Multi-layer chainsaw protection
The protective gear addresses the challenge of compression from climbing gear by using multi-layered materials with varying fiber densities, ensuring effective pull-out of fibers and enhanced chainsaw protection.
Patent Information
- Application Number
- JP2024548667
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-02-17
- Filing Date
- 2023-02-02
- Publication Date
- 2025-05-08
- Estimated Expiration
- 2043-02-02
AI Technical Summary
Chainsaw protective gear faces challenges when arborists wear climbing harnesses or climbing spurs, as the compression from these straps affects the pull-out fibers' ability to be pulled out during contact with a chainsaw.
The protective gear incorporates multiple layers of protective material with varying fiber densities, where inner layers have a lower fiber density and outer layers have a higher fiber density, ensuring effective pull-out of fibers even under compression from straps.
This multi-layered approach enhances the protective gear's ability to provide chainsaw protection even when under compression, ensuring the pull-out fibers can effectively engage with the chainsaw's mechanism to prevent further rotation.
Smart Images

Figure 0007673333000001 
Figure 0007673333000002 
Figure 0007673333000003
Abstract
Description
[Technical field]
[0001] Example embodiments relate generally to personal protective equipment (PPE) and, more particularly, to personal protective clothing that provides protection for chainsaws. [Background technology]
[0002] Chainsaw protective clothing is used today to protect users from injury or serious injury resulting from accidental contact with the cutting chain of an operating chainsaw. To that end, many protective clothing are provided with pull-out fibers that are pulled from the protective clothing when contact occurs between the chain and the clothing. The fibers are pulled into the chainsaw mechanism, where they become lodged in the chain drive channel and prevent further rotation of the drive shaft and chain.
[0003] While such clothing has proven useful when a chainsaw user is working on the ground (i.e., to fell a tree and then cut the fallen tree's branches), the situation changes when the chainsaw user works away from the ground to perform pruning and thinning of tree limbs. Such pruning and thinning may be performed by an arborist to maintain the long-term health of the tree. To perform such pruning and thinning at height, the arborist may be required to climb the tree. The equipment used to climb trees typically includes a climbing harness and tree climbing spurs. The climbing harness is typically secured tightly around the arborist's waist and legs and is connected to a safety rope or line secured to the tree above the arborist to prevent falls from the tree. Furthermore, the climbing spurs are typically connected to the arborist's boots and are tightly strapped around each leg of the arborist, often at the calf.
[0004] Thus, the straps of climbing harnesses and climbing spurs can compress the protective clothing and put the material of the clothing under tension where the straps are located. This tension can affect pull-out fibers and the ability of the pull-out fibers to be pulled out of the clothing when a contact event with a chainsaw occurs. Thus, there is a need for protective clothing that provides sufficient pull-out of fibers when contacted with an operating chainsaw, possibly when straps (e.g., of a climbing harness or climbing spurs) are applied. [Brief description of the drawings]
[0005] [Figure 1] 1 is a front view of a protective pant according to some example embodiments. [Figure 2A] 1 illustrates a protective layer assembly according to some example embodiments. [Figure 2B] 1 illustrates another protective layer assembly according to some example embodiments. [Diagram 3] 1 illustrates a sewn protective layer assembly according to some example embodiments. [Figure 4A] 1 is a front view of a protective pant according to some example embodiments. [Figure 4B] 4B is a rear view of the protective pant of FIG. 4A in accordance with some example embodiments. [Diagram 5] 1 is a front view of another protective pant according to some example embodiments. [Figure 6A] 1 is a front view of protective chaps according to some example embodiments. [Figure 6B] 6B is a rear view of the protective chaps of FIG. 6A according to some example embodiments. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0006] According to some example embodiments, a protective garment for use with a chainsaw is provided. The protective garment may comprise a plurality of inner protective material layers and a plurality of outer protective material layers. Each inner protective material layer may comprise a first pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The first pultruded fiber may be woven into each of the inner protective material layers having a first fiber density. Each outer protective material layer may comprise a second pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The second pultruded fiber may be woven into each of the outer protective material layers having a second fiber density. The second fiber density may be greater than the first fiber density. The plurality of inner protective material layers may be positioned closer to a user's skin than the plurality of outer protective material layers when the protective garment is worn.
[0007] According to some example embodiments, a front panel of protective clothing for use with a chainsaw is provided. The front panel may be a component of a garment that may be under compression by straps of a climbing harness or climbing spurs. The front panel may comprise a plurality of inner protective material layers and a plurality of outer protective material layers. Each inner protective material layer may comprise a first pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The first pultruded fiber may be woven into each of the inner protective material layers having a first fiber density. Each outer protective material layer may comprise a second pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The second pultruded fiber may be woven into each of the outer protective material layers having a second fiber density. The second fiber density may be greater than the first fiber density. The plurality of inner protective material layers may be positioned closer to a user's skin than the plurality of outer protective material layers when the protective clothing is worn.
