EP2974609B1 - Schutzhandschuh - Google Patents

Schutzhandschuh Download PDF

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Publication number
EP2974609B1
EP2974609B1 EP15176585.6A EP15176585A EP2974609B1 EP 2974609 B1 EP2974609 B1 EP 2974609B1 EP 15176585 A EP15176585 A EP 15176585A EP 2974609 B1 EP2974609 B1 EP 2974609B1
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EP
European Patent Office
Prior art keywords
protection
elements
glove
articulation
plate counter
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EP15176585.6A
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English (en)
French (fr)
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EP2974609A1 (de
Inventor
David Sheridan
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Dainese SpA
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Dainese SpA
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Classifications

    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D19/00Gloves
    • A41D19/015Protective gloves
    • A41D19/01505Protective gloves resistant to mechanical aggressions, e.g. cutting. piercing
    • AHUMAN NECESSITIES
    • A41WEARING APPAREL
    • A41DOUTERWEAR; PROTECTIVE GARMENTS; ACCESSORIES
    • A41D2600/00Uses of garments specially adapted for specific purposes
    • A41D2600/10Uses of garments specially adapted for specific purposes for sport activities
    • A41D2600/102Motorcycling

Definitions

  • the present disclosure relates in general to a glove provided with rigid or semi-rigid protection elements.
  • a typical example is that of the gloves used by motorcycling riders while riding, in particular at a professional level.
  • a glove is known from JP2005325456A .
  • gloves provided with rigid or semi-rigid protection elements arranged in the region of the articulations of the fingers are normally used, while the palm of the hand is generally protected by means of padding elements, intended essentially to dampen any impact.
  • a protection glove for motorcycling use includes a glove body, namely a body made of a flexible material so that it may be adapted to the hand of a user and at the same have a sufficient tensile strength.
  • the glove body defines a housing inside which the user's hand is accommodated.
  • the glove body is made of leather and has in the region of the articulations of the fingers, such as the metacarpophalangeal articulations, namely the articulations situated between the metacarpal bones and the proximal phalanges, an insert made of carbon fibre or some other abrasion-resistant material.
  • the glove body has one or more cavities in the leather in the region of the metacarpophalangeal articulations for accommodating an insert made of an erosion-resistant material.
  • the glove body made of leather or other flexible material has, when viewed, an opening or window in the region of the metacarpophalangeal articulations and this opening or widow is closed and covered with a layer of anti-abrasion material.
  • This opening affects an area generally covering all the metacarpophalangeal articulations, namely all five articulations situated between the metacarpal bones and the proximal phalanges.
  • Joining together of the layer which has a greater abrasion resistance and a remaining part of the glove body is performed by means of stitches. These stitches therefore surround all five articulations situated between the metacarpal bones and the proximal phalanges.
  • the stitches, and therefore the surface interruptions constitute weakness zones in the glove which are subject to tearing.
  • the presence of a large number of stitches substantially weakens the structure of the glove itself and, in the event of a fall, said stitches may easily tear owing for example to frictional contact with the ground, thus causing the possible displacement and/or loss of the protection elements, with the result that they are substantially ineffectual.
  • the present disclosure proposes providing a protective glove which is able to overcome the drawbacks mentioned above with reference to the prior art and/or achieve further advantages.
  • the present disclosure is based on the recognition by the author of the present disclosure that, in order to avoid or reduce as far as possible the weakness zones of the glove, it is convenient to provide a glove body without windows or openings in the region of the articulations of the fingers, and therefore revolutionize the protective gloves as designed hitherto by abandoning the well-established tradition of providing a carbon-fibre insert.
  • a method according to the present disclosure envisages:
  • the glove in the region of each articulation zone, includes, instead of an opening closed by means of a carbon-fibre insert with an anti-abrasion function, a continuous material which forms the glove body, and two superimposed plate elements, one on the outer side with respect to the flexible surface of the glove body and one on the inner side with respect to the flexible surface of the glove body.
  • the outer protection element allows a high degree of protection from impact and abrasion, while the inner plate counter-element ensures an adequate positioning stability for the outer protection element, owing to the fact that the plate counter-element is arranged in the region of the articulation zones, and therefore on the hand side, and may therefore limit/compensate for any tensions caused by the glove body on the outer plate element following movement of the hand and also provide further protection for the articulation zones of the hand.
  • the plate counter-element is fixed directly to the protection element and may receive coupling elements of the protection element in order to ensure a solid and direct connection and at the same time allow any connecting, fixing or other elements on the outer side of the glove for the protection element to be kept to a minimum.
  • the coupling elements may in fact be arranged on the inner side of the protection element directed towards the glove body and therefore towards the protection counter-element, so as not to be visible from the outside.
