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71.
The role of grain size and selected microstructural parameters in strengthening fully lamellar TiAl alloys 总被引:2,自引:0,他引:2
Dennis M. Dimiduk Peter M. Hazzledine Triplicane A. Parthasarathy Madan G. Mendiratta Sriram Seshagiri 《Metallurgical and Materials Transactions A》1998,29(1):37-47
More than 5 years ago, wrought processing was first used to produce fully lamellar (FL) microstructures in TiAl alloys having
grain sizes less than ≈400 μm. These alloys exhibit an improvement in overall balance of properties, especially at high temperatures. More recently, such
microstructural forms led to exceptional yield strengths (500 to 1000 MPa at low temperatures) while maintaining attractive
high-temperature properties. The improvements appeared to be related to an unusually high apparent sensitivity of strength
to grain size. Studies reported an apparent value for the slope of the Hall-Petch (HP) plot approaching 5 MPa√m for FL gamma
alloys, while that for single-phase or duplex microstructures is near unity. The present investigations examine the slope
of the HP plot for FL microstructures, paying particular attention to the lamellar microstructural variables. Results show
that the α
2 lamellar thickness and spacing and the γ lamellar thickness can vary over more than two orders of magnitude with typical process methods. These spacings influence
the value of k
y
in the HP (grain size) relationship. Since they often change concomitantly with grain size in processing, they can give rise
to a large scatter in the HP plot. The investigations also examine the flow behavior, glide barriers, and slip multiplicity
for polysynthetically twinned (PST) crystals (the single-grain analogue of FL material), and then map this behavior into an
explanation of the yield behavior of high-strength FL gamma alloys.
This article is based on a presentation made in the symposium “Fundamentals of Gamma Titanium Aluminides,” presented at the
TMS Annual Meeting, February 10–12, 1997, Orlando, Florida, under the auspices of the ASM/MSD Flow & Fracture and Phase Transformations
Committees. 相似文献
72.
Novel foam composites comprising functionalized graphene (f‐G) and polyvinylidene fluoride (PVDF) were prepared and electrical conductivity and electromagnetic interference (EMI) shielding efficiency of the composites with different mass fractions of f‐G have been investigated. The electrical conductivity increases with the increase in concentration of f‐G in insulating PVDF matrix. A dramatic change in the conductivity is observed from 10?16 S · m?1 for insulating PVDF to 10?4 S · m?1 for 0.5 wt.% f‐G reinforced PVDF composite, which can be attributed to high‐aspect‐ratio and highly conducting nature of f‐G nanofiller, which forms a conductive network in the polymer. An EMI shielding effectiveness of ≈20 dB is obtained in X‐band (8–12 GHz) region and 18 dB in broadband (1–8 GHz) region for 5 wt.% of f‐G in foam composite. The application of conductive graphene foam composites as lightweight EMI shielding materials for X‐band and broadband shielding has been demonstrated and the mechanism of EMI shielding in f‐G/PVDF foam composites has been discussed.
73.
Low Concentrations of Salicylic Acid Stimulate Insect Elicitor Responses in <Emphasis Type="Italic">Zea mays</Emphasis> Seedlings 总被引:1,自引:0,他引:1
Salicylic acid (SA) generally is thought to suppress jasmonic acid (JA) related signaling events. However, when we treated
the roots of corn seedlings overnight with low physiological concentrations of SA (50 μM), we found a priming effect of this
pretreatment on typical insect elicitor (IE)-induced responses in the leaves of these plants. IE-induced JA was more than
2-fold up regulated in SA-pretreated plants. Consequently, IE-induced volatile organic compounds (VOC) release also was significantly
increased. In contrast, when corn seedlings were treated with SA overnight and then mechanically damaged, we found no significant
differences in JA accumulation. We also found that the application of even lower concentrations of SA (5 μM) had no significant
effect on IE-induced responses, while higher concentrations (500 μM) inhibited IE-induced JA accumulation. Likewise, shorter
exposure to SA did not affect subsequent JA accumulation induced by IE or mechanical wounding. These results provide evidence
for the existence of non-compatible defense priming by signaling molecules that usually are involved in a conflictive defense
signaling pathway and suggests common elements in the regulation of priming plant defense responses. 相似文献
74.
This article addresses the issue of friction and wear characteristics of diesel engine cylinder liner–piston ring combinations under different lubricating conditions using a pin-on-disc wear tribometer. The discs were made out of actual engine cylinder liner material using a casting process. Pins were made out of top compression ring material. The tests were conducted on a pin-on-disc tribometer for wear and friction characteristics of the cylinder liner and piston ring combination with diesel-contaminated rapeseed oil–based bio-lubricant, diesel-contaminated commercial synthetic lubrication oil (SAE 20W40), biodiesel-contaminated commercial synthetic lubrication oil (SAE 20W40), and used (150 h) commercial synthetic lubrication oil (SAE 20W40). Experimental results demonstrated that the rapeseed oil–based bio-lubricant and biodiesel-contaminated synthetic lubricant exhibited better performance in terms of wear, friction, and frictional force under similar operating conditions. Thus, usage of newly formulated bio-lubricant and biodiesel in the long run may have a positive impact on engine life. 相似文献
75.
