WO2006047908A1 - A spring shoe - Google Patents

A spring shoe Download PDF

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Publication number
WO2006047908A1
WO2006047908A1 PCT/CN2004/001252 CN2004001252W WO2006047908A1 WO 2006047908 A1 WO2006047908 A1 WO 2006047908A1 CN 2004001252 W CN2004001252 W CN 2004001252W WO 2006047908 A1 WO2006047908 A1 WO 2006047908A1
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WO
WIPO (PCT)
Prior art keywords
spring
sole
layer
shoe
elastic
Prior art date
Application number
PCT/CN2004/001252
Other languages
English (en)
French (fr)
Inventor
Wanen Leng
Original Assignee
Wanen Leng
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Wanen Leng filed Critical Wanen Leng
Priority to PCT/CN2004/001252 priority Critical patent/WO2006047908A1/zh
Publication of WO2006047908A1 publication Critical patent/WO2006047908A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B13/00Soles; Sole-and-heel integral units
    • A43B13/14Soles; Sole-and-heel integral units characterised by the constructive form
    • A43B13/18Resilient soles
    • A43B13/181Resiliency achieved by the structure of the sole
    • A43B13/182Helicoidal springs
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43BCHARACTERISTIC FEATURES OF FOOTWEAR; PARTS OF FOOTWEAR
    • A43B13/00Soles; Sole-and-heel integral units
    • A43B13/14Soles; Sole-and-heel integral units characterised by the constructive form
    • A43B13/18Resilient soles
    • A43B13/181Resiliency achieved by the structure of the sole
    • A43B13/183Leaf springs

Definitions

  • TECHNICAL FIELD The utility model belongs to the field of footwear industry. BACKGROUND OF THE INVENTION Existing shoes are classified into hard bottom shoes and soft bottom shoes, and hard bottom shoes such as leather shoes, and the soles are made of a hard and wearable hard material. Soft soles such as casual shoes and sneakers are made of soft materials. When we walk in hard-soled shoes, we feel that we fall on our feet and are prone to fatigue. When walking in soft-soled shoes, we will feel relaxed and not easy to fatigue, but soft-soled shoes also do not fundamentally help people reduce physical exertion during walking. Speed up the pace of travel.
  • the object of the present invention is to solve the above problems, and provide a spring type assisting shoe which uses a spring installed on a sole to help people reduce physical exertion during walking, speed up travel, and save labor. And labor time.
  • a spring-type power-assisted shoe comprising an upper and a sole
  • the upper layer of the sole is a base layer
  • the base material is leather, rubber, plastic or fabric
  • the lower layer of the sole is an elastic thin steel plate layer.
  • the upper layer and the lower layer of the sole are glued, and a spring is fixed to the lower surface of the elastic steel sheet layer.
  • At least one helical compression spring is welded to the bottom of the elastic sheet steel layer of the sole corresponding to the position of the front shoe, and at least one helical compression spring is welded to the position of the rear heel.
  • the lower surface of the elastic thin steel plate layer of the sole is welded with a plurality of inner and outer springs which are nested together corresponding to the position of the front sole; the inner and outer springs are nested corresponding to the position of the rear heel. .
  • the helical compression spring is a cylindrical helical compression spring or a conical spiral compression spring.
  • the spiral compression spring is a cylindrical spiral compression spring and a conical spiral compression spring.
  • the lower surface of the elastic thin steel plate layer of the sole is welded with an end-curved leaf spring at a position corresponding to the front sole; the position of the corresponding heel is welded A leaf spring with an end bent.
  • the lower surface of the elastic sheet steel layer of the sole is welded to the position of the rear heel to be welded with an end-curved leaf spring which extends to the position of the front shoe.
  • the upper surface of the elastic thin steel plate layer of the sole has a pattern, and the elastic thin steel plate layer has a plurality of through holes, and the bottom surface of the spring has a pattern for increasing friction.
  • a soft elastic material is integrally covered on the underside of the sole to cover the spring.
  • the lower surface of the elastic thin steel plate layer of the sole is fixed with a spring corresponding to the position of the front shoe.
  • the power assisting shoe of the utility model is provided with different springs on the sole to enhance the stability and safety of the user during the traveling process; according to the function of the shoe, the need for the tension is different, and the shoe sole and the front of the sole can be
  • the rear heel position is one or more springs of different kinds.
