1. Field of the Invention
The present invention relates to gloves and, more particularly, to waterproof gloves and to a process of manufacturing such gloves.
2. Description of Background and Other Information
Waterproof or waterproof breathable gloves are required especially for mountain activities, such as climbing, skiing, and the like, as well as for miscellaneous other outdoor activities. Such gloves typically comprise an outer shell composed of several portions of leather or fabric sewn together at their edges. Several of such edges intersect in the area of the distal end of each finger. Because sewn edges inherently form entry points for water and moisture inside the outer shell, such gloves typically include an inner waterproof sheath. Such a lining is designed to enclose the user's hand. The finger tips of the lining provide protruding portions sewn to the shell. The walls of the lining are attached to the outer shell to delimit an inner volume. Padding is then attached inside the lining. The padding provides an improved comfort for the user and provides thermal isolation.
Such a glove suffers from several drawbacks. Because water or moisture can enter through the outer shell, the thermal isolation provided by the glove is weakened. Moreover, the cost of the waterproof or waterproof-breathable lining is relatively high. If the lining is pierced during a sewing phase, the glove is no longer waterproof. Due to its waterproofing process, including a PTFE coating step, the lining is required to be made out of two flat fabric layers joined together by bonding, such as adhesive bonding. The lining basically is made out of two flat layers having the general contour of the hand that are joined together at their respective edges, leaving an opening for insertion of the hand. Because of the flat structure of the two layers, the layers are easy to assemble, by welding, for example, thereby ensuring a waterproof assembly of the two layers. The lining then adopts a three-dimensional shape inside the outer shell. In order to delimit a suitable inner volume, a very large flat lining is initially required. In its three-dimensional shape, the lining then presents several pleats, or folds, in the area of the finger tips. The finger tips then suffer from a loss of tactile sense, making it difficult for the wearer to pick up small objects, such as coins. The finger flexibility is thereby also reduced. Seams located at the distal end of the finger shell also lead to a loss of tactile sense and to a poor appearance. Due to its loss of tactility and due to its limited finger flexibility, such a glove is not appropriate for sports such as climbing, skiing, etc. Moreover, in order to adapt to the morphology of the hand, a three-dimensional shape is required for the outer shell, which then requires complicated seam contours. Such seam contours require a complicated manufacturing process.
In the garment manufacturing field, it is known to seal and waterproof an assembly line between two panels by overlapping the assembly line with a waterproof strip. The assembly line can be a stitched line, an adhesive line, or a welded line. Using this technology, a flat assembly is much easier to waterproof than a three-dimensional assembly. In the manufacturing of garments larger in size than gloves, the waterproofing of three-dimensional structures remains possible because the size of the various panels that are to be assembled always make it possible to “flatten” the assembly line for a certain area or for a certain length. The manufacturing of tight-fitting gloves requires the assembly of various small panels. Furthermore, when assembled together, these panels often define an acute angle between each other. This is especially the case at the finger distal end and at the finger crotch, i.e., the part of the hand that corresponds to the junction of two fingers with the remainder of the hand.
There is thus a need for a glove overcoming the aforementioned drawbacks.
The invention provides a waterproof or waterproof-breathable glove that does not require a flat waterproof lining, or sheath, in its construction.
In addition, the invention provides a waterproof or waterproof-breathable glove that increases finger tactility.
Further, the invention provides a waterproof or waterproof-breathable glove that permits the area at the tip of the finger to be smooth.
Still further, the invention provides a waterproof or waterproof-breathable glove that has a closer fit to conform the hand of the user, and more particularly an anatomically correct fit.
Still further, the invention provides a waterproof or waterproof-breathable glove with enhanced aesthetic qualities.
Moreover, the invention provides the above-mentioned capabilities and advantages in a construction of a glove that is relatively simplified, as will become apparent from the description herein.
To these and other ends, the invention provides a waterproof or a waterproof-breathable glove that includes an outer shell comprising a plurality of finger shells, at least one finger shell including first, second, and third tongues, the first tongue forming the palm portion of the finger shell, the second and third tongues forming the back and side portions of the finger shell, with the tongues being joined together at their adjacent edges, the glove further including waterproof strips overlapping the adjacent edges and fastened to such edges.
