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    • 2. 发明申请
    • TRIPLE DENSITY GEL HEEL CUPS
    • 三重密度胶鞋跟杯
    • WO2009091687A3
    • 2009-09-17
    • PCT/US2009030716
    • 2009-01-12
    • SPENCO MEDICAL CORPGRANGER DAVID BRADLEYMARTINEZ JACOBSULAK DUANE M
    • GRANGER DAVID BRADLEYMARTINEZ JACOBSULAK DUANE M
    • A43B23/08A43B7/32
    • A43B7/16A43B1/0009A43B7/144A43B17/026A43B17/16
    • A triple density heel cup is disclosed which comprises a generally heel-shaped substrate having a length extending from a heel portion of an integral wall to a front border, which front border in use is adapted to underlie a portion of the arch area of a human foot. The heel-shaped substrate comprises a structural gel layer having a foot receiving surface and a shoe side surface. A generally flat portion of the foot receiving surface will lie adjacent the bottom of a wearer's foot in use and the integral wall which is adapted to lie adjacent the back of wearer's heel and portion of the side of a wearer's heel in use, said integral wail having an apex of maximum height, said wall tapering down in height from said apex toward said front border; The shoe side surface defines a channel formed in said structural gel adapted to receive a reinforcing component which is secured to said structural gel in said channel and is made of a denser material than said structural gel. This provides support to the heel cup and the foot A heel cushion is secured to said structural gel in a heel cushion area defined by the structural gel on the bottom surface of the heel cup. In a preferred embodiment, the heel cushion utilizes honeycomb technology to provide increased cushioning and energy return.
    • 公开了一种三重密度脚后跟杯,其包括具有从整体壁的脚后跟部分延伸到前边界的长度的通常脚后跟形状的基底,该前边界在使用中适于在人的足弓区域的一部分之下 脚丫子。 脚跟形状的基底包括具有脚接收表面和鞋侧表面的结构凝胶层。 足部接收表面的大致平坦的部分将在使用中位于穿着者的脚的底部附近,并且整体壁适于在使用时位于穿着者的脚跟的背部和穿着者的脚跟的侧部的部分附近,所述整体壁 具有最大高度的顶点,所述壁从所述顶点朝向所述前边缘在高度上逐渐减小; 鞋侧表面限定形成在所述结构凝胶中的通道,所述通道适于接收加强部件,所述加强部件固定到所述通道中的所述结构凝胶并且由比所述结构凝胶更致密的材料制成。 这为后跟杯和脚提供了支撑。在由后跟杯的底表面上的结构凝胶限定的后跟衬垫区域中,将后跟衬垫固定到所述结构凝胶上。 在一个优选实施例中,脚跟垫使用蜂窝技术来提供增加的缓冲和能量返回。
    • 6. 发明专利
    • Triple density gel heel cups
    • AU2009205573B2
    • 2012-10-04
    • AU2009205573
    • 2009-01-12
    • SPENCO MEDICAL CORP
    • MARTINEZ JACOBSULAK DUANE MGRANGER DAVID BRADLEY
    • A43B7/32A43B23/08
    • A triple density heel cup is disclosed which comprises a generally heel-shaped substrate having a length extending from a heel portion of an integral wall to a front border, which front border in use is adapted to underlie a portion of the arch area of a human foot. The heel-shaped substrate comprises a structural gel layer having a foot receiving surface and a shoe side surface. A generally flat portion of the foot receiving surface will lie adjacent the bottom of a wearer's foot in use and the integral wall which is adapted to lie adjacent the back of wearer's heel and portion of the side of a wearer's heel in use, said integral wail having an apex of maximum height, said wall tapering down in height from said apex toward said front border; The shoe side surface defines a channel formed in said structural gel adapted to receive a reinforcing component which is secured to said structural gel in said channel and is made of a denser material than said structural gel. This provides support to the heel cup and the foot A heel cushion is secured to said structural gel in a heel cushion area defined by the structural gel on the bottom surface of the heel cup. In a preferred embodiment, the heel cushion utilizes honeycomb technology to provide increased cushioning and energy return.
    • 8. 发明专利
    • TRIPLE DENSITY GEL HEEL CUPS
    • CA2700571A1
    • 2009-07-23
    • CA2700571
    • 2009-01-12
    • SPENCO MEDICAL CORP
    • GRANGER DAVID BRADLEYMARTINEZ JACOBSULAK DUANE M
    • A43B23/08A43B7/32
    • A triple density heel cup is disclosed which comprises a generally heel-shaped substrate having a length extending from a heel portion of an integral wall to a front border, which front border in use is adapted to underlie a portion of the arch area of a human foot. The heel-shaped substrate comprises a structural gel layer having a foot receiving surface and a shoe side surface. A generally flat portion of the foot receiving surface will lie adjacent the bottom of a wearer's foot in use and the integral wall which is adapted to lie adjacent the back of wearer's heel and portion of the side of a wearer's heel in use, said integral wail having an apex of maximum height, said wall tapering down in height from said apex toward said front border; The shoe side surface defines a channel formed in said structural gel adapted to receive a reinforcing component which is secured to said structural gel in said channel and is made of a denser material than said structural gel. This provides support to the heel cup and the foot A heel cushion is secured to said structural gel in a heel cushion area defined by the structural gel on the bottom surface of the heel cup. In a preferred embodiment, the heel cushion utilizes honeycomb technology to provide increased cushioning and energy return.
    • 9. 发明专利
    • Triple density gel heel cups
    • AU2009205573A1
    • 2009-07-23
    • AU2009205573
    • 2009-01-12
    • SPENCO MEDICAL CORP
    • MARTINEZ JACOBSULAK DUANE MGRANGER DAVID BRADLEY
    • A43B7/32A43B23/08
    • A triple density heel cup is disclosed which comprises a generally heel-shaped substrate having a length extending from a heel portion of an integral wall to a front border, which front border in use is adapted to underlie a portion of the arch area of a human foot. The heel-shaped substrate comprises a structural gel layer having a foot receiving surface and a shoe side surface. A generally flat portion of the foot receiving surface will lie adjacent the bottom of a wearer's foot in use and the integral wall which is adapted to lie adjacent the back of wearer's heel and portion of the side of a wearer's heel in use, said integral wall having an apex of maximum height, said wall tapering down in height from said apex toward said front border; The shoe side surface defines a channel formed in said structural gel adapted to receive a reinforcing component which is secured to said structural gel in said channel and is made of a denser material than said structural gel. This provides support to the heel cup and the foot A heel cushion is secured to said structural gel in a heel cushion area defined by the structural gel on the bottom surface of the heel cup. In a preferred embodiment, the heel cushion utilizes honeycomb technology to provide increased cushioning and energy return.