made using dry-cutting tools and the MQL approach without nanoparticles. X-ray microanalysis was used to quantify and qualitatively assess the chemical composition of chosen rake surface micro-areas. Studies showed that Al 2 O 3 nanoparticle mass concentration affects tool wear when turning a hard-to-cut alloy. 0.5 and 0.75 wt% mass concentrations had the lowest flank and rake wear of the four mass concentrations. The SEM examination showed that 0.5 wt% mass concentration decreased adhesive wear the most.