The present invention relates to an exerciser, especially to a crawling exerciser.
Crawling exercises have become a more and more popular modern exercise. Crawling exercises belong to horizontal movement (which mainly means that the human spine is horizontal to the ground during the movement). In comparison with the vertical position movements, the human spine is being protected due to low pressure, because the gravity can be reduced or completely eliminated during the horizontal movement. In addition, since the human brain and human heart are at the same horizontal level during the movement, the blood supply from the heart toward the brain can be dramatically increased. Therefore, it can be concluded that constant crawling exercise is very beneficial to human spine and cardiovascular system.
Since crawling exercises are very easily limited by the conditions of the location and the weather, it is hence necessary to develop an exerciser which can simulate crawling movements and overcome the limits of the location and the weather. At present, a crawling exerciser has been disclosed in the Chinese utility model application ZL03244692.6. As is shown in
Although the crawling exerciser in the state of the art can theoretically have the workout effect by crawling movement, it has the following flaws practically: First, it is hard to stop the movements. Since such an exerciser does not have a damping structure, and the body can move toward an arbitrary direction on the ground, therefore, one can only use hands and legs to stop the movements, that is, let the wrist laid down so that the front part of the hand controlling part touches the ground to stop the leg controlling part, and let the toes touch the ground to stop the leg controlling part Secondly, the exerciser can only facilitate smooth movements when the body takes up a bow-like form as shown in
The aim of the current invention is to provide a crawling exerciser which overcomes the shortcomings of the exercisers in the state of the art. The exerciser of the current invention is convenient, easy to control and is easy to perform alternate exercise between hands and legs. It does not damage the floor, carpet or ground and is appropriate to be used indoors.
In order to achieve the above objectives, the current invention is realized as the follows:
A crawling exerciser, comprising two hand slides each containing a wheel and two leg slides each containing a wheel, characterized in that, it also contains components of a linear parallel track, wherein both the hand slides and the leg slides slide in the track and a damping structure is installed on the wheels or between the wheels and the track.
The crawling exerciser as stated above, characterized in that the components of the track are soft rollable carpet track, and when the carpet is unfolded, the track is parallel and the cross section of the track is groove-shaped corresponding to the shape of the wheel.
The crawling exerciser as stated above, characterized in that the components of the track are soft rollable carpet track, and when the carpet is unfolded, the track is a straight, long fin height structure and is also designed to be parallel, wherein the outer part of the wheel is furnished with a curved groove in order to adapt to the fin-height-shaped track.
The crawling exerciser as stated above, characterized in that the components of the track are hard track components, wherein the wheels of the hand slides and the leg slides can make linear movements along the track, and the hand slides and the leg slides on the same side are connected with at least one elastic string.
The crawling exerciser as stated above, characterized in that the track components are designed to be foldable.
The crawling exerciser as stated above, characterized in that the track components are hard components, wherein the wheels of the hand slides and the leg slides can make linear movements along the track, and the wheels of the hand slides and the leg slides are further furnished with a volute spiral spring.
The crawling exerciser as stated above, characterized in that the track components are hard components, wherein the wheels of the hand slides and the leg slides can make linear movements along the track, and the wheels of the hand slides and the leg slides on the same side are furnished with an elastic string.
The crawling exerciser as stated above, characterized in that the track components are hard components, wherein the wheels of the hand slides and the leg slides can make linear movements along the track, the outer side of the track is changed to be a trapezoidal shape, and the inner side of the wheels of the hand slides and the leg slides, which contacts the track, is furnished with elastic buffering material in order to increase friction between the track and the wheels.
The crawling exerciser as stated above, characterized in that the track components have foldable structures.
The crawling exerciser as stated above, characterized in that there is a groove in the middle of the track, wherein the hand slides and the leg slides have a C shaped component which is encased within the groove.
The crawling exerciser as stated above, characterized in that the track takes up a form, wherein the wheels of the hand slides and the leg slides have an inverted U shaped structure which encases the
shaped track.
