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Journal of Sound and Vibration

Resumen/Descripción – provisto por la editorial en inglés
The Journal of Sound and Vibration (JSV) is an independent journal devoted to the prompt publication of original papers, both theoretical and experimental, that provide new information on any aspect of sound or vibration. There is an emphasis on fundamental work that has potential for practical application.

JSV was founded and operates on the premise that the subject of sound and vibration requires a journal that publishes papers of a high technical standard across the various subdisciplines, thus facilitating awareness of techniques and discoveries in one area that may be applicable in others. For more detail on subject categories represented in JSV, visit jsv categories
Palabras clave – provistas por la editorial

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Disponibilidad
Institución detectada Período Navegá Descargá Solicitá
No detectada desde ene. 1964 / hasta dic. 2023 ScienceDirect

Información

Tipo de recurso:

revistas

ISSN impreso

0022-460X

ISSN electrónico

1095-8568

Editor responsable

Elsevier

País de edición

Estados Unidos

Fecha de publicación

Tabla de contenidos

A 3-D finite element modeling method for time-varying rotor-support system based on rotating-fixed coordinates

Yanfei ZuoORCID; Jin Li; Kun Feng; Zhinong Jiang

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117977

Experimental investigation of propeller noise in ground effect

Liam HansonORCID; Hasan Kamliya JawaharORCID; SH. S. VemuriORCID; Mahdi Azarpeyvand

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117751

Practical negative stiffness device with viscoelastic damper in parallel or series configuration for cable damping improvement

Lin ChenORCID; Zhanhang LiuORCID; Yiqing Zou; Meng WangORCID; Satish NagarajaiahORCID; Feifei Sun; Limin Sun

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117757

Effect of magnet position in an electromagnetic transducer for the middle ear implant

R. RusinekORCID; K. Kecik; M. SzymanskiORCID

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117766

The gas-liquid-Q-factor-inversion in MEMS plate resonators

Andre Gesing; Thomas Tran; Dominik Huber; Doris Steinmüller-Nethl; Georg Pfusterschmied; Michael SchneiderORCID; Daniel PlatzORCID; Ulrich SchmidORCID

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117777

Fractional-order ascent maximum mixture correntropy criterion for FLANNs based multi-channel nonlinear active noise control

Yingying Zhu; Haiquan Zhao; Pucha Song

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117779

Sparse Bayesian Learning with hierarchical priors for duct mode identification of tonal noise

Liang YuORCID; Yue Bai; Ran WangORCID; Kang GaoORCID; Weikang JiangORCID

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117780

A sonic black hole structure with perforated boundary for slow wave generation

Sihui LiORCID; Jiajun XiaORCID; Xiang YuORCID; Xiaoqi Zhang; Li ChengORCID

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117781

Initiation mechanism analysis of wheel polygonal wear on high-speed railway based on refined vibration model for ballastless track system

Chaozhi MaORCID; Liang Gao; Yang Xu; Xiaopei Cai; Bowen Hou; Liangliang Wang

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117782

Receptance of a semi-infinite periodic railway track and an equivalent multi-rigid body system for use in truncated track models

Xiaozhen ShengORCID; Yuanpeng He; Songtao YueORCID; David ThompsonORCID

Palabras clave: Mechanical Engineering; Mechanics of Materials; Acoustics and Ultrasonics; Condensed Matter Physics.

Pp. 117783