  • the spring may be a cylindrical spiral compression spring, a conical spiral compression spring, a leaf spring, or an inner and outer spring nested together, a cylindrical spiral compression spring and a cone.
  • the helical compression spring can be a left coil spring or a right coil spring.
  • the power assisting shoe of the utility model can be divided into:
  • Physical exercise type used for physical exercise, improve running speed in track and field competitions, and increase exercise fun during normal exercise.
  • the leaf spring-loaded spring-assisted shoes are also suitable for travel in the desert, overcoming the difficulties of traveling in the desert.
  • the front shoe-type spring-assisted shoe is placed in the front of the shoe.
  • the different types of springs are installed on demand. They can be used for physical exercise or acrobatic performance.
  • FIG. 1 is a schematic structural view of an embodiment of the present invention using a plurality of cylindrical spiral compression springs
  • Figure 2 is a bottom view of Figure 1;
  • FIG. 3 is a schematic structural view of an embodiment of the present invention using a plurality of conical spiral compression springs
  • Figure 4 is a bottom view of Figure 3;
  • Figure 5 is a schematic view showing the structure of an embodiment of the present invention using a cylindrical spiral compression spring
  • Figure 6 is a bottom view of Figure 5;
  • Figure 7 is a schematic view showing the structure of an embodiment of the present invention using an inner and outer spiral compression spring
  • Figure 8 is a bottom view of Figure 7;
  • Figure 9 is a schematic structural view of an embodiment of the present invention using a leaf spring;
  • Figure 10 is a bottom view of Figure 9;
  • Figure 1 is a schematic structural view of another embodiment of the present invention using a leaf spring
  • Figure 12 is a bottom view of Figure 11;
  • Figure 13 is a schematic view showing the structure of the present invention in which the spring is invisible;
  • Figure 14 is a bottom view of Figure 13;
  • Figure 15 is a schematic view showing the structure of another embodiment of the present invention in which the spring is invisible;
  • Figure 16 is a bottom view of Figure 15;
  • FIG. 17 is a schematic structural view of an embodiment of a front shoe spring assist shoe of the present invention.
  • Figure 18 is a bottom view of Figure 17;
  • Figure 20 is a bottom view of Figure 19;
  • Figure 21 is a plan view showing an embodiment of the elastic steel sheet layer of the present invention
  • Figure 22 is a bottom view of the elastic steel sheet layer shown in Figure 21.
  • the utility model relates to a spring-type power-assisted shoe, which has an upper 1 and a sole.
  • the upper layer of the sole is a base layer 2, and the base layer 2 is made of leather, rubber, plastic or
  • the lower layer of the sole is an elastic thin steel plate layer 3, and the upper layer and the lower layer of the sole are glued together, and the lower surface of the elastic thin steel plate layer 3 is welded with a plurality of cylindrical spiral compression springs 4 corresponding to the position of the front sole, corresponding to the rear heel A plurality of cylindrical helical compression springs 5 are welded at the position.
  • the cylindrical spiral compression springs 4, 5 may be left or right spiral springs.
  • the bottom surface of the cylindrical spiral compression springs 4, 5 has a pattern for increasing the frictional force.
  • the lower surface of the elastic steel sheet layer 3 is welded with a plurality of conical spiral compression springs 6 corresponding to the position of the front sole, and a plurality of conical spiral compression springs 7 are welded to the position of the rear heel.
  • the conical spiral compression springs 6, 7 may be left or right.
  • the bottom surface of the conical spiral compression springs 6, 7 has a pattern for increasing friction.
  • the lower part of the elastic thin steel plate layer 3 corresponds to the position of the front sole.
  • a cylindrical spiral compression spring 8 is welded to the rear heel, and a cylindrical spiral compression spring 9 is connected to the rear heel.
  • the cylindrical spiral compression springs 8, 9 may be left or right spiral springs.
  • the bottom surface of the cylindrical spiral compression springs 8, 9 has a pattern for increasing the frictional force.
  • the lower surface of the elastic thin steel plate layer 3 of the sole is connected with three inner and outer springs 10, 1 1 and 12 corresponding to the position of the front shoe; the position of the corresponding heel is welded.
