![]() CONNECTING HARNESS
专利摘要:
A roping harness belt (2) having a flexible support band (7) for supporting the back portion of the user, a belt circumference adjuster (2a) (2) having first and second ends secured to the support strip (7) at first and second positions (A, B), and at least three resistance wires (8) each attached to the adjusting device (2a) at third and fourth specific positions (C, D). At least one of the resistance wires (8) has a length greater than the distance between its third and fourth positions (C, D) along the support strip (7). The belt (2) also comprises a means for securing the resistance wires (8) configured so as to fasten the resistance wires (8) to the support strip (7) spaced apart from one another in one direction. orthogonal to a longitudinal axis of the support strip (7). The invention also relates to a pair of leg loops having similar characteristics. Finally, the invention relates to a roping harness comprising a belt (2) and / or a pair of thighs with the aforementioned characteristics. 公开号:FR3026649A1 申请号:FR1459578 申请日:2014-10-07 公开日:2016-04-08 发明作者:Loic Blondeau 申请人:Zedel SAS; IPC主号:
专利说明:
[0001] TECHNICAL FIELD OF THE INVENTION The invention relates to a roping harness belt and to a roping harness comprising such a belt and a pair of leg loops. State of the art In the field of climbing, mountaineering, cross-country skiing, or to perform work at height, the harnessing harnesses 15 ensure the safety of people. Conventionally, a lashing harness comprises a belt and a pair of thighs. Depending on the type of use, the belt and thigh circumference may be more or less thick to ensure the comfort of the user. For example, a harness intended for work at heights must be particularly comfortable to allow prolonged use. In climbing, the harness must be so as not to hurt the climber who falls in a way in mind. In the field of mountaineering and ski touring, the harness is mainly intended for the roping of a rope. The thickness of the belt and thigh can be thinner because they are rarely put in tension. This results in a gain in weight and compactness appreciated by athletes, but at the expense of their comfort. In order to guarantee good conditions of use whatever the discipline practiced, it is important to make a compromise between the comfort of the user, the weight of the roping harness and its compactness. In this way, the harness is versatile and the user does not need to multiply his equipment. OBJECT OF THE INVENTION An object of the invention is to provide a roping harness belt comprising: - a flexible support strip for supporting the back portion of the user, - a device for adjusting the circumference of the belt having first and second ends secured to the support strip in first and second positions, - at least three resistance wires each attached to the adjusting device in third and fourth specific positions, - at least one of the resistance wires having a length greater than the distance separating its third and fourth positions along the support strip, - a means for securing the resistance wires configured so as to join the resistance wires to the support strip in a spaced apart manner, relative to others in a direction orthogonal to a longitudinal axis of the support strip. According to one aspect of the invention, the resistance wires may be secured to the support strip so as to allow longitudinal sliding of the resistance wires relative to the support strip. The joining of the resistance wires on the support strip can be carried out by means of at least one holding wire stitched in the support strip on each side of the associated resistance wire to limit the lateral displacement of the resistance wire with respect to the support band. Each resistance wire can for example be held by a zig-zag stitched holding wire in the support strip, two consecutive stitches that can be made on either side of the resistance wire. A holding wire may be associated with several resistance wires so as to secure several resistance wires to the support strip. The resistance wires may also be held on the support strip by means of a holding wire stitched in the support strip in a direction intersecting with the longitudinal axis of the support strip. The resistance wires can also be fixed punctually on the support strip. The resistance wires can then be held on the support strip by means of a holding wire stitched in the support strip in the direction orthogonal to the longitudinal axis of the support strip. In addition, the belt of the rope harness may comprise at least one reinforcing grid for protecting the pelvis of the user. Furthermore, the support strip may be a grid, and be made of polypropylene. According to one embodiment, the support strip can be narrowed at the ends. The support strip may have a thickness less than or equal to 1.5 mm, preferably less than or equal to 1 mm. The roping harness belt may further comprise at least five resistance wires. [0002] The invention also relates to a pair of roping harness leg loops comprising: - two flexible support strips, - at least three resistance wires attached to the longitudinal ends of the two support strips and intended to connect the two strips the support wires, the resistance wires having at least two different lengths so as