Influence of Rotating Band Construction on Gun Tube Loading—Part II: Measurement and Analysis

Author:

Toivola Juha1,Moilanen Seppo,Tervokoski Janne2,Keinänen Heikki3

Affiliation:

1. Mekalyysi Oy, Myllymäentie 5, FI-37960 SOTKIA, Finland

2. Patria Land Systems Oy, P.O. Box 12, FI-38201 SASTAMALA, Finland

3. VTT Technical Research Centre of Finland, P.O. Box 1000, FI-02044 VTT, Finland

Abstract

The soft deformable metallic rotating band of large caliber projectiles prevents the gas leakage between the gun tube wall and the shell body by the band pressure on contact surfaces during the launch cycle of the gun. High rotating band pressures can lead to problems concerning gun tube wear, fatigue, and strength. The effects of changes in construction of rotating band and long range artillery projectile shell body on gun tube loading are studied experimentally. A practical analysis method for tube inner wall pressure computation from outer wall strain measurements is presented. The method is based on assuming stepped pressure load affecting on tube inner wall surface, when the projectile passes the measurement point. Although the analysis method was simplified, it was found to give useful and reliable results for comparative verification of different shell and band structures and their influences on gun tube loading. The structural design of the shell body and the rotating band were shown to be the most important aspects to cause the extreme loadings on the gun tube.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference17 articles.

1. Structural Design of Projectiles;Drysdale

2. Renström, R. 1976, “Beräkning av de mekaniska spänningarna i en 30 mm spränggranat vid gördelforceringen samt vid tryckmaximum i vapnet,” Försvarets Forskninganstalt FOA, Stockholm, 29 p, Report No. C 20138-D2.

3. Avitzur, B. , 1983, “Engraving of Rotating Bands—A Modification of Metal-Flow Pattern,” Benet Weapons Laboratory, Watervliet, NY, 30p, Report No. ARLCB-TR-83019.

4. Projectile Driving Band Interactions With Gun Barrels;Andrews

5. Strain-Gage Instrumentation for Ammunition Testing;Flynn;Exp. Mech.

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