  • the bottom surface of the springs 10, 1 1, 12, 13, 14, 15 has a pattern for increasing friction.
  • the lower surface of the elastic thin steel plate layer 3 of the sole is welded with a rear end bent plate spring 16 corresponding to the position of the front shoe; a rear end curved plate is welded to the position of the rear heel.
  • Spring 17 The bottom surface of the leaf springs 16, 17 has a pattern for increasing friction.
  • the lower surface of the sole elastic steel sheet layer 3 is welded with a rear end bent leaf spring 18 at a position corresponding to the rear heel, and the front end portion of the leaf spring 18 extends to the position of the front shoe.
  • a pattern for increasing the frictional force is provided on the bottom surface of the leaf spring 18.
  • the soft elastic material 19 on the underside of the sole is integrally covered with the cylindrical spiral compression springs 4, 5. That is, the cylindrical spiral compression springs 4, 5 are closed and invisible.
  • the soft elastic material 19 can be a low-density rubber or other material.
  • the spring is not visible from the outside, and the spring is built in, and the elastic force achieves the desired effect.
  • the bottom surface of the soft elastic material 19 has a pattern for increasing friction.
  • the soft elastic material 20 on the underside of the sole is integrally covered with the circular conical spiral compression springs 6, 7. That is, the conical spiral compression springs 6, 7 are closed and invisible.
  • the soft elastic material 20 can be a low-density rubber or other material.
  • the spring is not visible from the appearance, and the spring is built in, and the elastic force achieves the desired effect.
  • the bottom surface of the soft elastic material 20 has a pattern for increasing friction.
  • a plurality of cylindrical helical compression springs 4 are welded to the lower surface of the elastic steel sheet layer 3 of the sole corresponding to the front shoe; and a heel 21 is attached to the position of the rear heel.
  • a cylindrical spiral compression spring 8 is welded to the lower surface of the elastic steel sheet layer 3 of the sole corresponding to the front shoe; a heel 21 is attached to the position of the rear heel.
  • the elastic steel sheet layer 3 has a plurality of through holes.
  • the through hole corresponding to the position of the front shoe is a circular hole 22, and the through hole corresponding to the rear heel position.
  • the through hole at the position between the front sole and the rear heel is a long slot 23, and the through holes 22, 23, 24 function to reduce the internal stress and the self weight of the elastic thin steel sheet layer 3. .
  • the upper surface of the elastic steel sheet layer 3 is formed with a pattern 25, and the lower surface can be patterned
  • the pattern 25 may also be non-patterned, and the pattern 25 may be composed of a plurality of "+"-shaped grooves.
  • the function of the pattern 25 is to increase the roughness of the surface of the elastic steel sheet layer 3, and to facilitate the leather in the elastic thin steel sheet layer 3 and the base layer 2 or Rubber or plastic or fabric is glued.
  • the adhesive used for bonding can be formulated as follows:
  • Neoprene 100 parts
  • Anti-aging agent 2 2 servings
  • Formulation 2 is dissolved in Formulation 3 and solidified at 0.1 - 0.3 MPa, 20 ° C, and 24 h.
  • the weight of the spring-loaded power-assisted shoe of the present invention is generally 300g-1200g compared with the weight of the ordinary shoe; depending on the size of the shoe, the function of the shoe, the weight of the wearer, the assisting shoe
  • the power is also different.
  • the power (elasticity) of the assisting shoe is usually between 5000g and 800000g.
  • the spring-loaded power-assisted shoe of the present invention will be a revolution in the history of the human footwear industry, which can be widely used in production labor, athletics, army marching, army heavy-duty marching, army marching, army cross-country, climbing marching, acrobatic performances, Physical exercise, desert marching and other fields benefit people.