to be spaced apart from one another in a direction orthogonal to the longitudinal axes of the support strips. Finally, the invention relates to a lashing harness comprising a belt and / or a pair of thighs with the aforementioned characteristics. BRIEF DESCRIPTION OF THE DRAWINGS Other advantages and features will emerge more clearly from the following description of particular embodiments of the invention given by way of nonlimiting example and represented in the accompanying drawings, in which: FIG. a diagrammatic view of a roping harness; - Figure 2a schematically illustrates a roping harness belt according to an embodiment of the invention; - Figure 2b shows an embodiment of the roping harness. according to the embodiment illustrated in Figure 2a, - Figure 3 schematically illustrates an embodiment of the pair of thighs. Detailed description A roping harness 1 such as that shown diagrammatically in Figure 1 comprises a belt 2 having a waistline 2b associated with an adjusting device 2a. The harness 1 also has a pair of leg loops 3, each leg 3 being connected to the dorsal part of the belt 2 advantageously by two elastic straps 4, and to the ventral part by a bridge 5 via a central ring 6. As shown in Figure 2a, the adjusting device 2a is fixed in first and second positions A and B on a support strip 7 of the waist 2b. The adjusting device 2a is configured to adjust the circumference of the waist circumference so as to allow an adjustment of the size of the belt 2 to the corpulence of the user. For example, the adjustment device 2a may include a strap that provides the mechanical strength in case of a fall. [0003] One of the roles of the support strip 7 is to ensure the comfort of the user by supporting at least its back portion. The support strip 7 has no tensile strength. She is unable to support the weight of the user. [0004] The support strip 7 may be made of a flexible material 7 such as polypropylene. According to one embodiment, the support strip 7 can be perforated to improve its flexibility and compactness and breathability, and to reduce the weight of the harness 1. It can for example be made in the form of a grid. Advantageously, the support strip 7 has a thickness less than or equal to 1.5 mm and even more preferably less than or equal to 1 mm. It can be narrowed at the longitudinal and widened ends at the iliac crests (see Figure 2a) to be more comfortable. [0005] The mechanical strength of the belt is not only conferred by the adjusting device 2a, but also by resistance son 8 fixed on the adjusting device 2a in third and fourth positions C and D. According to a particular embodiment, the first and third positions A and C on the one hand, and the second and fourth positions B and D on the other hand are melted. To improve the compactness and flexibility of the harness, it is indeed wise to use resistance son 8 rather than straps. The resistance wires 8 are advantageously sewn juxtaposed on the adjustment device 2a. In this way, the seam has a small thickness in comparison with a seam where the threads are stacked. The area occupied by the seam on the adjustment device 2a is also lower when resistance wires 8 are used in place of straps. [0006] The resistance wires 8 provide the mechanical strength in the dorsal part of the waist 2b. The resistance son 8 can for example be made of polyethylene having at least 100,000 monomers per molecule, and having a molar mass of approximately equal to 3.106 g / mol. This type of material is known to have a very high tenacity and resistance to abrasion and to ensure the safety of the user in case of a fall, that is to say when the resistance son 8 are put suddenly in traction. In case of shock, the support strip 7 placed between the resistance son 8 and the user prevents the latter from being injured. Indeed, the user could be cut or burned by the abrupt pulling of the resistance wires 8. With the support strip, the pressure of the wires is distributed over the entire surface of the support strip 7, which limits In a variant, the resistance wires 8 can be placed between the user and the support strip 7, but this embodiment is less comfortable. According to the invention, the belt 2 advantageously comprises at least three resistance wires 8. However, when the number of resistance wires is higher, the forces exerted on the user in the case of dynamic use are lower. It may therefore be wise to make a belt 2 which has four or five resistance son 8 or even seven or more. The fact of making a roping harness 1 with at least five threads rather than three increases the volume of the harness 1 very little, and makes it possible to better distribute the forces exerted on the resistance threads 8 in the event of a fall. Resistance to higher intensity forces is also improved. This can for example be useful for belaying corpulent people. [0007] At least one of the resistance wires 8 is longer than the shortest distance separating the third and fourth positions, that is to say the points where the resistance wires 8 are sewn on the adjustment device 2a. The axis passing through the third and fourth positions is considered hereinafter as the longitudinal axis of the belt 2. [0008] Preferably, several resistance wires 8 are longer than the distance between the third and fourth