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1 e that the SI ices are expected to be highly ductile.
2 redict whether a material will be brittle or ductile.
3 ode of mechanical failure, i.e., brittle vs. ductile.
4 uced into a nanocomposite bcc Mg is far more ductile, 50% stronger, and retains its strength after ex
5 transitioned from a strong-brittle to strong-ductile adhesive upon the addition of 70 mM NaCl, eviden
6                                 Notably, the ductile AlFe(3), the less ductile AlFe, and most of the
7       Notably, the ductile AlFe(3), the less ductile AlFe, and most of the other IMCs can be formed d
8                Pure titanium transforms from ductile alpha to brittle omega at 9 GPa, creating seriou
9 ctly isotropic and NaNbO(3) and NaTaO(3) are ductile and brittle in nature, respectively.
10 ratch tracks revealed the occurrence of both ductile and brittle removal modes, it failed to accurate
11         We refer to these behaviors as being ductile and brittle.
12 s ample opportunity to design stronger, more ductile and cheaper alloys.
13                                For perfectly ductile and perfectly brittle structures, the empirical
14 y of functionalized poly(a-hydroxy acids) as ductile and resilient polymeric materials.
15 line isotactic PHA copolymers that are hard, ductile, and tough plastics, and exhibit polyolefin-like
16 igid oceanic plates from the underlying warm ductile asthenosphere.
17      Bulk silicon is brittle, but it becomes ductile at about 540 degrees C.
18 ate plastic deformation, rendering BMGs more ductile at room temperature.
19 V, which is reminiscent of a transition from ductile behavior at high velocities to brittle response
20 ates regulate the transition from brittle to ductile behaviour.
21 g grain size to several nanometers or adding ductile binder phase.
22 y-stretchability relationships for designing ductile blends.
23 is related to the effective accommodation of ductile body-centered cubic dendrites at 77 K, character
24 mes important to understand the mechanics of ductile-brittle thresholds in these materials.
25                For testing, we used invasive ductile carcinoma of the breast to query the literature
26 xpression included retinal cells of the eye, ductile cells of the salivary gland, exocrine cells of t
27 crodiffraction to discover how PLLA acquired ductile character and found that the crimping process cr
28                               We demonstrate ductile compressive deformability with elongated ultrahi
29 ductively cooling plates from the underlying ductile, convecting mantle.
30 , mineralized outer shell surrounding a more ductile core.
31 y textural changes (hard-to-soft, brittle-to-ductile, crispy-to-soggy) of MA-based coated products at
32                    Our results indicate that ductile crustal deformation can cause distributed micros
33 anisms that control mechanical properties of ductile crystalline materials.
34 ity and impact toughness, resulting from the ductile crystalline phases distributed uniformly within
35 ing direction, failure is characterised by a ductile cup-cone failure with significant elongation of
36 g to the strong feedback between brittle and ductile damage localization.
37 gement, while that in consolidated silver is ductile deformation and flow of material.
38 gments, while wear in the silver occurred by ductile deformation and flow of materials.
39 ogressed from discrete domains unaffected by ductile deformation into localized shear zones deforming
40 tory observations showing that TE background ductile deformation is complex and dominated by distribu
41 molecular dynamics simulations elucidate the ductile deformation mechanism in monoclinic-Ag(2)S under
42 , and fluid overpressure promoted widespread ductile deformation within TE that light-up with distrib
43 ismic sliding (where high temperatures allow ductile deformation), with the deep aseismic zone exhibi
44  subduction models in which both brittle and ductile deformation, including grain damage, are tracked
45 gh diffuse in width upon entering the deeper ductile domain aided by fluids and do not project as nar
46 ation as large as ~30%, at the same level of ductile face-centered-cubic metals.
47 ing in excellent dimensional accuracy, and a ductile failure at 73% higher ultimate load compared to
48         Dual mode fracture was observed with ductile failure for L1(2) phase and brittle mode for B2
49 itude higher breaking energy via a distinct, ductile failure mode.
50 her confinement or slower loading results in ductile failure once the brittle-ductile transition is c
51 er, the recent discovery of abundant brittle-ductile fault textures in silicic lavas has led to the c
52 a system of seismic asperities embedded in a ductile fault zone matrix.
53 e resulting in a combination of the soft and ductile fcc phase together with hard B2 phase.
54 high temperature the plastic deformation and ductile flow is meditated by the <110>{111} dislocation
55 grees C diamond crystals exhibit significant ductile flow with corresponding yield strength of 7.9 an
56 o identify the lower crust, characterized by ductile flow.
57 me contributing to this layer by melting and ductile flow.
58 acks, whereas SERM treatments lead to a more ductile fracture and mainly increase crack length with a
59 ontrolled, as for example has been shown for ductile fracture in metallic materials.
