1. Field of the Invention
The present invention relates to an exercise apparatus. More particularly, the present invention relates to a treadmill with a restricting device.
2. Description of the Related Art
Most treadmills are electrically powered. In operation, the endless belt on the platform of the treadmills is powered by a motor at a predetermined speed for allowing a user to walk, jog or run on the belt. Generally, the user is able to preset a program containing timing variation before exercise so that the treadmill will automatically make the speed of the treadmill become faster or slower at a predetermined point according to the aforementioned program during exercising. Additionally, during exercising, the user could make the belt to speed up or slow down through a control interface of the treadmill for allowing himself (or herself) to adjust the exercising speed or change exercise modes (e.g. from walking to jogging). Even so, for the operation of the electric treadmill, it requires the user to walk or run at a speed matching that of the belt, rather than drive the belt at the speed of the user. In short, the user cannot currently speed up or slow down the speed thereof, during walking, jogging or running on the electric treadmill, like taking outdoor exercise whenever they want to.
In general, the electric treadmills are usually used for a long period of walking or running (e.g. 20, 30 minutes or more). Moreover, in current commercial treadmills, the upper limit of the adjusting range of the belt running speed is actually up to 24 to 27 km/h; that is equal to one hundred meters just in 13˜14 seconds and suitable for a short period of fast-run or sprint. Since everyone has different physical abilities, not all fast-run or spring are carried out under maximum-speed operation of the belt. No matter how speed the belt is, when the user performs sprint exercise on the treadmill, the belt is driven by the motor at high speed. Therefore, if the user's running speed cannot keep up with the belt speed, there might be an additional loading for the user. Furthermore, if the user wants to take a break or end the exercise during the sprint, the user usually has two hands grip two side handrails first, and then has two feet span the belt on two side rails. If the user wants to continue running after the break, the user would step on the belt again and keep up with the belt speed, and then the user could take the two hands away from the two side rails for free swinging. It is obvious that the aforementioned motions of the break and the continuance of running have a certain degree of difficulty and inconvenience. For the safety reason, maybe that is why many people never adjust the belt speed up to the high-speed region, even if they are able to sprint with equal speed for a short time on the ground.
Relative to the electric treadmills, nowadays there are some treadmills without electric power in the market. Instead of being powered by an electric motor, the belt is powered by the user when the user walks or runs on the treadmill to push the belt with two feet (further supplemented by inertial force of a flywheel). Generally speaking, since the belt of the non-electric treadmill is rotated by the motion of the user's two feet, the user could speed up or slow down the speed of walking, jogging or running anytime. However, the general non-electric treadmill is not suitable for sprint. The reason is that: if a user continues to improve the running speed, the forward speed corresponding to the running motion of the user (equal to the step length multiplied by step frequency) may be faster than the backward sliding speed of the belt plane such that the user would be gradually close to the front end of the treadmill. In order to keep running in an appropriate region of the belt, users will naturally restrain their running speed and thus the maximum capacity cannot be exerted, so that the desired training effect cannot be achieved.
There is one method in existence trying to solve the above problems, that is, to provide a wearing member for putting on the waist or the upper body of the user, e.g. an endless strap that is able to be put around the waist or the abdomen of the user, or a vest being able to be worn on the user's body. Moreover, an appropriate length of rope is connected between the wearing member and a holder fixed behind the platform. Thereby, when the user who wears the wearing member exercises on the non-electric treadmill, if the body moves forward to a predetermined position, the body will be pulled by the rope in the rear side (straightened) to restrict the further forward motion of the user. Therefore, the user could practice for quick running or sprint with normal running motion, and to freely slow down or accelerate again in the process of running. There is a disadvantage in the aforementioned method. It requires the user to wear the wearing member before the user exercises on the platform of the treadmill. For example, the user needs to put the endless strap around the waist, and to take off the wearing member from the body after the end of the exercise, it is bothersome for the user. Furthermore, since it needs to install a stationary frame for securing the rear end of the rope behind the platform, the whole device will occupy more space.
