CN105498156A - Self-generating method and exercise treadmill capable of self-generating according to the method - Google Patents
Self-generating method and exercise treadmill capable of self-generating according to the method Download PDFInfo
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Abstract
Description
技术领域 technical field
本发明为一种自发电方法及依该方法可自发电的运动跑步机,尤其是指一种利用人力踩踏于机台上位在虚拟中轴线所活动枢设的跑步框座上,该跑步框座由虚拟中轴线划分为左、右区块,让使用者连续性步行或跑步式踩踏于跑步框座的左、右区块时会呈活动式左、右摆动而产生位能差,进而连动惯性机构,使惯性机构产生单方向的惯性旋转动作,而能带动发电机产生电能的方法及其运动跑步机。 The present invention relates to a self-generating method and a sports treadmill capable of self-generating according to the method, in particular to a treadmill that utilizes manpower to step on a running frame that is movable and pivoted on a virtual central axis on the machine platform. It is divided into left and right blocks by the virtual central axis, allowing users to continuously walk or run when stepping on the left and right blocks of the running frame, it will swing left and right in a movable manner to generate a potential energy difference, and then move The inertial mechanism makes the inertial mechanism produce a unidirectional inertial rotation action, and can drive a generator to generate electric energy and a running treadmill thereof.
背景技术 Background technique
对于现今繁忙的上班族而言,常因时间不足而无法到户外进行运动,因此导致个人的身体欠佳或是体力不足。故目前市面上所推出的各种健身器材,即满足了人们无需到户外即可进行适当的体能运动。健身器材主要的功能在于提供人员可以进行运动使用,且根据健身器材功能性的不同而可以供人体的各种部位都可得到充分的运动。例如以健身脚踏车或健身跑步机而言,即可供人体的脚部以踩脚踏车或跑步的方式而达到运动健身效果。而目前的健身器材根据其体积可概略分为大型及小型两种态样,且健身器材根据操作或功能上的需求也已有结合相关电子设施的需求,例如健身跑步机内部可设置有马达以供提供人员跑步时使用,亦或健身器材也可整合有显示面板,以供显示人员在此健身器材所进行相关运动的讯息。因此基于上述健身器材已有结合相关电子设施的考虑,故必须对其提供电源以供这些电子设施使用,而以目前提供电源给健身器材主要有如下几种方式:对大型健身器材而言是直接提供市电,而对小型健身器材而言则是可以透过干电池来提供电源。然而对于健身器材而言,其在供人员操作使用时会产生动能,而此动能目前并未妥善利用,实为可惜,是以,本发明为一种自发电方法及依该方法可自发电的运动跑步机,尤其是指一种利用人力踩踏于机台上位在虚拟中轴线所活动枢设的跑步框座上,该跑步框座由虚拟中轴线划分为左、右区块,让使用者连续性步行或跑步式踩踏于跑步框座的左、右区块时会呈活动式左、右摆动而产生位能差,进而连动惯性机构,使惯性机构产生单方向的惯性旋转动作,而能带动发电机产生电能的方法及其运动跑步机。 For today's busy office workers, it is often impossible to go outdoors for exercise due to lack of time, which leads to poor health or lack of physical strength. Therefore, the various body-building equipments launched on the market at present satisfy the need for people to carry out proper physical exercise without going outdoors. The main function of the fitness equipment is to provide people with the ability to exercise, and according to the different functions of the fitness equipment, various parts of the human body can be fully exercised. For example, in the case of an exercise bike or a fitness treadmill, the feet of the human body can be used to exercise and exercise by cycling or running. The current fitness equipment can be roughly divided into two types: large and small according to its size, and fitness equipment has also been combined with related electronic facilities according to operational or functional requirements. For example, a motor can be installed inside a fitness treadmill. It can be used by the person running, or the fitness equipment can also be integrated with a display panel for displaying information about the exercise performed by the person on the fitness equipment. Therefore, based on the consideration of the above-mentioned fitness equipment in combination with relevant electronic facilities, it is necessary to provide power to it for use by these electronic facilities. At present, there are mainly the following ways to provide power to the fitness equipment: For large-scale fitness equipment, it is directly Provide mains power, and for small fitness equipment, it can provide power through dry batteries. However, for fitness equipment, it will generate kinetic energy when it is operated by personnel, and this kinetic energy has not been properly utilized at present. Sports treadmill, in particular, refers to a kind of treadmill that uses manpower to step on the running frame that is movable and pivoted on the upper position of the machine platform on the virtual central axis. The running frame is divided into left and right blocks by the virtual central axis, allowing the user to continuously When stepping on the left and right blocks of the running frame seat in a walking or running manner, it will swing left and right in a movable manner to generate a potential energy difference, and then link the inertial mechanism to make the inertial mechanism produce a unidirectional inertial rotation action, which can A method for driving a generator to generate electric energy and a running treadmill thereof.