Description

弹箦式助力鞋 技术领域 本实用新型属于制鞋业领域。 背景技术 现有的鞋按鞋底的材质不同, 可分为硬底鞋和软底鞋, 硬底鞋 如皮鞋, 其鞋底是用坚固耐磨的硬质材料制成。 软底鞋如休闲鞋、 运动鞋, 其鞋底是用软质材料制成。 我们在穿着硬底鞋走路时, 会感到坠脚, 容易疲劳, 在穿着软底鞋时走路会感到轻松, 不易 疲劳, 不过软底鞋也没有从根本上帮助人们在行走过程中减少体 力消耗, 加快行进速度。 发明内容 本实用新型的目的在于解决上述问题, 提供一种弹簧式助力 鞋, 它通过鞋底部安装的弹簧, 利用人自身的重量帮助人们在行 走过程中减少体力消耗, 加快行进速度, 节省劳动量和劳动时间。
本实用新型的目的是这样实现的: 一种弹簧式助力鞋, 包括有 鞋帮、 鞋底, 鞋底的上层为基层, 基层的材质为皮革、 橡胶、 塑 料或织物, 鞋底的下层为弹性薄钢板层, 鞋底的上层与下层以胶 粘接, 所述弹性薄钢板层的下面固接有弹簧。
所述鞋底的弹性薄钢板层下面对应前鞋掌的位置焊接有至少 一个螺旋压缩弹簧, 对应后鞋跟的位置焊接有至少一个螺旋压缩 弹簧。
所述鞋底的弹性薄钢板层的下面对应前鞋掌的位置焊接有若 千个嵌套在一起的内、 外弹簧; 对应后鞋跟的位置焊接有若干个 嵌套在一起的内、 外弹簧。
所述螺旋压缩弹簧为圆柱螺旋压缩弹簧或圆锥形螺旋压缩弹 簧。 所述螺旋压缩弹簧为圆柱螺旋压缩弹簧和圆锥形螺旋压缩弹 所述鞋底的弹性薄钢板层的下面对应前鞋掌的位置焊接有一 个端部弯曲的板弹簧; 对应后鞋跟的位置焊接有一个端部弯曲的 板弹簧。
所述鞋底的弹性薄钢板层的下面对应后鞋跟的位置焊接有一 个端部弯曲的板弹簧, 该板弹簧延伸到前鞋掌的位置。
所述鞋底的弹性薄钢板层的上表面有花纹,该弹性薄钢板层上 有若干个通孔, 所述弹簧底面上有用于增加摩擦力的花纹。
所述鞋底的下面有软弹性材料整体覆盖所述弹簧。
所述鞋底的弹性薄钢板层的下面对应前鞋掌的位置固接有弹 簧。
本实用新型有以下积极有益效果:
本实用新型的助力鞋是在鞋底设置不同的弹簧, 以增强使用者 在行进过程中的稳定性和安全性; 根据鞋的功能不同, 对张力大 小的需要也不同, 可以在鞋底前鞋掌和后鞋跟位置安不同种类的 一个或多个弹簧, 弹簧可以是圆柱螺旋压缩弹簧、 圆锥形螺旋压 缩弹簧、 板弹簧, 也可以是嵌套在一起的内、 外弹簧, 圆柱螺旋 压缩弹簧和圆锥形螺旋压缩弹簧可以是左螺旋弹簧也可以是右螺 旋弹簧。
本实用新型的助力鞋按功能可分为:
一. 稳健助力型:
对于平时走路有一定的助力帮助的鞋; 省力, 减少体力消耗, 又比较快捷, 稳定性能好, 非常安全, 老少皆宜, 用于负重的步 行, 长途跋涉, 部队长途行军等。
二. 体育锻炼型- 用于体育锻炼, 在田径比赛中提高奔跑速度, 平时锻炼时增 加锻炼乐趣。 板弹簧式弹簧助力鞋还适用于沙漠中的行进, 克服 在沙漠中行进的困难。 前鞋掌式弹簧助力鞋是在鞋的前鞋掌位置 按需求安装不同张力不同类型的弹簧, 可用于体育锻炼或杂技表 演。
三. 封闭隐形型: 封闭隐形弹簧式助力鞋是用低密度的橡胶或其它软弹性材料 将其弹簧进行复盖, 外观上看不到弹簧, 实质上内置有弹簧, 其 弹力可达到所需要求, 还具有增高鞋的效果。 附图概述 图 1是本实用新型使用多个圆柱螺旋压缩弹簧的实施例的结 构示意图;
图 2是图 1的仰视图;
图 3是本实用新型使用多个圆锥形螺旋压缩弹簧的实施例的 结构示意图;
图 4是图 3的仰视图;
图 5是本实用新型使用一个圆柱螺旋压缩弹簧的实施例的结 构示意图;
图 6是图 5的仰视图;
图 7是本实用新型使用内、 外螺旋压缩弹簧的实施例的结构 示意图;
图 8是图 7的仰视图;
图 9是本实用新型使用板弹簧的一实施例的结构示意图; 图 10是图 9的仰视图;
图 1 1是本实用新型使用板弹簧的另一实施例的结构示意图; 图 12是图 1 1的仰视图;
图 13是本实用新型将弹簧封闭隐形的一实施例的结构示意 图;
图 14是图 13的仰视图;
图 15是本实用新型将弹簧封闭隐形的另一实施例的结构示意 图;
图 16是图 15的仰视图;
图 17是本实用新型的前鞋掌式弹簧助力鞋的一实施例的结构 示意图;
