CN104233118A - Anti-collision beam material for vehicles - Google Patents

Anti-collision beam material for vehicles Download PDF

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Publication number
CN104233118A
CN104233118A CN201410463568.7A CN201410463568A CN104233118A CN 104233118 A CN104233118 A CN 104233118A CN 201410463568 A CN201410463568 A CN 201410463568A CN 104233118 A CN104233118 A CN 104233118A
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CN
China
Prior art keywords
percent
beam material
buffer beam
automobile
collision beam
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201410463568.7A
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Chinese (zh)
Inventor
不公告发明人
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
KUNSHAN QIANGQING METAL MATERIAL Co Ltd
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KUNSHAN QIANGQING METAL MATERIAL Co Ltd
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Publication date
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Priority to CN201410463568.7A priority Critical patent/CN104233118A/en
Publication of CN104233118A publication Critical patent/CN104233118A/en
Pending legal-status Critical Current

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Abstract

The invention provides an anti-collision beam material for vehicles. The material is prepared from the following materials in percentage by mass: 0.5-1.9 percent of C, 0.2-0.9 percent of Si, 0.69-3.3 percent of Mn, 0.015-0.05 percent of S, 0.015-0.05 percent of P, 0.8-2.5 percent of Ti, 0.6-2 percent of N, 0.6-3.8 percent of Ni, 0.69-1.5 percent of Mo, 0.05-0.8 percent of Nb, 0.3-1.5 percent of Al and the balance of Fe. The anti-collision beam material has the beneficial effects that the strength, toughness and impact resistance of the metal alloy material are remarkably improved since the elements in the alloy are reasonably matched. The anti-collision beam material has a relatively good strength performance and is suitable for vehicle production.

Description

A kind of automobile buffer beam material
Technical field
The present invention relates to automobile buffer beam field of material technology, especially a kind of automobile buffer beam material.
Background technology
Our times industry develop rapidly, all metallic substance is related in various industrial production and use procedure, the range of application of metallic substance is very extensive, metallic substance wherein used in automobile making is very many, automobile has brought very large convenience, but meanwhile also bring some shortcomings, since being born from automobile, developer focuses on the speed of a motor vehicle and outward appearance, but ignore automobile and bring potential safety hazard, as the traffic accident such as collided, make the damage that automobile is subject in various degree, personnel are subject to injures and deaths, wherein the intensity of metallic substance and shock resistance are a large factor not for these, part automobile production producer only strengthens Strength of Metallic Materials or shock resistance separately, this can not ensure that automobile plays maximum protection effect when colliding to occupant, therefore the technology being badly in need of a kind of improvement solves above-mentioned technological deficiency.
Summary of the invention
The invention provides a kind of automobile buffer beam material.
The present invention is directed to the technical scheme that above-mentioned technological deficiency proposes is:
A kind of automobile buffer beam material, described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.9%, Si, 0.2-0.9%, Mn, 0.69-3.3%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-2%, Ni, 0.6-3.8%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
Described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-2%, Si, 0.2-0.7%, Mn, 0.69-1.8%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-1.8%, N, 0.6-2.2%, Ni, 0.6-4%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
Described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.8%, Si, 0.2-1.3%, Mn, 0.5-2.9%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-1.8%, Ni, 0.8-2.4%, Mo, 0.8-1.5%, Nb, 0.1-0.7%, Al, 0.7-1.6%, all the other are Fe.
The invention has the beneficial effects as follows: each element reasonable ratio in alloy, significantly improve the intensity of metal alloy compositions, toughness and and shock resistance, the performance of its intensity better, is suitable as automobile production and uses.
Embodiment
Embodiment 1
A kind of automobile buffer beam material, automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.9%, Si, 0.2-0.9%, Mn, 0.69-3.3%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-2%, Ni, 0.6-3.8%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
Embodiment 2
A kind of automobile buffer beam material is made up of the material of following mass percent: C, 0.5-2%, Si, 0.2-0.7%, Mn, 0.69-1.8%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-1.8%, N, 0.6-2.2%, Ni, 0.6-4%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
Embodiment 3
A kind of automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.8%, Si, 0.2-1.3%, Mn, 0.5-2.9%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-1.8%, Ni, 0.8-2.4%, Mo, 0.8-1.5%, Nb, 0.1-0.7%, Al, 0.7-1.6%, all the other are Fe.
In alloy, each element reasonable ratio, significantly improves the intensity of metal alloy compositions, toughness and shock resistance, and the performance of its intensity better, is suitable as automobile production and uses.

Claims (3)

1. an automobile buffer beam material, is characterized in that: described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.9%, Si, 0.2-0.9%, Mn, 0.69-3.3%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-2%, Ni, 0.6-3.8%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
2. a kind of automobile buffer beam material according to claim 1, is characterized in that: described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-2%, Si, 0.2-0.7%, Mn, 0.69-1.8%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-1.8%, N, 0.6-2.2%, Ni, 0.6-4%, Mo, 0.69-1.5%, Nb, 0.05-0.8%, Al, 0.3-1.5%, all the other are Fe.
3. a kind of automobile buffer beam material according to claim 1, is characterized in that: described automobile buffer beam material is made up of the material of following mass percent: C, 0.5-1.8%, Si, 0.2-1.3%, Mn, 0.5-2.9%, S, 0.015-0.05%, P, 0.015-0.05%, Ti, 0.8-2.5%, N, 0.6-1.8%, Ni, 0.8-2.4%, Mo, 0.8-1.5%, Nb, 0.1-0.7%, Al, 0.7-1.6%, all the other are Fe.
CN201410463568.7A 2014-09-12 2014-09-12 Anti-collision beam material for vehicles Pending CN104233118A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410463568.7A CN104233118A (en) 2014-09-12 2014-09-12 Anti-collision beam material for vehicles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410463568.7A CN104233118A (en) 2014-09-12 2014-09-12 Anti-collision beam material for vehicles

Publications (1)

Publication Number Publication Date
CN104233118A true CN104233118A (en) 2014-12-24

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410463568.7A Pending CN104233118A (en) 2014-09-12 2014-09-12 Anti-collision beam material for vehicles

Country Status (1)

Country Link
CN (1) CN104233118A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105506503A (en) * 2015-12-15 2016-04-20 苏州爱盟机械有限公司 Front axle I beam for vehicle

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105506503A (en) * 2015-12-15 2016-04-20 苏州爱盟机械有限公司 Front axle I beam for vehicle

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WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20141224

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