Radiator mounting structure
    1.
    发明授权
    Radiator mounting structure 失效
    散热器安装结构

    公开(公告)号:US06412581B2

    公开(公告)日:2002-07-02

    申请号:US09725445

    申请日:2000-11-30

    IPC分类号: B60K1104

    摘要: A radiator mounting structure which has a front grill located in front of a radiator and provided with a projection extending toward the radiator. When a hood collides with an obstacle M and is deformed, the deformation causes the front grill to move rearward whereby the radiator is urged rearward of a vehicle body to tilt in the same direction. Thus, the hood is sufficiently deformable to thereby sufficiently alleviate an impact shock to be applied to the obstacle within a limited space.

    摘要翻译: 一种散热器安装结构,其具有位于散热器前方的前格栅,并且设置有朝向散热器延伸的突起。 当机罩与障碍物M碰撞并变形时,变形使前格栅向后移动,由此使散热器向车身后方向相对方向倾斜。 因此,罩子是可充分变形的,从而充分减轻了在受限空间内施加到障碍物上的冲击冲击。

    Process for producing benzo[f]quinoxaline compounds
    2.
    发明授权
    Process for producing benzo[f]quinoxaline compounds 有权
    苯并[f]喹喔啉化合物的制备方法

    公开(公告)号:US08772484B2

    公开(公告)日:2014-07-08

    申请号:US13412682

    申请日:2012-03-06

    IPC分类号: C07D487/12 C07D241/10

    摘要: A simple process for producing v-coelenterazine compounds has been desired. Described is a process for producing a v-coelenterazine compound represented by general formula (II) comprising (1) the step of reacting a compound of general formula (VIII) with a methyltriphenylphosphonium salt in the presence of a base to give a compound represented by general formula (IX), (2) the step of performing a ring-closing metathesis reaction on any one selected from the group consisting of the compound represented by general formula (IX) and a compound of general formula (X) which is the compound of general formula (IX) wherein the amino is protected with R5, and then deprotecting R4 and, if any, R5 to give a v-coelenteramine compound represented by general formula (XIV), and (3) the step of reacting the compound of general formula (XIV) with a compound represented by general formula (XV) to give the compound of general formula (II).

    摘要翻译: 已经需要制备v-肠溶纤维素化合物的简单方法。 本发明描述了一种制备由通式(II)表示的β-环糊精化合物的方法,包括(1)在碱存在下使通式(Ⅷ)化合物与甲基三苯基鏻盐反应,得到由 通式(IX),(2)对选自由通式(IX)表示的化合物和作为化合物的通式(X)的化合物的任何一种进行闭环复分解反应的步骤 的通式(IX)的化合物,其中氨基被R 5保护,然后使R 4和(如果有的话)R 5脱保护,得到由通式(XIV)表示的v-内网络胺化合物,和(3) 通式(XIV)与通式(XV)表示的化合物反应,得到通式(II)的化合物。

    CUTTING METHOD OF STEEL FOR MACHINE STRUCTURAL USE
    4.
    发明申请
    CUTTING METHOD OF STEEL FOR MACHINE STRUCTURAL USE 有权
    用于机械结构用钢的切割方法

    公开(公告)号:US20120085209A1

    公开(公告)日:2012-04-12

    申请号:US13377018

    申请日:2011-03-03

    IPC分类号: B26D7/08

    摘要: The cutting method of steel for machine structural use includes: forming a mist by mixing a cutting fluid supplied at a supply rate of 0.01 ml/hour to 200 ml/hour and an oxidizing gas containing, by volume %, 21% to 50% of oxygen; and cutting the steel for machine structural use while the mist is blown on the cutting edge surface of a tool and the surface of the steel for machine structural use, wherein the steel for machine structural use includes, by mass %: C: 0.01% to 1.2%, Si: 0.005% to 3.0%, Mn: 0.05% to 3.0%, P: 0.001% to 0.2%, S: 0.001% to 0.35%, N: 0.002% to 0.035%, Al: 0.05% to 1.0%, and the balance consisting of Fe and inevitable impurities in which O is limited to 0.003% or less, and the amount of Al [Al %] and the amount of N [N %] satisfy [Al %]−(27/14)×[N %]≧0.05.

