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以金刚石压腔高压装置为工具,用Ⅱ型金刚石作压砧兼红外窗口,对本征态聚苯胺进行了高压(0~8.4 GPa)就位红外光谱测试。结果表明:在4.8~5.2 GPa压力区间,代表醌环振动的吸收峰相对代表苯环振动的吸收峰变小,表明聚苯胺在此压力区间结构上发生了显著变化,且这种变化是不可逆的。聚苯胺的高压(0~14.5 GPa)电阻测量结果表明:当压力小于7.5 GPa时,电阻随压力升高而显著降低,据此认为聚苯胺为电子性导电物质;在7.5 GPa处电阻出现极小值,然后又缓慢升高,至10 GPa后基本不变。推测聚苯胺电阻极小值是由结构变化引起的。至于红外光谱与电阻测量结果反映聚苯胺结构变化的压力值不一致,可能是由于测试条件不同所致。 相似文献
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将高收获指数型优质籼稻(Oryza sativa L.)品种“粤香占”种子在不同条件下进行了3个生长周期的高压种子处理和实验室种植试验。稻种经高压处理后,与对照样品相比,当代种子发芽和秧苗成长较慢且植株个体差异较大;后期生长较快,分蘖数及产量与对照样持平或有所增加。受压样品产生了4种新的植株变异,其中2种为不育植株,另外两种变异植株种植至F2及F3代,变异性状都能稳定遗传。表明高压不仅可以对水稻当代植株生理产生明显的影响,而且可以诱导水稻产生明显和稳定的可遗传变异。 相似文献
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I.IntroductionGenerally,asathree-dimensionaI(3-D)solid-theplateshouldbeanalysedwiththethickplatetheory.Thethickplatetheoryismultifarious:Acust0marythick[heoryoriginatesfromvariousmodificationsofthethinplatetheory,whichisbasedonKirchhoffLovehypothesis'with… 相似文献
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利用旋转式金刚石对顶砧压机(RDAC)结合显微激光拉曼光谱和微区X射线衍射,研究了三水铝石(γ-Al(OH)3)在高压剪切作用下的结构稳定性。常温加压至1.5 GPa,旋转180°后,γ-Al(OH)3的结构开始转变。初始样品在高波数段的4个羟基伸缩振动峰(3363、3434、3524和3618 cm-1)相继消失,出现3303和3560 cm-12个新峰。低波数段拉曼谱强度明显减弱,无非晶态宽峰;Al-O-Al变形振动双峰(568、539 cm-1)和Al-O伸缩振动肩峰(321和307cm-1)分别融合为一个振动峰;4个羟基变形振动峰(1052、1018、981和922 cm-1)仍然可见。继续加压至3.5 GPa,旋转360°后卸至常压,高波数段新出现的两个羟基伸缩振动峰、原Al-O-Al变形振动峰和Al-O伸缩振动峰仍然可见。对比准静水压条件下γ-Al(OH)3高压相的拉曼谱和相转变压力(约2.7 GPa),认为常温高压剪切作用下γ-Al(OH)3脱羟基生成了H2O和H3O-2。卸压样品微区的X射线衍射谱进一步揭示,在高压剪切作用下,γ-Al(OH)3的(OH)-Al-(OH)配位八面体骨架被破坏,沿c轴方向原子叠加的层间距缩小,对称性增强。这种不同于准静水压实验的结构改变来自腔体内压力的不均匀分布(0.5~4.5 GPa)。高压剪切作用下,三水铝石的结构稳定性研究对查明板块冷俯冲带中含水矿物的稳定性,推演俯冲板片的物理化学性质以及板块俯冲的速率具有重要意义。 相似文献
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By using Fourier transformation the boundary problem of periodical interfacial cracks in anisotropic elastoplastic bimaterial was transformed into a set of dual integral equations and then it was further reduced by means of definite integral transformation into a group of singular equations. Closed form of its solution was obtained and three corresponding problems of isotropic bimaterial, of a single anisotropic material and of a bimaterial of isotropy- anisotropy were treated as the specific cases. The plastic zone length of the crack tip and crack openning displacement ( COD) decline as the smaller yield limit of the two bonded materials rises, and they were also determined by crack length and the space between two neighboring cracks . In addition , COD also relates it with moduli of the materials . 相似文献
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The static equation of state (EOS) of tantalum (Ta) is determined by in situ energy-dispersive synchrotron powder x-ray diffraction in a diamond anvil cell (DAC) up to 133GPa. The body-centered-cubic (bcc) phase of Ta is found to be stable over the entire pressure range investigated. The bulk moduli and its first pressure derivative of Ta are constrained by fitting the determined pressure-volume data to Vinet form EOS: B0 =192.65±(3.08)GPa and B'0 =3.58±(0.11). For the sake of avoiding the affect of non-hydrostatic stress, argon is used as a pressure media. A careful checking of the stress state of the sample is presented simultaneously. 相似文献
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