[0008] According to an embodiment, each of the inner armor layers may have a first areal density and each of the outer armor layers may have a second areal density, the second areal density being higher than the first areal density.
[0009] According to embodiments, each of the inner protective material layers may have a first thread count and each of the outer protective material layers may have a second thread count, the second thread count being greater than the first thread count of the inner protective material layer. For example, the first thread count of each respective inner protective material layer may be a weft thread count, and similarly, the second thread count of each respective outer protective material layer may also be a weft thread count. Typically, thread counts may be measured in threads / cm. According to some embodiments, all of the inner protective materials may have the same fiber density, areal density, and thread count. Similarly, all of the outer protective materials may have the same fiber density, areal density, and thread count. Typically, to keep the weight of the protective garment low, each of the first material layer and / or second material layer is non-metallic.
[0010] Having thus described some example embodiments in general terms, reference may now be made to the accompanying drawings, which are not necessarily drawn to scale. Some example embodiments may now be more fully described below with reference to the accompanying drawings, in which some, but not all, example embodiments are shown. Indeed, the examples described and illustrated herein are not to be construed as limiting with respect to the scope, applicability, or configuration of the present disclosure. Rather, these example embodiments are provided to enable the disclosure to satisfy applicable legal requirements. Like reference numerals refer to like elements throughout. Furthermore, as used herein, the term "or" should be construed as a logical operator that results in a true result when one or more of its operands are true. As used herein, operably coupled shall be understood to refer to direct or indirect connections in each case that enable functional interconnection of components that are operably coupled to each other.
[0011] According to various example embodiments, protective clothing and panels of protective clothing are provided herein that can be used for chainsaw protection. Additionally, according to some example embodiments, the protective clothing can provide chainsaw protection when multiple portions of the clothing are under compression from tightened straps, such as climbing harnesses, climbing spurs, etc. In this regard, protective clothing according to some example embodiments may be constructed from multiple layers of protective material, which may be a fabric with pultruded fibers. The pultruded fibers may be pulled from the fabric due to contact with a cutting link of a chainsaw, and the pultruded fibers may, for example, wrap around a drive axle to prevent rotation of the axle and chain. To compensate for the effects of compression from straps applied to the protective clothing, a specific assembly of multiple layers of protective material with different densities may be utilized to construct the clothing as described herein.
[0012] In this regard, according to some example embodiments, the protective garment or a panel of the protective garment may comprise a plurality of inner protective material layers and a plurality of outer protective material layers. Each inner protective material layer may comprise a first pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The first pultruded fiber may be woven into each of the inner protective material layers having a first fiber density. Each outer protective material layer may comprise a second pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The second pultruded fiber may be woven into each of the outer protective material layers having a second fiber density. According to some example embodiments, the second fiber density of the outer protective material layers may be greater than the first fiber density of the inner protective material layers. The first pultruded fiber and / or the second pultruded fiber may be woven into the inner protective material layers and / or the outer protective material layers, respectively, to extend along parallel, generally straight lines, thereby facilitating fiber pull-out. The first and / or second pultruded fibers are configured as multifilament yarns, which may be non-spun yarns or rovings woven into the inner and / or outer protective material layers, respectively. By configuring the first and / or second pultruded fibers as non-spun yarns or rovings, their efficiency in stopping the saw chain is maximized. According to an embodiment, the non-spun yarns or rovings of the pultruded fibers may be more open (i.e., looser and "fluffier") in the outer protective material layer than in the inner protective material layer. Thereby, the saw chain may be more likely to immediately entangle the pultruded fibers when contacting the outer protective material layer. Each thread (i.e., yarn or roving) of the pultruded fibers may, for example, contain between 500 and 3000 fibers. Typically, to keep the weight of the protective garment low, each of the first layer of material and / or the second layer of material is non-metallic.
[0013] Chainsaw protective clothing (such as trousers) in the EU must comply with EN ISO 11393-2:2019 and are divided into three classes and three types depending on the amount and arrangement of filler material. Class 1, 2 and 3 trousers are rated for use with chainsaws travelling at speeds of up to 20 metres per second (m / s), 24 m / s and 28 m / s respectively.
[0014] In addition to the standard having three protection classes (1, 2, 3), it also has three design classes A, B, and C, with design class C protecting the entire leg. Tree fellers, ground workers, and wood choppers typically choose design class A trousers because they are at a lower risk of being cut on the back of the leg. Climbers and tree surgeons generally have chainsaws attached to their climbing harnesses by lanyards, and choose design class C because they may be cut from a wider variety of positions. In design class A and B trousers, the protective material is positioned to cover primarily the front of the legs, whereas type C trousers provide protective material that extends around the front and back to encircle each leg. In each type, the protective material extends a distance on each side upward from the crotch, while the buttocks (the area behind the wearer between the waist and the legs) may, but need not, include protective material. Some users (such as casual or non-professional users) prefer chaps, which may be two separate leg covers (or attached together), usually buttockless, joined by a waistband or the like, providing design class A protection, and worn over conventional pants.