60 anding the competing modes of brittle versus ductile fracture is critical for preventing the failure
61 eveloping ultrahigh-strength steels that are ductile, fracture resistant, and cost effective would be
62 s and evolving shaping technologies, such as ductile grinding, is paramount.
63            Two damage regimes-"brittle" and "ductile"-have been identified in the literature on ceram
64 ynergy with high stiffness carbon fiber with ductile high strength polypropylene fiber (Innegra S), (
65 onally accelerated pathway for the design of ductile, high-temperature alloys for extreme environment
66 ow impact velocities, the aerogels failed by ductile hole enlargement followed by a tensile failure.
67  interior by a subsurface layer of liquid or ductile ice.
68 deline for designing even higher-performance ductile inorganic semiconductors.
69 s of mineral higher than 80%, and aided by a ductile interface, unveil toughness up to two orders of
70 n mains compared with the alternative, lined ductile iron.
71             We found that the metastable and ductile (judged by the presently predicted elastic const
72 ergy dissipation by local plasticity in thin ductile layers on increasing the resistance to cracking
73 avor of elastic shell buckling, resulting in ductile-like deformation and recoverability.
74 ity and that mantle fluids can penetrate the ductile lithosphere, even in regions where there is no s
75 odel that simulates stress transfer from the ductile lower crust and upper mantle to the brittle uppe
76 n mantle fluids are able to flow through the ductile lower crust.
77  extension through the vertical extrusion of ductile lower-crust material, driven by a crustal densit
78 tal root cause an upward flow pattern of the ductile lower-middle crust, facilitated by a detachment
79 olyhydroxyalkanoates (mcl-PHAs) are soft and ductile, making these bio-based polymers good candidates
80                                      Typical ductile materials are metals, which deform by the motion
81                                              Ductile materials can absorb spikes in mechanical force,
82                       A higher proportion of ductile materials with a significant percentage of quart
83 ns, but simulations in which cells behave as ductile materials with nonlinear mechanical properties d
84 r findings demonstrate that microtubules are ductile materials with self-healing properties, that the
85 entrated alloys for the design of strong and ductile materials.
86 of post-damage residual stress compared with ductile materials.
87 e concepts can be used to rapidly design new ductile materials.
88 inute traces of bismuth in copper cause this ductile metal to fail in a brittle manner?
89 pite similar Poisson's ratio to that of many ductile metallic and organic glasses.
90 riting is used to pattern highly conductive, ductile metallic interconnects, springs, and freestandin
91                                Intrinsically ductile metals are prone to catastrophic failure when ex
92 c encapsulation materials and stiff films of ductile metals that can be manipulated with microscopic
93 nical properties is essential to promote the ductile microscale behaviour preventing an abrupt overal
94  Within extreme continental extension areas, ductile middle crust is exhumed at the surface as metamo
95 reme extension predicted upward transport of ductile middle-lower crust through time.
96 mechanostable muscle protein titin, a highly ductile model reconciles data over 10 orders of magnitud
97 tructure of W-phase 'bricks' surrounded by a ductile 'mortar'.
98  scales and the insight for future design of ductile nanocrystalline metals.
99 atic association to elucidate the strong and ductile nature of the BB-PSBMA adhesive at 70 mM NaCl.
100         Our work suggests that nature uses a ductile network of hydrogen bonds to engineer function o
101                 Here we present a strong and ductile non-equiatomic HEA obtained after friction stir
102 ur results suggest that dwell can occur in a ductile noncracking target due to flow reversal.
103 width of 50-200 m reaching to the top of the ductile part of the crust, by observations on seismic gu
104 resent the activity of creep fracture in the ductile part of the lithosphere occurring over cracks wi
105 rable devices would benefit from integrating ductile photovoltaic light-harvesting power sources.
106 us transition from brittle (Coulomb-like) to ductile (plastic) yielding.
107 bre composed of a brittle core embedded in a ductile polymer cladding, cold-drawing results in a surp
108  interfibrillar shearing seems to enable the ductile post-yield behaviour.
109 s known quantitatively regarding its brittle-ductile properties and yield strength at high temperatur
110 n NaCl concentration continued to impart the ductile properties to BB-PSBMA.
111                                The dearth of ductile, rare-earth-free materials with high magnetostri
112 ominantly transformed from strong-brittle to ductile regardless of the salt content.
113 ne substantially reduces the strength in the ductile regime within a certain temperature window.
114 et still efficient grinding regime known as "ductile-regime grinding." Disc-shaped specimens of a lit
115  research on the feasibility of implementing ductile-regime milling/grinding protocols for fabricatin
116                               Working in the ductile region offers the promise of compelling time and
117 is essentially crack formation, while in the ductile region, it is quasiplasticity.
