This disclosure relates to a last device for manufacture of articles of footwear, and methods of manufacture of articles of footwear using the disclosed last device. Methods and apparatuses for manufacture of last devices are also disclosed.
An article of footwear can comprise, e.g., a shoe, sandal, boot or the like or a component of a footwear. Examples of components of footwear comprise an upper and a sole. An upper can be made from various materials, for example leather, different fabrics and textiles and/or synthetic materials and consist of a plurality of material components and layers. A sole is typically made from more hardwearing materials, e.g., rubber and/or hardwearing synthetic materials. Components for footwear can comprise layers of different materials.
Various techniques have been used for producing the shape of footwear. For example, upper material can be placed on a mould and formed into a desired shape by application in succession of moist, heat, and high pressure by a pressing tool. The mould is commonly called a last in the field of shoemaking. The formed upper can then be attached to the sole, for example by means of gluing and/or stitching. Use of lasts in manufacture of articles of footwear can require multiple work stages and be labour intensive, costly and time consuming. Producing required lasts for each line, style and variant of an article of footwear, and also possibly for different stages of making the article of footwear, can also be expensive and laborious, and require specialised tooling.
The embodiments aim to address one or more issues in relation to manufacture of articles of footwear and/or lasts.
According to an aspect there is provided a last device for forming an article of footwear, comprising a last body having a surface for receiving material for the article of footwear and at least two sets of fluid conduits extending separately within the last body and opening to the surface of the last body, wherein the at least two sets of separate fluid conduits are provided to subject the material on the last body to at least two different types of treatment.
According to a more specific aspect at least two different types of treatment are applied simultaneously to material on a last body.
The least two separate conduits may be connected to generators of different treatment effects. The treatments may comprise treatment by at least two of pressure, vacuum, hot air, cold air, steam, moist, fluidized powder, and a chemical composition. At least one of the generators may comprise a pump, is a compressor, a steam generator, an air or water cooling unit, an air and water heating unit and/or a reservoir for chemical composition.
A treatment application control arrangement configured for separate control of application of treatments through the at least two fluid conduits may also be provided.
At least a part of fluid conduits can be produced in a last body by means of additive manufacturing. The last body may comprise at least one part of 3D printed material comprising at least one fluid conduit.
A last body may be configured to be separable into at least two parts. At least one of the fluid conduits may extend from one part of the last body to another part of the last body. A sealing arrangement may be provided between the at least two parts.
One set of fluid conduits may open in a first localised area on a surface of a last body. Another set of fluid conduits may open in another localised area on the surface of the last body. The localised areas may provide different types of treatment of the material on the surface.
Two adjacent openings may be arranged to simultaneously provide two different types of treatment in a localised area.
At least one fluid conduit may open towards the side of a last body facing sole section of an article of footwear.
According to another aspect there is provided method for forming in manufacture of an article of footwear, the method comprising placing material for the article of footwear on a surface of a last body comprising at least two sets of fluid conduits extending separately within the last body and opening to the surface of the last body, applying via a first set of the separate fluid conduits a first type of treatment to the material on the surface of the last body, and applying via a second set of the separate fluid conduits a second type of treatment to the material on the surface of the last body.
According to a more specific aspect at least two different types of treatments may be applied simultaneously to material placed on a last body. The least two different types of treatments may be provided by generators of different treatment effects. At least two of pressure, vacuum, hot air, cold air, steam, fluidized powder, and a chemical composition may be applied to material on a last. Solvent may be applied on the material on the last body via at least one of the fluid conduits. Material may be removed, e.g., cut or eroded, from the internal surface thereof by means of the solvent.
A localised treatment of material on a last body may be caused through at least two separate fluid conduits opening to the surface of the last body.
Treatment may be applied to material on a last body via fluid conduits produced by means of additive manufacturing.
A last body may be placed within a piece of material for an article of footwear such that the last body is substantially encompassed by the material.
A last body may be separable into at least two parts. The parts may be inserted one by one within material for an article of footwear and joined so that at least one fluid conduit extends from one part of the last body to another part of the last body.
A different treatment of material on different areas of the surface of a last body may be provided by applying a first type of treatment by one set of fluid conduits opening in a first area on the surface of the last body and applying a second type of treatment by another set of fluid conduits opening in another area on the surface of the last body.