图 18是图 17的仰视图;
图 19是本实用新型的前鞋掌式弹簧助力鞋的另一实施例的结 构示意图;
图 20是图 19的仰视图;
图 21是本实用新型的弹性薄钢板层一实施例的俯视图; 图 22是图 21所示弹性薄钢板层的仰视图。 本实用新型的实施例 请参照图 1、 图 2, 本实用新型是一种弹簧式助力鞋, 它有鞋 帮 1、 鞋底, 鞋底的上层为基层 2, 基层 2的材质为皮革、 橡胶、 塑料或织物, 鞋底的下层为弹性薄钢板层 3, 鞋底的上层与下层以 胶粘接, 弹性薄钢板层 3的下面对应前鞋掌的位置焊接有多个圆 柱螺旋压缩弹簧 4,对应后鞋跟的位置焊接有多个圆柱螺旋压缩弹 簧 5。 圆柱螺旋压缩弹簧 4、 5可以是左螺旋弹簧也可以是右螺旋 弹簧。圆柱螺旋压缩弹簧 4、 5的底面上有用于增加摩擦力的花纹。
请参照图 3、 图 4, 弹性薄钢板层 3的下面对应前鞋掌的位置 焊接有多个圆锥形螺旋压缩弹簧 6,对应后鞋跟的位置焊接有多个 圆锥形螺旋压缩弹簧 7。 圆锥形螺旋压縮弹簧 6、 7可以是左螺旋 弹簧也可以是右螺旋。 圆锥形螺旋压缩弹簧 6、 7的底面上有用于 增加摩擦力的花纹。
请参照图 5、 图 6, 弹性薄钢板层 3的下面对应前鞋掌的位置 焊接有一个圆柱螺旋压缩弹簧 8,对应后鞋跟的位置悍接有一个圆 柱螺旋压缩弹簧 9。 圆柱螺旋压缩弹簧 8、 9可以是左螺旋弹簧也 可以是右螺旋弹簧。 圆柱螺旋压缩弹簧 8、 9的底面上有用于增加 摩擦力的花纹。
请参照图 7、 图 8, 鞋底的弹性薄钢板层 3的下面对应前鞋掌 的位置悍接有三个嵌套在一起的内、 外弹簧 10、 1 1、 12 ; 对应后 鞋跟的位置焊接有三个嵌套在一起的内、 外弹簧 13、 14、 15。 弹 簧 10、 1 1、 12、 13、 14、 15底面上有用于增加摩擦力的花纹。
请参照图 9、 图 10, 鞋底的弹性薄钢板层 3的下面对应前鞋掌 的位置焊接有一个后端部弯曲的板弹簧 16 ; 对应后鞋跟的位置焊 接有一个后端部弯曲的板弹簧 17。 板弹簧 16、 17的底面上有用于 增加摩擦力的花纹。 请参照图 1 1、 图 12, 鞋底弹性薄钢板层 3的下面对应后鞋跟 的位置焊接有一个后端部弯曲的板弹簧 18,该板弹簧 18的前端部 延伸到前鞋掌的位置。板弹簧 18底面上有用于增加摩擦力的花紋。
请参照图 13、 图 14 , 鞋底的下面有软弹性材料 19整体覆盖圆 柱螺旋压缩弹簧 4、 5。即将圆柱螺旋压缩弹簧 4、 5封闭隐形起来, 软弹性材料 19可以是低密度的橡胶也可以是其它材料, 从外观上 看不到弹簧, 实质是内置有弹簧, 其弹力达到所需效果。 软弹性 材料 19的底面上有用于增加摩擦力的花紋。
请参照图 15、 图 16, 鞋底的下面有软弹性材料 20整体覆盖圆 锥形螺旋压缩弹簧 6、 7。 即将圆锥形螺旋压缩弹簧 6、 7封闭隐形 起来, 软弹性材料 20可以是低密度的橡胶也可以是其它材料, 从 外观上看不到弹簧, 实质是内置有弹簧, 其弹力达到所需效果。 软弹性材料 20的底面上有用于增加摩擦力的花纹。
请参照图 17、 图 18, 鞋底的弹性薄钢板层 3的下面对应前鞋 掌的位置焊接有多个圆柱螺旋压缩弹簧 4 ;对应后鞋跟的位置安装 有鞋跟 21。
请参照图 19、 图 20, 鞋底的弹性薄钢板层 3的下面对应前鞋 掌的位置焊接有一个圆柱螺旋压縮弹簧 8 ;对应后鞋跟的位置安装 有鞋跟 21。
请参照图 21、 图 22, 弹性薄钢板层 3上有若干个通孔, 在本 实施例中, 对应于前鞋掌的位置的通孔为圆孔 22 , 对应于后鞋跟 位置的通孔也为圆孔 24, 前鞋掌和后鞋跟之间的位置的通孔为长 槽孔 23, 这些通孔 22、 23、 24的作用是减小弹性薄钢板层 3的内 应力和自重量。
弹性薄钢板层 3的上表面制有花紋 25, 下表面可以制有花紋
25也可以不制花紋, 花纹 25可以是由多个 "+"字形槽构成, 花紋 25的作用是增加弹性薄钢板层 3表面的粗糙度, 便于弹性薄钢板 层 3与基层 2中的皮革或橡胶或塑料或织物以胶粘接。
粘接所用的胶粘剂可以采用以下配方:
配方 1 : 氯丁混炼胶: 100份
二环已胺: 1份