positions. In this way, the resistance wires 8 can be secured spaced apart from each other on the support strip 7 in a direction orthogonal to the longitudinal axis. The force is distributed over a larger surface of the support strip 7, which limits discomfort in the event of a fall or more generally when the belt is put under tension. During the tensioning, the support strip 7 is slightly deformed to match the shape of the user's pelvis, which comes to put the resistance son 8 in tension. [0009] According to an advantageous embodiment, the resistance wires 8 are held on the support strip 7 spaced in the orthogonal direction even when they are energized. While keeping a constant spacing in the orthogonal direction, the resistance wires 8 can slide longitudinally if they are tensioned. One way to achieve this is to use holding wires 9, such as those shown in Figure 2b. These are stitched in the support strip 7 so that each stitch is made near a resistance son 8 to limit their displacement in the orthogonal direction. A single holding wire 9 can be used to secure several resistance wires 8 simultaneously to the support strip 7. [0010] According to a first embodiment shown in Figure 2b, a holding wire 9a can be sewn zig-zag so as to maintain several son of resistance 8 at the same time. It is also possible to maintain the resistance wires 8 independently of each other by stitching a zig-zag holding wire 9b on either side of each resistance wire 8. [0011] According to an alternative embodiment, the resistance wires 8 can also be sewn in a pointwise manner on the support strip 7 by means of the holding wires 9c. The stitching points are then made directly on the resistance wires 8, so that the latter is fixed with respect to the support strip 7. The resistance wires 8 can also be held spaced apart on the support strip 7 to using holding son 9d stitched in a secant direction to the longitudinal axis, and preferably in the orthogonal direction. These bites can be performed alone or in addition to bites made zig-zag. [0012] According to a particular embodiment of the invention, at least one reinforcing grid may be arranged between the support strip 7 and the resistance wires 8. This reinforcement grid is intended to improve the rigidity of the support strip 7 while maintaining a very light harness. The iliac crests corresponding to the most exposed zones in the event of tensioning of the harness 1, it may be advantageous to position a reinforcing grid at each iliac crest to prevent the deformation of the harness 1 and thus to avoid the discomfort of the 'user. [0013] The reinforcing grid being more rigid, it is advantageously located on the iliac crests to facilitate the folding of the harness. The pair of leg loops 3 can also be made using two independent flexible support strips 10 connected to each other by at least three resistance wires 11 (see FIG. resistor 11 forming the bridge 5. According to an alternative embodiment, the pair of leg loops 3 may contain four or five son resistance 11 or more, for example to improve the strength of the harness 1 if the user has a corpulence important. Each thigh loop 3a and 3b is formed on the one hand by a seam of the ends 11a of the resistance son 11 on a portion 11b of the son 11 located at the edge of the bridge 5, at the junction between the bridge 5 and the strips 10, and secondly by sewing the ends of each support strip 10 one on the other. As for the belt 2, the mechanical strength of the leg loops 3a and 3b is provided by the resistance wires 11. [0014] Moreover, in a manner analogous to the characteristics developed in relation to the belt 2, the resistance wires 11 advantageously have different lengths so as to be kept spaced apart from each other with respect to a direction orthogonal to the longitudinal axis of the strips. support 10, the resistance wire 11 having a minimum length corresponding to that positioned on the longitudinal axis of the support strips 10. The resistance son 11 can be secured to the support strips in the same way as on the belt 2 while slidable along the longitudinal axis of the leg loops. Holding wires may be used to limit the movement of the resistance wires 11 in a direction orthogonal to the longitudinal axis of the leg loops. Seams 10 secant to the longitudinal axis of the thighs or zig-zag seams can for example be made. The discomfort of the user is then advantageously limited during a tensioning of the resistance son 11, for example when the latter sits in the harness 1. The mechanical properties of the support strips 10 and resistance son 11 are preferably identical to those of the support strip 7 and the resistance wires 8. The materials chosen to manufacture the belt 2 and the pair of thighs 3 are preferably also identical. As an alternative to the embodiment of the leg loops that has just been described, it is quite conceivable to perform adjustable leg loops, each comprising an adjusting device similar to that described in relation to the belt 2 of the harness 1 This results in a lightweight, compact, solid and comfortable leash harness 1 that can be used both for use in mountaineering or ski touring where lightness and compactness are paramount, and the setting for climbing use, where comfort is the most important criterion.
