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    • 5. 发明授权
    • Method for forming materials
    • 材料成型方法
    • US07597236B2
    • 2009-10-06
    • US11205616
    • 2005-08-16
    • Charles R. TolleDenis E. ClarkHerschel B. SmarttKaren S. Miller
    • Charles R. TolleDenis E. ClarkHerschel B. SmarttKaren S. Miller
    • B23K20/12
    • B23K20/122B23K20/1275B23K20/128
    • A material-forming tool and a method for forming a material are described including a shank portion; a shoulder portion that releasably engages the shank portion; a pin that releasably engages the shoulder portion, wherein the pin defines a passageway; and a source of a material coupled in material flowing relation relative to the pin and wherein the material-forming tool is utilized in methodology that includes providing a first material; providing a second material, and placing the second material into contact with the first material; and locally plastically deforming the first material with the material-forming tool so as mix the first material and second material together to form a resulting material having characteristics different from the respective first and second materials.
    • 描述了材料形成工具和形成材料的方法,其包括柄部分; 肩部,其可释放地接合所述柄部; 销可释放地接合所述肩部,其中所述销限定通道; 以及材料源,其相对于所述销材料流动关系耦合,并且其中所述材料形成工具用于包括提供第一材料的方法学; 提供第二材料,并将所述第二材料放置成与所述第一材料接触; 并且用材料成形工具局部地使第一材料塑性变形,以便将第一材料和第二材料混合在一起以形成具有不同于相应的第一和第二材料的特性的所得材料。
    • 8. 发明授权
    • Integrated optical sensor
    • 集成光学传感器
    • US5275327A
    • 1994-01-04
    • US960329
    • 1992-10-13
    • Arthur D. WatkinsHerschel B. SmarttPaul L. Taylor
    • Arthur D. WatkinsHerschel B. SmarttPaul L. Taylor
    • B23K9/095B23K9/127B23K9/12G06F15/46
    • B23K9/1274B23K9/0956
    • An integrated optical sensor for arc welding having multifunction feedback control. The sensor, comprising generally a CCD camera and diode laser, is positioned behind the arc torch for measuring weld pool position and width, standoff distance, and post-weld centerline cooling rate. Computer process information from this sensor is passed to a controlling computer for use in feedback control loops to aid in the control of the welding process. Weld pool position and width are used in a feedback loop, by the weld controller, to track the weld pool relative to the weld joint. Sensor standoff distance is used in a feedback loop to control the contact tip to base metal distance during the welding process. Cooling rate information is used to determine the final metallurgical state of the weld bead and heat affected zone, thereby controlling post-weld mechanical properties.
    • 一种用于电弧焊的集成光学传感器,具有多功能反馈控制。 传感器,通常包括CCD摄像机和二极管激光器,位于电弧焊炬后面,用于测量焊池位置和宽度,间隔距离和焊后中心线冷却速率。 来自该传感器的计算机处理信息被传递到控制计算机以用于反馈控制回路以帮助控制焊接过程。 焊接池位置和宽度用于焊接控制器的反馈回路中,以跟踪焊接点相对于焊接接头。 在反馈回路中使用传感器间隔距离,以在焊接过程中控制接触尖端与母材距离。 冷却速率信息用于确定焊道和热影响区域的最终冶金状态,从而控制焊后机械性能。
    • 9. 发明授权
    • Continuous stream treatment of ductile iron
    • 球墨铸铁的连续流处理
    • US4033766A
    • 1977-07-05
    • US654663
    • 1976-02-02
    • Gerald S. ColeBela V. KovacsRobert A. SensoliHerschel B. Smartt
    • Gerald S. ColeBela V. KovacsRobert A. SensoliHerschel B. Smartt
    • C21C1/10C22C33/00
    • C21C1/10C22C33/00
    • A method and apparatus for producing modified grey iron, and particularly nodular cast iron, is disclosed. The apparatus comprises refractory elements including an inclined flow course for continuous reception of molten grey iron, a V-shaped inclined receptacle interposed in said course into which a predetermined supply of modifying agent, such as magnesium, is injected to react with said iron, and means for controlling the egress of iron from the receptacle in order to sequentially stage the build-up and dissipation of a pool of iron in said receptacle facilitating chemical reactions and thorough mixing for attaining and improving the homogeneity of the modified iron elements. The product and composition uniquely is characterized by about 3.5 carbon, by weight, 2.5% silicon, 0.2-0.9Mn sulfur no greater than 0.015%, the remainder being essentially iron; the composition is devoid of carbide and dross or slag and has a graphite nodule count of at least 400 per square millimeter in a 1/2 inch section.
    • 公开了一种用于生产改性灰铁,特别是球墨铸铁的方法和设备。 该装置包括耐火元件,其包括用于连续接收熔融灰色铁的倾斜流动路径;插入在所述过程中的V形倾斜容器,向其中注入预定供应的改性剂例如镁以与所述铁反应,以及 用于控制从容器排出铁的装置,以便顺序地在所述容器中堆积和耗散铁池,促进化学反应和充分混合,以获得和改善改性铁元素的均匀性。 产品和组合物的唯一特征在于约3.5碳,重量比,2.5%硅,0.2-0.9Mn硫不大于0.015%,其余基本上是铁; 该组合物没有碳化物和浮渣或渣,并且在1/2英寸截面中具有至少400每平方毫米的石墨结核计数。
    • 10. 发明授权
    • Method for gas-metal arc deposition
    • 气体 - 金属电弧沉积方法
    • US4970091A
    • 1990-11-13
    • US423172
    • 1989-10-18
    • Carol L. BuhrmasterDenis E. ClarkHerschel B. Smartt
    • Carol L. BuhrmasterDenis E. ClarkHerschel B. Smartt
    • C22C1/10C23C4/12
    • C22C1/1042C23C4/134
    • Method and apparatus for gas-metal arc deposition of metal, metal alloys, and metal matrix composites. The apparatus contains an arc chamber for confining a D.C. electrical arc discharge, the arc chamber containing an outlet orifice in fluid communication with a deposition chamber having a deposition opening in alignment wiht the orifice for depositing metal droplets on a coatable substrate. Metal wire is passed continuously into the arc chamber in alignment with the orifice. Electric arcing between the metal wire anode and the orifice cathode produces droplets of molten metal from the wire which pass through the orifice and into the deposition chamber for coating a substrate exposed at the deposition opening. When producing metal matrix composites, a suspension of particulates in an inert gas enters the deposition chamber via a plurality of feed openings below and around the orifice so that reinforcing particulates join the metal droplets to produce a uniform mixture which then coats the exposed substrate with a uniform metal matrix composite.
    • 金属,金属合金和金属基体复合材料气体 - 金属电弧沉积的方法和装置。 该装置包含用于限制直流电弧放电的电弧室,所述电弧室包含与沉积室流体连通的出口孔,所述沉积室具有与所述孔对准的沉积开口,用于在可涂覆基底上沉积金属液滴。 金属丝连续进入与孔口对准的电弧室。 金属线阳极和孔口阴极之间的电弧产生来自电线的熔融金属液滴,其通过孔并进入沉积室,用于涂覆在沉积开口处暴露的基底。 当生产金属基质复合材料时,惰性气体中的颗粒悬浮液通过孔下方和周围的多个进料孔进入沉积室,使得增强微粒连接金属液滴以产生均匀的混合物,然后将其暴露于基材上 均匀金属基复合材料。