  • the protection element may have the simplest and most linear shape or profile with suitable effect in terms of appearance of the glove, without screws, hooks or other mechanical connection means and be fixed, concealed from sight, to the plate counter-element inside the glove.
  • the protection element has a concave shape, for example spoon shape, with a minimum surface area covering only the knuckles.
  • the protection elements are separated from each other, so that a flexible zone in between the protection elements acts as a hinge element.
  • the plate counter-elements are separate from each other, as described in EP 2 974 608 .
  • the plate counter-element has a size and shape greater than those of the protection elements so as to allow the aforementioned compensation effect to be maximized.
  • the plate counter-element has a seat having a shape complementing that of the protection element so as to allow the protection element to be seated more stably.
  • the method may not include a step for forming an opening or a surface discontinuity in the region of, or surrounding, the one or more articulations of the fingers, nor include a consequent step of closing said opening with a material having a high abrasion resistance, such as a layer of carbon fibre, and instead envisages reinforcing the articulation zone by means of two plate elements which are connected together and allow the surface of the glove body to be left intact.
  • a visible surface of the glove body in the region of the articulations of the fingers may be devoid of interruptions in the surface and that a protection element is positioned in a stable manner on this visible surface of the glove body in the region of the finger articulation.
  • the protective glove according to the present disclosure may be made using a production method which is much simpler and faster, owing to the fact that it is not required to provide the opening in the region of the articulations of the fingers and consequently join together different materials.
  • mounting of the protection element on the glove body and fixing to the plate counter-element may be entirely or partly automated and carried out by means of special equipment, with a consequent reduction in the preparation times and therefore also with an advantage of an economic nature.
  • the protection element is applied, as a mounting, and/or glued onto the glove body in the region of the plate counter-element.
  • the protection element is fixed by means of one or more coupling elements of the mechanical type directly to the plate counter-element.
  • the protection element may be provided with one or more coupling pins intended to be inserted inside corresponding holes in the abutment plate.
  • the coupling pins may be bent in the manner of clips, after insertion inside the holes, so as to ensure secure fixing of the protection element to the glove body.
  • each embodiment forming the subject of the present disclosure may have one or more of the advantages listed above; in any case it is not required that each embodiment should have simultaneously all the advantages listed.
  • the protective glove 10 includes a glove body 12 of flexible material having an outer visible surface 14 and shaped to define an inner housing for accommodating a hand of a user.
  • glove body is understood as meaning within the scope of the present disclosure the set of one or more layers and one or more materials which provide the glove with a three-dimensional structure such as to define a housing for the hand.
  • This structure has overall a flexibility and mobility such as to allow a suitable mobility and operability of the hand.
  • the flexible material from which the glove body is made may be leather or imitation leather, a synthetic fabric or another suitable material known to the person skilled in the art for manufacturing a sports glove for a motorcyclist.
  • the material may also be understood as being a plurality of materials, or a plurality of layers, such as to provide the glove body with a sufficient flexibility and allow a suitable movement of the hand.
  • outer visible surface is understood as meaning the surface or face of the glove which is visible from the outside by the user when the glove is worn.
  • This "outer visible surface” may be made completely of the one or more flexible materials used to make the glove body or may include applications or inserts depending on the requirements.
  • the glove body includes, or defines, one or more covering areas 17, 18 which cover a corresponding number of articulation zones 20, 21.
  • the reference number 17 refers to the covering area which covers the metacarpophalangeal articulation zone 20, each comprised between a proximal phalange and a respective metacarpal bone.
  • the reference number 18 refers to the covering area which covers the proximal interphalangeal articulation zone 21, each comprised between a proximal phalange and the intermediate phalange.
  • articulation zone may refer to any articulation zone of the fingers such as the metacarpophalangeal articulation zone 20, the proximal interphalangeal articulation zone 21 or the distal interphalangeal articulation zone comprised between a distal phalange and the intermediate phalange.
  • covering area is understood as meaning that the glove body and therefore the flexible material from which the glove body is made covers the articulation zone 20, 21 situated underneath and covered by the covering area.
  • the one or more covering areas 17, 18 of the said glove body are devoid of an opening or a surface discontinuity in the region of, or surrounding, the one or more articulations of the fingers.
  • the flexible material of the glove body does not have any variation in the material or surface discontinuity of the material in the covering area.
