The present invention relates to helmets and more specifically to helmet that facilitate impact absorption.
Modern helmets typically include an outer shell made from a hard plastic (e.g., polycarbonate), an impact-absorbing layer made of foam (e.g., EPS) secured to the inner surface of the outer shell, and a securing mechanism that secures the helmet to the user's head. The securing mechanism can include straps, pads, bands, and belts.
In one type of helmet, bands are secured to the helmet in such a way that they engage the user's head and hold the impact-absorbing layer at least partially spaced from the user's head. The bands are typically attached to the impact-absorbing layer with fasteners, adhesive, or any suitable device. The bands are commonly provided with pads that increase the comfort of the user.
The present invention provides a helmet comprising an impact-absorbing shell having an inside surface, a band secured to the shell, and a resilient member. The band is secured to the shell at two securing locations such that an intermediate portion of the band between the two securing locations is held in spaced relation to the inside surface of the shell. The resilient member is operatively positioned between at least one of the securing locations and the impact-absorbing shell to facilitate resilient movement of the band relative to the impact-absorbing shell. Preferably, the impact-absorbing shell comprises an outer shell (e.g., polycarbonate) and an impact-absorbing layer (e.g., EPS) secured to an inner surface of the outer shell.
In one embodiment, the band comprises a brow assembly positioned at a front of the impact-absorbing shell. For example, the brow assembly can comprise a brow belt and a brow pad at least partially covering the brow belt. The brow belt preferably comprises a belt opening, and the resilient member preferably is positioned in the belt opening. For example, a portion of the belt defining the belt opening can be positioned in a groove in the resilient member.
The resilient member preferably further comprises a fastener opening, and the helmet preferably further comprises a fastener inserted through the fastener opening to secure the resilient member to the impact-absorbing shell. For example, the fastener opening can comprise a central opening positioned substantially in a center of the resilient member. Preferably, the resilient member is substantially disk-shaped.
Other aspects of the invention will become apparent by consideration of the detailed description and accompanying drawings.
Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways.
The illustrated outer shell 12 comprises a polycarbonate sheet that is molded into a desire outer shape of the helmet. The impact-absorbing layer 14 comprises expanded polystyrene (EPS) foam that is co-molded to the inner surface of the outer shell 12, as is generally known in the art. It should be understood that the materials of the outer shell 12 and impact-absorbing layer 14 described above could vary without departing from the features of the present invention.
The belt assembly 18 of the illustrated embodiment includes a brow assembly 30 that is designed to engage the user's forehead and hold the impact-absorbing layer 14 spaced from the user's forehead during normal operating conditions.
The brow belt 32 is an elongated strip made of polycarbonate. Each end of the belt defines a securing location 34 having a belt opening 38 that facilitates securing the brow belt 32 to the EPS foam, as described below in more detail. The brow assembly 30 further includes two temple portions 40 that are designed to rest near a user's temples.
The brow pads include a forehead pad 42 that covers part of the brow belt 32 and temple pads 44 that cover part of the temple portions 40. Each of the pads 42,44 is made from a soft, open-cell foam covered with a polyester fabric cover, as is generally known in the art.
Each resilient member 36 is positioned in a corresponding belt opening 38 of the brow belt 32. Each resilient member 36 includes grooves 45 that receive a portion of the brow belt 32. Each resilient member 36 is preferably co-molded to the brow belt 32 and includes a central opening 46 that is designed to receive a fastener for securing the brow belt 32 to the impact-absorbing layer 14, as described below in more detail. The one embodiment, the resilient member is made of silicone, polyurethane, or other suitable elastomer.
The illustrated brow belt 32 is secured to the impact absorbing layer 14 at the two securing locations by push-type fasteners 48 that go through the central openings 46 in the resilient members 36 and into a snap basket 50 embedded in the impact-absorbing layer 14. These push-type fasteners 48 and snap baskets 50 are generally known in the art. The fastener 48 of the illustrated embodiment is formed integrally with a rear fit belt 52 that extends rearward around the back of the user's head to adjustably hold the helmet 10 on the user's head, as is known in the art.
Various features and advantages of the invention are set forth in the following claims.
Number | Name | Date | Kind |
---|---|---|---|
2359387 | Riddell | Oct 1944 | A |
2451140 | Wittcoff | Oct 1948 | A |
2758306 | Grancsay | Aug 1956 | A |
2814043 | Alesi | Nov 1957 | A |
3510879 | Webb | May 1970 | A |
3609765 | Molitoris | Oct 1971 | A |
3714668 | Mirabella | Feb 1973 | A |
4263679 | Erlendson | Apr 1981 | A |
4884301 | Aileo | Dec 1989 | A |
5088130 | Chiarella | Feb 1992 | A |
5381560 | Halstead | Jan 1995 | A |
5898949 | Barthold et al. | May 1999 | A |
6708340 | Dondero | Mar 2004 | B1 |
7140049 | Lang-Ree | Nov 2006 | B2 |
7146652 | Ide et al. | Dec 2006 | B2 |
7376980 | Bullock | May 2008 | B2 |
7770239 | Goldman | Aug 2010 | B1 |
7841026 | Makris et al. | Nov 2010 | B2 |
8015625 | Grim et al. | Sep 2011 | B2 |
8578520 | Halldin | Nov 2013 | B2 |
8826463 | Teetzel et al. | Sep 2014 | B2 |
9307802 | Hall | Apr 2016 | B2 |
9468248 | Leon | Oct 2016 | B2 |
9560892 | Leon | Feb 2017 | B2 |
9788591 | Ide et al. | Oct 2017 | B2 |
20050217006 | Sutter | Oct 2005 | A1 |
20130239302 | Ahlgren et al. | Sep 2013 | A1 |
20160113346 | Lowe | Apr 2016 | A1 |
20160316845 | Halldin | Nov 2016 | A1 |
Entry |
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Extended European Search Report from the European Patent Office for Application No. 19165728.7-1017 dated Aug. 1, 2019 (7 pages). |
Number | Date | Country | |
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20190307200 A1 | Oct 2019 | US |