[0015] An example embodiment of a protective pant 100 (also referred to as trousers) is shown in FIG. 1. The protective pant 100 may be formed from several layers of protective materials, as described further herein. As shown in FIG. 1, an individual may wear the protective pant 100, which includes a climbing harness 110 and climbing spurs 120. As can be seen in FIG. 1, the climbing harness 110 and climbing spurs 120 may include respective straps that may be applied to the exterior of the protective pant 100 when a user is wearing these items. As can be seen, the climbing harness 110 may include straps that compress the protective pant 100 across the waist and extend from the crotch of the protective pant 100. In some examples, tools may be secured to the climbing harness 110 that may increase the compressive force applied to the straps (such as a chainsaw itself, a hand saw, scissors, etc.). Additionally, the climbing spurs 120 may include straps that compress the legs of the protective pant 100 near the calves.
[0016] 2A, an exploded view of a protective layer assembly 200 that may be used in the construction of protective clothing is shown. The protective layer assembly 200 is shown in relation to a user's skin 201 when the protective clothing is worn to provide context for the location of the layers relative to the user's skin 201. In this regard, the protective layer assembly 200 may comprise multiple layers of protective material. These layers of protective material may comprise pultruded fibers as described herein that are easily pulled out of the fabric when contacted by an operating chainsaw. According to some example embodiments, these layers of protective material may include, for example, a warp knitted synthetic fabric that is elastically stretchable and water repellent.
[0017] Further, according to some example embodiments, the multiple protective material layers may include multiple inner protective material layers and multiple outer protective material layers. The protective layer assembly 200 may include three inner protective material layers 210, 220, and 230. In addition, the protective layer assembly 200 may include three outer protective material layers 240, 250, and 260. The inner protective material layers 210, 220, and 230 may be disposed closer to the user's skin 201 than the outer protective material layers 240, 250, and 260 when a protective garment including the protective layer assembly 200 is worn. Thus, each layer may be stacked on top of the adjacent layer. According to some example embodiments, the outer protective material layer 240 may be disposed in direct contact with the inner layer 230. Thus, protective material layers 210, 220, 230, 240, 250, and 260 may be stacked, one on top of the other, in the indicated order shown in FIG. 2A.
[0018] In general, according to some example embodiments, the outer protective material layers 240, 250, and 260 may be constructed from a more cut resistant material (compared to the inner protective material layers 210, 220, and 230) to more quickly decelerate the chain of the chain saw. Additionally, the outer protective material layers 240, 250, and 260 may comprise pultruded fibers 245. In this regard, the increased cut resistance may result from a higher density of the pultruded fibers 245 in the outer protective material layers 240, 250, and 260 than the density of the pultruded fibers 215 in the inner protective material layers 210, 220, and 230. Thus, the outer protective material layers 240, 250, and 260 may be denser, heavier, and less breathable than the inner protective material layers 210, 220, and 230. The higher density of the outer protective material layers 240, 250, and 260 can reduce the risk of the protective garment being cut instead of the pultrusion fibers being pulled out. In addition, the inner protective material layers 210, 220, and 230 can be less dense, lighter, and more breathable. Such a combination of the outer protective material layers 240, 250, and 260 with the inner protective material layers 210, 220, and 230 with the above characteristics allows for increased protection when compressed by the straps due to the presence of the outer protective material layers 240, 250, and 260, while still being relatively light and breathable due to the presence of the inner protective material layers 210, 220, and 230. Thus, a highly protective yet still light and thin protective garment solution can be realized, meeting the appropriate criteria, for example those referenced herein.
[0019] According to some example embodiments, each of the inner protective material layers 210, 220, and 230 may be formed and configured in the same manner (i.e., with pultruded fibers 215). Thus, the inner layer 210 may be described as an example of an inner protective material layer. The inner layer 210 may be formed from a fabric including fibers including pultruded fibers 215, which may be formed from polyester (e.g., polyethylene terephthalate (PET)) and ultra-high molecular weight polyethylene (UHMWPE). Having an ultra-high molecular weight may include polyethylene having a molecular weight between 2 million and 8 million atomic mass units (amu). According to some example embodiments, the inner layer 210 may be formed from 54% PET and 46% UHMWPE. According to some example embodiments, other materials that may be used to form the pultruded fibers 215 may include para-aramid (e.g., Kevlar®); ballistic nylon; high performance filament yarns made of PET (polyethylene terephthalate), PP (polypropylene) or PE (polyethylene), PA (polyamide) (e.g., materials such as Dyneema® or Vectran®) and may be loosely disposed within the fabric of the inner layer 210. The inner layer 210 has a weight of about 95±5 grams per square meter (g / m 2 ) unit weight. Additionally, a warp knit construction may be used to produce the inner layer 210. The warp threads per centimeter (threads / cm) for the inner layer 210 may be an average of 4.4 threads / cm, and the weft threads per centimeter may be an average of 3.0 threads / cm. According to some example embodiments, the warp threads range may be about 4-5 threads / cm, and the weft threads range may be about 3-4 threads / cm. The warp threads of a warp knitted fabric extend in the selvedge direction, similar to a woven fabric, whereby the warp thread count (i.e., the number of warp threads per cm) is measured in the weft direction (i.e., perpendicular to the warp direction). Similarly, the weft thread count (i.e., the number of weft threads per cm) is measured along the warp direction.
