24小时热门版块排行榜    

查看: 1115  |  回复: 2

p1801321

金虫 (著名写手)

[求助] 求英译汉,机器翻译的不给金币哦

The defining phase transformation associated with the glassy state is the glass transition. However, this is not a thermodynamic phase transition at all, but rather a kinetic transformation as a liquid is supercooled. The glass transition involves a freezing of the configurational degrees of freedom at the nanoscale level such that the glass is a solid-like material but with liquid-like properties. In recent years, much progress has been made in understanding the fundamental physics of the glass transition.
    The glass transition itself is a function of both the structural relaxation time — an intrinsic property —and an external observation time scale (i.e., the relevant time scale of the experiment). Glass transition can be induced through either of two pathways. The first is by increasing the internal relaxation time of a glass forming liquid. This is what happens in the traditional approach to glass-forming by cooling from a high-temperature melt. As the temperature of the system is lowered, the atoms lose thermal energy, eventually becoming trapped in a particular configuration. The second path to induce glass transition is by shortening the observation time scale. Any liquid, when observed on a short enough time scale, will behave as a solid material, that is, a glass. This method of inducing glass transition is seen, for example, in specific heat spectroscopy experiments where a system is probed on a multitude of disparate time scales.
    The glass transition is fundamentally kinetic in origin, but it has important thermodynamic consequences. While the freezing of the configurational degrees of freedom during the glass transition does not result in any change in volume or energy, the configurational contributions to entropy and second-order thermodynamic properties such as heat capacity and thermal expansion coefficient are all lost as the system becomes frozen at the nanoscale level. This has led many scientists to postulate the existence of an “ideal” glass transition that entails a second-order thermodynamic phase transformation. However, the concept of an ideal glass transition has been widely criticized based on both theoretical and experimental considerations.
    While the glass transition involves the imposition of a kinetic constraint, the opposite process — structural relaxation — involves the lifting of this constraint. Because glass is a nonequilibrium material, it is continually relaxing to approach its metastable supercooled liquid state. At low temperatures and short time scales, this relaxation process is effectively frozen. However, at higher temperature or for exponentially longer times,
measurable relaxation of the glassy state can be observed, reactivating the nanoscale transitions that ultimately lead to viscous flow. Relaxation is a spontaneous process and involves an increase in heat capacity, thermal expansion coefficient, and entropy as the configurational degrees of freedom of the system become activated.

» 猜你喜欢

已阅   关注TA 给TA发消息 送TA红花 TA的回帖

冬の萤火

金虫 (小有名气)

建议私信有偿翻译
一只想做译员的小透明~
2楼2020-10-17 11:27:13
已阅   关注TA 给TA发消息 送TA红花 TA的回帖

erxo0638

新虫 (小有名气)

★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ★ ...
fjtony163: 金币-50, 严禁广告 2020-11-01 01:43:37
fjtony163: 金币-50, 版主自由裁量 广告贴屡犯 直接扣金币到负数 2020-11-01 01:44:18
fjtony163: 金币-50, 严禁广告 2020-11-01 01:44:25
fjtony163: 金币-50, 严禁广告 2020-11-01 01:44:30
fjtony163: 金币-50, 屏蔽内容, 严禁广告 2020-11-01 01:45:03
本帖内容被屏蔽

3楼2020-10-31 09:40:13
已阅   关注TA 给TA发消息 送TA红花 TA的回帖
相关版块跳转 我要订阅楼主 p1801321 的主题更新
最具人气热帖推荐 [查看全部] 作者 回/看 最后发表
[考研] 材料工程307,求调剂 +6 我要燃烧你的梦 2026-03-08 6/300 2026-03-10 22:08 by peike
[考研] 2026考研求调剂-材料类-本科211一志愿985-初试301分 +10 虫友233 2026-03-07 10/500 2026-03-10 17:10 by Demonsssss
[考研] 311求调剂 +3 zchqwer 2026-03-10 3/150 2026-03-10 16:39 by 18595523086
[考研] 一志愿东北大学080500,英一数二343分求调剂 +8 Seele_v5 2026-03-04 8/400 2026-03-10 14:51 by ruiyingmiao
[考博] 申博 +5 添菜了哈 2026-03-04 8/400 2026-03-09 10:52 by jamesqi
[考研] 293一志愿华东理工 0817化学工程与技术 调剂 +5 fjj0912 2026-03-07 5/250 2026-03-09 09:13 by 30660438
[考研] 调剂 +3 13853210211 2026-03-08 3/150 2026-03-08 19:34 by ms629
[考研] 0701-322 求调剂 +3 jiliuxian 2026-03-06 8/400 2026-03-08 19:31 by jiliuxian
[考研] 288求调剂085600材料与化工 +13 Daunrin 2026-03-07 15/750 2026-03-08 19:10 by 加号+
[考研] 303求调剂 +8 forgman95 2026-03-05 10/500 2026-03-08 12:41 by 蓝莓都给你
[考研] 化学工程求调剂 +12 化工人999 2026-03-04 12/600 2026-03-08 11:17 by 我的船我的海
[考研] 085701环境工程317分求调剂 +9 6汆尼9 2026-03-07 9/450 2026-03-08 06:41 by 刘兵
[考研] 301求调剂 +5 一二LV 2026-03-07 5/250 2026-03-07 22:20 by 18137688336
[考研] 材料与化工304求B区调剂 +4 邱gl 2026-03-06 4/200 2026-03-06 15:51 by 聪明的大松鼠
[考研] 0856材料与化工求调剂! +5 化工考生111 2026-03-04 11/550 2026-03-06 01:20 by 化工考生111
[考研] 考研282分求调剂,接受跨专业 +4 刘淄博 2026-03-04 7/350 2026-03-05 22:56 by 刘淄博
[考研] 材料085601一志愿哈工大317 +4 压迫感行 2026-03-04 4/200 2026-03-05 20:08 by 黑衣馒头人
[考研] 271求调剂 +7 月色c 2026-03-05 8/400 2026-03-05 19:51 by wangjihu
[考研] 320材料一志愿西工大专硕英二数二 有两年光伏工作经验 +5 锤某人 2026-03-04 8/400 2026-03-05 09:24 by oxidpl
[考研] 322,求调剂 +3 菜菜爱玩 2026-03-04 3/150 2026-03-04 12:15 by xiongyaxuan
信息提示
请填处理意见