CN106794372A - 立式桨板核心促动器 - Google Patents

立式桨板核心促动器 Download PDF

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CN106794372A
CN106794372A CN201580054162.6A CN201580054162A CN106794372A CN 106794372 A CN106794372 A CN 106794372A CN 201580054162 A CN201580054162 A CN 201580054162A CN 106794372 A CN106794372 A CN 106794372A
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阿兰·J·布诺夫曼
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Abstract

本发明可以提供一种立式桨板核心促动器以及使用方法。一个实施方式可包括倾斜平台、滑动踏板、两个凸起的支撑结构件、至少两个轴、两个旋转臂组件、具有轴和把手的两个桨构件、张紧器支撑结构件和两个张紧器。滑动踏板可以被构造成沿着倾斜平台移动。所述旋转臂组件能够通过轴可旋转地附接到倾斜平台的每侧上的凸起支撑结构件。张紧器可以连接到张紧器支撑结构件和旋转臂组件,从而施加阻止臂组件围绕由轴形成的轴线旋转的阻力。桨构件可被插入到臂组件中。使用者可以在踏板上取得平衡、抓握至少一个桨构件以及使所述踏板在所述倾斜平台上向上滑动。

Description

立式桨板核心促动器
背景技术
立式桨板冲浪-也被称为立式划桨,是流行的水上运动。立式桨板被用于许多娱乐活动-包括勘探水体、竞赛、冲浪、钓鱼、瑜伽和其他形式的锻炼。它的众多益处之一是能够使腹部核心肌肉极大地增强。
然而,为了参与立式划桨冲浪,必须利用水体。另外,不可控因素-例如天气-必须配合。这些负担限制了人享受立式划桨冲浪的益处的能力。消除这些负担将为更多的人们提供益处。
发明内容
本发明可以提供一种立式桨板核心促动器。一个实施方式可以包括倾斜平台、滑动踏板、两个凸起支撑结构件、至少两个轴、两个旋转臂组件、具有轴和把手的两个桨构件、张紧器支撑结构件和两个张紧器。滑动踏板可被构造成沿着倾斜平台移动。旋转臂组件能够通过轴可旋转地附接到倾斜平台两侧上的凸起的支撑结构件。张紧器可以将张紧器支撑结构件和旋转臂组件进行连接,从而施加阻止臂组件围绕由轴形成的轴线旋转的阻力。桨构件能够可调节地附接到臂组件。
附图说明
通过下面对示例性实施方式的详细描述,本发明的实施方式的优点将变得清楚。下面的详细描述应当被认为是与附图的结合。
示意图1示出了立式桨板核心促动器的示例性实施方式的立体图。
示意图2示出了立式桨板核心促动器的第二示例性实施方式的立体图。
示意图3示出了使用者位于立式桨板核心促动器的示例性实施方式上的立体图。
示意图4示出了使用者位于立式桨板核心促动器的示例性实施方式上的立体图。
示意图5示出了臂组件和桨构件的侧视图。
示意图6示出了臂组件和桨构件的俯视图。
具体实施方式
在随后的本发明的具体实施方式的描述和相关附图中公开了本发明的方面。在不偏离本发明的精神或范围的情况下,可以设计出备选实施方式。另外,本发明的示例性实施方式的公知元件将不再详细描述或者将会被省略,以便不妨碍对本发明的相关细节的理解。进一步地,为了便于理解本发明的描述,下面讨论本文使用的技术术语。
如在此使用的,词语“示例性”意指“用作示例、实例或例证”。在此描述的实施方式并非用于限制,而仅是示例性的。应当理解的是,描述的实施方式并非必须理解为相比其他实施型式是优选的或有利的。此外,术语“本发明的实施方式”、“实施方式”或者“本发明”不需要本发明的所有实施方式都包括论述的特征、优点或运行模式。