[0020] As discussed above, each of the inner armor material layers may have the same structure and characteristics as inner layer 210. Thus, armor layer assembly 200 may include any number of inner layers having the structure and characteristics of inner layer 210. However, according to some example embodiments, three inner layers may be used to provide armor layer assembly 200.
[0021] According to some example embodiments, each of the outer protective material layers 240, 250, and 260 may be formed and constructed in the same manner (i.e., using pultruded fibers 245). Thus, the outer layer 240 may be described as an example of an outer protective material layer. The outer layer 240 may be formed from a fabric comprising fibers including pultruded fibers 245, which may be formed from polyester (e.g., PET). According to some example embodiments, the pultruded fibers 245 may also include polyethen or UHMWPE. According to some example embodiments, other materials that may be used to form the pultruded fibers may include para-aramid (e.g., Kevlar®); ballistic nylon; high performance filament yarns made of PET (polyethylene terephthalate), PP (polypropylene) or PE (polyethylene), PA (polyamide) (e.g., materials such as Dyneema® or Vectran®) may be loosely disposed within the fabric of the outer layer 240. The outer layer 240 has a weight of about 130±5 grams per square meter (g / m 2 ) in weight. Additionally, a warp knit construction may be used to create the outer layer 240. The warp yarns per centimeter for the outer layer 240 may be an average of 4.3±0.4 yarns / cm, and the weft yarns per centimeter may be an average of 7.3±0.4 yarns / cm. According to some example embodiments, the warp yarn range may be about 4-5 yarns / cm, and the weft yarn range may be about 7-8 yarns / cm.
[0022] As discussed above, each of the outer armor material layers may have the same structure and characteristics as outer layer 240. Thus, armor layer assembly 200 may include any number of outer layers having the same structure and characteristics as outer layer 240. However, according to some example embodiments, three outer layers may be used to provide armor layer assembly 200.
[0023] 2B, an alternative protective layer assembly 290 is shown. The protective layer assembly 290 may include the same six protective material layers 210, 220, 230, 240, 250, and 260, but may also include an inner liner 280 and an outer shell layer 270. The protective layer assembly 290 is shown in relation to the user's skin 201 when the protective garment is worn to provide context for the location of the layers relative to the user's skin 201. The inner liner 280 may be located closer to the user's skin 201 than the inner protective material layers when the protective garment including the protective layer assembly 290 is worn. The inner liner 280 may be formed from a single thin sheet of polyester, nylon, or other breathable and / or soft fabric. The outer shell layer 270 may be located farther from the user's skin 201 than the outer protective material layers when the protective garment including the protective layer assembly 290 is worn. Thus, the exterior shell layer 270 may be the outermost layer of the protective layer assembly 290 and the garment comprising the protective layer assembly 290. The exterior shell layer 270 may be formed from a waterproof fabric (such as, for example, nylon or other plastic fabric). The exterior shell layer 270 may be tough and slippery to protect against minor damage that may compromise the inner protective material layers. Knee patches including abrasion resistant material (such as para-aramid (e.g., Kevlar®) fabric) may be embodied as or sewn to the exterior shell layer 270 to protect the garment against wear and tear.
[0024] 3, there is shown a sewn protective layer assembly 300. The sewn protective layer assembly 300 may comprise a protective layer assembly 310, which may be, for example, protective layer assembly 200 or protective layer assembly 290. The protective layer assembly 310 of the sewn protective layer assembly 300 may be sewn together or sewn into a given garment. According to some example embodiments, the sewn protective layer assembly 300 may form a panel, such as a front panel of protective pants or chaps.
[0025] The layers and adjacent materials (e.g., of another panel of a garment) may be sewn together to maintain the layers in relative position and secure the sewn protective layer assembly 300 to form the garment. In this regard, stitches may be present around the periphery of the sewn protective layer assembly 300 (even though in FIG. 3 stitches are only shown on both sides of the sewn protective layer assembly 300). On each side there is a first stitch 320, a second stitch 330, and an overlock stitch 340. The visible layer may be an inner liner (which may be the same as or similar to inner liner 280). Although not visible in FIG. 3, it is understood that behind the liner layer is a laminate of multiple layers of protective material that are the same as or similar in construction to protective layer assembly 200 or protective layer assembly 290.