    摘要翻译: 用于机械结构用途的钢的切割方法包括:通过将以0.01ml /小时的供给速度供给的切削液与200ml /小时的混合形成雾,以及以体积%计含有21%至50%的 氧; 并且在将工具的切削刃表面和机械结构用钢的表面喷雾时,切割用于机械结构的钢,其中,机械结构用钢为质量%:C:0.01%〜 1.2%,Si:0.005〜3.0%,Mn:0.05〜3.0%,P:0.001〜0.2%,S:0.001〜0.35%,N:0.002%〜0.035%,Al:0.05〜1.0% ,余量由Fe和不可避免的杂质构成,其中O限制在0.003%以下,Al [Al%]和N [N%]的量满足[Al%] - (27/14) ×[N%]≥0.05。

    LOW SPECIFIC GRAVITY STEEL FOR FORGING USE EXCELLENT IN MACHINEABILITY
    5.
    发明申请
    LOW SPECIFIC GRAVITY STEEL FOR FORGING USE EXCELLENT IN MACHINEABILITY 审中-公开
    用于锻造的低特殊重力钢具有优异的机械性能

    公开(公告)号:US20110318218A1

    公开(公告)日:2011-12-29

    申请号:US13138534

    申请日:2010-04-08

    IPC分类号: C22C38/18 C22C38/60 C22C38/06

    摘要: Steel for forging having high strength and superior machinability due to controlled cooling immediately after shaping by hot forging followed by tempering and having a lower specific gravity than ordinary steel for forging use, the steel containing C: 0.05 to 0.50%, Si: 0.01 to 1.50%, Mn: 3.0 to 7.0%, P: 0.001 to 0.050%, S: 0.020 to 0.200%, Al: 3.0 to 6.0%, Cr: 0.01 to 1.00%, and N: 0.0040 to 0.0200% and having a balance of Fe and unavoidable impurities.

    摘要翻译: 锻造用钢通过热锻成形后立即控制冷却而具有高强度和优异的机械加工性,因此通过锻造而成型后的比例比通常的锻造用钢低,C:0.05〜0.50%,Si:0.01〜1.50 %,Mn:3.0〜7.0%,P:0.001〜0.050%,S:0.020〜0.200%,Al:3.0〜6.0%,Cr:0.01〜1.00%,N:0.0040〜0.0200% 和不可避免的杂质。

    On-vehicle component fixation-release apparatus
    6.
    发明授权
    On-vehicle component fixation-release apparatus 失效
    车载部件固定释放装置

    公开(公告)号:US07681684B2

    公开(公告)日:2010-03-23

    申请号:US10591154

    申请日:2005-03-03

    IPC分类号: B60K28/00

    摘要: To readily remove on-vehicle components from a vehicle body, suitably reflecting the state of the vehicle or occupant in addition to the will of the operator.The safety confirmation device 11 determines whether or not to permit actuation of the separation actuator 13, that is, whether to set the switch 12 to the ON state to allow an electrical connection from the power supply 14 to the separation actuator 13, based on the signals input from the external input receiving portion 21, the occupant protection device 22, the status quantity sensor 23, and the input portion 24, and outputs a gate signal corresponding to this determination result to the switch 12. Electrification of the separation actuator 13 from the power supply 14 via the switch 12 releases the fixation of an on-vehicle component by disassembling the fixation member that fixes the on-vehicle component to the vehicle body.

    摘要翻译: 为了容易地从车体移除车载部件,除了操作者的意愿之外,适当地反映车辆或乘员的状态。 安全确认装置11基于是否允许分离致动器13的致动,即是否将开关12设定为接通状态来判定是否允许从电源14到分离致动器13的电连接 从外部输入接收部分21,乘员保护装置22,状态量传感器23和输入部分24输入的信号,并将与该确定结果相对应的门信号输出到开关12.分离致动器13的电气从 经由开关12的电源14通过拆卸将车载部件固定在车身上的固定部件来释放车载部件的固定。

    High-strength, high-toughness rolled shape steel and method of producing the same
    8.
    发明授权
    High-strength, high-toughness rolled shape steel and method of producing the same 有权
    高强度高韧性轧制钢及其制造方法

    公开(公告)号:US06364967B1

    公开(公告)日:2002-04-02

    申请号:US09509956

    申请日:2000-03-30

    IPC分类号: C22C3817

    摘要: A 590 MPa-class rolled steel shape of high strength and excellent toughness for use as a building structural member and a method of producing the high-tensile rolled steel shape are provided. Strength optimization by an alloy that elevates hardenability, texture refinement obtained by fine dispersion of Ti oxides and TiN owing to Ti addition, precipitation strengthening by Cu addition, and formation of a fine bainite texture by temperature-controlled rolling, cooling control and the like enable a high-strength, high-toughness rolled steel shape of high-strength and excellent toughness having mechanical properties of a tensile strength of not less than 590 MPa, a yield strength or 0.2% proof strength of not less than 440 MPa and a Charpy impact absorption energy at 0° C. of not less than 47 J, and method of producing the same.