发明内容 Contents of the invention
本发明的目的在于提供一种自发电方法及依该方法可自发电的运动跑步机,使用者能运动强身更同时可利用自力跑步产生电能,让使用者因运动还能同时节能而增加其运动的意愿,也使跑步机所需要的市电量降低以减少用电成本,达到健身、节能等功效。 The purpose of the present invention is to provide a self-generating method and a self-generating exercise treadmill according to the method. The user can exercise and strengthen his body while using self-powered running to generate electric energy, so that the user can increase his exercise by saving energy while exercising. The willingness of the treadmill also reduces the electricity required by the treadmill to reduce the cost of electricity and achieve the effects of fitness and energy saving.
为达上述目的,本发明的解决方案是: For reaching above-mentioned purpose, solution of the present invention is:
一种自发电方法,该方法利用人力踩踏于机台上位在虚拟中轴线所活动枢设的跑步框座上,该跑步框座由虚拟中轴线划分为左、右区块,让使用者连续性步行或跑步式踩踏于跑步框座的左、右区块时会呈活动式左、右摆动而产生位能差,进而连动一惯性机构,使惯性机构产生单方向的惯性旋转动作,而能带动发电机产生电能,使用者不仅能运动强身更同时可利用自力跑步产生电能,让使用者因运动还能同时节能而增加其运动的意愿,也使跑步机所需要的市电量降低以减少用电成本,达到健身、节能等功效。 A self-generating method. This method utilizes manpower to step on the running frame seat on the virtual central axis of the machine platform. The running frame is divided into left and right blocks by the virtual central axis, allowing users to continuously When walking or running stepping on the left and right blocks of the running frame, it will swing left and right in a movable manner to generate a potential energy difference, and then link an inertial mechanism to make the inertial mechanism produce a unidirectional inertial rotation action, and can Drive the generator to generate electric energy, users can not only exercise and strengthen themselves, but also use self-powered running to generate electric energy, so that users can increase their willingness to exercise due to energy saving while exercising, and also reduce the electricity required by the treadmill to reduce power consumption. Electricity cost, to achieve fitness, energy saving and other effects.
一种依上述自发电方法可自发电的运动跑步机,其特征在于:包含有一机台,该机台前、后端于一虚拟中轴在线设有两相间隔的枢接座,其可活动式枢接一跑步框座,该跑步框座上具有一供使用者踩踏的回旋跑步带,而一惯性机构可与跑步框座相连结,当使用者连续性步行或跑步式踩踏时,其跑步框座呈活动式左、右摆动而产生位能差,进而连动惯性机构,使惯性机构产生单方向的惯性旋转动作,而能带动发电机产生电能。 A sports treadmill capable of self-generating power according to the above-mentioned self-generating method is characterized in that it includes a machine platform, and the front and rear ends of the machine platform are provided with two spaced pivot joints on a virtual central axis line, which can move A running frame is pivotally connected to a running frame, and the running frame has a revolving running belt for the user to step on, and an inertial mechanism can be connected with the running frame, when the user continuously walks or runs, the running The frame seat is movable left and right to generate a potential energy difference, and then the inertial mechanism is linked to make the inertial mechanism produce a unidirectional inertial rotation action, which can drive the generator to generate electric energy.
进一步,该机台前、后端于一虚拟中轴在线设有两相间隔的具有轴孔的前枢接座及后枢接座。 Further, the front and rear ends of the machine are provided with two spaced apart front pivotal seats and rear pivotal seats with shaft holes on a virtual central axis.
