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泡沫金屬在單、雙向載荷作用下的拉伸破壞行為初探
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TB383

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國家自然科學(xué)基金資助項目(50201003)


Tensile Failure Behavior of Metal Foams under Uniaxial and Biaxial Loads
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    摘要:

    采用低載拉伸試驗機對多孔體的單、雙向拉伸進行了系列實驗,通過分析該材料的單向拉伸破壞機制,發(fā)現(xiàn)開孔泡沫金屬材料的宏觀斷裂特點既不同于最大拉應(yīng)力準(zhǔn)則的橫向斷裂,也不同于最大剪應(yīng)力準(zhǔn)則的塑性流動破壞,而是表現(xiàn)為介于它們之間的一種復(fù)雜斷裂形式;拉伸斷裂過程中多孔體的延伸率主要由三維網(wǎng)絡(luò)中的金屬絲體發(fā)生的塑性偏轉(zhuǎn)所造成。通過其雙向承載時斷裂形態(tài)的觀測分析,發(fā)現(xiàn)泡沫體十字型樣品在雙向等速拉伸載荷作用下的應(yīng)力場分布與雙向異速拉伸載荷作用下的類似,且其應(yīng)力場的最大應(yīng)力線為靠近樣品中央載荷區(qū)邊緣的四次對稱曲邊四邊形。

    Abstract:

    In the present work, the low-load uniaxial and biaxial tensile testers were employed to carry out the uniaxial and biaxial tensions systemically for porous metal bodies at different uniaxial and biaxial tensile rates. The uniaxial tensile failure mechanism is analyzed, and the results show that the macroscopical failure behavior of the foam metals with open cells differ from either the transverse rupture by maximum tensile stress criterion, or the plastic flow failure by maximum shearing stress criterion, but behaves a complicated failure mode between these two criterions. In addition, the percentage elongation after fracture results mainly from the plastic deflexion of metallic struts within the three-dimensional reticulated structure, hardly from the plastic deformation of the metallic body under uniaxial tension. From the fracture morphologies under biaxial tension, it is found that the distribution of the stress field in the cruciform specimens of the foamed metal under biaxial equal-speed tension is similar to that under biaxial unequal-speed tension, and the maximum stress line of the stress field presents the four-fold symmetric curved-side tetragon.

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劉培生.泡沫金屬在單、雙向載荷作用下的拉伸破壞行為初探[J].稀有金屬材料與工程,2006,35(5):770~773.[Liu Peisheng. Tensile Failure Behavior of Metal Foams under Uniaxial and Biaxial Loads[J]. Rare Metal Materials and Engineering,2006,35(5):770~773.]
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  • 收稿日期:2005-02-25
  • 最后修改日期:2005-05-19
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