In a particular embodiment, the first and second tongues are joined together by their adjacent edges located on a first side portion of the finger shell, the first and third tongues being joined together by their adjacent edges located on a second side portion of the finger shell, and the second and third tongues being joined together by their adjacent edges located on the back portion of the finger shell.
According to an embodiment, the three tongues are formed unitary from a common material.
According to another embodiment, the first, second, and third tongues are independent elements joined together. The first tongue can be made from leather and the second and third tongues can be made from fabric.
According to a particular embodiment, the three tongues are made from a waterproof or a waterproof-breathable material, or a stacked structure of multiple layers, such as layers of different materials.
The glove may include a padding delimiting an inner volume for receiving a user's hand, the padding being fastened to the outer shell and being enclosed inside the outer shell.
According to a particular embodiment, the waterproof strips are made from fabric covered by an adhesive material.
According to another particular embodiment, the waterproof strips are made out of a hot-melt adhesive material.
In a particular embodiment, the glove further includes a junction portion formed unitary with the first tongue and forms the back portion of the tip of the finger shell, the junction portion being folded over the first tongue, and the first tongue and the junction portion being joined together at their adjacent edges.
In a particular embodiment, the adjacent tongue edges are sewn together, the seams being covered by said waterproof strips.
In further embodiments the adjacent tongue edges are bonded or welded together.
The folding line of the junction portion may be located at the distal end of the finger shell, this distal end thereby having no seam, i.e., no stitching or other seam.
The tongue edges, in a particular embodiment, extend lengthwise of the finger shell.
Further consistent with particular aspects of the invention, the invention also provides a waterproof or waterproof-breathable glove having an outer shell including several finger shells, wherein two adjacent finger shells are joined together at a finger crotch by respective C-shaped edges, the glove further including a sealing component overlapping the adjacent edges and fastened to such edges, the sealing component being made out of a hot-melt adhesive material.
The C-shaped edges may extend from the palm portion below the finger crotch into the back portion of the outer shell below the finger crotch.
The C-shaped edges may be located in a plane longitudinal to the hand and perpendicular to the plane of the hand.
The invention also includes a method for manufacturing a waterproof or waterproof-breathable glove having several finger shells, such method including the following: forming a finger shell based on a pattern that includes first, second, and third tongues, by joining together these three tongues by their adjacent edges, the first tongue then forming a palm portion of the finger shell, the second and third tongues thus forming the back and side portions of the finger shell; fastening waterproof strips overlapping the adjacent edges; and fastening the finger shell to palm and back portions of the glove.
Other characteristics and advantages of the invention will be better understood from the description that follows, with reference to the annexed drawings showing, by way of non-limiting embodiments, how the invention can be made, and in which:
The invention is directed to a waterproof or waterproof-breathable glove comprising an outer shell including several finger shells. A finger shell comprises first, second, and third tongues. The first tongue forms the palm portion of the finger shell, the second and third tongues form the back and side portions of the finger shell. The tongues are joined together at their adjacent edges. Waterproof strips overlap the adjacent edges and are fastened to these edges.
Such a finger shell structure provides several advantages. A three-dimensional finger shell is obtained through the use of the three tongues. The finger shell is thus well adapted to the shape of the hand, i.e., to the hand morphology. Moreover, the three tongues limit the number and the complexity of the seams of the finger shell. Thus, the fastening of the waterproof strips is facilitated because the finger shell can be easily flattened. The finger shell can be typically flattened in the area of the seam along a length at least greater than 20 millimeters and, in certain embodiments, greater than 30 millimeters.
A waterproof sheath, or lining, therefore becomes unnecessary with the construction of the invention. Thus, the manufacturing costs of the glove are reduced and finger flexibility is improved. Moreover, no seam is present in the tip portion of the finger shell. Thus, the sense of feel and the flexion capacity of the finger are improved.
