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首页> 外文期刊>Polymers >Spontaneous Enhancement of Packing Regularity of Spherical Microdomains in the Body-Centered Cubic Lattice upon Uniaxial Stretching of Elastomeric Triblock Copolymers
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Spontaneous Enhancement of Packing Regularity of Spherical Microdomains in the Body-Centered Cubic Lattice upon Uniaxial Stretching of Elastomeric Triblock Copolymers

机译:弹性三嵌段共聚物单轴拉伸自发增强体心立方晶格中的球形微区的堆积规律。

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Block copolymers forming glassy spheres in the matrix of rubbery chains can exhibit elastomeric properties. It is well known that the spherical microdomains are arranged in the body-center cubic (bcc) lattice. However, recently, we have found packing in the face-centered cubic (fcc) lattice, which is easily transformed into the bcc lattice upon uniaxial stretching. In the same time, the packing regularity of the spheres in the bcc lattice was found to be enhanced for samples completely recovered from the stretched state. This reminds us that a cycle of stretching-and-releasing plays an important role from analogy of densification of the packing in granules upon shaking. In the current paper, we quantify the enhancement of packing regularity of spherical microdomains in the bcc lattice upon uniaxial stretching of the same elastomeric triblock copolymer as used in our previous work by conducting small-angle X-ray scattering (SAXS) measurements using high brilliant synchrotron radiation. Isotropically circular rings of the lattice peaks observed for the unstretched sample turned into deformed ellipsoidal rings upon the uniaxial stretching, with sharpening of the peaks in the direction parallel to the stretching direction and almost disappearing of the peaks in the perpendicular direction. By quantitatively analyzing the SAXS results, it was found that the packing regularity of the spherical microdomains was enhanced in the parallel direction while it was spoiled in the perpendicular direction under the stretched state. The enhanced regularity of packing was unchanged even if the stretching load was completely removed.
机译:在橡胶链基质中形成玻璃球的嵌段共聚物可以表现出弹性。众所周知,球形微区排列在体心立方(bcc)晶格中。但是,最近,我们发现堆积在面心立方(fcc)晶格中,该晶格在单轴拉伸时很容易转变为bcc晶格。同时,发现对于从拉伸状态完全恢复的样品,bcc晶格中球的堆积规则性得到增强。这提醒我们,从摇动后颗粒中填充物的致密化类似,拉伸和释放的循环起着重要的作用。在本篇论文中,我们通过使用高光亮度进行小角度X射线散射(SAXS)测量,量化了与我们以前工作中使用的相同的弹性三嵌段共聚物在单轴拉伸后bcc晶格中球形微区填充规则性的增强同步辐射。在单轴拉伸时,未拉伸样品观察到的各向同性圆环峰变成变形的椭圆环,在与拉伸方向平行的方向上峰变尖,而在垂直方向上峰几乎消失。通过对SAXS结果的定量分析,发现球形微区的填充规则性在拉伸状态下在平行方向上被增强而在垂直方向上被破坏了。即使完全消除了拉伸载荷,增强的填充规则性也没有改变。

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