The invention is part of the field of electric bicycles, specifically accessories for electric bicycles, and refers to the bottle holder for external batteries.
Currently, the use of electric bicycles has increased. These types of bicycles are similar to traditional bicycles, but they include an electric motor that helps with pedalling at certain times. This help that the cyclist gets from the motor is called assisted pedalling. In addition, an electric bicycle is simple to use, as the motor is turned on with a key and it is only necessary to pedal in order to keep it running. The advantage of these electric bicycles lies in the assistance with pedalling on mountainous terrain or steep slopes.
The motor of most electric bicycles is powered by a rechargeable battery whose legal power ranges between 250 and 350 watts. Normally, batteries have a life of about two years and a range of between 25 and 70 kilometres, depending on the model. Therefore, it is recommended that the battery be charged after each use, and as a result, it is necessary that the batteries should be able to be removed from the bicycle or charged on the bicycle using a charger, connected to the electrical network. The batteries have different capacities depending on the autonomy of the electric bicycle, and therefore they also have different weights, materials and shapes.
Generally, the motor and a main battery are housed inside the down tube, or are sometimes located in the top or bottom tube of the electric bicycle frame. In both cases, the outside of the down tube remains free for a bottle holder. However, on e-bikes for long mountain bike rides, a single battery may not be enough. For this reason, these long-distance electric bicycles usually comprise a central motor and two batteries, an internal main battery and an external additional battery. The main battery is attached or inserted into the tubes of the bicycle frame together with the motor, while the external additional battery can optionally be attached to the down tube of the bicycle frame with an external fastening system. One disadvantage of long-distance electric bikes is the weight that the two batteries add to the bike, and the fact that you must move with the strength of your legs when assisted pedalling is not used.
Another disadvantage of bicycles with an additional external battery is that in addition to the motor and batteries there are other elements such as the seat post or elements of the suspension system that take up space and restrict the design. For this reason, these types of bicycles usually present limitations on the location of the external battery, due to the aforementioned shortage of space for the integration of components. One possible solution is to position the external battery in the space where the water bottle, a common accessory in this type of bicycle, usually goes.
As mentioned above, depending on the duration of the ride, the user may need the external battery for long routes on steep terrain. In this case, you need to remove the bottle holder and attach a holder for the external battery. If, on the other hand, the route is short or the terrain is easy, it is better to remove the external battery because it saves considerable weight and you can also use the bottle holder for a water bottle.
The main problem is that the exchange between the external battery and the water bottle may not be easy or quick. Some known solutions use one holder for the external battery and a different holder for the water bottle, the assembly and disassembly of both holders being necessary to exchange the external battery and the water bottle, with the consequent increase in time to carry out the exchange. Other solutions for exchanging the external battery and the water bottle include an additional adapter that is placed onto the bottle holder, which allows it to be attached to the battery holder. Lastly, at best, the external battery may be small and fit into the standard bottle holder. However, these solutions, which use several additional supports or adapter parts, mean an inconvenient increase in weight for sports activities carried out with this type of bicycle. Some solutions simply consist of using the standard bottle holder to locate the external battery, and although this solution is simple, it is only valid when the external battery is small and therefore of limited capacity, since the battery must fit into the bottle holder.
In any case, these alternatives for mounting the external battery have some disadvantages, such as the loss of time to carry out the exchange, the complexity of the changeover, the increase in weight of the bicycle or the limitation of the battery capacity that can be incorporated.
The object of this invention is bottle holder that makes it possible to house an external battery and exchange the water bottle for the external battery easily. Additionally, the holder of the invention minimizes some of the aforementioned limitations, in relation to existing solutions, with respect to exchange time, battery size limitation and/or weight increase.
The object of the invention is a bottle holder for an external battery suitable for inserting in the bottle holder of the invention. The holder comprises a longitudinal base designed to be fitted to a tube of the frame of an electric bicycle, generally on the down tube of the frame of an electric bicycle. Furthermore, the bottle holder also comprises a main body attached to the base, where the base and the main body partially form a cavity intended to house an external battery or a water bottle.
The holder is characterized by the fact that the main body is capable of adapting the size of the cavity in such a way as to accommodate the external battery with a non-circular section and greater than the water bottle section, and furthermore, the main body comprises an adjustment mechanism for closing the holder and preventing the external battery from moving around inside the holder. In this way, the invention allows the user to be able to house an external battery or a water bottle using one single holder.
At the same time, a space between the main body and the water bottle is delimited in the cavity of the bottle holder when the water bottle is inserted into the cavity of the holder. However, the cavity space is at least partially occupied by the external battery when the external battery is inserted into the cavity of the holder.
