The present invention is directed to novel wheels useful for various products including strollers, vehicles for children, carts, luggage trollies and bags, tricycles, bicycles and toys, and methods of production.
Blow molding is a manufacturing process by which hollow plastic parts are formed. In general, there are three main types of blow molding: extrusion blow molding, injection blow molding, and injection stretch blow molding. The blow molding process begins with melting down thermoplastic materials and forming the melted materials into a parison or a pre-form. The parison is a tube-like piece of plastic with a hole in one end through which compressed air can pass. The parison is then clamped into a mold and air is blown into it. The air pressure then pushes the plastic out to match the mold surface. Once the plastic has been cooled and hardened, the mold opens up and the part is ejected.
Extrusion moulding is a manufacturing process usually used to make pipes, rods, and tubes. The molten phase which is forced through a die, results in a long ‘tube like’ shape. The shape of the die determines the shape of the tube. The extrusion is then cooled and forms a solid shape. The long continuous tube may be cut at equal intervals according to the desired use. Extrusion process for the production of corrugated tubes, pipes, and rods is well known in the art. The most common use of such corrugated tubes is for the delivery of liquids, wherein the corrugated tube serves as a means for transferring said liquids.
In the field of baby strollers, bicycles, tricycles, scooters and other vehicles for kids and adults, cart, trolley bags and luggage, and the like, the wheels are one of the most expensive components that increase the price of such products significantly. Many wheels available in the market are made of foamed Ethylene vinyl acetate (EVA) that is a polymer that approaches elastomeric materials in softness and flexibility. Recently, the usage of EVA for such purposes has become problematic due to regulation problems. Additionally, these wheels suffer from fast abrasion, and low capacity.
A substitute material for the production of such wheels is foamed Polyurethane. This material by itself is an expensive material that raises the product cost.
Additionally, the wheels that are produced by the blow process that are available today are generally formed from plastic materials that give the wheel a cheap look, make noise while in usage, and suffer from fast abrasion.
Thus, there is a real need in the market for wheels with a good quality that are suitable for such products, that are safe to use, that their production cost is minimal, that they are stable and have a high capacity, that they have a high quality look and good functioning, and finally, that they exhibit slow abrasion and are wear-resistant. The present invention is directed to a novel wheel that is cheap and fast to produce, that is stable and of high quality, and that further comprises an inherent shock absorber as will be described in details herein forth.
The subject matter disclosed herein is directed in one main aspect to a novel wheel comprising: a flexible annular segment manufactured by a standard blow molding process, the segment having at least one layer made of a thermoplastic elastomer; and a wheel hub configured to support the flexible annular segment from each of its sides and to create a cylinder for insertion of an axle through it so as to allow connection of the wheel to other components of a product.
In one another aspect, the subject matter disclosed herein is directed to a method for manufacturing a wheel, said method comprising the following steps:
a. Creating a blow molded corrugated shape tank appearing as part of a corrugated tube with at least one layer of a thermoplastic elastomer via a blow molding process;
b. Slicing annular segments of said blow molded tank; and
c. Assembling said sliced annular segments on a wheel hub for supporting the flexible annular segment from each of its sides and creating a cylinder for insertion of an axle through it to allow connection of the wheel to other components of a product.
In one further aspect, the subject matter of the invention is directed to a wheel comprising: a flexible annular segment manufactured by an extrusion molding process, the segment having at least one layer made of a thermoplastic elastomer; and a wheel hub configured to support the flexible annular segment from each of its sides and to create a cylinder for insertion of an axle through it so as to allow connection of the wheel to other components of a product.
Examples illustrative of embodiments of the disclosure are described below with reference to figures attached hereto. In the figures, identical structures, elements or parts that appear in more than one figure are generally labeled with the same numeral in all the figures in which they appear. Dimensions of components and features shown in the figures are generally chosen for convenience and clarity of presentation and are not necessarily shown to scale. Many of the figures presented are in the form of schematic illustrations and, as such, certain elements may be drawn greatly simplified or not-to-scale, for illustrative clarity. The figures are not intended to be production drawings.
The figures (FIGS.) are listed below.
In the following description, various aspects of a novel wheel and methods of production of the wheel are described. For the purpose of explanation, specific configurations and details are set forth in order to provide a thorough understanding of the invention.
Although various features of the disclosure may be described in the context of a single embodiment, the features may also be provided separately or in any suitable combination. Conversely, although the disclosure may be described herein in the context of separate embodiments for clarity, the disclosure may also be implemented in a single embodiment. Furthermore, it should be understood that the disclosure can be carried out or practiced in various ways, and that the disclosure can be implemented in embodiments other than the exemplary ones described herein below. The descriptions, examples and materials presented in the description, as well as in the claims, should not be construed as limiting, but rather as illustrative.
Terms for indicating relative direction or location, such as “right” and “left”, “up” and “down”, “top” and “bottom”, “horizontal” and “vertical”, “higher” and “lower”, and the like, may also be used, without limitation.
In accordance with one main aspect of the invention, a blow molding process is used to manufacture a flexible corrugated shape tank appearing as part of a corrugated tube, with a pre-defined number of segments according to the dimensions of a mold in use, wherein each segment created by this process is cut from the tank, assembled on a wheel hub, and optionally, closed by a cover so as to create a functional wheel.
