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1)  zap-lop
轧合
2)  roll-bonding
轧制复合
1.
The technology of roll-bonding was applied to prepare the foaming precursor in this paper.
将轧制复合工艺应用于发泡预制体的制备,研究了粉末致密化过程与面板/芯层的结合机制。
2.
Author studied the production technology of aluminum foam sandwich prepared by roll-bonding/powder metallurgy foaming process in this paper,and analyzed the effect of main technological conditions on foaming structure of sandwich layer,and optimum technological parameters were finally obtained.
研究了采用轧制复合-粉末冶金发泡法制备的泡沫铝夹心板的生产工艺,探讨了主要工艺条件对芯层泡沫结构的影响,得到了优化的工艺参数。
3.
The dynamic temperature field during roll-bonding combined with high-frequency alternating current heating has been numerically simulated by a simplified model.
通过数值模拟获得了高频加热-轧制复合过程中的动态温度场。
3)  cold-rolling bonding
冷轧复合
1.
Preparation of Mg-Li alloy/Al composite plate by cold-rolling bonding process;
冷轧复合工艺制备超轻Mg-Li合金复铝板
4)  sandwich rolling
复合轧制
1.
A powder-A1 plate sandwich rolling processing is proposed for preparation of aluminum alloy foam sandwich with a metallurgy bonding interface.
通过粉末-铝板复合轧制方法制备出一种界面为冶金结合的泡沫铝夹芯板。
2.
The foam aluminum sandwich panels with metallurgy bonding interface are prepared by the sandwich rolling method,the two Al face-sheets are stacked and mixed powders with foam agent are put between them,which are sandwich rolled and a foaming precursor is obtained,then it is foamed in heating furnace.
采用复合轧制的方法,即将带有发泡剂的混合粉末置于两铝面板之间进行复合轧制使之成为预制发泡体,然后再在炉中发泡的方法,制备界面为冶金结合的泡沫铝夹芯板,通过摆锤冲击实验,研究界面为冶金结合的泡沫铝夹芯板与胶接夹芯板的冲击性能的区别。
5)  compound roller
复合轧辊
1.
The existing problems and solutions are presented,based on which the ways how to improve the property of WCp/steel-based compound rollers are discussed.
综述了轧辊材料的发展状况以及轧辊的失效形式,重点阐述了WCP/钢基复合材料及其复合轧辊的制备工艺,指出了制备WCP/钢基复合材料工艺中存在的问题和解决办法,并在此基础上探讨了提高WCP/钢基复合轧辊质量的措施和途径。
6)  Composite roller
复合轧辊
1.
The near net shape composite roller has been obtained.
首次尝试了用热等静压法(HIP)制造大型钢管张力减径机复合硬质合金轧辊,并获得了近实物尺寸的复合轧辊。
补充资料:轧制节奏


轧制节奏
rolling cycle

  zhazh一Jiezou轧制节奏(rolling。yele)轧制时相邻两根轧件进入(或轧出)同一轧机的时间间隔。在同样条件下,轧制节奏越短,轧机小时产童越高;反之,轧机小时产量越低。影响轧制节奏长短的因素是多方面的,不仅与工艺因素(如坯料长短、断面尺寸大小、道次多少、操作条件等)有直接联系,也与设备条件(如轧机布置形式、机架多少、速度高低以及电机能力大小等)密切相关。合理地分配轧制道次使各机组负荷均匀、提高操作水平、减少操作间隙时间、改变操作方式、实行文叉乳制、在设备允许条件下加大变形量、强化轧制过程等都可收到缩短轧制节奏的效果。在进行轧钢车间设计时轧制节奏可根据已定的工艺和设备条件以及产量要求设定,也可根据相同或相近的现场生产条件进行实际测定。 (衷康)
  
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