The present invention relates to a mid-wheel drive wheelchair and a seat unit thereof, and more particularly to a seat unit able to reduce the steering load of a drive carrier of the mid-wheel drive wheelchair.
A mid-wheel drive moving device has the feature of a small radius of gyration, and is applied to a wheelchair that is used in a small space (such as, an indoor space). The moving device has a pair of middle wheels driven by different drive motors respectively. By controlling the pair of middle wheels at different rotational speeds or the same rotational speed, the moving device can torn left or right or move forward or backward.
The related prior art includes U.S. Pat. No. 5,944,131 titled “mid-wheel drive power wheelchair”, U.S. Pat. No. 7,828,310 titled “chassis structure for mid-wheel drive power wheelchair”, U.S. Pat. No. 6,070,898 titled “suspension system for a wheelchair”, and so on.
These mid-wheel drive moving devices are usually equipped with front and rear auxiliary wheels to increase the stability of the movement so as to avoid turnover. However, in some situations, these auxiliary wheels may excessively increase the load of the drive wheels (middle wheels), which may easily cause overloading of the drive motors. For example, when the front auxiliary wheels are at a higher position relative to the drive wheels and the user controls the drive wheels to steer, the front auxiliary wheels and the rear auxiliary wheels cannot move smoothly because they are not in contact with the ground, so that when the drive wheels are steered in this situation, the front and rear auxiliary wheels form an obstruction to increase the load of the drive wheels. Accordingly, the inventor of the present invention has devoted himself based on his many years of practical experiences to solve these problems.
The primary object of the present invention is to provide a mid-wheel drive wheelchair and a seat unit thereof.
According to one aspect of the present invention, a seat unit used for a drive carrier is provided. The drive carrier comprises two drive wheels. The respective rotational speeds of the two drive wheels can be controlled individually. The seat unit comprises a first seat frame and a second seat frame. The first seat frame is connected with the drive carrier. The first seat frame includes at least one first mounting portion. The second seat frame includes a plurality of wheel frames and a mounting frame fixedly connected with the wheel frames. Each of the wheel frames is mounted with an auxiliary wheel. A space is defined between the mounting frame and the wheel frames. The drive carrier is located in the space. The mounting frame includes at least one second mounting portion. One of the first mounting portion and the second mounting portion is a rod. The other of the first mounting portion and the second mounting portion is a receiving portion. The rod is movably inserted through the receiving portion. When the second seat frame is displaced relative to the first seat frame, all the auxiliary wheels of the wheel frames can move together relative to the drive wheels of the drive carrier.
Preferably, the first seat frame includes two first side rods opposite to each other and two first connecting rods. Each of the first side rods has the first mounting portion. The first connecting rods are opposite to each other and connected to the first side rods. The mounting frame includes two second side rods opposite to each other and two second connecting rods. Each of the second side rods has the second mounting portion. The second connecting rods are opposite to each other and connected to the second side rods.
Preferably, the rod and the receiving portion are substantially perpendicular to a horizontal plane, and a slip member is provided between the rod and the receiving portion. The slip member may be a linear bearing.
Preferably, the seat unit further comprises a pedal rod. The pedal rod is connected to the second seat frame.
Preferably, the rod has a limit portion for limiting a relative displacement distance between the first seat frame and the second seat frame.
Preferably, the seat unit further comprises an elastic member. The elastic member is connected between the first seat frame and the second seat frame as a buffer when the second seat frame is displaced relative to the first seat frame.
Preferably, the elastic member is a spring sleeved on the rod.
Preferably, the first seat frame is movably connected to the drive carrier. The second seat frame has a pair of contact rods corresponding to the drive wheels of the drive carrier. When the drive carrier is displaced relative to the first seat frame, the contact rods lean against the drive wheels.
According to another aspect of the present invention, a mid-wheel drive wheelchair is provided. The mid-wheel drive wheelchair comprises a drive carrier and a seat unit. The drive carrier comprises two drive wheels. The respective rotational speeds of the two drive wheels can be controlled individually. The seat unit comprises a seat, a first seat frame, and a second seat frame. The seat is fixedly mounted on the first seat frame. The first seat frame is connected with the drive carrier. The first seat frame includes at least one first mounting portion. The second seat frame includes a plurality of wheel frames and a mounting frame fixedly connected with the wheel frames. Each of the wheel frames is mounted with an auxiliary wheel. A space is defined between the mounting frame and the wheel frames. The drive carrier is located in the space. The mounting frame includes at least one second mounting portion. One of the first mounting portion and the second mounting portion is a rod. The other of the first mounting portion and the second mounting portion is a receiving portion. The rod is movably inserted through the receiving portion. The rod and the receiving portion are substantially perpendicular to a horizontal plane. A linear bearing is provided between the rod and the receiving portion. When the second seat frame is displaced relative to the first seat frame, all the auxiliary wheels of the wheel frames can move together relative to the drive wheels of the drive carrier.
Preferably, the drive carrier is a balance car. The drive carrier further includes an operating module. The operating module is mounted on the seat or extends to the seat for controlling the rotational speeds of the drive wheels.
According to the above technical features, the present invention can achieve the following effects:
1. The seat unit is composed of the first seat frame connected with the drive carrier and the second seat frame mounted with the auxiliary wheels, and the first seat frame and the second seat frame can be relatively displaced, so that all the auxiliary wheels can move together relative to the drive wheels of the drive carrier. The drive wheels of the drive carrier won't be hindered by the auxiliary wheels during steering, thereby improving the steering smoothness and reducing the steering load of the drive carrier.
2. The second seat frame mounted with the auxiliary wheels does not directly bear the weight of the rider, so the second seat frame can be easily displaced relative to the first seat frame. The drive wheels of the drive carrier won't be hindered by the auxiliary wheels during steering.
3. The first mounting portion of the first seat frame and the second mounting portion of the second seat frame are disposed oppositely to provide a stable relative displacement.
4. The relative displacement between the first seat frame and the second seat frame can improve the smoothness of displacement by the aid of the slip member.
5. The second seat frame is mounted with the pedal rod so that the legs of the rider can be ascended and descended along with the displacement of the second seat frame.
6. The displacement stroke between the first seat frame and the second seat frame can be limited by the limit portion so as to avoid excessive displacement or detachment.
7. The first seat frame and the second seat frame can be cushioned by the elastic member so as to improve the comfort of riding.
8. The elastic member may adopt a spring sleeved on the rod, which can be stably compressed and stretched.
9. The second seat frame may have the contact rods to limit the moving range of the drive carrier.
10. The drive carrier may adopt a conventional balance car on the market. Compared to a self-developed drive carrier, the balance car is cost-effective and can be obtained easily.
Embodiments of the present invention will now be described, by way of example only, with reference to the accompanying drawings.
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Although particular embodiments of the present invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the present invention. Accordingly, the present invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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105141405 A | Dec 2016 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
5944131 | Schaffner et al. | Aug 1999 | A |
6070898 | Dickie et al. | Jun 2000 | A |
7293801 | Bertrand | Nov 2007 | B2 |
7490683 | Schaffner | Feb 2009 | B2 |
7828310 | Vreeswijk et al. | Nov 2010 | B2 |
7882909 | Pearlman | Feb 2011 | B2 |
9526664 | Mulhern | Dec 2016 | B2 |
20040004342 | Mulhern | Jan 2004 | A1 |
Number | Date | Country | |
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20180161221 A1 | Jun 2018 | US |