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    • 1. 发明授权
    • Extended bandwidth folded well diffusor
    • 扩展带宽折叠井扩散
    • US07322441B2
    • 2008-01-29
    • US11105370
    • 2005-04-14
    • Peter D'AntonioTrevor J. Cox
    • Peter D'AntonioTrevor J. Cox
    • E04B1/82
    • E04B1/86E04B2001/8485E04B2001/849G10K11/20
    • An extended bandwidth folded well diffusor extends the diffusion bandwidth of a shallow, asymmetric diffusor by incorporating maximum-depth, folded L-shaped, half-width wells on both ends (sides) of a diffusor, thus providing increased maximum well depth without increasing the physical depth of the diffusor. When the inventive diffusor is placed in an array, the folded L-shaped, maximum-depth, half-width end wells form a novel T-shape, which offers a favorable impedance lowering the resonant frequency, thus extending the diffusor diffusion bandwidth. T-shaped recesses may also be located within a single diffusor. The front surface of the diffusor may be flat or curved or angled.
    • 扩展带宽折叠阱扩散器通过在扩散器的两端(侧面)上引入最大深度折叠的L形半宽度阱来扩展浅非对称扩散器的扩散带宽,从而提供增加的最大阱深度,而不增加 扩散器的物理深度。 当本发明的扩散器被放置在阵列中时,折叠的L形,最大深度的半宽端部孔形成新颖的T形,其提供有利的阻抗降低谐振频率,从而延伸扩散器扩散带宽。 T形凹槽也可以位于单个扩散器内。 扩散器的前表面可以是平坦的或弯曲的或成角度的。
    • 2. 发明申请
    • Extended bandwidth folded well diffusor
    • 扩展带宽折叠井扩散
    • US20060231331A1
    • 2006-10-19
    • US11105370
    • 2005-04-14
    • Peter D'AntonioTrevor Cox
    • Peter D'AntonioTrevor Cox
    • E04B1/82
    • E04B1/86E04B2001/8485E04B2001/849G10K11/20
    • An extended bandwidth folded well diffusor extends the diffusion bandwidth of a shallow, asymmetric diffusor by incorporating maximum-depth, folded L-shaped, half-width wells on both ends (sides) of a diffusor, thus providing increased maximum well depth without increasing the physical depth of the diffusor. When the inventive diffusor is placed in an array, the folded L-shaped, maximum-depth, half-width end wells form a novel T-shape, which offers a favorable impedance lowering the resonant frequency, thus extending the diffusor diffusion bandwidth. T-shaped recesses may also be located within a single diffusor. The front surface of the diffusor may be flat or curved or angled.
    • 扩展带宽折叠阱扩散器通过在扩散器的两端(侧面)上引入最大深度折叠的L形半宽度阱来扩展浅非对称扩散器的扩散带宽,从而提供增加的最大阱深度,而不增加 扩散器的物理深度。 当本发明的扩散器被放置在阵列中时,折叠的L形,最大深度的半宽端部孔形成新颖的T形,其提供有利的阻抗降低谐振频率,从而延伸扩散器扩散带宽。 T形凹槽也可以位于单个扩散器内。 扩散器的前表面可以是平坦的或弯曲的或成角度的。
    • 3. 发明授权
    • Cinder block modular diffusor
    • 煤渣块模块式扩散器
    • US4964486A
    • 1990-10-23
    • US431834
    • 1989-11-06
    • Peter D'AntonioJohn H. Konnert
    • Peter D'AntonioJohn H. Konnert
    • E04B1/84
    • E04B1/8404E04B2001/8476E04B2001/849
    • The present invention relates to an acoustical diffusor device which is made up of a plurality of specially designed and shaped cinder or concrete blocks which may be assembled together through the use of mortar to provide a diffusor of desired shape and configuration. Each diffusor includes a plurality of wells, the depths of which are determined through the use of number theory sequences, such as the quadratic-residue sequence developed by Karl Frederick Gauss. These surface irregularities arenique in that they provide a flat power spectrum and constant scattered energy in the diffraction directions.