At least a type of treatment may be applied to material that has been placed on a last body on a sole facing side of an upper component of an article of footwear by at least one fluid conduit opening.
Treatment effect generators and/or application of the treatments to material placed on a last body may be controlled by means of a computer program product.
According to a yet further aspect a method for manufacturing a last device for use in forming an article of footwear is provided. The method comprises producing by means of additive manufacturing a last body comprising a surface for receiving material for the article of footwear and at least two sets of fluid conduits extending within the last body and opening to the surface of the last body, the producing process comprising forming the at least two sets of fluid conduits as separated flow systems for facilitating simultaneous application of at least two different types of treatment to the material on the surface of the last body.
3D printing may be used to produce at least a part of a last body comprising a complex pattern of fluid conduits.
An article of footwear manufactured according to herein described methods and devices may also be provided.
Various exemplifying embodiments of the invention are described below with reference to the attached drawings. Steps and elements explained herein may be reordered, omitted, and combined to form different embodiments and any step indicated as performed may be caused to be performed in another order. In the drawings:
In the following certain detailed examples in relation to last devices for use in manufacture of articles of footwear embodying the invention will be described with reference to the appended drawings.
The last device 1 comprises a body block 5 having a surface 4 for receiving material 9 to be shaped for the article of footwear. At least two sets of fluid conduits or manifolds extend separately within the last body 5 such that the holes at the ends of the conduits or manifolds open to the surface of the last body. The conduits are not visible in
The conduits within the last material can be complex in structure. Such complex structures are made possible by advanced manufacturing techniques. A possibility is to use additive manufacturing for producing a last. Examples of possible additive techniques are described later in this description.
Substantially the entire surface 4 of the last body is shown to be covered by openings 10, 12 in
The at least two sets of separate fluid conduits are arranged to subject the material 9 disposed on the surface 4 of last body 5 to at least two different types of treatment. Treatments can be provided for example for shaping, forming, cutting, eroding, softening, hardening and/or otherwise conditioning to the material for article of footwear. More detailed examples of possible treatments will be explained below.
The last device 1 can be configured to apply the at least two different types of treatment simultaneously to material placed on the last body. The different treatments can be applied in different areas. This is illustrated in
Different types of treatment can also be provided in an area by nearby openings. This is illustrated in
The separate fluid conduits for different types of fluid treatments can be supplied by wider supply channels 21 and 23, as shown e.g. in
The at least two separate sets of conduits can be connected to the generators 51 and 52 facilitating application of different types of treatment effects to the material on the last device. For example, generator apparatus can generate one or more of air or water pressure, vacuum, hot air, cold air, steam and moist. Treatment by a chemical composition such as a by treatment composition, resin, adhesive, solvent and/or cement for shoemaking can also be provided. For example, at least one of the conduits can be used to treat the material by application of solvent such as corrosive or eroding fluid on the material so as to cut or remove material on a desired location on the last. Material hardening and/or softening chemical may also be applied locally. At least one of the generators can comprise a pump, a compressor, a steam generator, a cooling unit for air, water, fluidized powder or other fluid, a heating unit for air, water or other fluid and/or a treatment composition reservoir and/or pump.
The generators can be controlled by the control apparatus 50 such that the at least two separate fluid conduits extending between the generators and the openings on the surface of the last body are separately operable. The control apparatus can comprise appropriate hardware and software components, user interface(s), connections and so forth to provide the required control functions. Examples of features controlled comprise flow rate, pressure, temperature, selection of treatment composition. The control can take into account feedback from the workpiece on the last device, for example feedback information generated based on a machine vision, infrared, laser or another sensing arrangement and adapt the operation of the generator apparatus accordingly.
The last device can be attached to robotic arm. For example, the last device can be moved between workstations and/or between a workstation and a last storage and/or during footwear formation process by a robot. The last device can be inserted within upper material to be treated and removed from treated upper component by means of the robot, or another manipulator operated under control of an appropriate computer program product.
