crystallization behavior
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2022 ◽  
Vol 580 ◽  
pp. 121391
Author(s):  
Liqiao Yue ◽  
Qijing Sun ◽  
Yihao Wang ◽  
Yin Wang ◽  
Rongjie Xue ◽  
...  

2022 ◽  
Vol 581 ◽  
pp. 121412
Author(s):  
H. Zhou ◽  
J. Tan ◽  
Q. Dong ◽  
L.F. Ma ◽  
D.Y. Ding ◽  
...  

Materials ◽  
2022 ◽  
Vol 15 (2) ◽  
pp. 657
Author(s):  
Lishun Chen ◽  
Yuting Long ◽  
Mingkai Zhou ◽  
Huaide Wang

In this work, more than 70 wt % of ferromanganese slag (containing 40 wt % CaO) was used to synthesize high-calcium, CaO-MgO-Al2O3-SiO2 (CMAS) glass ceramics. The effect of SiO2/CaO on the structure, crystallization behavior and microstructure of high-calcium, CMAS, slag glass ceramics was studied by IR, NMR, DSC, XRD and SEM. The results showed that in the high-calcium, CMAS glass ceramics, the main existing forms of silicon–oxygen tetrahedra (Qn) were Q0 and Q1. With the increase in the SiO2/CaO, Qn changed from Q0 and Q1 (main units) to Q1 (main units) and Q2, and then to Q1 and Q2 (main units). The polymerization degree of Qn changed from low to high, making the glass more stable, which led to the increase in crystallization temperature and the decrease in crystallization kinetic constant (k) and frequency factor (υ). At the same time, the change in the Qn structure resulted in a gradual change to the main crystal, from akermanite to diopside–wollastonite.


2022 ◽  
Author(s):  
Khunanya Janchai ◽  
Takumitsu Kida ◽  
Takahiro Inoue ◽  
Shohei Iwasaki ◽  
Masayuki Yamaguchi

Polymers ◽  
2022 ◽  
Vol 14 (2) ◽  
pp. 224
Author(s):  
Siyu Pan ◽  
Zhiguo Jiang ◽  
Zhaobin Qiu

Poly(ethylene succinate-co-1,2-propylene succinate) (PEPS) is a novel aliphatic biodegradable polyester with good mechanical properties. Due to the presence of methyl as a side group, the crystallization rate of PEPS is remarkably slower than that of the poly(ethylene succinate) homopolymer. To promote the potential application of PEPS, the effect of cellulose nanocrystals (CNC) on the crystallization behavior, crystalline morphology, and crystal structure of PEPS was investigated in this research with the aim of increasing the crystallization rate. CNC enhanced both the melt crystallization behavior of PEPS during the cooling process and the overall crystallization rate during the isothermal crystallization process. The crystallization rate of PEPS became faster with an increase in CNC content. The crystalline morphology study directly confirmed the heterogeneous nucleating agent role of CNC. The crystal structure of PEPS remained unchanged in the composites. On the basis of the interfacial energy, the nucleation mechanism of PEPS in the composites was further discussed by taking into consideration the induction of CNC.


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