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针状的

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After the initiation of crack, the crack propagating of alloys with 0.5%Ce addition is accelerated evidently because of the appearance of needle rear earth rich phases which dissever the matrix and lead to the decrease of mechanical properties and thermal fatigue resistance.

加入0.5%Ce的合金在裂纹形成后期扩展速度明显加快,这是因为合金中出现针状富稀土相,这种针状相割裂了基体,使得合金力学性能降低、热疲劳抗力下降。

Corolla pale blue, with distinct deep blue lines, lobes elliptic-lanceolate to elliptic; stem leaves lanceolate to broadly lanceolate, base subamplexicaul; stem fastigiate branched from base

浅蓝色的花冠,具离生的深的蓝色的线,裂片椭圆状披针形的到椭圆形;茎生叶披针形到宽披针形,基部;茎帚状的分枝自基部 4 Lomatogonium longifolium 长叶肋柱花

Stipules green, falcate, rarely ovate or ovate-lanceolate, herbaceous, margin sharply serrate or lobed, rarely entire, apex acute or acuminate; petiole sparsely pilose or pubescent; leaf blade interrupted imparipinnate with (2 or)3 or 4 pairs of leaflets, reduced to 3 leaflets on upper leaves; leaflets sessile or shortly petiolulate, obovate, obovate-elliptic, or obovate-lanceolate, 1.5–5 × 1–2.5 cm, abaxially appressed pilose on veins, or densely pubescent or tomentose-pubescent between veins, rarely glabrescent, markedly or sparsely glandular punctate, adaxially pilose, or hirsute or hirtellous on veins, rarely glabrescent, base cuneate to broadly so, margin acutely to obtusely serrate, apex rounded to acute, rarely acuminate. Inflorescence terminal, spicate-racemose, branched or not; rachis pilose.

绿色,镰刀形的托叶,卵形或卵状披针形的很少,草本,边缘锐切成锯齿状或者有叶,很少全缘,先端锐尖或渐尖;叶柄疏生柔毛或短柔毛;叶片间断奇数羽状具(2或)3或4小叶,退化至3小叶在上部叶片上;短的小叶无柄或具小叶柄,倒卵形,倒卵状椭圆形,披针形或倒卵形, 1.5-5 * 1-2.5 厘米,背面的贴伏的具柔毛的在脉上,在脉之间的或密被短柔毛的或被绒毛的短柔毛,很少脱落无毛显著具点,正面具柔毛的或疏生腺体,或具粗毛或在脉上,很少脱落无毛,基部楔形到宽楔形,花序顶生,穗状总状,与否的分枝;轴具柔毛。

Stems simple or multibranched; leaf blade lanceolate or elliptic-lanceolate to ovate, 5-10 mm wide; racemes opposite to leaves or axillary; bracts ovate-lanceolate, caducous; inner sepals obovate-oblong.

茎单生或多分枝;叶片披针形的或椭圆形披针形到卵形,5-10毫米宽;总状花序与叶对生或腋生;苞片卵状披针形,早落;内部萼片倒卵状长圆形。

Basal leaves rosulate; petiole 1-10(-15) cm; leaf blade broadly oblanceolate, oblong or lanceolate in outline, pinnatisect, pinnatifid, or runcinate,(2-)5-20(-35)×(1-)2-8(-10) cm; lateral lobes (3 or)4-6(-8) on each side of midvein, smaller than terminal one, oblong or lanceolate, entire, dentate, or lobed. Uppermost cauline leaves with narrowly linear to filiform lobes.

基生叶莲座状;叶柄1-10(-15)厘米;宽倒披针形的叶片,长圆形或披针形轮廓,羽状全裂,羽状半裂,倒向羽裂的或,( 2-)5-20(-35)*(1-)2-8(-10)厘米;侧面裂片(3或者)4-6(-8)在中脉两边各,最上部的茎生叶具狭线形到丝状裂片。

Basal leaves rosulate; petiole broadened at base, often ciliate, 1-6 cm; leaf blade lanceolate to linear-lanceolate, 2-9 × 0.5-2 cm, pubescent or glabrous, base cuneate or attenuate, margin entire, apex acute to subacuminate.

基生叶莲座状;叶柄扩大在基部,经常具缘毛,厘米;叶片披针形的到线状披针形, 2-9 * 0.5-2 厘米,被短柔毛或无毛,基部楔形或渐狭,边缘全缘,先端锐尖到近渐尖。

Seeds verrucose in center; calyx lobes linear-lanceolate to ovate-lanceolate, apex acute to acuminate.

在中心瘤状的种子;萼裂片线状披针形的到卵状披针形,先端锐尖或渐尖。

SEM and XRD results showed that the bushiest ZnO nanoneedles can be obtained after using H_2O_2 pre-oxidization at the Zn/H_2O_2 ratio of 20mg/ml and themal oxidation at 650℃for 2h and ZnO nanoparticles at the Zn/H_2O_2 ratio of 2mg/ml, and the morphologies were evolved from nanoneedles to nanoparticles between the two Zn/H_2O_2 ratios.

SEM和XRD分析表明,当在预氧化阶段Zn/H_2O_2为20mg/ml时,650℃热氧化2h后纳米锌粉氧化成茂密针状ZnO,当Zn/H_2O_2为2mg/ml时,生成颗粒状ZnO,处于中间浓度时,针状结构依次减少;预氧化微米锌粉无论Zn/H_2O_2比例为多少,850℃热氧化8h后的产物都为栗状ZnO。

Adding silica sand to cement whose temperature ranges from 110~150℃or maintaining it in 110℃about three days, cement can form the fiber C5S6H5. After temperature above 150℃, it form thick needle C6S6H which can to some extent effectively curb the high-temperature recession of cement strength.

在水泥中加入硅砂时,在110~150温度范围内,或110℃养护时间超过3天,水泥石中分别出现了由纤维针状结晶C5S6H5,温度超过150℃后,又出现粗大针状结晶硬硅钙石C6S6H,这两种产物在一定程度上有效地抑制水泥石强度的高温衰退现象。

For the aged aluminum alloys which generally contain disc/plate-shaped or rod/needle-shaped precipitates, a model has been established, from the viewpoints of thermodynamics, kinetics and strengthening theory, to relate quantitatively the yield strength to the size, volume fraction and aspect ratio of precipitates which all were analytical associated with the chemical compositions of alloys, aging temperature and aging time. This model has been experimentally proved to well predict the variation of yield strength with the evolution of disc/plate-shaped or rod/needle-shaped precipitates for present Al-4. 62wt% Cu-0.65wt% Mg alloy aged at 513K and Al-1. 12wt% Mg0.57wt% Si alloy aged at 463K, respectively, and the yield strengths simulated by this model were also found to be in well agreement with previously measured values for a series of aged Al-Cu binary alloys, AA6061 and Al-Zn-Mg alloys.

以析出热力学、长大动力学及强化理论为基础,研究了含有盘/片状、棒/针状时效析出强化相铝合金在时效过程中时效析出相尺寸、体积分数和长径比等参数的演变及其对合金时效强化效果的影响,给出了合金成分、时效变量与微观组织参数之间非线性的解析表达关系式,进而从微观结构—宏观性能相结合的角度出发建立起了具有盘/片状、棒/针状时效析出相铝合金的时效工艺—屈服强度量化模型,并将该模型应用于不同温度、连续不同时间时效下Al-Cu二元系列合金、6061铝合金和Al-Zn-Mg系列合金的屈服强度预测,得到了与前人实测值吻合良好的结果。

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