根据至少一个示例性实施方式,可以提供一种立式桨板核心促动器装置。
总体上参照图1,立式桨板核心促动器的示例性实施方式可包括倾斜平台110、滑动踏板120、两个凸起支撑结构件130、至少两个轴138、两个旋转臂组件140、具有轴152和把手154的两个踏板构件150、张紧器支撑结构件160和两个张紧器162。
倾斜平台110可以是大体上矩形的并且可以构造为形成从后边缘112到前边缘114的斜面。在示例性实施方式中,倾斜平台110可以为大约28英寸到36英寸宽并且大约48英寸长。如所属领域技术人员应当理解的,倾斜平台110的大小和形状能够以多种方式设置。倾斜平台110可以用作促动器100的独立支撑结构件或者备选地可以构造在独立框架170内(在图2-4中示出)。倾斜平台110能够是固定的或可调节的。在固定的实施方式中,倾斜平台110可以是大体上楔形的并且可具有固定的斜面。在可调节的实施方式中,倾斜平台110的斜面可被构造成升高或降低。如所属领域技术人员应当理解的是,用于使斜面升高或降低的机构可包括多个机构,例如液压件、调节销、可调节腿或者仅在倾斜平台110下方添加或移除材料。在倾斜平台110用作独立支撑结构件的示例性实施方式中,倾斜平台110可具有凸起止挡116,所述凸起止挡116可以沿着后边缘112设置。止挡116可以构造成使踏板120保持在倾斜平台110上。在示例性实施方式中,止挡116可以包括用于接触踏板120的橡胶缓冲件。沿着前边缘114和侧壁可额外地设置止动件以便将踏板120保持在倾斜平台110上。这些保持器可被添加到平台110的轨道上或者可以形成踏板120的轨道。
踏板120可以构造成沿着倾斜平台110的顶部表面118滑动。踏板120的底部表面和倾斜平台110的顶部表面可以包括减少摩擦的材料,从而允许踏板120在倾斜平台110上自由地滑动。备选地,踏板120可以包括轮122,所述轮122构造成便于踏板120在倾斜平台110上滑动。在倾斜平台110上可以至少设置一条轨道以便引导踏板120或轮122。在又进一步的实施方式中,踏板120可以构造成沿着设置在框架170中的轨道移动。在踏板120沿着框架170中的轨道移动的实施方式中,可能就不需要倾斜平台110了。
重力可以使滑动踏板120的后边缘在静止位置接触止挡116。在示例性实施方式中,滑动踏板120可以为大约24英寸宽并且大约18到大约20英寸长。轨道可以允许滑动踏板120沿着向前或向后方向移动大约12英寸到大约24英寸。
凸起的支撑结构件130可以包含在独立框架170中或者可以设置在倾斜平台110上。在示例性实施方式中,凸起的支撑结构件130可以为大约48英寸高并且可以定位在倾斜平台110的距离边缘112的长度的三分之二处。如图1所示,凸起的支撑结构件130可以从倾斜平台110的顶部表面凸出。在这种实施方式中,倾斜平台110和凸起的支撑结构件130的大小和结构可被设置成不妨碍踏板120的移动。备选地,凸起的支撑结构件130可被附接到平台110的侧部。凸起的支撑结构件130可以用来支撑旋转臂组件140。臂组件140能够可旋转地联接到支撑结构件130。在示例性实施方式中,臂组件140和支撑结构件130能够通过轴138可旋转地联接。轴138可被插入穿过支撑结构件130和臂组件140二者中的轴孔,并且通过螺母或者附接到其远端的类似紧固装置进行紧固。备选地,轴138可被附接在支撑结构件130或臂组件140的静止位置。轴138能够随后被可旋转地插入到设置在支撑结构件130或臂组件140中的另一个的轴孔中。螺母或者类似紧固装置可以随后被附接到轴138的远端,以便可旋转地联接支撑结构件130和臂组件140。考虑到支撑结构件130可被附接到平台110或独立框架,可旋转联接能够允许臂组件140相对于支撑结构件130旋转。