进一步,该跑步框座上设置有一可供使用者踩踏或跑步动作的支撑组件及一马达,该支撑组件上下方位置设有前述回旋跑步带且该跑步带套设于前轴管及后轴管上,该跑步带由马达借着一皮带带动前轴管而让跑步带进行回旋,而跑步框座底端设置有两相间隔的前横杆及后横杆,该前横杆及后横杆中央处分别延伸出一轴杆,其可分别枢接于前枢接座的轴孔及后枢接座的轴孔中,使跑步框座以虚拟中轴线为旋转轴点,且跑步框座由虚拟中轴线划分为左、右区块,一惯性机构可与跑步框座相连结。 Further, the running frame seat is provided with a support assembly and a motor for the user to step on or run, and the above-mentioned revolving running belt is arranged at the upper and lower positions of the support assembly, and the running belt is sleeved on the front axle tube and the rear axle tube Above, the running belt is driven by a motor through a belt to drive the front shaft tube to make the running belt rotate, and the bottom end of the running frame is provided with two spaced front and rear cross bars, the front and rear cross bars A shaft extends from the center respectively, which can be pivotally connected to the shaft hole of the front pivot seat and the shaft hole of the rear pivot seat respectively, so that the running frame base takes the virtual central axis as the rotation axis point, and the running frame seat is formed by The virtual central axis is divided into left and right blocks, and an inertial mechanism can be connected with the running frame.
进一步,该跑步框座左、右端设置有一左枢接座及一右枢接座。 Further, the left and right ends of the running frame seat are provided with a left pivot seat and a right pivot seat.
进一步,该惯性机构包含有一惯性轮,其设置于机台上所设的一支架上,该惯性轮所延伸的中心轴杆贯穿于支架上,并同轴心枢接一内含有单向轴承的滚轮及一内含有单向轴承的齿型皮带轮,而机台上更轴设有多个滚轮,其中一滚轮上枢接有另一转向相同的滚轮,而该滚轮借由一皮带与前述惯性轮的中心轴杆上枢接的滚轮相套围,一时规皮带,其两末端分别具有一轴孔,其中一轴孔套设于前述跑步框座左端的左枢接座,时规皮带并套设于滚轮,再S型回绕过齿型皮带轮及滚轮,最后时规皮带末端轴孔再套设于跑步框座右端的右枢接座。 Further, the inertial mechanism includes an inertia wheel, which is arranged on a bracket provided on the machine table. The central shaft extended by the inertia wheel passes through the bracket, and is pivotally connected with a shaft containing a one-way bearing. Roller and a toothed pulley with a one-way bearing inside, and there are multiple rollers on the shaft of the machine table, one of which is pivotally connected to another roller with the same direction of rotation, and the roller is connected to the aforementioned inertia wheel by a belt The rollers pivotally connected on the central shaft of the center shaft are surrounded by a timing belt, and its two ends respectively have an axle hole, one of which is sleeved on the left pivot seat at the left end of the aforementioned running frame seat, and the timing belt is also sleeved On the roller, then S-shaped back around the toothed pulley and the roller, and finally the shaft hole at the end of the timing belt is sleeved on the right pivot seat at the right end of the running frame.
进一步,该惯性机构包含有一带动板,该带动板具有一中空部,其带动板的一侧面上边缘装设有一上齿条,而另一侧面下边缘装设有一下齿条,机台上设置有一支架,该支架一侧可枢接一惯性轮,该惯性轮的中心轴杆贯穿于支架上,而惯性轮另侧的中心轴杆设有两组内含有单向轴承的齿轮,其可位在带动板的中空部之间且两齿轮可分别与带动板上的上、下齿条啮合。 Further, the inertia mechanism includes a driving plate, which has a hollow portion, an upper rack is installed on one side of the driving plate, and a lower rack is installed on the lower edge of the other side. There is a bracket, one side of the bracket can be pivotally connected with an inertia wheel, the center shaft of the inertia wheel runs through the bracket, and the center shaft on the other side of the inertia wheel is provided with two groups of gears containing one-way bearings, which can be positioned Between the hollow parts of the driving plates, the two gears can respectively mesh with the upper and lower racks on the driving plates.
进一步,该跑步框座前端装设有一定位柱,其可与惯性机构的带动板所设的定位孔相连结。 Further, the front end of the running frame seat is equipped with a positioning column, which can be connected with the positioning hole provided by the driving plate of the inertial mechanism.
