superplasticity

superplasticity

1. Research on the ECAP Grain Refining Technology, Superplasticity and Isothermal Compression Technological Parameters of 1933 Alloy

1933合金的ECAP细晶化工艺、超塑性及等温压缩工艺参数研究

2. 2 Regularity of Structural Superplasticity of Hypoeutectoid Steel[J]; Journal of Iron and Steel Research(International); 2005年04期; 63-65

5贾书君,曲鹏,翁宇,张静波,陈红桔,刘清友;磷和晶粒尺寸对低碳钢力学性能的影响[J];钢铁;2005年06期;61-65

3. Superplasticity Research on Al-Ca-Zn Alloys

Al-Ca-Zn合金的超塑性研究

4. Cavity behavior in superplasticity induced by dynamic recrystallization of Al-Mg alloy

Al-Mg合金动态再结晶诱发超塑性时的空洞行为

5. Ashby-Verrall superplasticity model

Ashby-Verrall超塑性模型

6. Keywords BP neural network;aluminum bronze;superplasticity;flow stress;prediction model;

BP神经网络;铝青铜;超塑性;流变应力;预测模型;

7. Superplasticity of the steel GCr_(15) above the temperature Ac_1

GCr_(15)钢Ac_1温度以上的组织超塑性

8. Research on the ECAP Grain Refining Technology and Superplasticity of LC9 Aluminum Alloy

LC9等铝合金的ECAP细晶化工艺及超塑性研究

9. Superplasticity and fracture micrograph of SiCp/2024Al composite [J].Chinese Journal of Materials Research, 1998,12 (4) : 443 - 445.

SiCp/2024Al复合材料的超塑性能及断口形貌[J].材料研究学报,1998,12(4):443-445.

10. Superplasticity of a SiCp/LD2 Al composite [J].Materials for Mechanical Engineering, 2002,26 ( 9 ): 20- 21.

SiCp/LD2铝基复合材料的超塑性[J].机械工程材料,2002,26(9):20-21.

11. CAO Fu-rong,LEI Fang,CUI Jian-zhong,WEN Jing-lin.Modification of a deformation induced grain growth model of superplasticity and its experimental verification[J].Acta Metall Sinica,1999,35(7):770-772.

[7]曹富荣,雷方,崔建忠,温景林.超塑变形晶粒长大模型的修正与实验验证[J].金属学报,1999,35(7):770-772.

12. A coupling grain growth model superplasticity constitutive and numerical simulation

一种耦合晶粒长大的超塑性本构及数值模拟

13. In order to investigate the superplasticity of ceramic matrix laminated composite, the superplastic deep-drawing process was simulated by FEM.

为研究陶瓷基层状复合材料的超塑性能,对其超塑拉深成形过程进行了有限元模拟。

14. low temperature superplasticity

低温超塑性

15. EFFECT OF PRIOR WARM-DEFORMATION ON SUPERPLASTICITY IN SiC_p / MR64 COMPOSITES

低温预变形对SiC_p/MR64复合材料超塑性的影响

16. Keywords steel;superplasticity;solid phase welding;technology;

关键词钢;超塑性;固相焊接;工艺;

17. It was discovered for the first time that spray formed UHCS part with lamellar pearlite structure possesses superplasticity without any thermal and/or mechanical pretreatment.

利用喷射成形的快速凝固的特点,有效地避免了超高碳钢中碳的偏析问题。

18. dynamic superplasticity

动态超塑性

19. Effect of two-stage ageing on superplasticity of 1420 Al-Li alloy

双级时效对1420铝锂合金超塑性的影响

20. Research for Superplasticity of Double Refinement Treated Ball Bearing Steel GCr15 in Tensile and Compressing Tests

双细化GCr15轴承钢超塑性拉伸和压缩试验的研究

21. Meanwhile, the superplasticity of glass-ceramics and nanostructured ceramics were also presented.The high strain rate superplasticity was summarized particularly.

同时介绍了玻璃陶瓷、纳米陶瓷的超塑性,并兼顾了一些结构陶瓷在高应变速率下的超塑性。

22. Investigation on the Superplasticity of Spray Formed Ultra High Carbon Steel and Its Microstructure after Deformation

喷射成型超高碳钢的超塑性及其变形组织

23. Superplasticity of Spray Formed Ultra-High Carbon Steel and its Microstructure and Properties after Isothermal Forging

喷射成形超高碳钢的超塑性等温锻造性能研究

24. Superplasticity in a complex shape parts, the die surface of contact surface friction will limit further deformation region.

在复杂的超塑性零件的成形中,硬模表面的摩擦将限制接触面区域的进一步变形。

25. In rolling state the alloy has excellent superplasticity and can be successfully used for extrusion,bulging formation and die manufactur.