The vulcanization behavior and mechanical properties of clay/fluoroelastomer nanocomposites produced by melt‐mixing of Dyneon FPO 3741 (a terpolymer of vinylidene fluoride, hexafluoropropylene, and tetrafluoroethylene) with 10 phr of unmodified montmorillonite (CloisiteNA) or di(hydrogenated tallow‐alkyl) dimethyl ammonium‐modified montmorillonites (Cloisite15A and Cloisite20A) were studied. The properties of clay/FKM nanocomposites were compared with composites prepared using 10 and 30 phr of carbon black. The effects of clay surfactant and surfactant concentration on the vulcanization behavior, mechanical, and dynamical properties of peroxide cured composites were studied. XRD results of cured composites showed a decrease in d‐spacing and indicated deintercalation of the clays after the vulcanization process. It was also found that organoclays retard the FKM peroxide vulcanization process. Significantly, higher maximum torque on vulcanization was obtained with organoclays versus unmodified clay and carbon black. Although the morphologies of organoclay/FKM nanocomposites studied by XRD and TEM suggest similar intercalated/exfoliated structures, the organoclay with the lowest concentration of surfactant (95 meq/100 g clay) resulted in the highest increase in torque, modulus, hardness, and tear strength in the clay/FKM nanocomposites. It was also found that organoclays can increase both the hydrodynamic reinforcement and hysteresis loss of FKM nanocomposites. © 2011 Wiley Periodicals, Inc. J Appl Polym Sci, 2011 相似文献
76.
Nehru Viji Sankaranarayanan Balaji Nagarajan Umesh R. Desai 《International journal of molecular sciences》2021,22(14)
Transforming growth factor-beta (TGF-β), a member of the TGF-β cytokine superfamily, is known to bind to sulfated glycosaminoglycans (GAGs), but the nature of this interaction remains unclear. In a recent study, we found that preterm human milk TGF-β2 is sequestered by chondroitin sulfate (CS) in its proteoglycan form. To understand the molecular basis of the TGF-β2–CS interaction, we utilized the computational combinatorial virtual library screening (CVLS) approach in tandem with molecular dynamics (MD) simulations. All possible CS oligosaccharides were generated in a combinatorial manner to give 24 di- (CS02), 192 tetra- (CS04), and 1536 hexa- (CS06) saccharides. This library of 1752 CS oligosaccharides was first screened against TGF-β2 using the dual filter CVLS algorithm in which the GOLDScore and root-mean-square-difference (RMSD) between the best bound poses were used as surrogate markers for in silico affinity and in silico specificity. CVLS predicted that both the chain length and level of sulfation are critical for the high affinity and high specificity recognition of TGF-β2. Interestingly, CVLS led to identification of two distinct sites of GAG binding on TGF-β2. CVLS also deduced the preferred composition of the high specificity hexasaccharides, which were further assessed in all-atom explicit solvent MD simulations. The MD results confirmed that both sites of binding form stable GAG–protein complexes. More specifically, the highly selective CS chains were found to engage the TGF-β2 monomer with high affinity. Overall, this work present key principles of recognition with regard to the TGF-β2–CS system. In the process, it led to the generation of the in silico library of all possible CS oligosaccharides, which can be used for advanced studies on other protein–CS systems. Finally, the study led to the identification of unique CS sequences that are predicted to selectively recognize TGF-β2 and may out-compete common natural CS biopolymers. 相似文献
77.
S. Sriram M. Bhaskaran A. Mitchell D. R. G. Mitchell G. Kostovski 《Nanoscale research letters》2009,4(1):29-33
We report the first instance of deposition of preferentially oriented, nanocrystalline, and nanocolumnar strontium-doped lead
zirconate titanate (PSZT) ferroelectric thin films directly on thermal silicon dioxide. No intermediate seed or activation
layers were used between PSZT and silicon dioxide. The deposited thin films have been characterised using a combination of
diffraction and microscopy techniques. 相似文献
78.
79.
B. Radha R. Rathi K. C. Lalithambika A. Thayumanavan K. Ravichandran S. Sriram 《Journal of Materials Science: Materials in Electronics》2018,29(16):13474-13482
Pure and Fe doped ZnO nanoparticles were prepared by a facile and cost-effective co-precipitation method. The X-ray diffractograms (XRD) reveal that the grown nanoparticles are hexagonal in structure and the crystallite sizes are in the range of 27–28 nm. The transmission electron microscope (TEM) micrographs confirmed the spherical nature of the grown particles and the Fourier transform-infrared (FT-IR) studies confirmed the presence of Zn–O bonding in the prepared nanoparticles. Additionally, the presence of the constituent elements is confirmed with XPS analysis. The optical bandgap of the prepared nanoparticles are calculated as 3.28, 3.19 and 3.08 eV for ZnO, ZnO–Fe 10 at.% and ZnO–Fe 20 at.%, respectively. The photocatalytic dye degradation efficiency against methylene blue, is 68.52, 73.96, and 87.92, respectively. To validate the photocatalytic activity, a DFT based calculation was performed to measure the band edge positions of the pure and Fe doped ZnO nanostructures, and the obtained results are well supported by the experimental results. 相似文献
80.
Bernd Finkbeiner Sriram Sankaranarayanan Henny Sipma 《Electronic Notes in Theoretical Computer Science》2002,70(4)
By collecting statistics over runtime executions of a program we can answer complex queries, such as “what is the average number of packet retransmissions” in a communication protocol, or “how often does process P1 enter the critical section while process P2 waits” in a mutual exclusion algorithm. We present an extension to linear-time temporal logic that combines the temporal specification with the collection of statistical data. By translating formulas of this language to alternating automata we obtain a simple and efficient query evaluation algorithm. We illustrate our approach with examples and experimental results. 相似文献