本发明提供一种自发电方法及依该方法可自发电的运动跑步机,该方法利用人力踩踏于机台上位在虚拟中轴线所活动枢设的跑步框座上,跑步框座由虚拟中轴线划分为左、右区块,让使用者连续性步行或跑步式踩踏于跑步框座的左、右区块时会呈活动式左、右摆动而产生位能差,进而连动惯性机构,使惯性机构产生单方向的惯性旋转动作,而能带动发电机产生电能,使用者不仅能运动强身更同时可利用自力跑步产生电能,让使用者因运动还能同时节能而增加其运动的意愿,也使跑步机所需要的市电量降低以减少用电成本,达到健身、节能等功效。 The present invention provides a self-generating method and a sports treadmill capable of self-generating according to the method. In the method, manpower is used to step on the running frame on the machine platform, which is movable and pivoted on the virtual central axis. The running frame is defined by the virtual central axis. Divided into left and right blocks, allowing users to walk or run continuously when stepping on the left and right blocks of the running frame, it will swing left and right in a movable manner to generate a potential energy difference, and then link the inertial mechanism to make the The inertial mechanism produces a unidirectional inertial rotation movement, which can drive the generator to generate electric energy. Users can not only exercise and strengthen their bodies, but also use self-powered running to generate electric energy, so that users can increase their willingness to exercise due to energy saving while exercising. Reduce the city power required by the treadmill to reduce electricity costs, and achieve fitness, energy saving and other effects.
附图说明 Description of drawings
图1为本发明可自发电的运动跑步机立体图; Fig. 1 is a three-dimensional view of the sports treadmill capable of self-generating power according to the present invention;
图2为本发明的局部放大立体图; Fig. 2 is a partially enlarged perspective view of the present invention;
图3为本发明的立体分解图; Fig. 3 is the three-dimensional exploded view of the present invention;
图4为本发明的惯性机构分解图; Fig. 4 is an exploded view of the inertial mechanism of the present invention;
图5为本发明的立体透视图; Fig. 5 is a three-dimensional perspective view of the present invention;
图6为本发明的惯性机构示意图; Fig. 6 is a schematic diagram of an inertial mechanism of the present invention;
图7为本发明的另一可自发电的运动跑步机立体图; Fig. 7 is another three-dimensional view of a self-generating exercise treadmill of the present invention;
图8为本发明的另一局部放大立体分解图。 Fig. 8 is another partially enlarged perspective exploded view of the present invention.
【符号说明】1机台11前枢接座 [Description of Symbols] 1 Machine 11 Front Pivot Seat
110轴孔12后枢接座 110 shaft hole 12 rear pivot seat
120轴孔13支架 120 shaft holes 13 brackets
2跑步框座21前横杆 2 running frame seat 21 front cross bar
211轴杆22后横杆 211 axle rod 22 rear cross bar
221轴杆23支撑组件24跑步带241前轴管242后轴管25虚拟中轴线 221 shaft rod 23 support assembly 24 running belt 241 front shaft tube 242 rear shaft tube 25 virtual central axis
251左区块252右区块 251 left block 252 right block
26左枢接座27右枢接座 26 Left Pivot Seat 27 Right Pivot Seat
28定位柱31马达32皮带33发电机 28 positioning column 31 motor 32 belt 33 generator
4惯性机构41时规皮带 4 inertia mechanism 41 timing belt
411、412轴孔42滚轮 411, 412 shaft hole 42 roller
43齿型皮带轮44、45、46滚轮 43 toothed pulley 44, 45, 46 rollers
47皮带48惯性轮480中心轴杆5惯性机构 47 belts 48 inertial wheels 480 central shaft rods 5 inertial mechanisms
51带动板510中空部 51 driving plate 510 hollow part
511定位孔52上齿条53下齿条54、55齿轮 511 positioning hole 52 upper rack 53 lower rack 54, 55 gears
56惯性轮560中心轴杆。 56 inertial wheels 560 central shaft rods.
具体实施方式 detailed description
为了进一步解释本发明的技术方案,下面通过具体实施例来对本发明进行详细阐述。 In order to further explain the technical solution of the present invention, the present invention will be described in detail below through specific examples.