在轧制状态下,合金具有优异的超塑性能,成功地用于复杂形状零件的挤压成形、气压成形以及模具型腔的制造。

26. Keywords Y-TZP;plastic deformation;superplasticity;creep;cavitation;densification;sinter forging;diffusion bonding;

塑性形变;超塑性;蠕变;孔穴化;致密化;烧结锻造;扩散连接;

27. Keywords composites superplasticity grain dislocation stacking-fault twincrystal;

复合材料;超塑性;晶粒;位错;层错;孪晶;

28. Keywords bulk amorphous alloys;powder metallurgy;superplasticity;supercooled liquid;newtonian fluid;

大块非晶;粉末冶金;超塑性;过冷液体;牛顿流体;

29. Keywords bulk amorphous alloys;supercooled liquid region;superplasticity;

大块非晶合金;过冷液相区;超塑性;

30. Experiments show that increase of metastable cavities will increase the energy of the system and develop superplasticity of the materials.

实验指出在亚稳态阶段,微空洞数量的增多会使系统能量增加,有利于超塑性。

31. Comparison on superplasticity of two Al-Mg allbys, Al-Mg-Li- Zr (01420) and Al -Mg-Mn-Zr(LF6) allby,was investigated. The results indicate that the adding of Li elem entallow Al-Mg allby exhibitan extrem ely significant superplastic effect.

对Al-Mg-Li-Zr(01420)合金和Al-Mg-Mn-Zr(LF6)合金超塑性能进行了对比研究,发现Li元素的加入可以显著提高Al-Mg合金的超塑性能。

32. An Investigation of Superplasticity of a Zn-Ni-Mg Alloy

对一种Zn-Ni-Mg合金的超塑性研究

33. The Influence of Deformation Temperature on The Superplasticity of High Carbin Steel Containing Cr and Si

形变温度对高碳铬硅钢超塑性能的影响

34. Keywords Shape memory alloy;superplasticity;strain rate;grain refiner;

形状记忆合金;超塑性;应变速率;晶粒细化剂;

35. Keywords Extruded Magnesium Alloys;Tensile Property;Low-Cycle Fatigue;Superplasticity;

挤压变形镁合金;拉伸性能;低周疲劳;超塑性;

36. The deformation mechanism of AZ91D superplasticity is grain boundary sliding.

挤压态AZ91D镁合金超塑性变形的主要机制为晶界滑移机制。

37. HIGH STRAIN RATE SUPERPLASTICITY OF ALUMINUM MATRIX COMPOSITE MADE BY SQUEEZE CASTING

挤压铸造铝基复合材料的高应变速率超塑性

38. Several processing routes for the attainment of fine-grain, superplastic microstructure in UHCS are presented.Characteristics of superplasticity and deformation mechanism in UHCS are summrized.

提出了超高碳钢实现超塑性所需的显微组织及其实现方法,总结了超高碳钢超塑性的变形机理及其变形特点。

39. A Research for Upgrading the Deformation Rate by Extrusion in Superplasticity

提高超塑性挤压变形速度的研究

40. Keywords friction welding;bulk metallic glasses;supercooled liquid;superplasticity;viscous flow;

摩擦焊;块体非晶合金;过冷液态;超塑性;粘滞性;

41. Abstract: The recent development of the high strain rate superplasticity(HSRS), its deformation mechanism and commercial applications are reviewed in the paper.

文摘:综述了高应变速率超塑材料及其变形机理和工业应用的最新进展。

42. The current progress is reviewed in the investigation into superplasticity performances of bulk amorphous alloys.

文章对国内外非晶合金超塑性基本性能的研究工作进行了介绍和评述。

43. maximum m superplasticity deformation

最大m值超塑性变形

44. In this paper, the recent research progress and application of superplasticity of titanium alloys are reviewed and their development trend is forecasted.

本文对钛合金超塑性研究和应用进行了综述,并对钛合金超塑性的发展方向进行了展望。

45. The effects of deformation temperature on the superplasticity of SiC particle reinforced LY12 aluminium composite were outlined.

本文总结了变形温度对碳化硅增强铝基复合材料超塑性的影响规律。

46. This dissertation is a part of the overall researches on plasticity and superplasticity of CAMS.Song Yuquan.

本论文是宋玉泉教授关于塑性与超塑性总体研究的一个组成部分。

47. B.J. Dunwoody, R.J. Stacey and A.J. Barnes: in Superplasticity in Metals, Ceramics and Intermetallics, M.J. Mayo, M. Kobayashi and J. Wasdsworth, eds., MRS. Pittusburgh, PA, 1990, pp.66-161

李士玮、叶均蔚,“往复式挤型法制成微米级晶粒5083合金微结构及性质之探讨”,中国材料科学学会1998年度年会论文集(C),

48. Keywords hydrogenation;titanium alloys;superplasticity;

氢化;钛合金;超塑性;

49. Research on superplasticity of silicon nitride ceramic

氮化硅陶瓷超塑性研究

50. Effects of thermal cycle frequency on transformation superplasticity of Zn-Al cast alloy

热循环频率对铸态Zn-Al合金相变超塑性的影响

51. At the present time, the researches on ZK60 magnesium alloys were focused on the grain refinement, superplasticity and composite material.