On the other hand, the treadmills are generally available only for aerobic exercises of walking, jogging or running, such functions are restricted. One type of exercise apparatus with both functions of treadmill and anaerobic exercise (weight training) is shown in U.S. Publication No. 2014/0274578 A1. The exercise apparatus includes a platform of an analogous non-electric treadmill. The platform has a flywheel axially mounted on one end of the front roller and a friction resistance device disposed beside the flywheel. The user can manually adjust the tightness of the resistance device through a knob driving an arcuate brake pad to press against the peripheral surface of the flywheel so as to adjust the rotation resistance of the flywheel and the front roller, namely adjusting the running resistance of the belt. In addition to walking, jogging or running, the user can adjust the resistance to a higher level for making the belt difficult to slide. Then, the user could hold the front handle with two hands, adopt a position with low center of gravity, and push the belt backward with two legs so as to simulate a training of pushing a weight forward on the ground (e.g. push sled). As general non-electric treadmills, while walking, jogging or running on the exercise apparatus, the belt needs to have an appropriate resistance depending on the usage condition. However, the friction resistance device is not easy to adjust the resistance to meet the requirement especially for low resistance. If replaced with an eddy current type resistance device, it is relatively easy to make fine adjustment, but it may not be able to provide high resistance for the weight training.
The present invention has arisen to mitigate and/or obviate the disadvantages of the conventional method. Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
The present invention is directed to an exercise apparatus that meets the needs. The object of the present invention provides a non-electric treadmill for allowing a user to do exercise of walking, jogging or running with natural motion just like outdoor exercise, and also allowing the user to spring or quick run in the user's individual maximum capacity. Moreover, the user can directly step onto the platform for exercising and leave directly after exercise without wearing or taking off the endless strap and the vest of the prior art, it is convenient. In addition, the exercise apparatus takes up less space.
Another object of the present invention provides a non-electric treadmill for allowing a user to not only execute aerobic exercises of walking, jogging or running, but also execute a weight training that simulates a motion of pushing a weight forward. Furthermore, whether the user executes the aerobic exercises or the weight training, the user can easily adjust the exercising resistance to meet the user's requirement.
According to one aspect of the present invention, the exercise apparatus includes a platform, a left side frame, a right side frame and a restricting device. The platform has an endless belt for allowing a user to do exercise of walking, jogging or running run on the belt. The belt is driven by movement of the user. The belt defines an exercising space above. The left side frame is located at a left side of the exercising space, and has a left rear holding portion defined at a rear end of the left side frame. The right side frame is located at a right side of the exercising space, and has a right rear holding portion defined at a rear end of the right side frame. The restricting device has a retaining portion, a left restricting portion, a right restricting portion. The left restricting portion and the right restricting portion are elongated and flexible. The left restricting portion is connected between the left rear holding portion of the left side frame and a left end of the retaining portion. The right restricting portion is connected between the right rear holding portion of the right side frame and a right end of the retaining portion. The restricting device maintains the retaining portion at a height corresponding to a waist of the user to make the retaining portion substantially abut against the waist of the user for resisting forward movement of the user toward the front side of the exercising space. Furthermore, the exercise apparatus having an entrance to the exercising space at a rear end thereof for allowing the user to enter or exit the exercising space.
According to another aspect of the present invention, the exercise apparatus includes: a platform having a front roller, a rear roller and an endless belt mounted around the front roller and the rear roller for allowing a user to do exercise of walking, jogging or running run on the belt, such exercises would make the belt to be revolved; a flywheel coaxially connected to the front roller; a friction resistance device mounted beside the flywheel for allowing the user to control the rotation resistance of the flywheel and the front roller; an eddy current resistance device also mounted beside the flywheel for allowing the user to control the rotation resistance of the flywheel and the front roller; and a front frame secured to the front end of the platform, and having at least one holding portion for a user to grasp.
The reader is advised that this summary is not meant to be exhaustive. Further features, aspects, and advantages of the present invention will become better understood with reference to the following description, accompanying drawings and appended claims.
Further benefits and advantages of the present invention will become apparent after a careful reading of the detailed description with appropriate reference to the accompanying drawings.
