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April 10, 2026Coatings0 citationsOpen Access

Research on Optimization of Insert Spatial Mounting Posture for Improved Tool Life and Surface Quality of an Indexable Shallow-Hole Drill 

ZJZhipeng JiangXAXiaolin AnYLYao Liang

Key Points

  • The study aims to improve tool life and surface quality of indexable shallow-hole drills by optimizing the spatial mounting posture of the insert.
  • Mapping model established between insert mounting posture parameters and cutting performance metrics.
  • Improved LO-NSGA-II algorithm used for multi-objective optimization of mounting posture.
  • Entropy weighted-TOPSIS method applied to determine optimal insert configuration.
  • Experimental validation of optimized spatial mounting posture effectiveness.
  • Optimized mounting posture significantly enhances cutting performance of the tool.
  • Compared to non-optimized tools, there is a notable extension in tool life.
  • Machined hole surface quality shows significant improvement with optimized configuration.

Abstract

To address rapid tool wear and unstable hole surface quality during roughing and semi-finishing operations using indexable shallow-hole drills, an optimization study on the spatial mounting posture of the insert is conducted, aiming to improve tool life and machined surface quality. Considering that tool life and surface quality are significantly influenced by cutting force and cutting temperature, radial cutting force and cutting temperature are selected as the multi-objective optimization criteria. A mapping model between the insert mounting posture parameters and cutting performance metrics is established. An improved LO-NSGA-II algorithm is employed to perform multi-objective optimization, yielding a Pareto-optimal solution set, and the entropy weighted-TOPSIS method is subsequently applied to determine the optimal insert mounting posture. Experimental results demonstrate that the optimized spatial mounting posture significantly enhances the overall cutting performance of the tool. Compared with the non-optimized tool, the optimized configuration exhibits a significant extension in tool life and a notable improvement in machined hole surface quality. This study provides an effective methodology for the structural optimization design of indexable shallow-hole drills.

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Cite This Study

Jiang et al. (2026) studied this question.

synapsesocial.com/papers/69d894326c1944d70ce05188https://doi.org/10.3390/coatings16040401
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