The configuration of the holder and the adjustment mechanism allows the size of the holder cavity to be adjusted according to the element to be inserted into the cavity, allowing the bottle holder to house a larger battery with a non-circular section, therefore giving greater autonomy than existing ones, simplifying the process of changing holders and adapting the electric bicycle to the desired route.
Before starting the route, the holder must be adjusted using the main body and the adjustment mechanism to prevent the external battery from falling out of the holder during the ride. In other words, the main body allows the cavity to be adapted to insert the external battery or the water bottle and subsequently, once the external battery or the water bottle is inserted, the adjustment mechanism exerts a compression force to adjust the size of the cavity of the holder to the size of the external battery. In this way, the holder is able to prevent the external battery or the water bottle from moving or coming out of the holder, by means of a quick, easy adjustment.
For all the above reasons, it is considered that the solution of the invention is advantageous compared to the previously described solutions, with the bottle holder and the external battery being a quick and simple solution without the need for tools to exchange the water bottle for the external battery.
The details of the invention are shown in the following figures, which do not intend to limit the scope of the invention:
The invention relates to a bottle holder (1) for an external battery (4) intended to be placed on the frame of an electric bicycle. Specifically, on the down tube of the electric bicycle frame. This bottle holder (1) includes the capacity to house a water bottle (7) or an external battery (4) compatible with the holder (1) of the invention.
The illustration in
On the one hand, the base (2) of the holder (1) is a longitudinal body comprising a flat surface (2a), at least one inclined side surface (2b), an upper surface (2c) and a lower surface (2d). The inclined surface (2b) extends from each side of the flat surface (2a), while the upper surface (2c) extends perpendicularly from the surfaces (2a, 2b) at an upper end (1a) of the holder (1) and the lower surface (2d) that extends perpendicularly from the surfaces (2a, 2b) at a lower end (1b) of the holder (1), as can be seen in
The holder (1) is characterized by the fact that it comprises an adjustment mechanism (6) to increase or decrease the size of the cavity (5), so as to allow it to house an external battery (4) with a non-circular section which is larger than the section of the water bottle (7) or can be adjusted to the section of the water bottle (7). The adjustment mechanism (6) comprises at least one flange (6a) on the base (2), at least one flange (6a) on the main body (3) and an elastic element (6b), as shown in
In addition, the holder (1) is also characterized in that the cavity (5) comprises a space (5a) delimited between the main body (3) and the water bottle (7) when the water bottle (7) is inserted into the cavity (5) of the holder (1), while the space (5a) is at least partly occupied by the external battery (4) when the external battery (4) is inserted into the cavity (5) as shown in
In other words, the adjustment mechanism (6) allows the cavity (5) to be adjusted when the external battery (4) is inserted, and subsequently, once the external battery (4) has been inserted, the elastic element (6b) of the adjustment mechanism (6) exerts a compression force on the flanges (6a), specifically, the elastic element (6b) aims to bring the flange (6a) of the free end (3c) of the main body (3) closer to the flange (6a) of the inclined surface (2b) of the base (2). In this way, the adjustment mechanism (6) is able to adjust the size of the cavity (5) of the holder (1) to the size of the external battery (4). Meanwhile, the main body (3) of the holder (1) allows the cavity (5) to be enlarged to put the water bottle (7) inside. In other words, the curved surface (3b) and the free end (3c) of the main body (3) are able to move away partially from the base (2) so that the water bottle (7) can be inserted into the holder (1). Once the water bottle (7) has been introduced into the cavity (5), it is held by the compression force exerted by the main body (3) on the water bottle (7) due to the fact that the curved surface (3b) and the free end (3c) tend to return to the initial position. In this way, the holder (1) is able to prevent the external battery (4) or the water bottle (7) from moving or coming out of the holder (1), by means of a quick, easy adjustment.
Optionally, the holder (1) also comprises at least one protrusion (9) on a free end of the surface of the upper surface (2c) as shown in
Optionally, in
Additionally, the external battery (4) of the embodiment of the invention is intended to be housed in the cavity (5) of the holder (1) and comprises an internal configuration of cells (15) that make up a non-circular section compatible with the holder (1) of the invention as seen in
Furthermore, this configuration with twenty cells (15) provides the external battery (4) with a capacity of 250 W/h, which means a capacity and autonomy superior to existing batteries intended to be inserted in known bottle holders.
In
For all the above reasons, thanks to the holder (1) and the external battery (4) compatible with the holder (1) of the invention, there is no need to change the holder when you want to exchange the external battery (4) for the water bottle (7) or vice versa, saving changeover time and obtaining an external battery (4) with greater autonomy.
Number | Date | Country | Kind |
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U202031151 | Jun 2020 | ES | national |