2402酚醛树脂: 80份 乙酸乙脂: 汽油(2 : 1) 400份
在常温下固化用粘接。
配方 2 : 粘接型氯西橡胶: 100份
氧化锌: 5份
氧化镁: 4份
防老剂酊: 2份
配方 3 : 叔丁基酚醛树脂: 100份
水: 0.5- 1份
氧化镁: 4份
甲苯: 650份
配方 2混合后溶于配方 3中, 于 0.1 -0.3Mpa, 20 °C, 24h固化。 剪切强度(Mpa)橡胶、皮革 25,钢-橡胶 30,剥离强度(N/cm)、 钢-橡胶 100,用于鞋的基层 2中的皮革或橡胶或塑料或织物与鞋 的弹性薄钢板层 3之间的粘接。
本实用新型的弹簧式助力鞋的重量与普通鞋的重量相比, 在一 般情况下, 要重 300g-1200g; 根据鞋的大小不同、 鞋的功能的不 同、 穿鞋人体重的不同, 助力鞋的助力也不相同, 助力鞋的助力 (弹力) 通常在 5000g-80000g之间。
例如: 一个体重 (自身重量) l OOOOOg的人, 穿一双弹力 (助 力) 在 20000g的助力鞋, 他在行进中, 每步要减少 20000g左右 的体力消耗。
本实用新型的弹簧式助力鞋的问世将是人类鞋业史上的一次 革命, 它可广泛应用于生产劳动、 田径体育、 军队行军、 军队负 重行军、 军队急行军、 军队越野、 攀登行军、 杂技表演、 体育锻 炼、 沙漠行进等各个领域, 造福于人类。

Claims

权 利 要 求 书
1 . 一种弹簧式助力鞋, 包括有鞋帮、 鞋底, 其特征在于: 鞋 底的上层为基层, 基层的材质为皮革、 橡胶、 塑料或织物, 鞋底 的下层为弹性薄钢板层, 鞋底的上层与下层以胶粘接, 所述弹性 薄钢板层的下面固接有弹簧。
2. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层下面对应前鞋掌的位置焊接有至少一个螺旋压 縮弹簧, 对应后鞋跟的位置焊接有至少一个螺旋压縮弹簧。
3 . 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层的下面对应前鞋掌的位置焊接有若干个嵌套在 一起的内、 外弹簧; 对应后鞋跟的位置焊接有若干个嵌套在一起 的内、 外弹簧。
4. 如权利要求 2所述的弹簧式助力鞋, 其特征在于: 所述螺 旋压缩弹簧为圆柱螺旋压缩弹簧或圆锥形螺旋压缩弹簧。
5 . 如权利要求 2所述的弹簧式助力鞋, 其特征在于: 所述螺 旋压缩弹簧为圆柱螺旋压縮弹簧和圆锥形螺旋压缩弹簧。
6. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层的下面对应前鞋掌的位置焊接有一个端部弯曲 的板弹簧; 对应后鞋跟的位置焊接有一个端部弯曲的板弹簧。
7. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层的下面对应后鞋跟的位置焊接有一个端部弯曲 的板弹簧, 该板弹簧延伸到前鞋掌的位置。
8. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层的上表面有花紋, 该弹性薄钢板层上有若干个 通孔, 所述弹簧底面上有用于增加摩擦力的花纹。
9. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的下面有软弹性材料整体覆盖所述弹簧。
10. 如权利要求 1所述的弹簧式助力鞋, 其特征在于: 所述鞋 底的弹性薄钢板层的下面对应前鞋掌的位置固接有弹簧。
PCT/CN2004/001252 2004-11-03 2004-11-03 A spring shoe WO2006047908A1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2438580A (en) * 2006-05-30 2007-12-05 Eu Top Corp A shoe structure having springs in the base portion.
CN101791472A (zh) * 2010-03-12 2010-08-04 赵德东 步行滑动增速器