权利要求:
Claims (16) [0001] REVENDICATIONS1. Roping harness belt (2) (1) comprising: - a flexible support band (7) for supporting the back portion of the user; - an adjustment device (2a) for the circumference of the belt (2); ) having first and second ends attached to the support strip (7) in first and second positions (A, B), - at least three resistance wires (8) each attached to the adjusting device (2a) in third and fourth specific positions (C, D), - at least one of the resistance wires having a length greater than the distance separating its third and fourth positions (C, D) along the support strip (7), - a means for securing the resistance wires (8) configured to join the resistance wires (8) to the support strip (7) spaced apart from one another in a direction orthogonal to a longitudinal axis of the strip support (7). [0002] 2. The belt (2) of roping harness (1) according to claim 1, wherein the resistance son (8) are secured to the support strip (7) so as to allow longitudinal sliding of the resistance wires ( 8) relative to the support strip (7). [0003] Belt (2) of roping harness (1) according to one of claims 1 and 2, wherein at least one of the resistance son (8) is secured to the support strip (7) by means of at least one holding wire (9) stitched into the support strip (7) on each side of the associated resistance wire (8) to limit the lateral displacement of the resistance wire (8) relative to the support band (7). ). [0004] 4. The belt (2) of roping harness (1) according to claim 3, wherein at least one of the resistance son (8) is held by a holding wire (9) zig-zag stitched in the support strip (7), two consecutive stitching points being made on either side of the resistance thread (8). [0005] 5. Belt (2) of roping harness (1) according to any one of claims 3 or 4, wherein a holding wire (9) is associated with several resistance son (8) so as to secure several wire resistor (8) with the support band (7). [0006] The belt (2) of a roping harness (1) according to any one of claims 1 to 5, wherein the resistance wires (8) are held on the support strip (7) by means of a wire (9) stitched in the support strip (7) in a direction intersecting with the longitudinal axis of the support strip (7). [0007] 7. Belt (2) of roping harness (1) according to any one of claims 1 to 6, wherein the resistance son (8) are fixed punctually on the support strip (7). [0008] Belt (2) of a roping harness (1) according to claim 7, wherein the resistance wires (8) are held on the support strip (7) by means of a wire (9) stitched in the support strip (7) in a direction orthogonal to the longitudinal axis of the support strip (7). [0009] 9. belt (2) of roping harness (1) according to any one of claims 1 to 8, comprising at least one reinforcing grid for protecting the pelvis of the user. [0010] The belt (2) of roping harness (1) according to any one of claims 1 to 9, wherein the support strip (7) is a grid. [0011] Belt (2) of roping harness (1) according to any one of claims 1 to 10, wherein the support strip (7) is made of polypropylene. [0012] The roping harness belt (2) according to any one of claims 1 to 11, wherein the support strip (7) is narrowed at the ends. [0013] Belt (2) of roping harness (1) according to any one of claims 1 to 12, wherein the support strip (7) has a thickness less than or equal to 1.5 mm, preferably less than or equal to 1 mm. [0014] 14. Belt (2) of roping harness (1) according to any one of claims 1 to 12, comprising at least five resistance son (8). [0015] 15. Pair of thigh loop (3) of a roping harness (1) comprising: - two flexible support strips (10), - at least three resistance wires (11) fixed to the longitudinal ends of the two support strips ( 10) and intended to connect the two support strips (10), at least two resistance wires (11) having at least two different lengths so as to be held spaced apart from each other in a direction orthogonal to the longitudinal axes of the support strips (10). [0016] 16. Roping harness (1) comprising a belt (2) according to one of claims 1 to 14, and / or a pair of leg loops (3) according to claim 15.
类似技术:
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同族专利:
