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    • 82. 发明授权
    • Laterally flexible reinforced structure
    • 横向柔性加固结构
    • US07815043B2
    • 2010-10-19
    • US11837265
    • 2007-08-10
    • John HawkinsGeoff NormantonArthur B. Brown
    • John HawkinsGeoff NormantonArthur B. Brown
    • B65G15/34
    • B65G15/34B29C66/1122B29C66/433B29C66/71B29C66/729B29K2021/00B29K2023/12B29K2067/00B29K2105/0845B29K2105/20B29L2031/7092B32B37/185B32B2305/08B32B2319/00B32B2433/02B65G21/10Y10T156/10Y10T156/1052B29K2023/10B29K2083/00B29K2077/10B29K2077/00B29K2027/12B29K2027/06B29K2011/00B29K2009/06B29K2009/00B29K2007/00B29K2001/00
    • In improved reinforced conveyor belt structure is disclosed having a segmented reinforcing structure for enabling enhanced in-plane expansion of the belt under conditions of extreme in-plane experienced during operation. The belt comprises at least one elastomer layer and at least one reinforcing layer. The reinforcing layer may comprise a continuous strip disposed along the longitudinal center line of the conveyor belt. A series of laterally-extending reinforcing strips are disposed on either side of the center strip, radiating outward toward respective edges of the belt. These laterally-extending strips are spaced apart from one another to form a series of flexibility enhancing gaps therebetween, thus enabling the belt to elongate at its edges without undue restraint from the reinforcing layer. The laterally-extending strips may be oriented perpendicular to the center strip, or they may be oriented at oblique angles with respect to the center strip. The reinforcing layer may comprise one or more plies. Additional light-weight layers of reinforcing material may be provided between the reinforcing layer and the elastomer layer in order to enhance the structural integrity of the belt. In one embodiment, these light-weight reinforcing layers are continuous sheets of non-segmented reinforcing material which extend across substantially the entire width of the belt. Additional layers of elastomer material may be disposed between the reinforcing layer and the light-weight layers.
    • 公开了一种改进的增强输送带结构,其具有分段加强结构,用于在操作期间经历极端平面的条件下实现带的增强的平面内膨胀。 带包括至少一个弹性体层和至少一个增强层。 加强层可以包括沿传送带的纵向中心线设置的连续条带。 一系列横向延伸的加强条设置在中心条的任一侧上,朝向带的相应边缘向外辐射。 这些横向延伸的条彼此间隔开以形成一系列柔性,从而增强它们之间的间隙,从而使带能够在其边缘处伸长而不受到加强层的不适当的约束。 横向延伸的条可以垂直于中心条定向,或者它们可以相对于中心条倾斜地定向。 加强层可以包括一个或多个层。 可以在增强层和弹性体层之间提供另外的加强材料的轻质层,以增强带的结构完整性。 在一个实施例中,这些轻质加强层是延伸穿过带的整个宽度的非分段增强材料的连续片。 另外的弹性体材料层可以设置在加强层和轻质层之间。
    • 85. 发明申请
    • LATERALLY FLEXIBLE REINFORCED STRUCTURE
    • 侧向柔性加固结构
    • US20080035454A1
    • 2008-02-14
    • US11837265
    • 2007-08-10
    • John HawkinsGeoff NormantonArthur B. Brown
    • John HawkinsGeoff NormantonArthur B. Brown
    • B65G15/30B29C65/00
    • B65G15/34B29C66/1122B29C66/433B29C66/71B29C66/729B29K2021/00B29K2023/12B29K2067/00B29K2105/0845B29K2105/20B29L2031/7092B32B37/185B32B2305/08B32B2319/00B32B2433/02B65G21/10Y10T156/10Y10T156/1052B29K2023/10B29K2083/00B29K2077/10B29K2077/00B29K2027/12B29K2027/06B29K2011/00B29K2009/06B29K2009/00B29K2007/00B29K2001/00
    • In improved reinforced conveyor belt structure is disclosed having a segmented reinforcing structure for enabling enhanced in-plane expansion of the belt under conditions of extreme in-plane experienced during operation. The belt comprises at least one elastomer layer and at least one reinforcing layer. The reinforcing layer may comprise a continuous strip disposed along the longitudinal center line of the conveyor belt. A series of laterally-extending reinforcing strips are disposed on either side of the center strip, radiating outward toward respective edges of the belt. These laterally-extending strips are spaced apart from one another to form a series of flexibility enhancing gaps therebetween, thus enabling the belt to elongate at its edges without undue restraint from the reinforcing layer. The laterally-extending strips may be oriented perpendicular to the center strip, or they may be oriented at oblique angles with respect to the center strip. The reinforcing layer may comprise one or more plies. Additional light-weight layers of reinforcing material may be provided between the reinforcing layer and the elastomer layer in order to enhance the structural integrity of the belt. In one embodiment, these light-weight reinforcing layers are continuous sheets of non-segmented reinforcing material which extend across substantially the entire width of the belt. Additional layers of elastomer material may be disposed between the reinforcing layer and the light-weight layers.
    • 公开了一种改进的增强输送带结构,其具有分段加强结构,用于在操作期间经历极端平面的条件下实现带的增强的平面内膨胀。 带包括至少一个弹性体层和至少一个增强层。 加强层可以包括沿传送带的纵向中心线设置的连续条带。 一系列横向延伸的加强条设置在中心条的任一侧上,朝向带的相应边缘向外辐射。 这些横向延伸的条彼此间隔开以形成一系列柔性,从而增强它们之间的间隙,从而使带能够在其边缘处伸长而不受到加强层的不适当的约束。 横向延伸的条可以垂直于中心条定向,或者它们可以相对于中心条倾斜地定向。 加强层可以包括一个或多个层。 可以在增强层和弹性体层之间提供另外的加强材料的轻质层,以增强带的结构完整性。 在一个实施例中,这些轻质加强层是延伸穿过带的整个宽度的非分段增强材料的连续片。 另外的弹性体材料层可以设置在加强层和轻质层之间。