ITTO20090220A1 (it) * 2009-03-23 2010-09-24 Paolo Chiabotto Dispositivo per suola di scarpe atto ad aumentare l'elevazione dell'utente, e scarpe dotate di detto dispositivo

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US5235761A (en) * 1991-10-03 1993-08-17 Chang Che Yuan Multiple-purpose elastic shoe
CN2217907Y (zh) * 1995-03-22 1996-01-24 张文祥 弹力鞋底
US5743028A (en) * 1996-10-03 1998-04-28 Lombardino; Thomas D. Spring-air shock absorbtion and energy return device for shoes
CN2395576Y (zh) * 1999-11-18 2000-09-13 白光亭 弹力运动鞋
CN2580796Y (zh) * 2002-10-11 2003-10-22 王国华 具有弹性鞋底的鞋
CN2624671Y (zh) * 2003-06-12 2004-07-14 叶行 弹簧鞋
CN2624667Y (zh) * 2003-06-12 2004-07-14 黄绍金 新型运动鞋

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5235761A (en) * 1991-10-03 1993-08-17 Chang Che Yuan Multiple-purpose elastic shoe
CN2217907Y (zh) * 1995-03-22 1996-01-24 张文祥 弹力鞋底
US5743028A (en) * 1996-10-03 1998-04-28 Lombardino; Thomas D. Spring-air shock absorbtion and energy return device for shoes
CN2395576Y (zh) * 1999-11-18 2000-09-13 白光亭 弹力运动鞋
CN2580796Y (zh) * 2002-10-11 2003-10-22 王国华 具有弹性鞋底的鞋
CN2624671Y (zh) * 2003-06-12 2004-07-14 叶行 弹簧鞋
CN2624667Y (zh) * 2003-06-12 2004-07-14 黄绍金 新型运动鞋

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2438580A (en) * 2006-05-30 2007-12-05 Eu Top Corp A shoe structure having springs in the base portion.
ITTO20090220A1 (it) * 2009-03-23 2010-09-24 Paolo Chiabotto Dispositivo per suola di scarpe atto ad aumentare l'elevazione dell'utente, e scarpe dotate di detto dispositivo
EP2233023A1 (en) 2009-03-23 2010-09-29 Paolo Chiabotto A device for soles of shoes suitable for increasing the elevation of the user, and shoes provided with said device
CN101791472A (zh) * 2010-03-12 2010-08-04 赵德东 步行滑动增速器

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