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    • 51. 发明授权
    • Reinforcement structure of safety helmet and manufacturing method thereof
    • 安全帽的加固结构及其制造方法
    • US09210962B2
    • 2015-12-15
    • US14048134
    • 2013-10-08
    • Chang-Hsien Ho
    • Chang-Hsien Ho
    • A42B3/12B32B37/14A42C2/00
    • A42B3/124A42B3/125A42C2/002B32B37/144
    • A reinforcement structure of safety helmet and a manufacturing method thereof. The reinforcement structure includes a helmet body formed of a cushion foam material; and a structure body integrated with the helmet body. The structure body is a texture at least composed of multiple strip members arranged in an array. The structure body is formed with a substantially cellular structure. The helmet body is defined with a top section and a peripheral section and the structure body is defined with a first section and a second section connected to the first section corresponding to the top section and peripheral section of the helmet body. The cushion foam material is injected into a molding module to enclose the first and second sections to form an integrated complex reinforcement structure, which is easier to manufacture and has higher structural strength, lighter weight and higher security.
    • 安全帽的加固结构及其制造方法。 加强结构包括由缓冲泡沫材料形成的头盔主体; 以及与头盔主体集成的结构体。 结构体是至少由排列成阵列的多个条状构件组成的纹理。 结构体形成有基本上细胞结构。 头盔主体被限定为顶部和周边部分,并且结构体限定有第一部分和第二部分,其连接到对应于头盔主体的顶部部分和周边部分的第一部分。 衬垫泡沫材料被注入到模制模块中以包围第一和第二部分以形成一个更容易制造并且具有更高的结构强度,更轻的重量和更高的安全性的集成复合加强结构。
    • 52. 发明申请
    • HELMET AND FACEMASK ASSEMBLY AND METHOD FOR AFFIXING AND REMOVING A FACEMASK
    • 固定装置和装配装置以及拆卸和拆卸装置的方法
    • US20150230533A1
    • 2015-08-20
    • US14626910
    • 2015-02-19
    • ALLEN JOHN BANCROFT
    • ALLEN JOHN BANCROFT
    • A42B3/00A42B3/18A42C2/00A42B3/08
    • A42B3/20Y10T29/49966
    • A helmet assembly comprises a helmet, a facemask, and a plurality of female connectors directly or indirectly affixed to the facemask. The helmet comprises an outer shell and a plurality of studs affixed thereto. Each of the plurality of female connectors is (i) selectively matable to a corresponding one of the plurality of studs by pushing the female connector onto the corresponding stud and (ii) selectively releasable from a corresponding one of the plurality of studs by pulling a grasping portion of the female connector and moving the grasping portion along a longitudinal axis of the female connector from a first position to a second position. The facemask is selectively affixable to the outer shell by selectively mating each of the plurality of female connectors to a corresponding stud, and selectively removable from the outer shell by selectively releasing each of the plurality of female connectors from a corresponding stud.
    • 头盔组件包括头盔,面罩和直接或间接地固定在面罩上的多个阴连接件。 头盔包括外壳和固定在其上的多个螺柱。 多个阴连接器中的每一个是(i)通过将阴连接器推到相应的螺栓上而选择性地配合到多个螺柱中的对应的一个螺栓,并且(ii)通过拉动抓握来选择性地从多个螺栓中的相应一个螺柱上释放 阴连接器的一部分,并且把持部分沿着阴连接器的纵向轴线从第一位置移动到第二位置。 面罩通过选择性地将多个阴连接器中的每一个选择性地配合到对应的螺柱上而选择性地固定到外壳,并且通过从相应的螺柱中选择性地释放多个阴连接器中的每一个而选择性地从外壳移除。
    • 55. 发明授权
    • Fiberglass composite firefighting helmet and method for making a fiberglass composite firefighting helmet
    • 玻璃纤维复合消防头盔及制作玻璃纤维复合消防头盔的方法
    • US06969478B1
    • 2005-11-29
    • US09689131
    • 2000-10-12
    • John M. Hetzel, Jr.
    • John M. Hetzel, Jr.