[0026] According to some example embodiments, the first stitch 320, which may be furthest from an edge of the sewn protective layer assembly 300, may be a seam stitch, such as, for example, an ISO 4916 1.01.02 or ISO 4916 1.01.03 stitch. The first stitch 320 may extend the length of the panel formed by the sewn protective layer assembly 300. According to some example embodiments, the second stitch 330, which may be closer to the edge of the sewn protective layer assembly 300 than the first stitch, may also be a seam stitch, such as, for example, an ISO 4916 1.01.02 or ISO 4916 1.01.03 stitch. The second stitch 330 may also extend the length of the panel formed by the sewn protective layer assembly 300. Additionally, according to some example embodiments, the overlock stitching 340 that may be on the edges of the sewn together protective layer assembly 300 may be an overlock stitch such as, for example, an ISO 4915 401 and 504 stitch, an ISO 4915 501 stitch, or an ISO 4915 301 stitch. The overlock stitching 340 may also extend the length of the panel formed by the sewn together protective layer assembly 300.
[0027] Having described the laminations and seams that may be utilized in accordance with some example embodiments, the following may describe some example protective garments that may be constructed from the protective layer assemblies and sewn protective layer assemblies described herein. The protective garments shown in the figures below are directed to leg protection, however it will be understood that the material layer assemblies described herein may also be utilized for torso, arm, hand, and head protection.
[0028] 4A and 4B thus illustrate an example embodiment of a protective pant 400 comprising a protective layer assembly as described herein. FIG. 4A is a front view of the protective pant 400, and FIG. 4B is a back view of the protective pant 400. Referring to the front view of FIG. 4A, the protective pant 400 may comprise a waistband 410 and a front leg panel 420 (or front panel). The front leg panel 420 may be sewn to the waistband 410 and to the crotch or central region of the protective pant 400. The front leg panel 420 may be a common area where accidental contact with a chainsaw may occur, and thus a protective layer assembly (such as protective layer assembly 200 or 290) may be provided to form the front leg panel 420. According to some example embodiments, the front leg panel 420 may extend from the waistband 410 to the ankle of the user, and the protective layer assembly may extend in the same manner.
[0029] 4B and the back view of the protective pant 400, one can again see the waistband 410 connected or sewn to the rear leg panel 430 (or rear panel). The rear leg panel 430 may extend from the waistband 410 to the ankle of the user. The rear leg panels 430 may be sewn together along a rear seam and to the front leg panel 420 at an outer seam. Although accidental contact with a chainsaw may not occur frequently at the rear of an individual, rear contact may still occur, and thus the rear leg panel 430 may also be constructed using a protective layer assembly, such as the protective layer assembly 200 or 290, as described herein. According to some example embodiments, accidental chainsaw contact occurs more frequently near an individual's ankles, and thus the protective layer assembly described herein may be used at least in the ankle region of the rear leg panel 430.
[0030] FIG. 5 illustrates another example embodiment of a protective pant 500 comprising the protective layer assembly described herein. FIG. 5 is a front view of the protective pant 500, which may comprise a waistband 510, a front leg panel 520, an outer seam panel 550, and an inner seam panel 560. The front leg panel 520 (or front panel) may be sewn to the waistband 510 and the crotch or center region of the protective pant 500. The front leg panel 520 may also be sewn to the outer seam panel 550 and the inner seam panel 560. The outer seam panel 550 and the inner seam panel 560 may be formed to allow for alternative fabric movement when a user is positioned in different work positions. According to some example embodiments, the outer seam panel 550 and the inner seam panel 560 may allow the front leg panel 420 to be positioned more evenly in different work positions of the user, limiting tension areas and increasing protection. According to some example embodiments, the outer seam panel 550 and the inner seam panel 560 may include bunching in certain locations or may be more flexible (e.g., elastic). Like the front leg panel 420, the front leg panel 520 may be a common area where accidental contact with a chainsaw may occur, and thus a protective layer assembly, such as protective layer assembly 200 or 290, may be provided to form the front leg panel 520. According to some example embodiments, the front leg panel 520 may extend from the waistband 510 to the ankles of the user, and the protective layer assembly may extend in the same manner.
[0031] 6A and 6B show example embodiments of protective chaps 600 comprising the protective layer assemblies described herein. FIG. 6A is a front view of protective chaps 600, and FIG. 6B is a back view of protective chaps 600. Referring to the front view of FIG. 6A, protective chaps 600 may comprise a waistband 610 and a front leg panel 620 (or front panel). Front leg panel 620 may be sewn to waistband 610. According to some example embodiments, front leg panel 620 may be, but need not be, connected at the crotch or central region of protective chaps 600. Although not shown, protective chaps 600 may comprise straps or other fastening means on front leg panel 620 for fastening front leg panel 620 of protective chaps 600 to a user's leg. The front leg panel 620 may be a common area where accidental contact with a chainsaw may occur, and thus a protective layer assembly, such as protective layer assembly 200 or 290, may be provided to form the front leg panel 620. According to some example embodiments, the front leg panel 620 may extend from the waistband 610 to the ankles of the user, and the protective layer assembly may extend in the same manner.
