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    • 21. 发明授权
    • Rubber crawler track and method of producing metal core for rubber track
    • 橡胶履带及橡胶履带金属芯生产方法
    • US07413268B2
    • 2008-08-19
    • US10563114
    • 2004-06-18
    • Yusaku KatoTsuyoshi UchiyamaTatsuya Norito
    • Yusaku KatoTsuyoshi UchiyamaTatsuya Norito
    • B62D55/24
    • B62D55/253B62D55/244
    • A rubber crawler track in which a local side displacement is more effectively prevented to effectively prevent wheel run-off, which can reduce traveling vibration, and in which separation of metal cores is prevented for improved durability of the rubber crawler track and for reduced costs. The expression of Δr≦r≦2Δr is satisfied, with “r” being the distance, in the circumferential direction of the rubber crawler track, between ends of horizontal protrusions (6) facing each other between adjacent metal cores (3) embedded in a rubber crawler body in a horizontal state of the rubber crawler track, “h” being the distance from a steel cord (5) layer embedded in the rubber crawler body to the core metal horizontal protrusions (6), and Δr being a value obtained by Δr=2πh/n where “n” is the number of sprocket teeth of a traveling device.
    • 能够更有效地防止局部侧位移的橡胶履带,能够有效地防止能够减少行驶振动的车轮偏离,防止金属芯的分离,提高橡胶履带的耐久性,降低成本。 满足Deltar <= r <= 2Deltar的表达式,“r”是橡胶履带的圆周方向上在相邻的金属芯(3)之间相互嵌入的水平突起(6)的端部之间的距离 在橡胶履带的水平状态下的橡胶履带体中,“h”是从嵌入橡胶履带体的钢帘线(5)层到芯金属水平突起(6)的距离,“Deltar” 通过Deltar = 2pih / n获得,其中“n”是行进装置的链轮齿数。
    • 22. 发明申请
    • Rubber track and method of producing core metal for rubber track
    • 橡胶履带的橡胶履带及其制造方法
    • US20060279138A1
    • 2006-12-14
    • US10563114
    • 2004-06-18
    • Yusaku KatoTsuyoshi UchiyamaTatsuya Norito
    • Yusaku KatoTsuyoshi UchiyamaTatsuya Norito
    • B62D55/24
    • B62D55/253B62D55/244
    • A rubber crawler track in which a local side displacement is more effectively prevented to effectively prevent wheel run-off, which can reduce traveling vibration, and in which separation of metal cores is prevented for improved durability of the rubber crawler track and for reduced costs. The expression of Δr≦r≦2Δr is satisfied, with “r” being the distance, in the circumferential direction of the rubber crawler track, between ends of horizontal protrusions (6) facing each other between adjacent metal cores (3) embedded in a rubber crawler body in a horizontal state of the rubber crawler track, “h” being the distance from a steel cord (5) layer embedded in the rubber crawler body to the core metal horizontal protrusions (6), and Δr being a value obtained by Δr=2πh/n where “n” is the number of sprocket teeth of a traveling device.
    • 能够更有效地防止局部侧位移的橡胶履带,能够有效地防止能够减少行驶振动的车轮偏离,防止金属芯的分离,提高橡胶履带的耐久性,降低成本。 满足Deltar <= r <= 2Deltar的表达式,“r”是橡胶履带的圆周方向上在相邻的金属芯(3)之间相互嵌入的水平突起(6)的端部之间的距离 在橡胶履带的水平状态下的橡胶履带体中,“h”是从嵌入橡胶履带体的钢帘线(5)层到芯金属水平突起(6)的距离,“Deltar” 通过Deltar = 2pih / n获得,其中“n”是行进装置的链轮齿数。
    • 25. 发明申请
    • CORE FOR RUBBER TRACK AND RUBBER TRACK
    • 橡胶履带和橡胶履带芯
    • US20100096916A1
    • 2010-04-22
    • US12451901
    • 2008-06-05
    • Yusaku KatoTatsuya Norito
    • Yusaku KatoTatsuya Norito
    • B62D55/253B62D55/24
    • B62D55/24B62D55/205B62D55/26
    • A rubber track (1) has formed in it simple means that can carry a part of abnormal tensile force acting on substantially the entire length in the circumferential direction of the rubber track (1). The construction secures smooth operation of the rubber track and reliably prevents cutting of a steel cord (s1) due to such abnormal tensile force. A core (3) has an engagement section (3b) located in the center region in the longitudinal direction of the core, guide projections (3a) on the outer sides of the guide projections (3a). The core (3) further has tensile force carrying sections (4a, 4b) arranged at positions that are located in the thickness direction of the core and are closer to the outer periphery of the rubber track than the outer peripheral-side d-surfaces of the wing sections (3c). The tensile force carrying sections (4a, 4b) carry tensile force acting in the lateral direction of the core and also carry pressing force acting in the thickness direction of the core. Corresponding tensile force carrying sections (4a, 4b) of cores adjacent to each other in the circumferential direction of the rubber track are engaged with each other. Further, a fixation belt layer in the circumferential direction of the rubber track is provided in a rubber track body (1a) at positions related to tensile force carrying sections (4a, 4b).
    • 橡胶履带(1)形成有简单的装置,其能够承载作用在橡胶履带(1)的圆周方向的基本整个长度上的一部分异常张力。 该结构确保橡胶履带的平稳运行,并可靠地防止由于这种异常拉力而切断钢丝绳(s1)。 芯(3)具有位于芯的纵向方向上的中心区域中的接合部分(3b),在引导突起(3a)的外侧上的引导突起(3a)。 芯部(3)还具有布置在位于芯部的厚度方向的位置并且比橡胶履带的外周更靠近橡胶履带的外周的拉伸力承载部分(4a,4b)比外周侧的d面 翼部(3c)。 张力承载部分(4a,4b)承受沿芯的横向作用的张力,并且还承载沿芯的厚度方向作用的按压力。 在橡胶履带的圆周方向上彼此相邻的芯的相应的拉力承载部分(4a,4b)彼此接合。 此外,在与拉力传送部分(4a,4b)相关的位置处,橡胶履带体(1a)中的橡胶履带的周向上的定影带层设置在橡胶履带体(1a)中。