At least a part of the fluid conduits can be produced in the last body by means of additive manufacturing at the time of producing the perforated last device by means of additive manufacturing. An example of additive manufacturing techniques is three dimensional (3D) printing and at least one part of the last device can comprise 3D printed material. 3D printing is an additive process where material is laid down by progressively adding material to form a product of desired shape, size and appearance. In this specification term ‘3D printing’ is used to refer to additive manufacturing processes that can be used to create physical objects from three dimensional digital data.
The additive manufacturing processes can be arranged to re-form a raw material by the addition of energy and positioning in a controlled manner. The control is provided by an appropriate control unit based on the digital data. The inventors have found that 3D printing facilitates manufacture of last devices with complex geometries required by at least some of the herein described fluid conduit arrangements comprises separated sets of fluid conduits.
A variety of 3D printing processes are available. Also, a variety of stock materials (polymers, metals, ceramics, etc.) in differing forms (e.g. liquids, powders, granules, and filament) are available. According to a possibility the material comprises 3D printed material that has been infused with epoxy resin. An example of such materials and techniques is disclosed in GB patent 2512355B.
The material to be used for 3D printing or moulding of a last body can be selected to have such properties that no separate curing process after printing or moulding is necessary. That is, after e.g. 3D printing the printed portion can be left to cool and settle without the need to use any curing agent. This is possible by appropriate selection of the printing material. The material can be in semi-liquid state at the time of printing, and adapted to bond mechanically and chemically with other material.
The additive process, such as operation and movement of a 3D print head relative to the component to be manufactured, and/or movement of a support on which the printing takes place, can be controlled by one or more controller units.
An example of 3D printing on a substrate provided by a component of the footwear is illustrated in
At least two different types of treatments may be applied simultaneously to the material on the last body. At least two different types of treatments can be generated by different types of generators of treatment effects.
Localised treatment of the material can be provided through the at least two separate fluid conduits and openings on the surface of the last body.
According to an embodiment the last body is inserted within a piece of material for the article of footwear such that the last body is substantially encompassed by the material. The last body may be separated into at least two parts. The parts can then be inserted one by one within the material for the article of footwear and joined so that at least one of the fluid conduits extends from one part of the last body to another part of the last body.
Different treatment of the material may be provided on different areas of the surface of the last body by applying a first type of treatment by one set of fluid conduits opening in a first area on the surface of the last body and applying a second type of treatment by another set of fluid conduits opening in an another area on the surface of the last body.
At least a type of treatment may be applied to material that has been placed on the last body on the sole facing side of an upper component of the article of footwear by at least one fluid conduit opening.
A treatment can comprise removal of material e.g. by cutting or eroding material placed on the last. At least one of the conduits can be used to apply solvent, for example corrosive or material eroding fluid on the material so as to cut or remove material on one or more locations on the last. This can be provided, e.g., to make an internal cut on the material, or remove a layer, a part of a layer, or several layers of a multilayer material on the last. Material hardening and/or softening agent may also be applied locally.
Flowchart of
In accordance with a possibility a computer program product has be configured to control application of treatments on material for an article of footwear placed on a surface of a last body comprising at least two sets of fluid conduits extending separately within the last body and opening to the surface of the last body. The software product can be arranged to control application, via a first set of the separate fluid conduits, of a first type of treatment to the material on the surface of the last body and application, via a second set of the separate fluid conduits, of a second type of treatment to the material on the surface of the last body. The above describes other examples of possible aspects that can be controlled by means of the computer program product.
While certain aspects of the invention may be illustrated and described as block diagrams, flow charts, or using some other schematic pictorial representation, it is well understood that these blocks, apparatus, systems, techniques and control methods described herein may be implemented in, as non-limiting examples, hardware, software, firmware, special purpose circuits or logic, general purpose hardware or controller or other computing devices, or some combination thereof.
The foregoing description provides by way of exemplary and non-limiting examples a full and informative description of exemplary embodiments of the invention. However, various modifications and adaptations may become apparent to those skilled in the relevant arts in view of the foregoing description, when read in conjunction with the accompanying drawings and the appended claims. All such and similar modifications of the teachings of this invention will still fall within the spirit and scope of this invention.
Number | Date | Country | Kind |
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1811502.2 | Jul 2018 | GB | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2019/066542 | 6/21/2019 | WO | 00 |