In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically depicted in order to simplify the drawings.
Referring to
In the first embodiment of the present invention, the configuration of the platform 10 is similar to a platform of the conventional non-electric treadmill. As shown in
The left side frame 20 and the right side frame 30 are respectively located at the left side and right side of the space S, and each of the side frames 20 and 30 has a front post 21 or 31, a rear post 22 or 32 and a handrail 23 or 33. The bottoms of the front posts 21, 31 of the side frames 20 and 30 are respectively secured to the left front corner and the right front corner of the support frame 11 of the platform 10. The bottoms of the rear posts 22, 32 of the of the side frames 20 and 30 are respectively secured to the left rear corner and the right rear corner of the support frame 11. Each handrail 23 or 33 is connected between the top of the respective front post 21 or 31 and the top of the respective rear post 22 or 32 at the left and right sides of the whole exercise apparatus 100, and substantially extends along the longitudinal direction of the platform 10. The height of each handrail 23 or 33 (from the top plane of the endless belt 16) is substantially the same as the waist height of a general person, for example 90 to 95 cm, and it is available for a user to hold, if necessary. At the rear end of the exercise apparatus 100, an entrance G is defined between the left and right rear posts 22, 32 for allowing the user to enter into or exit out of the exercising space S, as shown in
The front frame 40 is connected between the tops of the left and right side front posts 21, 31 and located at a front side of the exercising space S. The front frame 40 has an upper rail 41 and a lower rail 42 extending in a latitudinal direction. A front holding portion 43 is connected between the upper rail 41 and the lower rail 42 at a central position of the front frame 40. The front holding portion 43 has two parallel longitudinal connecting plates 44 connected between the upper and lower rails 41, 42 and has a plurality of horizontal rods 45 sustainably vertically spaced a distance apart between the two longitudinal connecting plates 44. The location of the horizontal rods 45 substantially corresponds to the waist height of the general users (from the top plane of the endless belt 16), wherein every adjacent two of the horizontal bars 45 have a predetermined height difference therebetween.
The restricting device 50 includes a first strap 51 and a second strap 52. The first strap 51 defines a left end, a right end and a middle part therebetween. The left end and the right end of the first strap 51 is connected to the left rear holding portion 24 of the left side frame 20 and the right rear holding portion 34 of the right side frame 30 respectively. The middle part of the first strap 51 is located within the exercising space S and located at a central area between the left and right side frames 20, 30. The second strap 52 defines a front end connected to the front holding portion 43 of the front frame 40 and a rear end connected to the middle part of the first strap 51. Specifically, the first strap 51 comprises a plurality of tough straps (e.g. canvas bands and woven belt) sewn with elastic bands, and two ends thereof are respectively wrapped to connect with two vertical rods (not numbered) of the left rear holding portion 24 and the right rear holding portion 34 to define the left and right end of the first strap 51. In addition, the first strap 51 is separated into left and right halves by the middle part, and each of the left and right halves has an elastic band 53 to form an elastic section which could be stretchable in a longitudinal direction. On the other hand, the second strap 52 is made of a tough strap. The tough strap is folded up and two ends thereof are sewn together and connected to a hook 54. The hook 54 is detachably fastened on one of the horizontal rods 45 of the front holding portion 43 to define the front end of the second strap 52. The second strap 52 has a central portion of the aforementioned strap wrap around the middle part of the first strap 51 and sews together to define the rear end of the second strap 52.