轴138、支撑结构件130和臂组件140的朝向可以使得臂组件140围绕斜轴线旋转。更具体地,从使用者的角度,轴138可以侧向向外延伸,从起始点向前退出。在示例性实施方式中,角度可以为大约20度。轴138还可以沿着竖直角度延伸,从而可以更好地退出。在示例性实施方式中,竖直角度也可以为大约20度。因此,轴可以形成旋转的斜轴线,以使得当用作下面描述的情况时臂组件140向下并且向外旋转。支撑结构件130可被成型为便于臂组件140的轴线旋转。在某些备选实施方式中,薄垫片192也可被用来提供可旋转地附接臂组件140所期望的角度。
臂组件140可被构造成支撑踏板构件150。踏板构件150可以包括大体上圆柱形的轴部分152和把手部分154。在某些示例性实施方式中,把手部分154可以是大体上平行于旋转轴线定位的长形构件。在示例性实施方式中,踏板构件150的模拟高度能够通过使轴部分152穿过臂组件140来进行调节。轴部分能够通过一组螺钉组件或调节销组件来可调节地紧固在臂组件140中,其中轴部分152可具有垂直于其纵向轴线设置的一系列孔,所述的一系列孔可被构造成与臂组件140中的对应孔或间隙并且接纳调节销。
促动器100可以包括接近促动器100/平台100的前边缘114设置的张紧器支撑结构件160。在某些示例性实施方式中,张紧器支撑结构件可被包含在框架170中。张紧器162可以从张紧器支撑结构件160延伸到臂组件140,从而施加力到臂组件140上。该力可以将臂组件140以期望朝向保持安置并且可以在使用者试图操纵臂组件140时提供阻力。张紧器支撑结构件160可以高于臂组件140。这就可以允许张紧器162将臂组件140保持在期望朝向。在备选示例性实施方式中,张紧器162可以紧固到张紧器支撑结构件或者臂组件140后面的框架170上的位置。例如,张紧器162可以使水平构件178的顶部边缘在臂组件140后面与可旋转臂组件140的后部高处的方面相连接。在这种实施方式中,张紧器162可以在轴138上方移动,从而在臂组件140上提供向上的旋转张紧。如所属领域技术人员应当理解的是,张紧器162可以包括弹簧、皮筋、滑轮系统、液压致动张紧器等。在示例性实施方式中,张紧器162可以从中心点沿着促动器100的前边缘延伸。这可有助于沿着臂组件的旋转斜轴线平滑张紧。张紧器162能够以所属领域技术人员理解的多种方式-例如焊接或者使用包括螺栓、螺钉、钉子、图钉、钩、带、绳子等的紧固件来紧固到臂组件140和框架170或者张紧器支撑结构件160。
参照示意图2-4,可以设置独立框架170。框架170可以包含止挡116、凸起的支撑结构件130和张紧器支撑结构件160。在示例性实施方式中,框架170可以包括大体上箱形状的基体171,所述基体171具有后构件172和前构件174。倾斜平台110可以设置在基部171内,或者用于踏板120的倾斜轨道192可以沿着基部171的侧构件设置。后构件172可以构造成具有与止挡116大体上类似的功能。在某些示例性实施方式中,前构件174可以构造成具有与用于踏板120的止挡相同的功能。在备选的示例性实施方式中,踏板120可以不在框架170的全长范围移动,从而防止踏板120与前构件174相互作用。框架170可以额外地包括从大体上箱形基部171的拐角向上凸出的后竖直支撑构件176和前竖直支撑构件180。前竖直支撑构件180可以高于后竖直支撑构件176。水平支撑构件178可以使后竖直支撑构件176的顶部部分与邻近的前竖直支撑构件180。在示例性实施方式中,水平支撑构件178能够在竖直朝向上调节以便适应各种使用者高度。臂组件140能够可旋转地紧固到水平支撑构件178。