118  enable shear fracture to be rationalized in ductile rocks and mitigated against in designing advance
119 Es) on faults in the vicinity of the brittle-ductile (seismic-aseismic) transition.
120 formation mechanism in a recently discovered ductile semiconductor, monoclinic-silver sulfide (Ag(2)S
121 It is advocated that critical conditions for ductile shaping may be most readily quantified on analog
122                             Direct dating of ductile shear zones and calculation of uplift/exhumation
123 ieved in our models by the formation of weak ductile shear zones.
124                                          The ductile side of ceramic shaping is accessed by reducing
125 igger shear bands thereby causing failure of ductile solids.
126 ure is a robust dynamical feedback, in which ductile strain first localizes in relatively weak, quart
127 e temperature conditions at which resolvable ductile strain is recorded in subducted mudstones (at de
128 igned by natural organisms results in highly ductile structural materials that can withstand mechanic
129 od only for the limiting cases of brittle or ductile structures.
130 etrical model applicable to brittle films on ductile substrates.
131                        We show that the more ductile surfaces of cancellous bone are a result of redu
132 rms of strong versus weak and brittle versus ductile take on precise, quantitative meaning in terms o
133 obility being responsible for the brittle to ductile temperature transition.
134  brittle fracture in pristine silicon versus ductile tensile deformation in fully lithiated silicon.
135                 Determination of the brittle-ductile thresholds is significant because it sets a foun
136 o the dislocation-mediated mechanisms of the ductile to brittle transition in BCC refractory metals.
137 and continuously cover the entire range from ductile to brittle.
138 n time was consistent with cooling below its ductile-to-brittle transition (DBT) temperature.
139 ed after recrystallization exhibits a higher ductile-to-brittle transition temperature which increase
140 GPa, near the ideal limit, with a remarkable ductile-to-brittle transition with decreasing twin size.
141 t is also highly anisotropic, and exhibits a ductile-to-brittle transition with increasing strain rat
142 -entropy alloy with enhanced fatigue life by ductile-transformable multicomponent B2 precipitates.
143  be developed by incorporating strengthening ductile-transformable multicomponent intermetallic phase
144 brittle compressive strength and the brittle-ductile transition are consistent with data from a varie
145  is found to exhibit an anomalous brittle-to-ductile transition behavior, considering its low fractur
146  mechanistic underpinnings of the brittle-to-ductile transition governed by atomic bonding and lithia
147                               The brittle to ductile transition in densified silica glass can be attr
148                      We observe a brittle-to-ductile transition in samples with orthogonally oriented
149  results in ductile failure once the brittle-ductile transition is crossed.
150 s by nanoindentation show a rapid brittle-to-ductile transition of fracture as the lithium-to-silicon
151 ional features occur deeper than the brittle-ductile transition predicted by simple thermal models, b
152 a pre-eruptive storage pool near the brittle-ductile transition regime.
153 phere boundary (LAB), yet the origin of this ductile transition remains debated(1,2).
154 versible local Fe migration and a brittle-to-ductile transition that confers self-healing behaviour.
155               The threshold load for brittle-ductile transition was determined to be 70 mN based on F
156          We propose that SSEs in the brittle-ductile transition zone episodically transfer stress to
157           Slow earthquakes in the brittle-to-ductile transition zone interact dynamically with megath
158 across the base of the upper crustal brittle-ductile transition zone.
159 hydrothermal circulation down to the brittle-ductile transition, effectively stabilizes along-strike
160 in subduction zones, occur below the brittle-ductile transition, where high pressures render friction
161 unding rocks, occurring close to the brittle-ductile transition.
162 cally changes as the rocks cross the brittle-ductile transition.
163 determine the threshold load for the brittle-ductile transition.
164 ritical reinforcement volume for the brittle-ductile transition.
165 ustal permeability, particularly the brittle-ductile transition.
166  increasing depth resulting in a "brittle-to-ductile" transition (BDT) region that is key for estimat
167 abrupt and dramatic size-induced "brittle-to-ductile" transition occurs around 100 nm.
168 ropic strength profiles identify the brittle-ductile transitions in lithospheric strength.
169 of milk-producing epithelial cells that form ductile tubules surrounded by a myoepithelial cell layer
170 domains of filamin and titin are kinetically ductile when pulled from their two termini, making them
171  indicate that ScCo, ScIr, and YCd should be ductile, whereas each was previously proposed to be brit
172  site of squid rhodopsin to be malleable and ductile, while that of bovine rhodopsin is rigid and sti
173    Importantly, the 60 vol.% Ap-SFRP remains ductile with 7% flexural elongation at lower temperature

 
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