为使更详细了解本发明的结构,请参阅图1至图2所示,本发明提供一种自发电方法及依该方法可自发电的运动跑步机,该方法利用人力踩踏于机台1上位在虚拟中轴线25所活动枢设的跑步框座2上,该跑步框座2由虚拟中轴线25划分为左、右区块251、252,让使用者连续性步行或跑步式踩踏于跑步框座2的左、右区块251、252时会呈活动式左、右摆动而产生位能差,进而连动惯性机构4,使惯性机构4产生单方向的惯性旋转动作,而能带动发电机33产生电能,使用者不仅能运动强身更同时可利用自力跑步产生电能,让使用者因运动还能同时节能而增加其运动的意愿,也使跑步机所需要的市电量降低以减少用电成本,达到健身、节能等功效。 In order to understand the structure of the present invention in more detail, please refer to Fig. 1 to Fig. 2, the present invention provides a kind of self-generating method and a sports treadmill capable of self-generating according to this method. On the running frame base 2 pivoted by the virtual central axis 25, the running frame base 2 is divided into left and right blocks 251 and 252 by the virtual central axis 25, allowing users to continuously walk or run on the running frame The left and right blocks 251 and 252 of the seat 2 will be in a movable left and right swing to generate a potential energy difference, and then link the inertial mechanism 4 to make the inertial mechanism 4 produce a unidirectional inertial rotation action, which can drive the generator 33 generates electric energy, users can not only exercise and strengthen themselves, but also use self-powered running to generate electric energy, so that users can increase their willingness to exercise due to energy saving while exercising, and also reduce the electricity required by the treadmill to reduce electricity costs , to achieve fitness, energy saving and other effects.
依该方法可自发电的运动跑步机,其包含有一机台1,该机台1前、后端于一虚拟中轴线25上设有两相间隔的具有轴孔110、120的前枢接座11及后枢接座12;一跑步框座2,其上设置有一可供使用者踩踏或跑步动作的支撑组件23及一马达31,该支撑组件23上下方位置设有一回旋跑步带24且该跑步带24套设于前轴管241及后轴管242上,该跑步带24由马达31借着一皮带32带动前轴管241而让跑步带24进行回旋,而跑步框座2底端设置有两相间隔的前横杆21及后横杆22,该前横杆21及后横杆22中央处分别延伸出一轴杆211、221,其可分别枢接于前枢接座11的轴孔110及后枢接座12的轴孔120中,使跑步框座2以虚拟中轴线25为旋转轴点,且跑步框座2由虚拟中轴线25划分为左、右区块251、252,而跑步框座2左、右端设置有一左枢接座26及一右枢接座27,一惯性机构4可与跑步框座2相连结,当使用者连续性步行或跑步式踩踏于跑步框座2的左、右区块251、252时会呈活动式左、右摆动而产生位能差,进而连动惯性机构4,使惯性机构4产生单方向的惯性旋转动作,而能带动发电机33产生电能。 According to this method, the sports treadmill that can generate electricity by itself includes a machine platform 1, and the front and rear ends of the machine platform 1 are provided with two spaced front pivotal seats with shaft holes 110, 120 on a virtual central axis 25. 11 and the rear pivot seat 12; a running frame seat 2, on which a support assembly 23 and a motor 31 are provided for the user to step on or run, and the support assembly 23 is provided with a revolving running belt 24 at the upper and lower positions The running belt 24 is sleeved on the front shaft tube 241 and the rear shaft tube 242. The running belt 24 is driven by the motor 31 through a belt 32 to drive the front shaft tube 241 to allow the running belt 24 to rotate, and the bottom end of the running frame seat 2 is set There are two spaced apart front crossbars 21 and rear crossbars 22. A shaft 211 and 221 respectively extend from the center of the front crossbar 21 and rear crossbar 22, which can be pivotally connected to the shaft of the front pivotal seat 11 respectively. In the hole 110 and the shaft hole 120 of the rear pivot seat 12, the running frame base 2 is made to take the virtual central axis 25 as the rotation axis point, and the running frame base 2 is divided into left and right blocks 251, 252 by the virtual central axis 25, The left and right ends of the running frame 2 are provided with a left pivotal seat 26 and a right pivotal seat 27, an inertial mechanism 4 can be connected with the running frame 2, when the user continuously walks or runs on the running frame The left and right blocks 251 and 252 of 2 will be in a movable left and right swing to generate a potential energy difference, and then the inertial mechanism 4 will be linked to make the inertial mechanism 4 produce a unidirectional inertial rotation action, which can drive the generator 33 Generate electricity.