    摘要翻译: 提供了一种用于建筑结构件的高强度和优异的韧性的590MPa级的轧制钢形状以及制造高强度轧制钢形状的方法。 通过Ti添加的Ti氧化物和TiN的微细分散得到的淬透性,通过Cu添加进行析出强化,通过温度控制轧制,冷却控制等形成细贝氏体组织而获得的淬透性,纹理细化的合金的强度优化使得能够 具有抗拉强度不低于590MPa,屈服强度或0.2%防弹强度不低于440MPa的机械性能和夏比冲击强度高强度,优异韧性的高强度,高韧性的轧制钢型材 0℃下的吸收能不小于47J,其制造方法。

    Shape steel material having high strength, high toughness and excellent
fire resistance and process for producing rolled shape steel of said
material
    9.
    发明授权
    Shape steel material having high strength, high toughness and excellent fire resistance and process for producing rolled shape steel of said material 失效
    具有高强度,高韧性和优异耐火性的形状钢材料以及用于生产所述材料的轧制形状钢的方法

    公开(公告)号:US5985051A

    公开(公告)日:1999-11-16

    申请号:US721774

    申请日:1996-09-25

    摘要: After a predeoxidation treatment of a molten steel comprising as basic ingredients, in terms of % by weight, 0.04 to 0.20% of C, 0.05 to 0.50% of Si, 0.4 to 2.0% of Mn, 0.3 to 0.7% of Mo, 0.003 to 0.015% of N, 0.04 to 0.20% of V and less than 0.005% of Al to regulate [O %] to 0.003 to 0.015% by weight, titanium is added thereto so as to satisfy a requirement represented by the formula: -0.006.ltoreq.[Ti %]-2[O %].ltoreq.0.008 to crystallize a titanium-based oxide in an amount of 20 particles/mm.sup.2 or more, and MnS, TiN and V(C, N) are deposited on the titanium-based oxide to disperse the titanium-based oxide as a composite precipitate in the steel to provide a cast slab, and a high-strength high-toughness shape steel having an excellent fire resistance is provided by a combination of water cooling between rolling passes at the time of rolling with accelerated cooling after the completion of the rolling.

    摘要翻译: 对包含作为碱性成分的钢水进行预脱氧处理后,以重量%计,C:0.04〜0.20%,Si:0.05〜0.50%,Mn:0.4〜2.0%,Mo:0.3〜0.7%,0.003〜 0.015%的N,0.04〜0.20%的V和小于0.005%的Al以将[O%]调节至0.003〜0.015%(重量),从而满足下式所示的钛:-0.006 < / = [Ti%] -2 [O%] = 0.008以使20重量/ mm 2以上的钛系氧化物结晶,并且在钛上沉积MnS,TiN和V(C,N) 的氧化物以将钛基氧化物作为复合沉淀物分散在钢中以提供铸坯,并且通过在轧制道次之间的水冷的组合提供具有优异耐火性的高强度高韧性形状钢 轧制完成后加速冷却的轧制时间。

    Casting a plastic windshield
    10.
    发明授权
    Casting a plastic windshield 失效
    铸塑料挡风玻璃

    公开(公告)号:US4889678A

    公开(公告)日:1989-12-26

    申请号:US200619

    申请日:1988-05-31

    摘要: An elongate packing is sandwiched between two sheet-like mold members in an encircling manner to define a mold cavity therebetween, then a thermosetting plastic material is poured into the mold cavity, and the thermosetting plastic material is heated and set in the mold cavity. The upper and lower mold members are held against deformation transverse thereof so as not to be deformed by the shrinkage of the thermosetting plastic material when the latter is set, and the packing is allowed to move transversely thereof for following the shrinkage of the thermosetting plastic material when the latter is set. In some embodiments, the packing comprises a packing body adapted to be sandwiched between the mold members for preventing the plastic material from flowing out of the mold cavity with a flange joined to the packing body and adapted to be held against peripheral edges of the mold members.