In accordance with another aspect of the present invention, a flexible corrugated tube having multiple layers is created via an extrusion process, wherein each segment of this corrugated tube is cut from the tube, assembled on a wheel hub, and optionally, closed by an additional cover so as to create a functional wheel.
As will be described in details below, both processes allow mass production of the novel wheel, wherein in the blow molding process a closed corrugated shaped tank is produced that is being cut into segments to be assembled on a wheel hub, while in the extrusion process an open corrugated tube is initially manufactured and being sliced into the segments for assembling with a wheel hub.
Thus, the present invention is one aspect is aimed to provide a wheel comprising:
(a) a flexible annular segment manufactured by a blow molding process, said segment having at least one layer made of a thermoplastic elastomer; and
(b) a wheel hub configured to support the flexible annular segment from each of its sides and to create a cylinder for insertion of an axle through it so as to allow connection of the wheel to other components of a product.
The thermoplastic elastomer may be selected from the group consisting of thermoplastic rubber, EVA (Ethylene Vinyl Acetate), PVC rubber, Styrenic block copolymers (TPE-s),Polyolefin blends (TPE-o), Elastomeric alloys (TPE-v or TPV), Thermoplastic polyurethanes (TPU), Thermoplastic copolyester, and Thermoplastic polyamides. The above list of optional materials is provided for explanations and should not be construed as a limiting the scope of the invention.
In a preferred embodiment, the flexible segment comprises at least two layers, an outer layer made of a thermoplastic elastomer, and an inner layer made of at least one of the following materials: polypropylene, polyethylene, PVC (Polyvinyl chloride), ABS (Acrylonitrile butadiene styrene), and nylon. The outer layer made of a thermoplastic elastomer is configured to serve as a shock absorber and/or as a wear resistant layer. The flexible segment may comprise additional layers as described below.
In some examples of the invention, the flexible segment is a slice of a corrugated shape tank, manufactured in a blow molding process. Alternatively, the flexible annular segment may be manufactured by an extrusion process as part of a corrugated open tube.
As mentioned above, the novel wheel manufactured by either one of blow molding process or an extrusion process may be used for various products such as, but not limited to, strollers, children vehicles, carts, trolley bags, luggage trollies, and other vehicles for adults such as scooters, tricycles and bicycles.
In accordance with the present invention, the cylinder configured to allow insertion of an axle therethrough, functionally allows the connection of the wheel to an additional wheel.
The present invention is further aimed to provide a method for manufacturing a wheel, said method comprising the following steps:
a. Creating a blow molded corrugated shape tank with at least one layer of a thermoplastic elastomer via a blow molding process;
b. Slicing annular segments of said blow molded tank;
c. Assembling said sliced annular segments on a wheel hub for supporting the flexible annular segment from each of its sides and creating a cylinder for insertion of an axle through it to allow connection of the wheel to other components of a product.
The blow molded tank preferably comprises a plurality of flexible segments wherein each segment is structurally separated from adjacent segments. The thermoplastic elastomer used in this method is preferably selected from the group consisting of thermoplastic rubber, EVA (Ethylene Venyl Acetate), PVC rubber, Styrenic block copolymers (TPE-s), Polyolefin blends (TPE-o), Elastomeric alloys (TPE-v or TPV), Thermoplastic polyurethanes (TPU), Thermoplastic copolyester, and Thermoplastic polyamides. However, other materials available in the market for such use may also be employed.
In some implementations of the invention, the segments are flexible segments comprising at least two layers, an outer layer made of a thermoplastic elastomer and an inner layer made of at least one of the following materials: polypropylene, polyethylene, PVC (Polyvinyl chloride), ABS (Acrylonitrile butadiene styrene), and nylon. The outer layer made of thermoplastic elastomer is preferable configured to serve as a shock absorber and/or as a wear resistant layer. In further embodiments, the flexible segments may be composed of additional layers according to the budget and needs.
The method described above may be used for manufacturing wheels for various products as described in details above with reference to products that are suitable for the wheels of the invention.
The cylinder configured to allow insertion of an axle therethrough, for connecting the wheel to other components of a product, also allows connection of the wheel to an additional wheel.
In some embodiments of the invention, the method for manufacturing a wheel according to the above may be executed by an extrusion molding process, wherein instead of a closed tank, a corrugated tube is created and then sliced into annular segments.
The present invention in a further aspect is directed to a wheel comprising a flexible annular segment manufactured by an extrusion molding process, said segment having at least one layer made of a thermoplastic elastomer; and a wheel hub configured to support the flexible annular segment from each of its sides and to create a cylinder for insertion of an axle through it so as to allow connection of the wheel to other components of a product. The said thermoplastic elastomer in such embodiment may be selected from the group consisting of thermoplastic rubber, EVA (Ethylene Venil Acetate), PVC rubber, Styrenic block copolymers (TPE-s), Polyolefin blends (TPE-o), Elastomeric alloys (TPE-v or TPV), Thermoplastic polyurethanes (TPU), Thermoplastic copolyester, and Thermoplastic polyamides. However, a person skilled in the art would agree that other thermoplatic materials may also be used and the above list should not be construed as limiting the scope of the invention.