  • the one or more layers of flexible material therefore extends continuously in the region of one or more articulations of the fingers so as to define one or more covering areas. There is therefore in the region of the one or more articulation zones or around the one or more articulation zones, no material insert which has a greater abrasion resistance compared to the abrasion resistance of the flexible material, such as a carbon fibre layer.
  • the material of the glove body extends without discontinuity of material over the entire articulation, for example over the entire metacarpophalangeal articulation 20 extending between a proximal phalange and a respective metacarpal bone or over the entire proximal interphalangeal articulation zone 21, extending between a proximal phalange and the intermediate phalange.
  • the flexible material from which the glove body is mainly made extends continuously in the zone of the grooves and the humps.
  • the protective glove 10 includes one or more protection elements 25, 26, each fixed on the outer visible surface 14 of a corresponding covering area 17, 18.
  • protection element refers to a body which may be rigid or semi-rigid (namely partially rigid) and which may have a plate-like shape. This body is adapted to protect from impacts and/or abrasions the articulation zone of the hand. This element is called in the related jargon "protection”.
  • the one or more protection elements 25, 26 are plate-like elements, plate elements or similar protection elements having a rigid consistency intended to perform an impact protection function.
  • the one or more protection elements 25, 26 may have a concave or substantially spoon-like shape so as to be able to adapt to the articulation zone of the hand which, as is known, when the hand is closed in the manner of a clenched fist, defines a projection or hump.
  • each protection element 25, 26 is associated with a respective articulation zone 20, 22 except for a protection element 25 which extends in bridge fashion over two articulation zones 20 of the little finger and the ring finger.
  • the reference number 25 refers to a rigid or semi-rigid protection element which protects the metacarpophalangeal articulation zone 20 comprised between a proximal phalange and a respective metacarpal bone.
  • the reference number 26 refers to a rigid protection element which protects the proximal interphalangeal articulation zone 21 comprised between a proximal phalange and the intermediate phalange.
  • the rigid protection element 25 or 26 may be made of metallic material or any other rigid or semi-rigid protection material.
  • the protective glove 10 includes one or more plate counter-elements or abutment elements 30 situated on an inner side of the glove body concealed from view in the region of a corresponding articulation of the fingers.
  • the one or more protection elements 25, 26 are fixed to a corresponding plate counter-element or abutment element 30.
  • the flexible material of the glove body is arranged between the one or more abutment elements 30 and the one or more protection elements 25, 26.
  • Each plate counter-element 30 may have a size greater than that of the protection element and be provided with a raised edge 34, which defines a seat and acts as a retaining or containing frame for the corresponding protection element 25, 26, 27, and favour stabling coupling together.
  • the protection element 25, 26 is housed in the seat of the plate counter-element and is stably accommodated there.
  • the plate counter-element may be made of a suitable protection material, such as a plastic material.
  • a gluing step or any step known in the sector for effecting fixing onto a fabric, may be performed.
  • the one or more protection elements may be glued, or generally mounted, on the outer visible surface 14 of the corresponding covering area 17, 18.
  • the one or more protection elements 25, 26 may be fixed to the outer visible surface 14 of the corresponding covering area 17, 18 by means of mechanical coupling elements.
  • the one or more protection elements 25, 26 are therefore directly connected or bonded to the outer visible surface 14.
  • the mechanical coupling elements may be pin elements 28 which are formed integrally with the respective one or more protection elements 25, 26 and are coupled for example with the glove body.
  • the one or more protection elements 25, 26 include said mechanical coupling members 28 which are fixed to coupling counter-elements, such as holes.
  • the mechanical coupling elements 28 are pin elements and said coupling counter-elements are holes 31 formed in said one or more plate counter-elements 30, said pin elements 28 being folded at an angle after insertion inside the respective holes 31.
  • the pin elements are formed on an inner side, directed towards the visible surface of the glove body, so as not to be visible and not interfere or create an inconvenience for the user when using the glove.
  • the glove body may include a lining and/or a layer of expanded material which may act as a cushion and may minimize any discomfort for the user felt owing to the presence of the one or more plate counter-elements 30.
  • some of the protection elements in the metacarpophalangeal articulation zone 20 extending between a proximal phalange and a respective metacarpal bone are independent of each other (in particular, for example, in the intermediate zone between the index finger and the middle finger, and between the middle finger and the ring finger) such that a portion of the glove body in between the articulation zones of the index finger, ring finger and middle finger are flexible connection zones which act as hinge zone or mutual twisting zone for the covering areas.
  • the layer of flexible material extends continuously in the region of the articulations of the fingers.
  • the continuity of the flexible material favours this possibility of movement.
  • the plate counter-elements 30 are similarly independent of each other so as to allow mobility of the hand and the articulations.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Gloves (AREA)

