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    • 1. 发明公开
    • Shock absorber for use in a shoe
    • Schuh mitStoßdämpfer
    • EP2929790A1
    • 2015-10-14
    • EP14164005.2
    • 2014-04-09
    • Arbesko-gruppen Ab
    • Geisler, Peter
    • A43B3/00A43B7/14A43B13/18
    • A43B3/0047A43B7/144A43B7/148A43B7/1485A43B13/181
    • The present invention relates to a shock absorber for use in a shoe.
      The shock absorber comprises an elastic body arranged with a plurality of tubular cavities axially extending into the elastic body from its under side and ending in the body.
      Thus, by providing the shock absorber according to embodiments of the present invention, it is possible to advantageously adapt to the moulding material forming the midsole of the shoe in which the shock absorber is arranged in that when injecting the material in the casting mould onto which the upper, insole and shock absorber is placed, the moulding material (typically being polyurethane) will push up into the tubular cavities and thus into the shock absorber. Hence, the moulding material hardening under the shock absorber in prior art manufacturing process will now enter the tubular cavities and thus avoid pushing the shock absorber upwards into the shoe.
    • 本发明涉及一种用于鞋中的减震器。 减震器包括弹性体,该弹性体布置有从其下侧轴向延伸到弹性体中并且终止于主体的多个管状空腔。 因此,通过提供根据本发明的实施例的减震器,可以有利地适应形成减震器布置的鞋的中底的模制材料,因为当将铸造模具中的材料注射到其上时 放置上部鞋垫和减震器,成型材料(通常为聚氨酯)将向上推入管状空腔中,从而进入减震器。 因此,现有技术的制造工艺中的减震器下方的成型材料硬化现在将进入管状空腔,从而避免将减震器向上推入鞋中。
    • 4. 发明公开
    • FASTENER ARRANGEMENT
    • 封闭装置
    • EP2734068A1
    • 2014-05-28
    • EP12729965.9
    • 2012-06-25
    • Arbesko-gruppen Ab
    • GEISLER, Peter
    • A41F1/00A44B19/32A43B5/00A43B7/12
    • A41F1/00A43C11/12A44B19/32
    • The present invention relates to a fastener arrangement, which comprises a fastener device (101), an outlet (106) arranged at a lower end of the fastener device, and a fluid- guiding portion (102) arranged to guide fluid having entered through the fastener device such that the fluid travels towards the lower end and is discharged via said outlet. The fastener device may be embodied in the form of e.g. a zip fastener, a hook-and- loop fastener or a button fastener. Further, the fastener may be arranged on a number of different garments such as for instance jackets, trousers, gloves, shoes, etc., or even bag and backpacks. Advantageously, the fluid-guiding portion prevents fluid, typically in the form of water, which possibly permeates the fastener device, from entering a garment on which the fastener arrangement is arranged. Further, gravitation will act on such fluid such that it subsequently is discharged via the outlet arranged at the lower end of the fastener device. Thus, further advantageously, water permeating the fastener device will be discharged further facilitating a wearer of the garment to stay dry.
    • 5. 发明公开
    • SHOCK ABSORBER FOR USE IN A SHOE
    • 用于鞋子的减震器
    • EP3195747A1
    • 2017-07-26
    • EP17159975.6
    • 2014-04-09
    • Arbesko-gruppen Ab
    • GEISLER, Peter
    • A43B3/00A43B7/14A43B13/18
    • A43B3/0047A43B7/144A43B7/148A43B7/1485A43B13/181
    • The present invention relates to a shock absorber (10,20) for use in a shoe (40).
      The shock absorber (10,20) comprises an elastic body (25,25) arranged with a plurality of tubular cavities (24) axially extending into the elastic body (25,25) from its under side and ending in the body.
      Thus, by providing the shock absorber (10,20) according to embodiments of the present invention, it is possible to advantageously adapt to the moulding material forming the midsole of the shoe (40) in which the shock absorber (10,20) is arranged in that when injecting the material in the casting mould onto which the upper, insole (30) and shock absorber (10,20) is placed, the moulding material (typically being polyurethane) will push up into the tubular cavities (24) and thus into the shock absorber (10,20). Hence, the moulding material hardening under the shock absorber (10,20) in prior art manufacturing process will now enter the tubular cavities (24) and thus avoid pushing the shock absorber (10,20) upwards into the shoe.
    • 本发明涉及一种用于鞋(40)的减震器(10,20)。 该减振器(10,20)包括弹性体(25,25),该弹性体布置有多个从其下侧轴向延伸到弹性体(25,25)中并终止于主体中的管状空腔(24)。 因此,通过提供根据本发明实施例的减震器(10,20),可以有利地适用于形成减震器(10,20)所在的鞋(40)的鞋中底的模制材料 布置成当将材料注入放置鞋面内底(30)和减震器(10,20)的铸模中时,模制材料(通常为聚氨酯)将向上推入管状空腔(24)中并且 从而进入减震器(10,20)。 因此,在现有技术制造过程中在减震器(10,20)下面的模制材料硬化现在将进入管状空腔(24)并且因此避免将减震器(10,20)向上推入鞋中。
    • 6. 发明公开
    • Safety toe cap
    • Zehenschutzkappe
    • EP2740379A1
    • 2014-06-11
    • EP12196272.4
    • 2012-12-10
    • Arbesko-gruppen Ab
    • Geisler, Peter
    • A43B23/08A43B7/34A43B7/32A43B23/07
    • A43B7/32A43B7/34A43B23/07A43B23/082
    • The present invention relates to a safety toe cap (10) for mounting in a shoe (20), which safety toe cap (10) is arranged with a fibrous coating (13,14) on at least one of its sides (11,12) to create an air gap between the safety toe cap and a section (21, 22) of the shoe (20) facing the fibrous coating (13,14).
      Advantageously, by providing the safety toe cap with a fibrous coating on at least one of its inside (12) or outside (11), an air gap is created between the safety toe cap (10) and a section (11,12) of the shoe (20) facing the coating. This has the effect that the shoe (20) is not in direct contact with the at least one side (11,12) of the safety toe cap being coated, thereby reducing transfer of cold from the shoe (20) to the toe cap (10) and ultimately to a wearer's foot. Instead, the air in the gap created will be warmed up and thus have a warming effect on the toe cap (10). Further advantageous is that the coating (13,14 ) is fibrous, hence convection of warmed-up air in the gap is prevented since the fibrous coating will cause a frictional force to act on the air mass in the gap thereby preventing downdraft of the warmed-up air.
    • 本发明涉及一种用于安装在鞋子(20)中的安全脚趾帽(10),该安全脚趾帽(10)在其至少一侧(11,12)上布置有纤维涂层(13,14) ),以在安全脚趾帽和面向纤维涂层(13,14)的鞋(20)的部分(21,22)之间产生气隙。 有利地,通过在其内部(12)或外部(11)中的至少一个上提供具有纤维涂层的安全鞋头帽,在安全脚趾帽(10)和(11)的部分(11,12)之间产生气隙 所述鞋(20)面向所述涂层。 这具有这样的效果:鞋(20)不与被涂覆的安全脚趾帽的至少一个侧面(11,12)直接接触,从而减少从鞋(20)到脚趾盖( 10),最终到达佩戴者的脚。 相反,产生的间隙中的空气将被加热,并因此对脚趾帽(10)具有变暖效果。 另外有利的是,涂层(13,14)是纤维状的,因此防止了加热空气在间隙中的对流,因为纤维涂层将导致摩擦力作用在间隙中的空气块上,从而防止被加热的空气 空气