In a specific embodiment of the invention, the flexible segment comprises at least two layers, an outer layer made of a thermoplastic elastomer and an inner layer made of at least one of the following materials: polypropylene, polyethylene, PVC (Polyvinyl chloride), ABS (Acrylonitrile butadiene styrene), and nylon.
The outer layer made of thermoplastic elastomer may serve as a shock absorber and/or a wear resistant layer. In a similar manner to the segment originated from the blow molding process above, the flexible segment produced by an extrusion process is a slice of a corrugated tube manufactured in an extrusion molding process.
The wheel may be used for the same type of product as mentioned above, wherein, the cylinder configured to allow insertion of an axle therethrough, also allows connection of the wheel to additional wheel/s.
In a specific example, the wheel manufactured by an extrusion process as described above may further comprise a third layer positioned in parallel to the two other layers in a manner such that said third layer creates, together with the two other layers, a closed compartment, providing the wheel with inherent shock absorber capabilities.
The invention will be further explained and demonstrated by the following descriptions of the figures.
In a specific example, a third layer 15 may be a linear layer positioned in parallel to the two other layers in a manner such that the third layer closes the tips of the “wave” (or any other shape) created by the two other layers and thereby creates, together with the other layers, a closed compartment. This unique structure of such layer provides wheel 100 with inherent shock absorbing characteristics due to the fact that submergence in a close compartment provides an effect of shock absorbance. Layer 15 is preferably composed of an extruded polypropylene (PP), and configured and operable to provide the two other layers 13 and 14 additional support in order to avoid their collapse, and further to allow injection of additional shock absorbing materials in cases where additional material is required.
As mentioned above, flexible segment 20 may comprise at least one layer. In the specific example illustrated herein it comprises two outer layers 13 and 14, whereas the additional layer 15 is only an option and it is somewhat dependent on the manufacturing method that is used for the production of flexible annular segment 20 (will be described in details with reference to
Also shown in
In the example illustrated in this figure, a corrugated continuous tube with multiple layers 200 made by extrusion process is first manufactured (a cut of the tube illustrating the layers is shown), and segments 20 of the tube are then cut in a separation process. The cut segments are then assembled with wheel hub 10 comprising two parts 10′ and 10″ and optionally, with a wheel cover 12 (as described in details with reference to
The novel manufacturing method for wheels provided herein is fast and cheap relative to methods for producing the same that are currently known in the art, and it further makes use of materials that are not usually used to produce wheels due to their high cost. Nevertheless, the product of this process is quality, and the shape of the segments produced by this process is advantageous compared to commonly used wheels as it comprises an inherent shock absorber thanks to its structure and the materials that are used, and further avoids the need to use an inner lining. Furthermore, the capabilities to carry loads are similar to the capabilities of prior art wheels, and the abrasion is reduced compared to other wheels available in the market.
Similar advantages are achieved when manufacturing flexible annular segments, sliced from corrugated shaped tank produced via a blow molding process for producing the same as will be described with reference to
In order to obtain a functional wheel, the flexible annular segment is assembled with a wheel hub composed of two parts 441 and 442, and configured to support the flexible annular segment from each of its sides and to create a cylinder 18 for insertion of an axle through it, so as to allow connection of the wheel to other components of a product and to additional wheel/s. The two parts of wheel hub 441 and 442 are connected to each other by screws inserted into structural connectors 11. In the example illustrated in these figures, each part of the wheel hub is designed such that no additional cover is needed. In an alternative implementation of the invention, another design of a wheel hub may be used and a decorative cover may further be used for aesthetic purposes. In the isometric view of
The cross section view of blow molded tank 400 further illustrates the corrugated structure of the tank and the layers comprising it. As mentioned in the above, the outer layer 40 that is made of a thermoplastic elastomer configured and operable to provide the wheel with high quality and functional abilities, eliminating the noise that is made by chipping of plastic wheels from usage, and minimizing shock and wear. The inner layer 42 is usually made of cheaper materials, thus, allowing reduction of the cost of the wheel without compromising on the quality or spoiling the exclusive look of the final product. Close up view on area “Z” views a part of a segment that serves as the flexible component of the wheel. In the specific example, segment 410 is shown encompassed on both sides by area 411 that will be cut for separating the functional segment. As can be seen, both the segments 410 and areas 411 are made of the same materials and contain outer layer 40 and inner layer 42. In a further implementation of the invention additional layers made from various materials may be added either between the inner and outer layer as intermediates, or as inner layers.
It should be clear that the description of the embodiments and attached Figures set forth in this specification serves only for a better understanding of the invention, without limiting its scope. It should also be clear that a person skilled in the art, after reading the present specification could make adjustments or amendments to the attached Figures and above described embodiments that would still be covered by the present invention.
Filing Document | Filing Date | Country | Kind |
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PCT/IL2014/051016 | 11/23/2014 | WO | 00 |
Number | Date | Country | |
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61908131 | Nov 2013 | US |