薄垫片192可被用于形成轴138的期望朝向以便为臂组件140提供适当的旋转轴线。水平的支撑构件182可以连接前竖直支撑构件180的顶部。水平支撑构件182可以进一步用作张紧器支撑结构件。额外支撑臂186可以设置用来为框架170供给额外强度。在某些示例性实施方式中,如所属领域技术人员应当理解的是,可以操纵额外支撑臂186以便调节平台110的斜面或轨道192。在这种实施方式中,支撑臂186可以设置至少一个用于支撑平台110的至少一个梯级。支撑臂186可以通过调节至少一个梯级或者通过将平台110支撑在不同梯级上来调整平台110的斜面。
如示意图5-6所示,臂组件140可以为大体上V形。臂组件140可以具有邻近其顶点设置的至少一个轴空腔。至少一个轴空腔可以垂直于V形表面设置。在示例性实施方式中,可以从V形顶点朝向V形的中点成直线定位有多个轴孔,以便能够调节可旋转臂的旋转半径和高度。在示例性实施方式中,臂组件140可以具有包含在V形远端中的桨轴容纳孔。轴容纳孔可被构造成使得当插入桨轴152时,桨轴152连接V形的远端,从而形成三角形。在某些备选实施方式中,因为具有设置在远离轴138的点处的桨轴容纳支架,臂组件140可能已经为三角形了。如所属领域技术人员应当理解的是,在不影响装置的功能的情况下可以采取臂组件140的形状和大小的其他改变。如上面论述的,在示例性实施方式中,可以调节轴构件152的高度。张紧器162可以接近前端对置轴138紧固到臂组件140。可以通过允许臂组件自由地悬挂来确定前端。在示例性实施方式中,重力可迫使V形倒转过来悬挂。因此,前端对置轴138将是V形构件最接近于促动器100的前边缘114的端部。当连接张紧器162时,可以施加力到臂组件140上以使得桨构件150保持在竖直朝向。可以插入桨构件150以使得悬挂构件154在顶部,从而使桨构件150处于竖直朝向。
促动器100的示例性实施方式能够以如下方式运行。使用者可以将倾斜平台110的斜面或者框架170中的踏板120的轨道调节到期望水平。使用者还可以将张紧器162的张紧调节到期望水平。使用者可以随后站在滑动踏板120上的平衡位置处。在示例性平衡位置处,使用者可以将他或她的脚大致定位成相距肩宽。脚可以位于沿着踏板120的长度大致相同深度处,或者备选地,一只脚可以在更靠前或靠后的位置。站立位置的改变可被用于锻炼不同的肌肉。使用者可以使用上手抓握方式来抓握具有对置手柄的把手154。例如,使用者可以使用使用者的右手来抓握在核心促动器100的左侧的把手154。使用者可以随后使用使用者的另一只手来抓握与抓握把手154相同侧的轴构件152。轴构件152可以在舒服的高度进行抓握。在示例性实施方式中,这可以为在把手154下方大约18到大约24英寸。使用者可以随后使踏板120沿着轨道或平台110向上滑动。这可以主要利用使用者的腹部肌肉。由使用者施加在把手154和轴152上的压力可以使把手组件140沿着斜轴线向下、向后和向外旋转。通过来自张紧器162的阻力,臂组件140可以旋转一圈的大约1/8到大约1/4。这可以利用使用者的三角肌和背阔肌。使用者可以使踏板120沿着斜面滑动大约12到大约24英寸。一旦踏板120停止其向前的进程,那么使用者就可以允许促动器100通过重力和张紧器162的力的帮助来返回到其开始位置。该过程可以重复执行,并且可以使用任一侧(臂/把手组件)来执行。
可以构想功能的变化。例如,站立位置和朝向的改变可以将锻炼重点聚集在不同的肌肉群。在至少一个变化中,使用者可以将两个前臂放置在臂组件140的顶部边缘上或者用每只对应的手来抓握(用右手抓右把手等)把手154。使用者可以随后使踏板120沿着斜面滑动,从而在右手抓握左把手154时不使上体扭转。
前面的描述和附图说明了本发明的原理、优选实施方式和运行模式。然而,本发明不应被认为是受限于上面论述的具体实施方式。所属领域技术人员应当理解上面论述的实施方式的额外变化。