[0032] 6B and the rear view of the protective chaps 600, one may again see the underside of the waistband 610 and the front leg panel 620, which may wrap around the waist of a user. Because accidental chainsaw contact occurs more frequently near an individual's ankle, a protective layer assembly as described herein (e.g., protective layer assembly 200 or 290) may be used in the ankle region as the rear leg panel 630. The rear leg panel 630 may extend from around the user's knee to the ankle. The rear leg panel 630 may be sewn to the front leg panel 620 to provide continuous protection around the lower portion of the leg. In this regard, according to some example embodiments, the rear leg panel 630 may be wrapped around the lower leg and secured to the front leg panel 620 at an inner seam surface.
[0033] According to various example embodiments, "pants" is to be construed as any garment having parts that separately encircle at least a substantial portion of the legs of the wearer and are joined at the crotch (i.e., the junction between the legs that faces downward in the standing position of the wearer). "Chaps" is to be construed as a garment having parts that separately cover at least a substantial portion of the legs of the wearer.
[0034] Some additional example embodiments may now be described. According to some example embodiments, protective clothing for use with a chainsaw is provided. The protective clothing may include a plurality of inner protective material layers and a plurality of outer protective material layers. Each inner protective material layer may include a first pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The first pultruded fiber may be woven into each of the inner protective material layers having a first fiber density. Each outer protective material layer may include a second pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The second pultruded fiber may be woven into each of the outer protective material layers having a second fiber density. The second fiber density may be greater than the first fiber density. The plurality of inner protective material layers may be positioned closer to a user's skin than the plurality of outer protective material layers when the protective clothing is worn.
[0035] According to some example embodiments, the protective garment may further comprise an inner liner, which may be disposed closer to the user's skin than the plurality of inner protective material layers when the protective garment is worn. Additionally or alternatively, according to some example embodiments, the protective garment may further comprise an outer shell layer, which may be disposed farther from the user's skin than the plurality of outer protective material layers when the protective garment is worn. Additionally or alternatively, according to some example embodiments, the protective garment may be pants or trousers. Alternatively, the protective garment may be chaps. Alternatively, the protective garment may be a jacket, shirt, sleeves, etc.
[0036] Additionally or alternatively, the plurality of inner protective material layers may consist of three inner protective material layers, the plurality of outer protective material layers may consist of three outer protective material layers, or both. In this regard, according to some example embodiments, the protective garment may comprise less than six layers of fabric or less than eight layers of fabric. Additionally or alternatively, the first fiber density may be defined by a first warp range (i.e., the number of warp threads per centimeter) of about 4-5 threads per centimeter (lines / cm) and / or a first weft range (i.e., the number of weft threads per centimeter) of about 3-4 threads / cm. Such ranges may provide a particularly attractive balance between protection and flexibility of the protective garment. Alternatively or additionally, the second fiber density may be defined by a second warp range of about 4-5 threads / cm and / or a second weft range of about 7-8 threads / cm. Such a range may also provide a particularly attractive balance between protection and flexibility of the garment. Additionally or alternatively, according to some example embodiments, the first pultruded fibers may include polyester and ultra-high molecular weight polyethylene, the second pultruded fibers include polyester, or both. Additionally or alternatively, according to some example embodiments, each of the inner protective material layers has an areal density (i.e., weight per unit area) of about 95±5 grams per square meter (g / m2), each of the outer protective material layers has an areal density (i.e., weight per unit area) of about 130±5 g / m2, or both. According to some example embodiments, the inner and outer protective material layers may be sewn together by an ISO 4916 stitch or an ISO 4515 stitch with an overlock stitch.
[0037] According to some example embodiments, a front panel of protective clothing for use with a chainsaw is provided. The front panel may be a component of a garment that may be under compression by straps of a climbing harness or climbing spurs. The front panel may comprise a plurality of inner protective material layers and a plurality of outer protective material layers. Each inner protective material layer may comprise a first pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The first pultruded fiber may be woven into each of the inner protective material layers having a first fiber density. Each outer protective material layer may comprise a second pultruded fiber configured to be pulled out when contacted by an operating chainsaw. The second pultruded fiber may be woven into each of the outer protective material layers having a second fiber density. The second fiber density may be greater than the first fiber density. The plurality of inner protective material layers may be positioned closer to a user's skin than the plurality of outer protective material layers when the protective clothing is worn.
[0038] According to some example embodiments, the front panel of the protective garment may further comprise an inner liner, which may be positioned closer to the user's skin than the plurality of inner layers of protective material when the protective garment is worn. Additionally or alternatively, according to some example embodiments, the front panel of the protective garment may further comprise an outer shell layer, which may be positioned farther from the user's skin than the plurality of outer layers of protective material when the protective garment is worn. Additionally or alternatively, according to some example embodiments, the protective garment may be pants or trousers. Alternatively, the protective garment may be chaps. Alternatively, the protective garment may be a jacket, shirt, sleeves, etc.