目前对于ZK60镁合金的研究主要集中在挤压态坯料的晶粒细化、超塑性、复合材料等方面,对于铸态ZK60镁合金的变形行为研究较少。

52. Keywords Transformation superplasticity;Welding;TA4;

相变超塑性;焊接;TA4;

53. Superplasticity of ZA27 alloy and the effect of superplastic deformation on mechanical property were studied.

研究了ZA27合金的超塑性和超塑变形对力学性能的影响。

54. It was found that TiAl CrSi alloy exhibited good superplasticity in a very wide temperature range and the fracture of tensioned specimens had a close relationship with the formation and joining of cavities.

研究发现,等温锻造的TiAl-CrSi合金在很宽的温度区间都表现出较好的超塑性; 合金的断裂与孔洞的形成和连接有很大关系;

55. The lower contents of the rare earth, the higher the cavity fractal dimension;and the higher the cavity fracture level, the worse the superplasticity.

稀土含量越低,空洞分形维数越大,空洞破碎程度越大,超塑性能越低。

56. Keywords cavitation;superplasticity;strain rate;

空洞;超塑性;应变速率;

57. Keywords coarse crystalline;LC4 alloy;superplasticity;recrystallize;

粗晶;LC4合金;超塑性;再结晶;

58. Nanocrystalline materials can exhibit superplasticity at lower temperature and higher deforming rate.

纳米晶材料可在更低的温度、更高的应变速率下发生超塑性变形。

59. Keywords structural material;aluminium series intermetallic compounds;superplasticity;

结构材料;铝系金属间化合物;超塑性;

60. It is indicated that as-cast leaded brass without pretreatment can present certain superplasticity at proper condition.

结果表明:此种不经预处理的铸态铅黄铜,在适当条件下具有一定的超塑性。

61. The recent development of researches on superplasticity of ultrahigh carbon steels (UHCS) is reviewed.

综述了超高碳钢超塑性的研究进展。

62. The recent development of the high strain rate superplasticity(HSRS), its deformation mechanism and commercial applications are reviewed in the paper.

综述了高应变速率超塑材料及其变形机理和工业应用的最新进展。

63. Numerical Simulation of Sheet Superplasticity Forming Coupling Cavity Effect

考虑空洞效应的板料超塑性成形数值模拟

64. The supercooled liquid phase welding is successful due to the thermally stable supercooled liquid state of the bulk metallic glasses and the superplasticity and viscous flow of the supercooled liquid.

而摩擦焊接的成功,则是由于金属玻璃在过冷液相区的热稳定性以及在该区域的超塑性和粘滞性。

65. Lin Dongliang, Hu Jing. Superplasticity in Large-Grained Intermetallics[ J]. Journal of Advanced Materials, (in press

胡静,林栋梁.金属间化合物超塑性变形行为[J].机械工程材料,(待发表

66. And discuss influence of hydraulic press loading in change speed rate pattern and superplasticity forging on parameters.

讨论了变应变速率模式液压机载荷和超塑性锻造影响参数的关系。

67. The effects of different deforming temperature on the superplasticity of 2A12 aluminium alloywere experimented and discussed.

试验并讨论了不同变形温度对2A12铝合金超塑性的影响。

68. Keywords superplasticity;eutectoid steel;phase transformation;diffusion welding;theoretical model;

超塑性;共析钢;相变;扩散连接;理论模型;

69. Keywords superplasticity;dynamic recrystallization;gas pressure bulging;magnesium alloy;

超塑性;动态再结晶;气胀成形;镁合金;

70. Keywords Superplasticity;Deformation mechanism;Grain group;

超塑性;变形机理;晶粒群;

71. Keywords superplasticity;strain-rate hardening;notch;stress concentration;

超塑性;应变速率强化;切口;应力集中;

72. Keywords NiAl;superplasticity;microstructure;fracture mechanism;

超塑性;显微组织;断裂机理;

73. Keywords NiAl;superplasticity;positron lifetime;boundaries structure;

超塑性;正电子寿命;晶界结构;

74. Keywords superplasticity;cavitation;strain rate;elongation;

超塑性;空洞;应变速率;延伸率;

75. Keywords superplasticity;restrain;bulging;equipotential field;simulation;

超塑性;约束;胀形;等势场;模拟;

76. Keywords superplasticity;superplastic extrusion;magnesium alloy;

超塑性;超塑性挤压;镁合金;

77. Keywords superplasticity;bonding joint;heat treatment;microhardness;

超塑性;连接接头;热处理;显微硬度;

78. Keywords Superplasticity;Upseting;deformation force;Calculus of variations;

超塑性;镦粗;变形力;变分原理;

79. mechanics of superplasticity

超塑性力学

80. The dominant process of superplastic deformation is fine grain boundary sliding, and an appropriately small amount of liquid phase can enhance the high strain rate superplasticity of the composite.

超塑性变形的主要机制是细小晶粒的晶界滑动,适当的微量液相有利于该复合材料的高应变速率超塑性。

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