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    • 1. 发明授权
    • Bumper crush tower with rings of varied strength
    • 保险杠粉碎塔与不同强度的戒指
    • US06648384B2
    • 2003-11-18
    • US09964914
    • 2001-09-27
    • Rainer B. NeesDavid W. HeatheringtonScott C. GlasgowJack Russell
    • Rainer B. NeesDavid W. HeatheringtonScott C. GlasgowJack Russell
    • B60R1926
    • F16F7/123B60R19/34F16F7/125
    • An energy-absorbing crush tower for a vehicle bumper system includes a tube made of a continuous contiguous material, such as a heat-treatable steel. The tube has first and second ring sections connected by an interconnecting section. The first ring section is heat-treated to a high material strength, such as about 120 KSI tensile strength, which is substantially higher than the second ring section, which is kept at about 60 KSI tensile strength. The interconnecting section has a frustoconically-shaped portion forming a ramp. By this arrangement, upon the bumper system receiving an end impact parallel a length of the tube, the first and second ring sections telescopingly collapse with a predictable and consistent multi-phase deformation sequence where a third ring section forms between the first and second ring sections. A method related to the above is also disclosed and claimed.
    • 用于车辆保险杠系统的能量吸收式破碎塔包括由连续相邻材料制成的管,例如可热处理的钢。 管具有通过互连部分连接的第一和第二环形部分。 将第一环段热处理至高材料强度,例如大约120KSI拉伸强度,其大大高于保持在约60KSI拉伸强度的第二环段。 互连部分具有形成斜面的截头圆锥形部分。 通过这种布置,在保险杠系统接收平行于管的长度的端部冲击时,第一和第二环部分以可预测和一致的多相变形序列可伸缩地折叠,其中在第一和第二环部分之间形成第三环部分 。 还公开并要求保护与上述相关的方法。
    • 2. 发明授权
    • Vehicle bumper beam
    • 车辆保险杠梁
    • US06971691B1
    • 2005-12-06
    • US10955384
    • 2004-09-30
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • B60R19/02B60R19/04B60R19/18
    • B60R19/18B60R19/24B60R2019/1813B60R2019/1826
    • A bumper beam includes an open front section made from a high-strength material such as ultra-high-strength steel (UHSS) material, and further includes a mating back section made of lower-strength material attached to a rear side of the front section along abutting flanges. The front and back sections combine to define different tubular cross sections. The front section can be roll-formed, and the back section can be stamped, thus taking advantage of roll-forming processes' ability to form high-strength materials, while allowing the back section to have a more complicated shape and be stamped. The abutting flanges telescopingly overlap in a fore-aft direction of the vehicle and are welded together at locations that potentially experience shear upon impact, but the flanges of the front section are captured within the flanges of the backs section, thus providing impact strength even if the attachment locations shear off.
    • 缓冲梁包括由诸如超高强度钢(UHSS)材料的高强度材料制成的开口前部,并且还包括由附接到前部的后侧的低强度材料制成的配合后部 沿着邻接法兰。 前部和后部组合以定义不同的管状横截面。 前部可以是辊状的,并且可以对后部进行冲压,从而利用辊轧成型工艺形成高强度材料的能力,同时允许背部具有更复杂的形状并且被冲压。 邻接的凸缘在车辆的前后方向可伸缩地重叠,并且在碰撞时可能经历剪切的位置处被焊接在一起,但是前部的凸缘被捕获在后部段的凸缘内,从而提供冲击强度,即使 附件位置剪切。
    • 3. 再颁专利
    • Vehicle bumper beam
    • 车辆保险杠梁
    • USRE40736E1
    • 2009-06-16
    • US11950855
    • 2007-12-05
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • B60R19/02B60R19/04
    • B60R19/18B60R19/24B60R2019/1813B60R2019/1826
    • A bumper beam includes an open front section made from a high-strength material such as ultra-high-strength steel (UHSS) material, and further includes a mating back section made of lower-strength material attached to a rear side of the front section along abutting flanges. The front and back sections combine to define different tubular cross sections. The front section can be roll-formed, and the back section can be stamped, thus taking advantage of roll-forming processes' ability to form high-strength materials, while allowing the back section to have a more complicated shape and be stamped. The abutting flanges telescopingly overlap in a fore-aft direction of the vehicle and are welded together at locations that potentially experience shear upon impact, but the flanges of the front section are captured within the flanges of the backs section, thus providing impact strength even if the attachment locations shear off.