请参阅图4,惯性机构4包含有一惯性轮48,其设置于机台1上所设的一支架13上(如图2所示),该惯性轮48所延伸的中心轴杆480贯穿于支架13上,并同轴心枢接一内含有单向轴承的滚轮46及一内含有单向轴承的齿型皮带轮43,而机台1上更轴设有多个滚轮42、44,其中一滚轮42上枢接有另一转向相同的滚轮45,而该滚轮45借由一皮带47与前述惯性轮48的中心轴杆480上枢接的滚轮46相套围,一时规皮带41,其两末端分别具有一轴孔411、412,其中一轴孔411套设于跑步框座2左端的左枢接座26,时规皮带41并套设于滚轮42,再S型回绕过齿型皮带轮43及滚轮44,最后时规皮带41末端轴孔412再套设于跑步框座2右端的右枢接座27。 Please refer to Fig. 4, the inertia mechanism 4 includes an inertia wheel 48, which is arranged on a bracket 13 (as shown in Fig. 2 ) provided on the machine table 1, and the central shaft 480 extended by the inertia wheel 48 runs through the bracket 13, and coaxially connected with a roller 46 containing a one-way bearing and a toothed pulley 43 containing a one-way bearing in the center, and a plurality of rollers 42, 44 are arranged on the shaft of the machine table 1, one of which is 42 is pivotally connected with another roller 45 that turns to the same direction, and the roller 45 is surrounded by a belt 47 and the roller 46 pivoted on the central shaft 480 of the aforementioned inertia wheel 48. A timing belt 41 has two ends Respectively have a shaft hole 411,412, wherein a shaft hole 411 is sleeved on the left pivot seat 26 of the left end of the running frame seat 2, the timing belt 41 is also sleeved on the roller 42, and then S-shaped loops over the toothed pulley 43 and The roller 44 and the shaft hole 412 at the end of the timing belt 41 are sheathed on the right pivot seat 27 at the right end of the running frame 2 again.
请依图1参阅视角所示,本发明的跑步框座2由虚拟中轴线25划分为左、右区块251、252(可同时参考图3),当使用者连续性步行或跑步式踩踏于跑步框座2的左、右区块251、252时会呈活动式左、右摆动而产生位能差并带动惯性机构4,在本实施例中,当使用者踩踏于跑步框座2上的跑步带24的左区块251时(可同时参考图1至图4),其跑步框座2会往左下摆动,使连接于跑步框座2的右枢接座27的时规皮带41往上拉动,而让滚轮44逆时针转动并连动内含有单向轴承的齿型皮带轮43作顺时针转动,此时带动同轴心的惯性轮48并带动发电机33产生电力,而滚轮42经时规皮带41连动做逆时针转动,且滚轮42上同轴枢接的滚轮45为转向相同,即为逆时针转动,而与滚轮45以同一皮带47套围的滚轮46亦为逆时针转动,即是该滚轮46内的单向轴承呈空转状态,而当使用者踩踏于跑步框座2上的跑步带24的右区块252时(可同时参考图5及图6),其跑步框座2会往右下摆动,使连接于跑步框座2的左枢接座26的时规皮带41往上拉动,而让滚轮44顺时针转动并连动内含有单向轴承的齿型皮带轮43作逆时针转动、滚轮42做顺时针转动,其中该齿型皮带轮43内的单向轴承呈空转状态,而滚轮42上同轴枢接的滚轮45为转向相同,即为顺时针转动,而与滚轮45以同一皮带47套围的滚轮46亦为顺时针转动,此时带动同轴心的惯性轮48并带动发电机33产生电力。 Please refer to FIG. 1 to see the angle of view. The running frame seat 2 of the present invention is divided into left and right blocks 251 and 252 by the virtual central axis 25 (refer to FIG. 3 at the same time). The left and right blocks 251, 252 of the running frame 2 will be movable left and right swings to generate a potential energy difference and drive the inertial mechanism 4. In this embodiment, when the user steps on the running frame 2 When the left block 251 of the running belt 24 (can refer to Fig. 1 to Fig. 4 at the same time), its running frame base 2 can swing to the left, so that the timing belt 41 connected to the right pivotal seat 27 of the running frame base 2 is upward pull, and let the roller 44 rotate counterclockwise and interlock the toothed belt pulley 43 that contains the one-way bearing to rotate clockwise, this moment drives the coaxial inertial wheel 48 and drives the generator 33 to generate electricity, and the roller 42 passes through time The gauge belt 41 is linked to rotate counterclockwise, and the coaxially pivoted roller 45 on the roller 42 is the same as the steering, that is, it rotates counterclockwise, and the roller 46 surrounded by the same belt 47 as the roller 45 also rotates counterclockwise. That is, the one-way bearing in the roller 46 is in an