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September 15, 2026Transport engineering

Study of the Effect of Milling Conditions on the Physical and Mechanical Characteristics of Thermoplastics for Shipbuilding

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Authors

AMAndrey MushenkovKaliningrad State Technical UniversityDRDmitry RomanyutaKaliningrad State Technical UniversityECEvgeniy ChureevKaliningrad State Technical University

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Implication

Experimental study demonstrates minimal mechanical changes from varying milling conditions in shipbuilding thermoplastics, indicating cutting can be optimized for productivity and surface quality.

Key Points

  • Investigate how variations in CNC milling conditions affect the tensile and bending yield strength and elastic modulus of unreinforced thermoplastics used in small-capacity shipbuilding.
  • Machined test specimens of low density polyethylene and unplasticized polyvinyl chloride using CNC milling under varying spindle rotation speeds and feed rates per tooth.
  • Performed standard tensile (GOST 11262-2017) and static bending (GOST 4648-2014) evaluations on 840 total samples using an extensometer-equipped testing machine, followed by statistical analysis.
  • Varying spindle speed and tooth feed produced changes of up to 10–12% in yield strength and elastic modulus under both tension and bending.
  • Observed property shifts remained entirely within the bounds of statistical experimental variance and instrumental measurement errors, indicating milling modes do not meaningfully alter bulk mechanical integrity.

Cite This Study

Mushenkov et al. (2026) studied this question.

synapsesocial.com/papers/6aa913ba9013453be30a1d82https://doi.org/10.30987/2782-5957-2026-9-50-59
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