Claims (11)

  1. Schutzhandschuh (10) mit einem Handschuhkörper aus flexiblem Material, der eine äußere sichtbare Oberfläche (14) aufweist und so geformt ist, dass er ein inneres Gehäuse zum Aufnehmen einer Hand eines Benutzers definiert, wobei der Handschuhkörper einen oder mehrere Abdeckbereiche (17, 18) umfasst oder definiert, die ausgebildet sind, um Gelenkzonen (20, 21) der Finger zu bedecken, wobei der eine oder die mehreren Abdeckbereiche (17, 18) des Handschuhkörpers keine Öffnung oder Oberflächendiskontinuität im Bereich oder in der Umgebung der einen oder mehreren Gelenkzonen der Finger aufweisen, und wobei der Schutzhandschuh ein oder mehrere Schutzelemente (25, 26) oder Elemente, die zum Schutz vor Stößen geeignet sind, umfasst, wobei die einen oder mehrere Schutzelemente (25, 26) an der äußeren sichtbaren Oberfläche (14) eines entsprechenden Abdeckbereichs (17, 18) befestigt oder damit verbunden sind, dadurch gekennzeichnet, dass der Schutzhandschuh (10) ein Plattengegenelement oder Anschlagplattenelement (30) umfasst, das auf einer Innenseite des Handschuhs in der Gelenkzone (20, 21) angeordnet ist, wobei die einen oder mehrere Schutzelemente (25, 26) an einem korrespondierenden Plattengegenelement oder Anschlagplattenelement (30) befestigt und liegend über einem korrespondierenden Plattengegenelement oder in Korrespondenz befindlichen Anschlagplattenelement (30) der einen oder mehreren Gelenkzonen (20, 21) angeordnet sind, so dass in der Gelenkzone (20, 21) der Finger
    der Schutzhandschuh (10) aufweist: Anstelle einer Oberflächendiskontinuität eine mehrschichtige Konfiguration, die mindestens ein Schutzelement (25, 26) an einer äußeren sichtbaren Oberfläche (14) des Handschuhkörpers umfasst, die Abdeckfläche (17, 18), die Teil des Handschuhkörpers ist, und das Plattengegenelement (30) an einer Innenseite in Bezug auf die äußere sichtbare Oberfläche (14) des Handschuhkörpers.
  2. Schutzhandschuh (10) gemäß Anspruch 1, in dem das eine oder die mehreren Schutzelemente (25, 26) mechanische Kopplungselemente (28) umfassen, die an Gegenkopplungselementen (31) befestigt sind, die mit einem jeweiligen Plattengegenelement (30) verbunden sind.
  3. Schutzhandschuh (10) gemäß Anspruch 2, in dem die mechanischen Kopplungselemente (28) Stiftelemente sind und die Kopplungsgegenelemente Löcher (31) sind, die in dem Plattengegenelement (30) ausgebildet sind, wobei die Stiftelemente (28) nach dem Einführen in die jeweiligen Löcher (31) in einem Winkel gebogen werden.
  4. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem das Plattengegenelement eine Schutzfunktion für die Gelenkzonen aufweist.
  5. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem das Plattengegenelement (30) eine Oberfläche aufweist, die größer ist als das entsprechende Schutzelement (25, 26), und ein Kantenabschnitt zumindest teilweise perimetral von einer Kante des Schutzelementes (25, 26) vorsteht.
  6. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem das Plattengegenelement (30) einen Sitz zum stabilen Aufnehmen eines entsprechenden Schutzelements (25, 26) aufweist.
  7. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem das flexible Material Leder, Kunstleder oder ein Stoff ist, wie beispielsweise ein synthetischer Stoff, und / oder in dem das eine oder die mehreren Schutzelemente (25, 26) aus metallischem Material hergestellt sind.