idling state, and when the user steps on the right block 252 of the running belt 24 on the running frame 2 (can refer to Fig. 5 and Fig. 6 simultaneously), the running frame will 2 will swing to the right and down, so that the timing belt 41 connected to the left pivot seat 26 of the running frame 2 is pulled upwards, and the roller 44 is rotated clockwise and linked with the toothed pulley 43 containing a one-way bearing. Rotate counterclockwise, and the roller 42 rotates clockwise, wherein the one-way bearing in the toothed pulley 43 is in an idle state, and the roller 45 pivotally connected with the coaxial axis on the roller 42 turns to the same direction, that is, rotates clockwise. 45 The roller 46 that surrounds with same belt 47 also rotates clockwise, this moment drives the inertia wheel 48 of coaxial center and drives generator 33 to produce electric power.
请参阅图7及图8,本发明的另一实施例亦可为惯性机构5,其包含有一带动板51,该带动板51具有一中空部510,其带动板51的一侧面上边缘装设有一上齿条52,而另一侧面下边缘装设有一下齿条53,机台1上设置有一支架13,该支架13一侧可枢接一惯性轮56,该惯性轮56的中心轴杆560贯穿于支架13上,而惯性轮56另侧的中心轴杆560设有两组内含有单向轴承的齿轮54、55,其可位在带动板51的中空部510之间且两齿轮54、55可分别与带动板51上的上、下齿条52、53啮合。 Please refer to Fig. 7 and Fig. 8, another embodiment of the present invention can also be inertial mechanism 5, and it comprises a driving plate 51, and this driving plate 51 has a hollow portion 510, and the edge on one side of its driving plate 51 is installed There is an upper rack 52, and a lower rack 53 is installed on the lower edge of the other side. A bracket 13 is arranged on the machine table 1. One side of the bracket 13 can be pivotally connected with an inertia wheel 56. The central axis of the inertia wheel 56 560 runs through the bracket 13, and the central shaft 560 on the other side of the inertia wheel 56 is provided with two groups of gears 54, 55 containing one-way bearings, which can be positioned between the hollow portion 510 of the drive plate 51 and the two gears 54 , 55 can engage with the upper and lower racks 52, 53 on the driving plate 51 respectively.
请参阅图8所示,本发明的跑步框座2前端装设有一定位柱28,其可与惯性机构5的带动板51所设的定位孔511相连结,当使用者连续性步行或跑步式踩踏于跑步框座2的左、右区块251、252(同时参考图3)时会呈活动式左、右摆动而产生位能差并带动惯性机构5,在本实施例中,当使用者踩踏于跑步框座2上的跑步带24的左区块251时,其跑步框座2会往左下摆动,使跑步框座2前端的定位柱28往逆时针转动而连动带动板51,其带动板51上的上齿条52带动齿轮54做逆时针转动,此时该齿轮54内的单向轴承呈空转状态,而带动板51上的下齿条53带动另齿轮55做顺时针转动,其齿轮55内的单向轴承作动并带动同轴心的惯性轮56做顺时针转动进而带动发电机33产生电力,而当使用者踩踏于跑步框座2上的跑步带24的右区块252时,其跑步框座2会往右下摆动,使跑步框座2前端的定位柱28往顺时针转动而连动带动板21,其带动板21上的上齿条52带动齿轮54做顺时针转动,此时该齿轮54内的单向轴承作动并带动同轴心的惯性轮56做顺时针转动进而带动发电机33产生电力,而带动板51上的下齿条53带动另齿轮55做逆时针转动,此时该齿轮55内的单向轴承呈空转状态,使跑步框座2于使用者连续性步行或跑步式踩踏时呈活动式摆动产生位能差,进而连动惯性机构5,使惯性机构5产生单方向的惯性旋转动作,进而带动发电机33产生电能。 Please refer to Fig. 8, the front end of the running frame 2 of the present invention is equipped with a positioning post 28, which can be connected with the positioning hole 511 provided by the drive plate 51 of the inertial mechanism 5, when the user continuously walks or runs When stepping on the left and right blocks 251, 252 (simultaneously referring to Fig. 3 ) of the running frame seat 2, it will be in a movable left and right swing to generate a potential energy difference and drive the inertial mechanism 5. In this embodiment, when the user When stepping on the left block 251 of the running belt 24 on the running frame 2, the running frame 2 will swing to the left, so that the positioning column 28 at the front end of the running frame 2 rotates counterclockwise and drives