An edge of the tongue 21 overlaps an edge of the tongue 22. An edge of the tongue 21 overlaps an edge of the tongue 23. An edge of the tongue 22 overlaps an edge of the tongue 23. These overlapping edges are sewn together in the illustrated embodiment. Each pair of adjacent edges thus presents a seam extending lengthwise of the finger shell 2. A seam 51 notably joins tongue 21 and tongue 22 on one side of the finger shell 2, thereby forming a first longitudinally extending lateral seam. A seam 52 joins tongue 22 and tongue 23 on the back portion of the finger shell 2. Such a location of the seam 52 allows for an easy creation of variable cross sections of the finger shells, by just increasing the widths of tongues 22 and 23 for larger sizes. A lateral seam 53 (shown in
In this embodiment, the tongues 21, 22, 23 are formed unitary out of a single material, i.e., from one and only one piece of material, which reduces the number of seams and increases the finger shell durability. Moreover, the junction portion 25 is one-piece with each of the first, second, and third tongues. This material can be leather or an appropriate waterproof synthetic material, or even a laminated structure of multiple layers, such as several different layers. The tongues of such singular material, if leather, can have leather edges that would be joined together at the aforementioned seams.
The junction portion 25 is advantageously formed unitary (i.e., in one piece) with the first tongue 21. The junction portion 25 is folded over the first tongue 21. Thus, the junction portion 25 forms the back portion of the tip 24 of the finger shell 2. Adjacent edges of the junction portion 25 and of the first tongue 21 overlap. These edges are joined together by the same seams that join together tongues 22 and 23 to tongue 21. These edges are also overlapped by the above-mentioned waterproof strips. The folding line of the junction portion 25 relative to the first tongue 21 is located at the distal end 24 of the finger shell. Thus, the distal end of the finger shell 2 is smooth and rounded and has no seam. That is, the surface of the finger shell extending from the palm portion, i.e., from the first tongue 21, across the distal end or tip 24 of the finger shell, and away from the distal end within the junction portion 25 is continuous, i.e., the surface is not interrupted by an edge or a seam. This increases the sense of feel for the user when the glove is worn, as well as the appearance of the glove. The folding line of the junction portion is practically the extension of the seam 51. Such a junction also allows flattening the finger tip 24, which is typically a portion where seams are difficult to form. The fastening of the waterproof strips at the finger tip is thereby made easier with the invention. The lateral seams can end approximately in the area of the base of the finger nail, illustrated by a cross at
As can be seen, none of the seams forms an acute angle. The seams are almost linear, i.e., almost straight. Thus, linear waterproof strips can be used and can easily be fastened on the finger shells.
The finger shell 2 illustrated at
The glove 1 may include padding 58, as shown schematically cross section in
Due to the sealing component 8 being made out of two C-shaped strips 81 and 82, the fastening of the finger shells at the finger crotch is made much easier. To further facilitate the fastening of the strips 81 and 82, the C-shaped edges are located in a plane perpendicular to the plane of the hand. In a particular embodiment, this plane extends longitudinally along the hand.
An appropriate pressing and heating tool will preferably have a shape that will limit the width of the portions of the strips 81 and 82 overlapping each other. The sealing component 8 will thus have a shape and a contact surface unlikely to be uncomfortable at the area of the user's finger crotch.
The finger shells 2a and 2b advantageously comprise two overlapping layers. The outer layer can be made out of leather to provide grip and abrasion resistance. The inner layer can be a waterproof moisture-permeable fabric, thus providing weather resistance and perspiration evacuation. Tongue 23a comprises an inner fabric layer 232a and an outer leather layer 233a. Tongue 21a comprises an inner fabric layer 212a and an outer leather layer 213a. Tongues 21a and 23a are joined together by the seam 53a. Tongue 21b comprises an inner fabric layer 212b and an outer leather layer 213b. Tongue 21b and tongue 22b are joined together by the seam 51b.
The stitching of the various panels that constitute the glove can be replaced by any other method of bonding, e.g. welding, gluing.
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