The crawling exerciser as stated above, characterized in that the track takes up a T form, wherein the wheels of the hand slides and the leg slides have a shape with encases the T-shape structured track.
The crawling exerciser as stated above, characterized in that track is a round track which is parallel to each other, wherein the wheels of the hand slides and the leg slides have a shape with encases the round shape structured track.
The crawling exerciser as stated above, characterized in that the hand slides and/or the leg slides are further furnished with a straight catch pin structure in order to stabilize the slides onto the track.
The crawling exerciser as stated above, characterized in that the hand slides and/or the leg slides are further furnished with a cam controlling catch pin structure in order to stabilize the slides onto the track.
The crawling exerciser comprising hand slides and leg sides, characterized in that it also contains components of a linear parallel track, wherein both the hand slides and the leg slides slide in the track and a damping structure is installed between the hand slides, the leg slides or between the slides and the track.
The crawling exerciser as stated above, characterized in that the hand slides and the leg slides have a slide block or a linear bearing.
The crawling exerciser as stated above, characterized in that the track takes up a T form, wherein the slide block has a shape which encases the T-shape structured track.
The crawling exerciser as stated above, characterized in that track is a round track which is parallel to each other, wherein the slide block has a shape which encases the round shape structured track.
In comparison with the exerciser in the state of the art, the exerciser of the current invention has the following advantages and beneficial effects:
a. A damping structure is provided on the slides, so that the user can effectively control the slides.
b. The slides are furnished with track components so that the slides will not move astray, the ground (floor or carpet) can be protected and the wheels will not be damaged.
c. The tracks can be folded or rolled, which leads to a reduced volume of the exerciser. The exerciser is easy to be stored.
A crawling exerciser, as shown in
A crawling exerciser, as shown in
A crawling exerciser, as shown in
In addition, in order to solve the storage space problem of the exerciser, the track components of the exerciser of the current example are all foldable. There are the hinge 304 and hinge heads 305, 306, 307 furnished in the middle and on both sides of the track components in order to realize the double way folding of the track components. Due to the presence of the folding structure, the track is composed of the left and right hand track and the left and the right leg track. The left hand track and the left leg track are connected with the hinge, whereas the right hand track and the right leg track are connected with hinge. The two left (hand and leg) track and the two right (hand and leg) track are connected with three rods which are positioned in the front, middle and back part of the tracks in order to keep the left and right tracks parallel. There are three hinge heads 305, 306 and 307 are furnished in the middle of the three rods, in which the hinge head 307 at the back part of the tracks can be made of two axes, in order to prevent inconvenient folding when the axes of the three hinge heads are not aligned together. The track components when they are folded are shown in
On the basis of example 3, the following structure and methods are used to replace the elastic string 303 in order to increase the damping of the hand slides and the leg sides.
As shown in
As shown in
As shown in
As shown in
As shown in shape. The wheel 502 has an inverted U shape. The wheel 502 slides within the track 501 so that it will not fall out of the track 501 and the safety of the user is secured.
In addition, in order to solve the storage space problem of the exerciser, the track components of the exerciser of the current example are all foldable. There are the hinges furnished in the middle of the track components in order to realize the folding of the track components. Due to the presence of the folding structure, the track is composed of the left and right hand track and the left and the right leg track. The left hand track and the left leg track are connected with the hinge, whereas the right hand track and the right leg track are connected with hinge. The track components when they are folded are shown in
As shown in
As shown in
As shown in
In comparison with example 8, the catch pin of the exerciser of this example has a fin height shaped catch pin. Take the hand slide for example, the fin height shaped catch pin 901 in
The above are only relatively good examples of the current invention, and are by no means used to limit the scope of the current invention. Any modification and changes within the scope of the application all belong to the current scope of protection of the current invention.
Number | Date | Country | Kind |
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201110071902.0 | Mar 2011 | CN | national |
This is a CIP of International Application No. PCT/CN2011/001678, with an international filing date of Oct. 8, 2011 claiming priority to Chinese Application No. 201110071902.0, the entire disclosure of which is incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/CN2011/001678 | Oct 2011 | US |
Child | 13434876 | US |