Three-phase phonon functional material structure comprising comb-type interlayer and manufacturing method

A technology of functional materials and material structures, applied in the field of acoustics, can solve the problems of small effective attenuation of elastic waves and narrow band gap, etc., and achieve the effect of reducing structure size and simple processing

Inactive Publication Date: 2014-02-26
BEIJING JIAOTONG UNIV
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Problems solved by technology

However, due to the influence of the Fano phenomenon, the effective attenuation of elastic waves in the band gap is relatively small, and the formed band gap is sometimes too narrow, so there are still certain limitations.

Method used

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  • Three-phase phonon functional material structure comprising comb-type interlayer and manufacturing method
  • Three-phase phonon functional material structure comprising comb-type interlayer and manufacturing method
  • Three-phase phonon functional material structure comprising comb-type interlayer and manufacturing method

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Embodiment Construction

[0028] In order to make the above objects, features and advantages of the present invention more comprehensible, the present invention will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0029] Such as figure 1 A three-phase phonon functional material structure is shown, including a core 1, the outer surface of the core 1 is covered with an interlayer 2, the core 1 is arranged in a coaxial array in the matrix 3, and the interlayer 2 is arranged in a ring on the outer surface of the inner core 1 The wedges 4 are comb-shaped in shape, and there are gaps 5 between the wedges 4 , and the elastic modulus of the interlayer 2 is an order of magnitude smaller than that of the matrix 3 .

[0030] Such as figure 2 a. figure 2 As shown in b, the wedge body 4 on the interlayer is integrally arranged on the belt body 6, and the cross-sectional shape of the wedge body 4 is rectangular or trapezoidal. The number of wedges 4...

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Abstract

The invention discloses a three-phase phonon functional material structure comprising a comb-type interlayer, which comprises kernels. The outer surface of the kernel is coated with the interlayer; kernels are coaxially arranged in a matrix in an array; the interlayer is of a comb shape formed by wedges which are arranged on the outer surface of the kernel in a ring-shape; gaps are reserved between the wedges; the wedges on the interlayer are arranged on a strip body; the strip body is coaxially and circularly arranged on the outer surface of the kernel; the central axis of each wedge is vertical to the strip body or is at an inclination angle with the strip body; the elastic modulus of the interlayer is smaller than that of the matrix by one order; the radius of the kernel is greater than one quarter of a lattice constant; and the thickness of the interlayer is one ninth to one fourth of the radius of the kernel. According to the three-phase phone functional material structure provided by the invention, when the requirement on the structural acoustic characteristics are met, the structure size is reduced, a low frequency wideband acoustical band gap is obtained; and the structure comprises the kernels which are periodically distributed and are coated with the comb-shaped interlayer, and is simple to process.

Description

technical field [0001] The invention belongs to acoustics, relates to the fields of machinery, condensed matter physics, mechanics, material science and the like, and in particular relates to a comb-shaped interlayer-containing three-phase phonon functional material structure and a manufacturing method thereof. Background technique [0002] In recent years, a kind of artificial periodic composite structure - phononic crystal has attracted extensive attention. Phononic crystal is a kind of acoustic bandgap functional material formed by periodic arrangement of two or more materials. Due to the periodic modulation of elastic constants, the propagating elastic waves may produce phonon band gaps, that is, the propagation of elastic waves in a certain frequency range is suppressed, which is conducive to creating a vibration-free environment and controlling the vibration and noise reduction of the structure. Give new life. Therefore, phononic crystals have become one of the activ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G10K11/162
Inventor 汪越胜王艳锋王力田吴弘
Owner BEIJING JIAOTONG UNIV
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