    • A42B3/06A42C2/00B29C70/02B29C70/34B29C70/46
    • A42C2/00A42B3/06B29C70/025B29C70/345B29L2031/4821
    • A method for fabricating a protective helmet includes the steps of: (a) providing a fiber-based filler, such as a fiberglass sheeting; (b) mixing course ceramic particles into a thermoset resin; (c) impregnating the resin/ceramic particle mixture into the fiber-based filler; (d) forming or molding the impregnated fiber-based filler into a shape of a protective helmet; and (e) curing the resin mixture impregnated into the fiber-based filler. The course ceramic particles are preferably created by chopping a ceramic material. The presence of the ceramic particles in the composite helmet substantially reduces the heat reflectance of the helmet; while also reducing the overall weight of the helmet, since the ceramic material weighs less than the portion of resin material that the ceramic material is being used in place of. Finally, because the ceramic particles are course, they will not all flow to “low spots” in the helmet during the curing process. The course ceramic particles will remain entangled with, and caught on the fibers of the fiber-based filler during the curing process, thereby ensuring a more even distribution of the ceramic particles throughout the finished helmet.
    • 一种防护头盔的制造方法包括以下步骤:(a)提供纤维状填料,例如玻璃纤维布; (b)将陶瓷颗粒混合到热固性树脂中; (c)将树脂/陶瓷颗粒混合物浸渍到纤维基填料中; (d)将浸渍的纤维基填料形成或模塑成防护头盔的形状; 和(e)固化浸渍到纤维基填料中的树脂混合物。 过程陶瓷颗粒优选通过切割陶瓷材料来产生。 复合头盔中陶瓷颗粒的存在大大降低了头盔的热反射率; 同时也降低了头盔的整体重量,因为陶瓷材料的重量小于陶瓷材料被代替的部分树脂材料。 最后,由于陶瓷颗粒是固化过程,所以它们在固化过程中不会全部流到头盔中的“低点”。 陶瓷颗粒在固化过程中将保持与纤维基填料的纤维缠结,并且被捕获在纤维的纤维上,从而确保陶瓷颗粒更均匀地分布在成品头盔中。
    • 56. 发明授权
    • Lightweight impact resistant helmet system
    • 轻量耐冲击头盔系统
    • US06931671B2
    • 2005-08-23
    • US10625715
    • 2003-07-22
    • Joseph Skiba
    • Joseph Skiba
    • A42B3/06A42B3/12A42C2/00A63B71/10
    • A42B3/063A42B3/12A42C2/00Y10T156/1028
    • A strong, lightweight, impact resistant helmet system protects the wearer from impact injury and minimizes bodily injury to other players brought into contact therewith during blocking and tackling events. Weight reduction is achieved by reinforcing inner and outer surfaces of the helmet shell with long length, high strength fibers. Orientation of the fibers is such that the fiber lengths are aligned generally in the direction of tension and compression forces imposed on the helmet surface during impact. This reinforcement geometry permits use of a thin helmet shell. Efficient impact absorption by the helmet shell is accomplished by limiting the bend curvature produced at the impact location. The bend curvature reduction increases the contact area between the helmet shell and a second pliable padded inner helmet made from energy absorbing polymeric foam disposed within the helmet shell in contact with its inner surface. The second pliable padded inner helmet rests on the wearer's head, held in place by an attachment mechanism associated with the helmet shell. Energy is absorbed when the inner surface of the helmet shell contacts and compresses the inner helmet. The reduced bend curvature of the helmet shell spreads impact forces over a large area, and the impact load experienced by the wearer is decreased.