因此,上述实施方式应当被认为是说明性的而非限制性的。相应地,应当理解的是,在不偏离由下面的权利要求限定的本发明的范围的情况下可以做出那些实施方式的变化。

Claims (9)

1.一种立式桨板核心促动器装置,包括:
踏板,所述踏板被构造成沿着倾斜表面、轨道或者减小摩擦材料地滑动从而便于使踏板滑动;
凸起的支撑结构件;
至少一个臂组件,所述至少一个臂组件被可旋转地紧固到所述凸起的支撑结构件;
至少一个张紧器,所述至少一个张紧器从所述至少一个臂组件延伸到张紧器支撑结构件;以及
附接到所述臂组件的至少一个桨构件,其中所述桨构件进一步包括轴部分和把手部分。
2.根据权利要求1所述的装置,其中所述凸起的支撑结构件和张紧器支撑结构件包含在外框架中。
3.根据权利要求1所述的装置,进一步包括至少一个轮以便帮助所述踏板沿着倾斜表面或轨道中的一个滑动。
4.根据权利要求1所述的装置,进一步包括构造成将所述踏板保持在所述倾斜表面或轨道上的止挡,其中所述托板由橡胶制成。
5.根据权利要求1所述的装置,其中斜面的角度是可调节的。
6.根据权利要求1所述的装置,其中所述至少一个踏板构件的相对于所述至少一个臂组件的高度是可调节的。
7.根据权利要求1所述的装置,其中所述至少一个臂组件被构造成沿着倾斜旋转轴线旋转。
8.一种锻炼方法,包括:
提供立式桨板核心促动器装置,其中所述装置包括被构造成沿着倾斜表面或轨道中的一个滑动的踏板、凸起的支撑结构件、可旋转地紧固到所述凸起支撑结构件的至少一个臂组件、从所述至少一个臂组件延伸到张紧器支撑结构件的至少一个张紧器、以及附接到所述臂组件的至少一个桨构件,其中所述桨构件进一步包括轴部分和把手部分;
大体上面向前且两脚相距大约与肩同宽地站立在所述踏板上;
用一只手越过其身体来抓握所述装置的在其身体对置侧的至少一个桨构件的把手部分;
用空闲的手在所述把手构件下方抓握所述轴构件;
使所述踏板在所述倾斜平台或轨道上向上滑动;
允许重力使所述踏板返回到静止位置;
同时允许所述至少一个张紧器使所述至少一个臂组件和桨组件返回到静止朝向;以及
按照期望进行重复。
9.一种锻炼方法,包括:
提供立式桨板核心促动器装置,其中所述装置包括被构造成沿着倾斜表面或轨道中的一个滑动的踏板、凸起的支撑结构件、可旋转地紧固到所述凸起支撑结构件的两个臂组件、从所述两个臂组件中的每个延伸到张紧器支撑结构件的张紧器以及附接到每个臂组件的桨构件,其中所述桨构件进一步包括轴部分和把手部分;
大体上面向前且两脚相距大约与肩同宽地站立在所述踏板上;
向前伸出两只手,使得前臂分别沿着每个臂组件的顶部表面放置;
分别用每只手抓握所述把手部分;
使所述踏板在所述倾斜平台或轨道上向上滑动;
允许重力使所述踏板返回到静止位置;
同时允许所述张紧器使所述臂组件和桨组件返回到静止位置;以及
按照期望进行重复。
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EP3177374A1 (en) 2017-06-14
CA2957016C (en) 2022-12-13
WO2016022352A1 (en) 2016-02-11
US20160038782A1 (en) 2016-02-11
ES2729494T3 (es) 2019-11-04
CN106794372B (zh) 2019-03-15
AU2015298560B2 (en) 2020-08-27
CA2957016A1 (en) 2016-02-11
EP3177374A4 (en) 2018-03-21

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