As shown in
Under this arrangement, when the user wants to walk, jog or run on the exercise apparatus 100, the user can step onto the platform 10 through the entrance G at the rear end of the exercise apparatus 100 and go forward to the central area of the exercising space S freely. Generally, the retaining portion 56 of the restricting device 50 is kept at the height corresponding to the user's waist and substantially V-shaped with the opening toward the rear side. Therefore, when the user move forward to the central area of the exercising space S, the retaining portion 56 will naturally abut against the waist of the user and be deformed in accordance with the forward pressing degree of the user. For example, the retaining portion 56 would become arcuate to perfectly fit the front side, the left side and the right side of the waist of the user, and then the user could start walking, jogging or running in this state, as shown in
As the user is pulled by the rope to restrict the forward motion in the prior art, the present invention uses the restricting device 50 to retain the waist W of the user U for restrict the forward motion. In this manner, the user could run free without hands holding a front handrail, using a reaction force from the restricting device 50 to increase the foot pushing force on the endless belt 16 for allowing the endless belt 16 beginning to slide easily from a rest condition and to keep running at a lower speed (in the walking motion). In addition, since the user U is unable to move forward relative to the platform 10, the sliding speed of the surface of the endless belt 16 will fully reflect the foot motion of the user. Therefore, the user U can move naturally for walking, jogging or running just like outdoor exercise and speed up or slow down the movement speed whenever they want to do so, during the exercise. Besides, the revolution speed of the endless belt 16 is the speed at which the user U moves, so that the user U can continue to accelerate the running speed to sprint or quick run in the individual maximum capacity thereof for high-strength training. When the exercise is finished, the user U is able to freely back away and leave the platform 10 through the entrance G. When the waist W of the user U is away from the retaining portion 56, the restricting device 50 will return to the original state. Compared to the prior art that the user is restricted by a rope on the rear side, in relation to the exercise apparatus 100 of the present invention, the user does not need to wear or take off the wearing member attaching to the end of the rope, so that it is convenient for the user to use. Furthermore, because there is no need to set additional stationary frame for securing the rope behind the platform, the exercise apparatus 100 of the present invention occupies less space.
During the time that the user U walks, jogs or runs (including quick run or sprint) on the exercise apparatus 100, the retaining portion 56 of the restricting device 50 abuts against the front, left and right sides of the user's waist W, the left restricting portion 57 and the right restricting portion 58 respectively extend backward from the left and right sides of the user's waist W, and the suspension portion 59 extends frontward from the front side of the user's waist W. Therefore, the body, two legs and two hands of the user U are not restricted and interfered by the restricting device 50 so as to move freely and naturally.
In order to improve the comfort during the usage, the retaining portion 56 of the restricting device 50 could affix a soft layer, such as foam, to an inner side thereof, and/or making the retaining portion 56 have stretch elasticity. Each of the left restricting portion 57 and the right restricting portion 58 uses the elastic band 53 to have stretch elasticity for improving the using comfort as well. With respect to the stretch elasticity of each of the two restricting portions 57, 58, the elastic band 53 could be replaced by a plurality of extension springs, or making the rear ends of the two restricting portions 57, 58 connect to the respective holding portions 24, 34 via the extension springs. However, even if the left restricting portion 57 and the right restricting portion 58 have no stretch elasticity, the restricting device 50 can still accomplish the retaining function to achieve the purpose of the present invention.
As shown in
Like conventional non-electric treadmill, the exercise apparatus 100 also has a resistance device for adjusting the movement resistance of the endless belt 16. Referring to
When the endless belt 16 is pushed by the user's feet, the front roller 14 and the flywheel 63 will be rotated synchronously. The rotating inertia of the flywheel 63 offers an inertial force to the front roller 14 to make the endless belt 16 obtain additional pushing force and make the exercise motion more smooth. The user could use the controlling knob 77 to adjust the rotation resistance of the metal disc 64 (and the flywheel 63, the front roller 14 as well) to make the endless belt 16 has a predetermined exercising resistance so as to meet requirements of exercise of walking, jogging or running. For example, when the user feels that the endless belt 16 runs too fast or too slow, the user can turn the resistance up or down appropriately, or by increasing the resistance to enhance the exercise intensity for speeding up calorie consumption.