  8. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem zumindest einige der Schutzelemente (25, 26) der Fingergrundgelenkzone (20), die sich zwischen einem proximalen Fingerglied und einem jeweiligen Mittelhandknochen in der Zwischenzone zwischen dem Zeigefinger und dem Mittelfinger und / oder zwischen dem Mittelfinger und dem Ringfinger erstrecken, voneinander unabhängig sind, und in dem zumindest ein Teil der Plattengegenelemente (30) der Fingergrundgelenkzone (20), in der Zwischenzone zwischen dem Zeigefinger und dem Mittelfinger, und / oder zwischen dem Mittelfinger und dem Ringfinger, voneinander unabhängig sind, und in dem sich ein Abschnitt des Handschuhkörpers zwischen der Gelenkzone des Zeigefingers und des Mittelfingers befindet, und / oder der Mittelfinger und der Ringfinger ist eine flexible Verbindungszone, die als eine Gelenkzone oder eine gegenseitige Verdrehungszone für die Abdeckbereiche fungiert.
  9. Schutzhandschuh (10) gemäß einem der vorhergehenden Ansprüche, in dem das eine oder die mehreren Schutzelemente (25, 26) starre oder halbstarre Schutzelemente sind, die direkt auf die sichtbare Oberfläche des Handschuhkörpers aufgebracht sind.
  10. Verfahren zum Herstellen eines Schutzhandschuhs (10), wobei das Verfahren die Schritte umfasst:
    - Bereitstellen eines Handschuhkörpers aus flexiblem Material mit einer äußeren sichtbaren Oberfläche (14), wobei der Handschuhkörper so geformt ist, dass er ein inneres Gehäuse zum Aufnehmen einer Hand eines Benutzers und zum Abdecken von Artikulationszonen (20, 21) der Finger definiert, wobei die Artikulationszonen der Finger mittels des flexiblen Materials ohne Oberflächendiskontinuität im Bereich von oder in einem Abdeckbereich (17, 18), der die eine oder mehreren Artikulationszonen der Finger umgibt, auf kontinuierliche Weise bedeckt sind;
    - Befestigen oder Zuordnen eines oder mehrerer Schutzelemente (25, 26) oder eines oder mehrerer Elemente, die zum Schutz vor Stößen auf der äußeren Sichtfläche (14) eines entsprechenden Abdeckbereichs (17, 18) geeignet sind;
    - Befestigen oder Zuordnen eines oder mehrerer Plattengegenelemente (30) an einer Innenfläche eines entsprechenden Abdeckbereichs (17, 18), so dass sich der Abdeckbereich (17, 18) in einer Zwischenposition zwischen einem Schutzelement (25, 26) und einem entsprechenden Plattengegenelement (25, 26) befindet, wobei die einen oder mehrere Schutzelemente (25, 26) an dem korrespondierenden Plattengegenelement (30) befestigt und überlappend über einem korrespondierenden Plattengegenelement oder in Korrespondenz befindlichen Anschlagplattenelement (30) der einen oder mehreren Gelenkzonen der Finger angeordnet sind, so dass die eine oder mehreren Gelenkzonen besser geschützt sind.
  11. Verfahren gemäß Anspruch 10, wobei das Verfahren keinen Schritt zum Bilden einer Öffnung oder einer Oberflächendiskontinuität in dem Bereich von oder in der Umgebung einer oder mehrerer Gelenkzonen der Finger umfasst.
EP15176585.6A 2014-07-18 2015-07-14 Schutzhandschuh Active EP2974609B1 (de)

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ITVR20140187 2014-07-18

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EP2974609B1 true EP2974609B1 (de) 2018-03-28

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT201800004607A1 (it) * 2018-04-17 2019-10-17 Indumento con elemento protettivo
NL2029201B1 (en) 2021-09-17 2023-03-24 Splash Design B V Protective glove

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5250901Y2 (de) * 1973-09-28 1977-11-18
US4094014A (en) * 1976-10-29 1978-06-13 Schroeder Charles W Workman's glove
DE9116769U1 (de) * 1991-10-07 1993-10-07 O & P Melchinger Schutzhandschuh für Polizisten und andere Sicherheitskräfte
JP4563724B2 (ja) * 2004-05-12 2010-10-13 忠明 兼平 防護用作業手袋
US20070083968A1 (en) * 2004-11-29 2007-04-19 Stokes Leslie J Puncture Resistant Glove

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

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