the plate 51 in conjunction with it. The upper rack 52 on the drive plate 51 drives the gear 54 to rotate counterclockwise. At this time, the one-way bearing in the gear 54 is in an idling state, and the lower rack 53 on the drive plate 51 drives the other gear 55 to rotate clockwise. The one-way bearing in the gear 55 moves and drives the coaxial inertia wheel 56 to rotate clockwise and then drives the generator 33 to generate electricity. When the user steps on the right block of the running belt 24 on the running frame 2 252, its running frame seat 2 can swing down to the right, so that the positioning column 28 at the front end of the running frame seat 2 rotates clockwise and the drive plate 21 is linked, and the upper rack 52 on the drive plate 21 drives the gear 54 to do clockwise. Clockwise rotation, at this time the one-way bearing in the gear 54 moves and drives the coaxial inertia wheel 56 to rotate clockwise and then drives the generator 33 to generate electricity, and the lower rack 53 on the driving plate 51 drives the other gear 55 Rotate counterclockwise. At this time, the one-way bearing in the gear 55 is in an idling state, so that the running frame 2 is active and swings when the user continuously walks or treads in a running manner to generate a potential energy difference, and then the inertial mechanism 5 is linked. , so that the inertial mechanism 5 produces a unidirectional inertial rotation action, and then drives the generator 33 to generate electric energy.
综上所述,本发明提供一种自发电方法及依该方法可自发电的运动跑步机,该方法利用人力踩踏于机台1上位在虚拟中轴线25所活动枢设的跑步框座2上,该跑步框座2由虚拟中轴线25划分为左、右区块251、252,让使用者连续性步行或跑步式踩踏于跑步框座2的左、右区块251、252时会呈活动式左、右摆动而产生位能差,进而连动惯性机构4,使惯性机构4产生单方向的惯性旋转动作,而能带动发电机33产生电能,使用者不仅能运动强身更同时可利用自力跑步产生电能,让使用者因运动还能同时节能而增加其运动的意愿,也使跑步机所需要的市电量降低以减少用电成本,达到健身、节能等功效。 In summary, the present invention provides a self-generating method and a self-generating exercise treadmill according to the method. In this method, manpower is used to step on the running frame 2 pivoted on the virtual central axis 25 at the upper position of the machine platform 1 , the running frame seat 2 is divided into left and right blocks 251, 252 by the virtual central axis 25, allowing the user to step on the left and right blocks 251, 252 of the running frame seat 2 continuously when walking or running The potential energy difference is generated by the left and right swings of the formula, and then the inertial mechanism 4 is linked to make the inertial mechanism 4 produce a unidirectional inertial rotation action, which can drive the generator 33 to generate electric energy. The user can not only exercise and strengthen himself, but also use his own strength Running generates electricity, allowing users to increase their willingness to exercise due to energy saving while exercising, and also reduces the electricity required by the treadmill to reduce electricity costs, achieving fitness, energy saving and other effects.
上述实施例和图式并非限定本发明的产品形态和式样,任何所属技术领域的普通技术人员对其所做的适当变化或修饰,皆应视为不脱离本发明的专利范畴。 The above-mentioned embodiments and drawings do not limit the form and style of the product of the present invention, and any appropriate changes or modifications made by those skilled in the art should be considered as not departing from the patent scope of the present invention.
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Application publication date: 20160420 |