    • 缓冲梁包括由诸如超高强度钢(UHSS)材料的高强度材料制成的开口前部,并且还包括由附接到前部的后侧的低强度材料制成的配合后部 沿着邻接法兰。 前部和后部组合以定义不同的管状横截面。 前部可以是辊状的,并且可以对后部进行冲压,从而利用辊轧成型工艺形成高强度材料的能力,同时允许背部具有更复杂的形状并且被冲压。 邻接的凸缘在车辆的前后方向可伸缩地重叠,并且在碰撞时可能经历剪切的位置处被焊接在一起,但是前部的凸缘被捕获在后部段的凸缘内,从而提供冲击强度,即使 附件位置剪切。
    • 4. 发明授权
    • Vehicle bumper beam
    • 车辆保险杠梁
    • US06986536B1
    • 2006-01-17
    • US10877326
    • 2004-06-25
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • David W. HeatheringtonScott C. GlasgowBruce W. Lyons
    • B60R19/02
    • B60R19/18B60R19/03B60R2019/1826
    • A bumper beam includes an open front section made from a high-strength material such as ultra-high-strength steel (UHSS) material, and further includes a mating back section made of lower strength material attached to a rear side of the front section along abutting flanges. The front and back sections combine to define different tubular cross sections along their length, thus providing selected stiffness and strength at critical areas of the bumper beam. The front section can be roll-formed, and the back section can be stamped, thus taking advantage of roll-forming processes' ability to form high-strength materials, while allowing the back section to have a more complicated shape and be stamped. For example, the back section can be made from a material selected from a group consisting of HSLA steel, aluminum, and/or polymeric material. The back section is attached to the beam using welding or mechanical attachment.
    • 保险杆包括由诸如超高强度钢(UHSS)材料的高强度材料制成的敞开的前部,并且还包括由下部强度材料制成的配合后部,该后部由安装在前部的后侧沿着 邻接法兰。 前部和后部结合以沿其长度限定不同的管状横截面,从而在保险杠梁的关键区域提供选定的刚度和强度。 前部可以是辊状的,并且可以对后部进行冲压,从而利用辊轧成型工艺形成高强度材料的能力,同时允许背部具有更复杂的形状并且被冲压。 例如,后部可以由选自由HSLA钢,铝和/或聚合物材料组成的组中的材料制成。 后部通过焊接或机械连接连接到梁上。
    • 5. 发明授权
    • Energy management beam
    • 能量管理梁
    • US07407219B2
    • 2008-08-05
    • US10808127
    • 2004-03-24
    • Scott C. GlasgowDavid W. HeatheringtonBruce W. Lyons
    • Scott C. GlasgowDavid W. HeatheringtonBruce W. Lyons
    • B60R19/04B60R19/18
    • B60R19/18B60R2019/1826
    • An energy management system comprising a longitudinally extending beam including a first beam portion and a second beam portion. A first one of the first beam portion and the second beam portion has a first face, a first side wall and a second side wall. A second one of the first beam portion and the second beam portion has a second face. The first side wall has a first U-shaped section spaced from the first face and the second side wall has a second U-shaped section spaced from the first face. The first side wall rolls to enlarge the first U-shaped section and the second side wall rolls to enlarge the second U-shaped section during an impact force directed against the first face of the first beam portion or the second face of the second beam portion.
    • 一种能量管理系统,包括纵向延伸的梁,该梁包括第一梁部分和第二梁部分。 第一光束部分和第二光束部分中的第一光束部分具有第一面,第一侧壁和第二侧壁。 第一光束部分和第二光束部分中的第二光束部分具有第二面。 第一侧壁具有与第一面间隔开的第一U形部分,第二侧壁具有与第一面间隔开的第二U形部分。 第一侧壁滚动以扩大第一U形部分,并且第二侧壁滚动以在针对第一梁部分的第一面或第二梁部分的第二面的冲击力期间扩大第二U形部分 。