[0039] Additionally or alternatively, the plurality of inner protective material layers may consist of three inner protective material layers, the plurality of outer protective material layers may consist of three outer protective material layers, or both. In this regard, according to some example embodiments, the front panel of the protective garment may comprise less than six layers of fabric or less than eight layers of fabric. Additionally or alternatively, the first fiber density may be defined by a first warp yarn range of about 4-5 threads per centimeter (lines / cm) and / or a first weft yarn range of about 3-4 threads / cm. Such ranges may provide a particularly attractive balance between protection and flexibility of the front panel. Alternatively or additionally, the second fiber density may be defined by a second warp yarn range of about 4-5 threads / cm and / or a second weft yarn range of about 7-8 threads / cm. Such ranges may provide a particularly attractive balance between protection and flexibility of the protective garment. Additionally or alternatively, according to some example embodiments, the first pultruded fibers may include polyester and ultra-high molecular weight polyethylene, the second pultruded fibers include polyester, or both. Additionally or alternatively, according to some example embodiments, each of the inner armor layers has an areal density (i.e., weight per unit area) of about 95±5 grams per square meter (g / m2), each of the outer armor layers has an areal density of about 130±5 g / m2, or both. According to some example embodiments, the inner armor layers and the outer armor layers may be sewn together with an ISO 4916 stitch or an ISO 4515 stitch with an overlock stitch.
[0040] Many modifications and other embodiments of the inventions described herein may come to mind to one skilled in the art to which these inventions pertain having the benefit of the teachings presented in the foregoing description and the associated drawings. It is understood, therefore, that the invention is not to be limited to the particular embodiments disclosed, and that modifications and other embodiments are intended to be included within the scope of the appended claims. Moreover, while the foregoing description and the associated drawings describe example embodiments in the context of particular example combinations of elements and / or features, it is understood that various combinations of elements and / or features may be provided by alternative embodiments without departing from the scope of the appended claims. In this regard, combinations of elements and / or features other than those expressly described above are also contemplated, for example, as may be set forth in some of the appended claims. Where advantages, benefits, or solutions to problems are described herein, it is understood that such advantages, benefits, and / or solutions may be applicable to some example embodiments, but not necessarily all example embodiments. Thus, any advantages, benefits, or solutions described herein are not considered to be critical, necessary, or essential to all embodiments or to the embodiments claimed herein. Although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.
Claims
1. A protective suit (400, 500, 600) for use with a chainsaw, comprising: a plurality of inner protective material layers (210, 220, 230), each inner protective material layer (210, 220, 230) comprising first pultruded fibers (215) configured to be pultruded upon contact with an operating chainsaw, the first pultruded fibers (215) being woven into each of the inner protective material layers having a first fiber density; a plurality of outer protective material layers (240, 250, 260), each of the outer protective material layers (240, 250, 260) comprising second pultruded fibers (245) configured to be pultruded upon contact with an operating chainsaw, the second pultruded fibers (245) being woven into each of the outer protective material layers (240, 250, 260) having a second fiber density; the second fiber density is greater than the first fiber density; Protective clothing (400, 500, 600), wherein the multiple inner protective material layers (210, 220, 230) are positioned closer to the user's skin (201) than the multiple outer protective material layers (240, 250, 260) when the protective clothing (400, 500, 600) is worn.
2. 2. The protective garment (400, 500, 600) of claim 1, further comprising an inner liner (280), the inner liner (280) being positioned closer to the user's skin (201) than the plurality of inner protective material layers (210, 220, 230) when the protective garment (400, 500, 600) is worn.
3. 2. The protective garment (400, 500, 600) of claim 1, further comprising an outer shell layer (270), the outer shell layer (270) being positioned farther from the user's skin (201) than the plurality of outer protective material layers (240, 250, 260) when the protective garment (400, 500, 600) is worn.
4. The protective suit (400, 500) according to any one of claims 1 to 3, wherein the protective suit (400, 500) is a pair of pants or trousers (400, 500).
5. The protective clothing (600) according to any one of claims 1 to 3, wherein the protective clothing (600) is chaps (600).
6. The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein the plurality of inner protective material layers (210, 220, 230) consists of three inner protective material layers (210, 220, 230), the plurality of outer protective material layers (240, 250, 260) consists of three outer protective material layers (240, 250, 260), or both.
7. the first pultruded fibers (215) comprise polyester and ultra-high molecular weight polyethylene; The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein the second pultruded fibers (245) comprise polyester or both.
8. 4. The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein the plurality of inner protective material layers (210, 220, 230) and the plurality of outer protective material layers (240, 250, 260) are sewn together via an ISO 4916 stitch (320, 330) or an ISO 4915 overlock stitch (340).