As described above, the exercise apparatus 100 is provided for user to take an aerobic exercise, such as walking, jogging or running. Such mode of the exercise apparatus 100 is called “first usage mode” herein. In contrast, the exercise apparatus 100 also has a “second usage mode” providing for user to take a weight training that simulates a motion of pushing a weight forward. The related designs and methods are described below. Referring to
In general, the largest resisting force generated by the eddy current brake (ECB) is still insufficient for being the resistance of the aforementioned weight training or fails to achieve the training effect effectively. In other words, the aforementioned weight training generally requires the use of the preceding friction resistance to provide the endless belt 16 with sufficient high resistance. Therefore, when the user is going to start the weight training, the user could ignore the setting state of the eddy current brake (ECB) and adjust the friction resistance between the brake band 81 and the flywheel 63 by the lever controller 83 to provide the endless belt 16 with appropriate resistance that the user has to overcome hard. In contrast, when the user wants to start walking, jogging or running, the user generally needs to check that the friction resistance has been adjusted to a lower level or almost released first to make the endless belt 16 could be driven by the natural motion of walking, jogging or running. If necessary, the user could use the controlling knob 77 to adjust the eddy current resistance between the reluctance member 71 and the metal disc 64, so that the endless belt 16 has appropriate resistance matching with personal desired velocity or movement difficulty. Under this arrangement, the exercise apparatus 100 has an eddy current resistance device which could be adjusted independently and a friction resistance device. For the weight training, the higher resistance could be achieved mainly by the friction resistance. Besides, it can provide a very large resistance to satisfy users with excellent physical ability or requirements of high strength training, such as athletes. In contrast, while walking, jogging or running, the relatively lower resistance could be achieved mainly by the eddy current resistance for slightly adjusting the resistance easily.
According to one aspect of the present invention, in order to make the exercise apparatus provide a choice for the user to choose one aerobic exercise such as walking, jogging or running, or to choose to simulate weigh training for pushing a weight forward. Moreover, it could easily obtain appropriate resistance whether the user takes the aerobic exercise or the weight training. The exercise apparatus of the present invention includes: a platform having a front roller, a rear roller and an endless belt mounted around above two rollers for allowing the user to walk, jog or run on the endless belt, such exercises would make the belt be revolved; a flywheel coaxially connected to the front roller; a friction resistance device disposed beside the flywheel for allowing the user to manually control the rotation resistance of the flywheel and the front roller; an eddy current resistance device disposed beside the flywheel for allowing the user to manually control the rotation resistance of the flywheel and the front roller; a front frame mounted on a front end of the platform, and having at least one holding portion for a user to grasp.
The foregoing are related instructions of the exercise apparatus 100 of the first embodiment of the present invention. Then, other preferred embodiments will be described below for illustrating any possible structures and applications of the restricting device of the present invention. The following description is mainly focused on the restricting device, and the other configurations of the exercise apparatus (e.g. platform, frame, resistance device) will not be repeated. The identical or corresponding devices/components/parts of the following embodiment in accordance with the first embodiment will be labeled with corresponding mantissa code. For example, in the first embodiment of the present invention, the left/right side frame is labeled 20/30, but in the following second, third, fourth and fifth embodiments, the left/right side frame will be labeled 220/230, 320/330, 420/430 and 520/530, or the like.
Referring to
The A-shaped structure of the restricting device 250 can also be illustrated as follows for equivalent constitution. Two longer straps are defined as left and right side of the A-shaped structure, that is, one strap is connected between the front holding portion and the left rear holding portion and the other strap is connected between the front holding portion and the right rear holding portion. Then, a shorter strap is configured to connect suitable central portions of above two longer straps to be defined as a retaining portion extending transversely.
Referring to
The restricting devices 50, 250, 350 in the previous embodiments of which each has at least one suspension portion connected from the front frame to the retaining portion, and the suspension portion together with the left restricting portion and the right restricting portion keeps the retaining portion at a predetermined height. However, the restricting device may be designed to work without the suspension portion supported in the front, namely the restricting device could be maintained in a position for naturally abutting against the waist part of the user. One possible way is described as follows:
Finally, referring to
In another embodiment of the present invention, the rectangular member 555 and left and right cords 551, 552 could be replaced by one longer cord, namely, such cord has two ends respectively connected to the left and right winder 553, 554, and the middle part of the cord is defined as the retaining portion (as the rectangular member).
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
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