Rodríguez Juan C, Del Rey Romina, Peydro Miguel A, Alba Jesús, Gámez Juan L
Centre for Physics Technologies: Acoustics, Materials and Astrophysics, Universitat Politècnica de València, EPS Gandia, C/Paranimf, 1, 46730 Grao de Gandia, Spain.
Centre for Physics Technologies: Acoustics, Materials and Astrophysics, Universitat Politècnica de València, EPS de Alcoy, Plaza Ferrándiz y Carbonell, 1, 03801 Alcoy, Spain.
Polymers (Basel). 2023 Mar 27;15(7):1667. doi: 10.3390/polym15071667.
Brass instruments mouthpieces have been historically built using metal materials, usually brass. With the auge of additive manufacturing technologies new possibilities have arisen, both for testing alternative designs and for using new materials. This work assesses the use of polymers for manufacturing trombone mouthpieces, specifically PLA and Nylon. The acoustical behavior of these two mouthpieces has been compared with the obtained from a third one, built from brass. Both additive and subtractive manufacturing techniques were used, and the whole manufacturing process is described. The mouthpieces were acoustically assessed in an anechoic chamber with the collaboration of a professional performer. The harmonic analysis confirmed that all the manufactured mouthpieces respect the harmonic behavior of the instrument. An energy analysis of the harmonics revealed slight differences between the mouthpieces, which implies differences in the timbre of the instrument. Although these subtle differences would not be acceptable when performing with the instrument in an orchestra, they could be perfectly valid for early learners, personal rehearsals or any kind of alternative performance.
铜管乐器号嘴在历史上一直使用金属材料制造,通常是黄铜。随着增材制造技术的发展,出现了新的可能性,既可以测试替代设计,也可以使用新材料。这项工作评估了使用聚合物制造长号号嘴的情况,特别是聚乳酸(PLA)和尼龙。将这两种号嘴的声学性能与由黄铜制造的第三种号嘴的声学性能进行了比较。同时使用了增材制造和减材制造技术,并描述了整个制造过程。在消声室中,与一位专业演奏者合作对号嘴进行了声学评估。谐波分析证实,所有制造的号嘴都符合乐器的谐波特性。对谐波的能量分析揭示了号嘴之间的细微差异,这意味着乐器音色存在差异。尽管在管弦乐队中使用该乐器演奏时,这些细微差异是不可接受的,但对于初学者、个人排练或任何形式的替代表演来说,它们可能是完全有效的。