9. The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein each of the inner protective material layers (210, 220, 230) has a first areal density and each of the outer protective material layers (240, 250, 260) has a second areal density, the second areal density being higher than the first areal density.
10. The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein the inner protective material layer (210, 220, 230) has a first thread count and the outer protective material layer (240, 250, 260) has a second thread count, the second thread count being greater than the first thread count.
11. The protective garment (400, 500, 600) of any one of claims 1 to 3, wherein the first pultruded fibers, the second pultruded fibers, or both, are configured as non-spun yarns or rovings of fibers that are woven into the inner protective material layer, the outer protective material layer, or both, respectively (210, 220, 230; 240, 250, 260).
12. A front panel (420, 520, 620) of protective clothing (400, 500, 600) for protection in connection with the use of a chainsaw, said protective clothing (400, 500, 600) being under compression by straps of a climbing harness (110) or climbing spurs (120), said front panel (420, 520, 620) comprising: a plurality of inner protective material layers (210, 220, 230), each inner protective material layer (210, 220, 230) comprising first pultruded fibers (215) configured to be pultruded upon contact with an operating chainsaw, the first pultruded fibers (215) being woven into each of the inner protective material layers (210, 220, 230) having a first fiber density; a plurality of outer protective material layers (240, 250, 260), each of the outer protective material layers (240, 250, 260) comprising second pultruded fibers (245) configured to be pultruded upon contact with an operating chainsaw, the second pultruded fibers (245) being woven into each of the outer protective material layers (240, 250, 260) having a second fiber density; the second fiber density is greater than the first fiber density; A front panel (420, 520, 620) of protective clothing (400, 500, 600), wherein the multiple inner protective material layers (210, 220, 230) are positioned closer to the user's skin (201) than the multiple outer protective material layers (240, 250, 260) when the protective clothing is worn.
13. 13. A front panel (420, 520, 620) of protective clothing (400, 500, 600) as described in claim 12, further comprising an inner liner (270), the inner liner (270) being positioned closer to the user's skin (201) than the plurality of inner protective material layers (210, 220, 230) when the protective clothing (400, 500, 600) is worn.
14. 13. A front panel (420, 520, 620) of protective clothing (400, 500, 600) as described in claim 12, further comprising an outer shell layer (270), the outer shell layer (270) being positioned farther from the user's skin (201) than the plurality of outer protective material layers (240, 250, 260) when the protective clothing (400, 500, 600) is worn.
15. The front panel (420, 520) of a protective garment (400, 500) according to any one of claims 12 to 14, wherein the protective garment (400, 500) is a pair of pants or trousers (400, 500).
16. The front panel (620) of a protective garment (600) according to any one of claims 12 to 14, wherein the protective garment (600) is a chaps (600).
17. A front panel (420, 520, 620) of a protective garment (400, 500, 600) according to any one of claims 12 to 14, wherein the plurality of inner protective material layers (210, 220, 230) consists of three inner protective material layers (210, 220, 230), the plurality of outer protective material layers (240, 250, 260) consists of three outer protective material layers (240, 250, 260), or both.
18. the first pultruded fibers (215) comprise polyester and ultra-high molecular weight polyethylene; The front panel (420, 520, 620) of the protective garment (400, 500, 600) of any one of claims 12 to 14, wherein the second pultruded fibers (245) comprise polyester or both.
19. The front panel (420, 520, 620) of the protective garment (400, 500, 600) of any one of claims 12 to 14, wherein the plurality of inner protective material layers (210, 220, 230) and the plurality of outer protective material layers (240, 250, 260) are sewn together via an ISO 4916 stitch (320, 330) or an ISO 4915 overlock stitch (340).
20. A front panel (420, 520, 620) of a protective garment (400, 500, 600) according to any one of claims 12 to 14, wherein each of the inner protective material layers (210, 220, 230) has a first areal density and each of the outer protective material layers (240, 250, 260) has a second areal density, the second areal density being higher than the first areal density.
21. A front panel (420, 520, 620) of a protective garment (400, 500, 600) according to any one of claims 12 to 14, wherein the inner protective material layer (210, 220, 230) has a first thread count and the outer protective material layer (240, 250, 260) has a second thread count, the second thread count being greater than the first thread count.
22. The front panel (420, 520, 620) of a protective garment (400, 500, 600) according to any one of claims 12 to 14, wherein the first pultruded fibers, the second pultruded fibers, or both are configured as non-spun yarns or rovings of fibers that are woven into the inner protective material layer, the outer protective material layer, or both, respectively (210, 220, 230; 240, 250, 260).
Citation Information
Patent Citations
Antichainsaw structural layer
CN213618846U
Fabric that provides protection from chainsaws
JP2001513850A
Cut-resistant garment for chain saw work
JP2004244741A
Fabric for cut resistant garment
JP2015151646A
protective clothing
JP2020521062A