    • 声扩散装置技术领域本发明涉及一种声扩散装置,其由多个特殊设计和形状的煤渣或混凝土块构成,其可以通过使用砂浆组装在一起,以提供所需形状和构造的扩散器。 每个扩散器包括多个井,其深度通过使用数理论序列确定,例如由卡尔·弗雷德里克·高斯(Karl Frederick Gauss)开发的二次残余序列。 这些表面凹凸不平,因为它们在衍射方向上提供平坦的功率谱和恒定的散射能。
    • 7. 发明授权
    • Nestable sound absorbing foam with reduced area of attachment
    • 可嵌套吸音泡沫,减少附着面积
    • US5665943A
    • 1997-09-09
    • US490898
    • 1995-06-15
    • Peter D'Antonio
    • Peter D'Antonio
    • E04B1/84E04B1/86E04B1/82
    • E04B1/86E04B2001/8414E04B2001/8419E04B2001/8461E04B2001/8471E04B2001/8476
    • Numerous embodiments of a nestable sound absorbing foam each including a reduced area of attachment to an adjacent wall surface and a variable depth air cavity to enhance absorption. The embodiments include various configurations of "one-dimensional" sine waves, saw tooth cross-sections, triangular and crown shaped cross-sections as well as square wave cross-sections and part cylindrical cross-sections. In addition, two-dimensional nested topologies with a variable depth air cavity are also described. In each embodiment, the major portion of the rear surface of the material which is to be attached to a wall surface is spaced as far as possible from the wall surface creating a variable depth air cavity to enhance sound absorption. When the rear air cavity is sealed, additional low frequency absorption is achieved by increased air flows through the foam material caused by the pressure gradient in the low frequency pressure zone.
    • 可嵌套吸音泡沫的许多实施例各自包括减小的附着到相邻壁表面的区域和可变深度空气腔以增强吸收。 实施例包括“一维”正弦波,锯齿截面,三角形和冠状横截面以及方波截面和部分圆柱形横截面的各种构造。 此外,还描述了具有可变深度空气腔的二维嵌套拓扑。 在每个实施例中,要附接到壁表面的材料的后表面的主要部分与壁表面尽可能地间隔开,从而产生可变的深度空气腔以增强吸声。 当后空气腔被密封时,通过由低频压力区中的压力梯度引起的通过泡沫材料的空气流量增加来实现额外的低频吸收。
    • 8. 发明授权
    • Variable acoustics modular performance shell
    • 可变声学模块化性能外壳
    • US5168129A
    • 1992-12-01
    • US656470
    • 1991-02-19
    • Peter D'Antonio
    • Peter D'Antonio
    • G10K11/20
    • E04B1/8236G10K11/20
    • A performance shell is disclosed which includes a plurality of modular components which may be assembled together to surround a performing entity ranging from a single soloist to a full orchestra. Modular components may be added and subtracted as desired to adapt the size of the shell to the size and type of the performance entity. The structure of the invention includes a plurality of rectangular recesses each one of which is designed to receive an acoustical device such as a reflective device, a diffusive device or an absorbing device. By carefully arranging the locations of these various devices in the shell, the performers will be better able to hear themselves and other musicians resulting in a performance which the audience perceives as louder, being more rhythmically in unison, and containing better loudness balance between sections than would be the case without the features of the shell.
    • 公开了一种性能外壳,其包括多个模块化部件,其可组装在一起以围绕从单个独奏者到完整乐团的演奏实体。 可以根据需要添加和减去模块化组件,以使壳体的大小适应性能实体的大小和类型。 本发明的结构包括多个矩形凹槽,每个矩形凹槽被设计成接收声学装置,例如反射装置,漫射装置或吸收装置。 通过仔细地将这些各种设备的位置安排在外壳中,表演者将能够更好地听到自己和其他音乐家的声音,从而导致观众感觉到的表现更大,更有节奏地一致,并且在节之间包含更好的响度平衡 将是没有shell特性的情况。
    • 10. 发明授权
    • Acoustical seating risers for indoor arenas
    • 室内舞台的声学座椅升降器
    • US5787656A
    • 1998-08-04
    • US784390
    • 1997-01-17
    • Peter D'Antonio
    • Peter D'Antonio
    • E04H3/12E04F11/00
    • E04H3/12
    • Acoustical seating risers for indoor arenas are made of a plurality of pre-formed units of L-shaped cross-section. These L-shaped sections are mounted atop one another on a separate pre-formed foundation to provide a mounting platform for rows of seats and additional acoustical steps in the aisles. Each riser unit includes an integrally molded acoustical element having a slit and recessed chamber or a series of slits and recessed chambers designed to absorb low frequency sounds below 500 Hz, thus permitting balancing of the frequency response within that range. Riser units are assembled together in an overlapping fashion to form the sealed and slitted cavities and protect the recessed chamber or series of chambers from water or other contamination.
    • 用于室内场合的隔音立管由多个预成形的L形横截面的单元制成。 这些L形部分彼此上下安装在单独的预成型基础上,以提供用于行座的安装平台和通道中的附加声学步骤。 每个提升单元包括一个整体模制的声学元件,其具有狭缝和凹陷室,或者一系列狭缝和凹陷室,被设计成吸收低于500Hz的低频声音,从而允许在该范围内平衡频率响应。 提升单元以重叠的方式组装在一起以形成密封和切割的空腔,并保护凹室或一系列的室免受水或其他污染。