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    • 21. 发明授权
    • In-line skate frame with independent lateral flanges
    • 具有独立横向法兰的直排式溜冰鞋架
    • US06176497B1
    • 2001-01-23
    • US09420833
    • 1999-10-19
    • Laurent Bonaventure
    • Laurent Bonaventure
    • A63C100
    • A63C17/068A63C2203/42
    • An in-line skate frame that has a main body with a transverse base equipped with at least one support surface at the toe of the boot, one support surface at the heel of the boot, two projecting lateral portions that extend the transverse base downward, and two flange portions which are adapted to receive a series of wheels. The flange portions are independent attached elements connected to the projecting lateral portions of the main body. The two projecting lateral portions each have at least one fitting formed by a groove serving as the housing of at least one zone of each flange portion, each groove being bordered by an outer wall of the projecting lateral portion and by a bracing portion common to both grooves, laterally spaced apart from one another. A frame of this type has improved properties of strength and flexural and torsional rigidity, while being simple and economical to assemble.
    • 一种直排轮辋框架,其具有主体,所述主体具有横向底座,所述主体具有在所述靴子的所述脚趾处的至少一个支撑表面,所述靴子的跟部处的一个支撑表面,向下延伸所述横向底座的两个突出的侧向部分, 以及适于容纳一系列轮的两个凸缘部分。 凸缘部分是连接到主体的突出侧面部分的独立的附接元件。 两个突出的横向部分各自具有由用作每个凸缘部分的至少一个区域的壳体的凹槽形成的至少一个配件,每个凹槽由突出的侧向部分的外壁和两个共同的支撑部分 沟槽,横向间隔开。 这种类型的框架具有改进的强度和弯曲刚度的特性,同时简单且经济地组装。
    • 23. 发明授权
    • Alpine ski boot with flexion control of upper
    • 高山滑雪靴与上肢屈曲控制
    • US5579592A
    • 1996-12-03
    • US322481
    • 1994-10-14
    • Louis BenoitLaurent Bonaventure
    • Louis BenoitLaurent Bonaventure
    • A43B5/04A43B5/16
    • A43B5/0456
    • A ski boot structure in which the front cuff of the upper is intended to constitute the reference element ensuring all the functions related to the flexion control of said upper in cooperation with rigid extensions of the shell base and the closure device of the upper on the lower part of the skier's leg in skiing position. On the one hand, the front cuff includes abutments located opposite the abutments obtained on the extensions in the upper zone of the upper, and on the other hand, in the lower portion where it is extended by fastening hooks, an elastic element mounted in tension state to act in the front-to-rear direction. The closure device mutually connects the front cuff and rear spoiler on the inserted extensions while thus allowing the frontward flexion of the front cuff, and therefore of the upper, against the resistance of the elastic element without biasing said extensions and while rearwardly blocking said upper by means of the abutments of the cuff against those of the extensions.
    • 一种滑雪靴结构,其中上部的前袖套旨在构成参考元件,以确保与所述鞋底的弯曲控制相关的所有功能与壳体基座的刚性延伸部和下部的上部的闭合装置协作 滑雪者的一部分滑雪位置的一部分。 一方面,前袖口包括与在上部的上部区域中的延伸部上获得的邻接处相对的抵接处,另一方面,在通过紧固钩延伸的下部中的抵靠处,紧固安装的弹性元件 状态在前后方向上行动。 闭合装置将前袖带和后扰流板相互连接在插入的延伸部上,从而允许前袖口向前弯曲并因此允许前袖带抵抗弹性元件的阻力而不偏压所述延伸部并且同时向后阻挡所述鞋帮 手铐与延伸部分的搭接的手段。
    • 24. 发明授权
    • Alpine ski boot with shock absorbing sole
    • ALPINE滑雪靴与震动吸收单体
    • US5086575A
    • 1992-02-11
    • US480597
    • 1990-02-15
    • Laurent Bonaventure
    • Laurent Bonaventure
    • A43B5/04A43B13/18
    • A43B13/187A43B5/0417A43B5/0421
    • A shock-absorbing sole for a ski boot. The sole of the ski boot includes at least one elastically deformable element and at least one stiffener, which together comprise the shock absorption apparatus of the invention. The stiffener gives the sole its necessary rigidity for cooperation with the ski bindings. The elastically deformable element, on the other hand, absorbs forces that are encountered during skiing. The shock absorption apparatus can be included in a removable end plate so that the elastically deformable elements can be conveniently replaced to thereby permit the skier to insert an element having the properties he desires. The elastically deformable elements can be either flush with the lower surface of the sole or, alternatively, can be sandwiched within the thickness of the sole. The elastically deformable elements can be arranged only on the exterior side or, alternatively, only on the interior side of the sole of the ski boot to thereby cushion forces that are generally encountered to a greater degree during turns. The stiffeners can be arranged either coaxially with the longitudinal axis of the sole of the ski boot, or they can be parallel, yet offset from the longitudinal axis boot to thereby effect an asymmetrical arrangement. Alternatively, the stiffener can be located angularly to the longitudinal axis of the sole of the ski boot to thereby give the sole of the ski boot more rigidity with regard to forces encountered which are oblique to the longitudinal axis of the ski boot.