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    • 1. 发明申请
    • AN EQUINE SADDLETREE WITH CONTROLLED FLEXING
    • 具有控制弹性的EQUINE SADDLETREE
    • WO2014145911A1
    • 2014-09-18
    • PCT/US2014/030762
    • 2014-03-17
    • COFFIN, EdmundYAVOROSKI, Stanley
    • COFFIN, EdmundYAVOROSKI, Stanley
    • B68C1/02
    • B68C1/025B29C65/72
    • An equine saddletree with controlled flexing is disclosed using multiple pairs of wave depressions. One group of wave depressions is positioned along the sidebars extend from the edge of the tree toward the central channel. Other waves are on the pommel and within the central channel. The pommel wave is positioned along the centering of the tree and has an ellipse and a pair of slots on either side to provide flex. The interior of the central channel scallops along a portion of the periphery. A recess is cut into the edge of the pommel with the width of the recess being greater along the gullet than along the points. The underside of the saddletree is covered with bidirectional carbon weave that extends from the underside to the top surface to overlap on a portion of the top surface. The weave extends from underside along the peripheral edge of the center channel flush with top surface. An engineered rail and secondary rail are formed into the underside.
    • 公开了使用多对波浪凹陷的具有受控弯曲的马氏体。 一组波浪凹陷沿着从树的边缘向中心通道延伸的侧杆定位。 其他波浪在鞍座和中央通道内。 鞍形波沿着树的中心定位,并且具有椭圆和两侧的一对槽以提供挠曲。 中央通道的内部沿着外围的一部分扇形扇形。 凹口被切入鞍座的边缘,凹槽的宽度沿着齿槽比沿着这些点更大。 齿形体的下侧被双向碳织物覆盖,双向碳织物从下表面延伸到顶表面以在顶表面的一部分上重叠。 编织从底面沿中心通道的周缘延伸,与顶面齐平。 工程轨道和次轨形成下侧。
    • 2. 发明申请
    • SADDLETREE INCORPORATING GRAPHITE LAYERS
    • WO2004058627A1
    • 2004-07-15
    • PCT/US2002/010089
    • 2002-04-01
    • COFFIN, Edmund
    • COFFIN, Edmund
    • B68C1/02
    • B68C1/025
    • An equine saddletree (10) is disclosed that has increased strength and minimal torquing due to the alternation of the multiple wood layers (70) with layers of graphite. The interior graphite layers consist of at least one layer of woven graphite (72 & 74) sheet material having a warp and fill and extending from the cantle (44 & 144) to the pommel (46 & 146). The woven graphite (72 & 74) sheet placement on the wood layer (70) defines whether the wood layer is considered a parallel or an angled layer. The parallel and angled graphite layers are alternated to form the saddletree. Additionally, each of the graphite layers has at least one strip of graphite tape (52, 54, 152, 1254) covering the pommel (46, 146), approximately perpendicular to the sidebars. Strips of graphite tape extend diagonally, in alternating directions, along each length of both the first surface and the second surface to prevent torque. A second layer of graphite tape pommel strips (52 & 54) is applied to both the first and second surfaces covering at least a portion of the pommel (46). A plastic tab (80) is secured within a notch (82) in opposing ends of the pommel point (158) and interacts with the tab-receiving pocket on the cushioning panels to position the cushioning panels.
    • 公开了一种由多个木材层(70)与石墨层的交替而增加的强度和最小的扭矩的马氏体(10)。 内部石墨层由至少一层编织石墨(72和74)片材组成,其具有翘曲和填充并从罐(44和144)延伸到鞍座(46和146)。 布置在木材层(70)上的编织石墨(72和74)定义木层是否被认为是平行的或成角度的层。 平行和成角度的石墨层交替形成saddletree。 另外,每个石墨层具有覆盖鞍座(46,146)的至少一条石墨带(52,54,152,1254),大致垂直于侧杆。 石墨带条沿着交替的方向沿着第一表面和第二表面的每个长度斜向延伸以防止扭矩。 第二层石墨带鞍形条(52和54)被施加到覆盖鞍形件(46)的至少一部分的第一和第二表面上。 塑料片(80)固定在鞍形点(158)的相对端的凹口(82)内,并与缓冲板上的片接收袋相互作用以定位缓冲板。