research article
Formation Mechanism Of Lamellar Chips During Machining Of Bulk Metallic Glass
Abstract
The uniqThe unique lamellar chips formed in turning–machining of a Vit 1 bulk metallic glass (BMG) are found to be due to repeated shearband formation in the primary shear zone (PSZ). A coupled thermomechanical orthogonal cutting model, taking into account force, free volume and energy balance in the PSZ, is developed to quantitatively characterize lamellar chip formation. Its onset criterion is revealed through a linear perturbation analysis. Lamellar chip formation is understood as a self-sustained limit-cycle phenomenon: there is autonomous feedback in stress, free volume and temperature in the PSZ. The underlying mechanism is the symmetry breaking of free volume flow and source, rather than thermal instability. These results are fundamentally useful for machining BMGs and even for understanding the physical nature of inhomogeneous flow in BMGs.ue lamellar chips formed in turning–machining of a Vit 1 bulk metallic glass (BMG) are found to be due to repeated shearband- Article
- 期刊论文
- Bulk Metallic Glass
- Lamellar Chip
- Orthogonal Cutting Model
- Free Volume
- Limit Cycle
- Amorphous-alloys
- Plastic-deformation
- Shear Bands
- Fracture
- Propagation
- Instability
- Strength
- AMORPHOUS-ALLOYS
- PLASTIC-DEFORMATION
- SHEAR BANDS
- FRACTURE
- PROPAGATION
- INSTABILITY
- STRENGTH
- Materials Science
- Metallurgy & Metallurgical Engineering
- Materials Science, Multidisciplinary
- Metallurgy & Metallurgical Engineering
- free volume
- limit cycle
- amorphous alloys
- lüders bands
- slip bands
- fracture
- reproduction
- stability
- strength
- 极限环
- limit-cycle
- 颈缩
- lüders lines
- stretcher strains
- luders bands
- deformation lines
- hartmann lines
- necking
- plastic deformation
- plastic strain
- 塑性形变
- luders lines
- lignes de lueders
- lueders-linien
- deformation plastique
- plastische verformung
- luder bands
- plastic yielding
- strain softening
- 颈缩现象
- leuders lines
- shear bands
- 脆性断裂
- fractures
- bones--fractures
- brittle fracture
- cleavage fracture
- intergranular fracture
- notch brittleness
- crystallographic shear
- shear
- ductile fracture
- notch ductility
- ductile-brittle transition
- brittle-ductile transitions
- failure (mechanical)
- breakage
- cracking
- rupture
- notch strength
- notch sensitivity
- 脆断
- 断裂
- 剪切
- 解理断裂
- inter-granular fracture
- 晶间断裂
- failure
- 破坏
- 破裂
- 失效
- 延性断裂
- bruch
- defaillance
- panne
- versagen
- brittle-ductile transition
- brittle deformation
- shear strain
- 结晶学切变
- 延性破裂
- ductile brittle transition
- notch effect
- notched tensile strength
- amphimixis
- pangenesis
- generation
- procreation
- reproduction rate
- reproduction (biology)
- propagation
- copying
- duplicating
- 传播
- propagators
- 稳定性
- 稳定性问题
- 失稳
- stabilization
- absolute stability
- asymptotic stability
- exponential stability
- circuit bistability
- circuit stability
- input-output stability
- mechanical stability
- balancing (mechanical systems)
- mechanical instability
- nyquist criterion
- nyquist stability
- popov criterion
- dynamic stability
- instability
- robust stability
- robustness
- stabilisation
- transient stability
- stability criteria
- 渐近稳定性
- missile stabilization
- 输入输出稳定性
- 镇定
- dynamic instability
- stabilizing
- controllability
- stabilizing treatment
- 强度