公开号 | 公开日 EP3006089B1|2022-03-16| FR3026649B1|2019-05-17| US20160096043A1|2016-04-07| CN105477834A|2016-04-13| EP3006089A1|2016-04-13|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US20070209869A1|2006-03-09|2007-09-13|Arc'teryx Equipment Inc.|Load bearing system, and an article including such load bearing system| WO2011107676A1|2010-03-04|2011-09-09|Zedel|Tie-in harness having a force distributor, and method for manufacturing same| EP2404643A1|2010-07-10|2012-01-11|Salewa Sportgeräte GmbH|Harness| DE102012000182A1|2012-01-09|2013-07-11|Edelrid Gmbh & Co. Kg|Safety belt for work assignment or climbing activity, has oppositely curved surface that is provided in angular range of leg loop| US3757893A|1972-06-26|1973-09-11|E Hobbs|Articulating leg slings and belt| US4177839A|1976-01-27|1979-12-11|Nsk-Warner K.K.|Webbing for seat belt| US4228829A|1979-03-30|1980-10-21|Nsk-Warner K.K.|Webbing for seat belt| DE3714088C2|1987-04-28|1990-01-04|Messerschmitt-Boelkow-Blohm Gmbh, 8012 Ottobrunn, De| US5376440A|1993-03-31|1994-12-27|Ikeda Bussan Co., Ltd.|Woven fabric for seat belt| CA2385163A1|1999-10-14|2001-04-19|Rose Manufacturing Company|Lanyard with integral fall arrest energy absorber| DE10026444C2|2000-05-30|2002-04-04|Autoliv Dev|Seat belt system with a measuring arrangement for determining the webbing force| DE50104721D1|2000-12-20|2005-01-05|Mammut Tec Ag Seon|LIFTING BAND| US7909137B2|2002-06-20|2011-03-22|Trophyline, Llc|Support harness| US7063185B2|2002-06-20|2006-06-20|Sherry Jean Green|Support harness| US6953064B2|2002-07-22|2005-10-11|Murdock Webbing Co., Inc.|Grommeted web section and method of making| FR2859913B1|2003-09-19|2005-12-02|Zedel|REINFORCED STRENGTHENING AND SUSPENSION HARNESS| US7490610B2|2003-12-09|2009-02-17|Franklin Scott D|Fall protection harness| US20060005293A1|2004-07-12|2006-01-12|Frey John R|Safety harnesses| JP4308130B2|2004-12-27|2009-08-05|藤井電工株式会社|Sewing connection pattern of safety belt for preventing fall| US20070068731A1|2005-09-28|2007-03-29|Sturges Manufacturing Co., Inc.|Energy absorber for personal fall arrestor| FR2892027B1|2005-10-14|2008-03-07|Zedel Soc Par Actions Simplifi|SEAT BELT EQUIPPED WITH AN IMPROVED HARDWARE DEVICE DEVICE| FR2892028B1|2005-10-14|2008-01-11|Zedel Soc Par Actions Simplifi|SAFETY HARNESS EQUIPPED WITH AN IMPROVED BELT| US8443937B2|2006-02-21|2013-05-21|Globe Holding Company Llc|Floating harness with continuous loop| EP1970102B1|2007-03-13|2016-10-19|Amer Sports Canada Inc.|Securing ring and corresponding manufacturing process| JP2008302907A|2007-06-11|2008-12-18|Takata Corp|Elastic webbing, air belt, air belt device| DE202008016802U1|2008-12-19|2009-04-02|E. Oppermann, Einbeck, Mechanische Gurt- Und Bandweberei Gmbh|belt| US20130319793A1|2011-02-17|2013-12-05|SAS Safety Systems Holdings Pty Ltd as Trustee for the SAS Safety Systems Holdings Unit Trust|Fall Arrest Apparatus| FR3036038A1|2015-05-12|2016-11-18|Zedel|DEIRED STRAP AND METHOD OF MANUFACTURING THE SAME|US10143865B2|2014-10-06|2018-12-04|Black Diamond Equipment, Ltd.|Harness and load bearing systems| FR3037811B1|2015-06-29|2018-05-25|Zedel|STRAP FORMING BELT AND / OR PAIR OF THROUGHING HARNESS THRUTS, AND ATTACHING HARNESS| FR3056115B1|2016-09-16|2018-10-05|Zedel|CONNECTING HARNESS.| US10933260B2|2018-09-08|2021-03-02|Black Diamond Equipment, Ltd.|Mesh harness systems| WO2021173891A1|2020-02-26|2021-09-02|Thomas Dalziel|Sling climbing harness| USD891546S1|2020-04-16|2020-07-28|Shenzhen Dashijin Trading Co., Ltd.|Antigravity training belt|
法律状态:
2015-09-08| PLFP| Fee payment|Year of fee payment: 2 | 2016-04-08| EXTE| Extension to a french territory|Extension state: PF Ref document number: PF | 2016-04-08| PLSC| Publication of the preliminary search report|Effective date: 20160408 | 2016-09-19| PLFP| Fee payment|Year of fee payment: 3 | 2017-09-18| PLFP| Fee payment|Year of fee payment: 4 | 2018-09-13| PLFP| Fee payment|Year of fee payment: 5 | 2019-09-13| PLFP| Fee payment|Year of fee payment: 6 | 2020-09-14| PLFP| Fee payment|Year of fee payment: 7 | 2021-09-13| PLFP| Fee payment|Year of fee payment: 8 |
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申请号 | 申请日 | 专利标题 FR1459578|2014-10-07| FR1459578A|FR3026649B1|2014-10-07|2014-10-07|CONNECTING HARNESS|FR1459578A| FR3026649B1|2014-10-07|2014-10-07|CONNECTING HARNESS| EP15185958.4A| EP3006089B1|2014-10-07|2015-09-18|Roping harness| US14/876,430| US20160096043A1|2014-10-07|2015-10-06|Roping harness| CN201511022417.9A| CN105477834A|2014-10-07|2015-10-08|Roping harness| 相关专利
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