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June 1, 2026Results in Materials0 citationsOpen Access

Comparative studies on the torsion behavior of California foothill pine and red pine

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YGYong X. GanLHLichen HuangKGKevin C. Gan

Key Points

  • The aim is to compare the torsional behavior and shear strength of California foothill pine and red pine.
  • Conducted torsion tests to evaluate shear strength and rigidity.
  • Analyzed bonding strength and wear resistance related to shear deformation behavior.
  • Statistical analysis used Weibull modulus to evaluate performance metrics.
  • Gray pine has an average shear strength of 7.12 MPa and a modulus of rigidity of 2.59±0.46 GPa.
  • Red pine exhibits higher average shear strength of 14.67 MPa and a modulus of rigidity of 3.47±0.62 GPa.
  • Red pine is statistically over one time stronger than gray pine under torsional loading.

Abstract

Pine wood as natural composite has been extensively used in building construction, manufacturing furniture, and making musical instruments. California foothill pine or gray pine ( Pinus sabiniana ) is used as basic building materials for box crates and railway ties. It is also used for musical instruments (drums) making. Red pine ( Pinus resinosa ) is strong and durable for making furniture and flooring. It is suitable for outdoor applications such as fencing and framing, railroad ties, and cabin logs. Red pine wood also finds applications in musical instruments, especially for guitar bodies, offering warm and resonant tones. Mechanical testing is indispensable for design and performance enhancement of pine wood structures and components. Since the bonding strength and wear resistance of wood are related to shear deformation behavior, torsion test is considered as an effective method for evaluating the performance of pine wood. In this work, the strength and rigidity of both California foothill pine (gray pine) and red pine were evaluated under pure shear through torsion test. It has been found that the average shear strength of the gray pine is 7.12 MPa. The red pine showed higher average shear strength of 14.67 MPa. The modulus of rigidity of the gray pine is about 2.59±0.46 GPa; while the red pine has the modulus of rigidity as high as 3.47±0.62 GPa. Statistical analysis of the shear strength data reveals the Weibull modulus ( m ) of gray pine and red pine are 2.44 and 3.74, respectively. The characteristic shear strength with a failure probability of 63.2%) of the gray pine is 8.04 MPa. The value of characteristic shear strength for red pine is 16.15 MPa. The statistical analysis on both pines indicates that the red pine is over one time stronger than the foothill (gray) pine under torsional loading.

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Cite This Study

Gan et al. (2026) studied this question.

synapsesocial.com/papers/6a1d218f02fbce91306378b1https://doi.org/10.1016/j.rinma.2026.100972
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