    • 坚固,轻便,抗冲击的头盔系统可以保护佩戴者免受冲击伤害,并最大限度地减少在阻塞和解决事件期间与其接触的其他玩家的身体伤害。 通过用长长度高强度的纤维加强头盔外壳的内表面和外表面来实现减重。 纤维的取向使得纤维长度通常在冲击期间施加在头盔表面上的张力和压缩方向上对齐。 这种加固几何允许使用薄的头盔外壳。 通过限制在冲击位置处产生的弯曲曲率来实现头盔外壳的高效冲击吸收。 弯曲曲率减小增加了头盔壳体与由能量吸收聚合物泡沫制成的第二柔韧的内衬头盔之间的接触面积,该能量吸收聚合泡沫体设置在与其内表面接触的头盔壳体内。 第二个柔软的内衬头盔靠在佩戴者的头部上,通过与头盔外壳相连的安装机构固定在适当位置。 当头盔壳体的内表面接触并压缩内部头盔时,能量被吸收。 头盔壳的弯曲弯曲度减小了大面积上的冲击力,并且穿戴者经受的冲击载荷降低。
    • 59. 发明授权
    • Method and device for shaping the visors of caps and such a cap
    • 用于塑造帽子和这种帽子的面罩的方法和装置
    • US5862522A
    • 1999-01-26
    • US975510
    • 1997-11-21
    • Byoung-Woo Cho
    • Byoung-Woo Cho
    • A42C1/04A42B1/00A42C1/06A42C2/00B29D99/00
    • A42C1/06A42B1/002
    • A method and device for shaping the visors of caps is disclosed. In the method, the visor is curved into a predetermined curvature prior to being heated by hot steam having a temperature of about 100.degree. C. for about 5-150 seconds. The heated visor is cooled by a cool air current having a temperature of about 5.degree.-25.degree. C. for about 10-150 seconds. The device has heating and cooling units respectively connected to hot steam and cool air sources. A plurality of molds, used for shaping the visors, are received in at least one of the two units. Each of the molds includes two perforated panels, which are curved into the curvature and are assembled into a single body, with a plurality of spacers being interposed between the two panels and spacing the two panels apart from each other while def ining a curved gap between the two panels for receiving the visor of a cap.
    • 公开了一种用于成形帽的遮阳板的方法和装置。 在该方法中,在被温度为约100℃的热蒸汽加热约5-150秒之前,将面罩弯曲成预定的曲率。 加热的面罩通过温度为约5°-25℃的冷气流冷却约10-150秒。 该装置具有分别连接到热蒸汽和冷空气源的加热和冷却单元。 用于成形遮阳板的多个模具被容纳在两个单元中的至少一个中。 每个模具包括两个穿孔板,其弯曲成曲率并组装成单个主体,多个间隔件插入在两个面板之间,并将两个面板彼此分开,同时在两个面板之间形成弯曲间隙 两个面板接收帽子的面罩。
    • 60. 发明授权
    • Self-contained bicycle helmet and molding process therefor
    • 独立式自行车头盔及其成型工艺
    • US5699561A
    • 1997-12-23
    • US673256
    • 1996-06-28
    • Lester Broersma
    • Lester Broersma
    • A42B3/06A42C2/00B29C44/18A42B3/00
    • A42B3/066A42C2/00B29C44/18
    • A bicycle helmet and bicycle helmet molding process provide an impact attenuating bicycle helmet/shell having the advantages of low cost, ease of manufacture, as well as ruggedness and durability. In preferred embodiments, a shell having inner and outer walls defining a sealable cavity is provided and an access hatch is formed in the outer wall. The cavity is fully or partially filled through the access hatch with an impact attenuating material. The helmet is treated if necessary to cause the impact attenuating material to harden or fuse or otherwise remain within the sealable cavity, and a plug is used to close the access hatch, thus providing a superior bicycle helmet/shell wherein the impact attenuating material is trapped within the shell portion of the product.
    • 自行车头盔和自行车头盔成型工艺提供了具有低成本,易于制造以及耐用性和耐用性的优点的冲击衰减的自行车头盔/外壳。 在优选实施例中,提供了具有限定可密封空腔的内壁和外壁的壳体,并且在外壁中形成通路口。 空腔通过具有冲击衰减材料的进入口完全或部分地填充。 必要时对头盔进行处理以使冲击衰减材料硬化或熔合或以其他方式保持在可密封的腔内,并且使用塞子来关闭进入舱口,从而提供上级的自行车头盔/壳体,其中冲击衰减材料被捕获 在产品的外壳部分内。