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ghasemi-yazdabadi--h
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An investigation on the fatigue fracture of P/M Al-SiC nanocomposites
, Article Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science ; Volume 44, Issue 6 , 2013 , Pages 2662-2671 ; 10735623 (ISSN) ; Ekrami, A ; Kim, H. S ; Simchi, A ; Sharif University of Technology
2013
Abstract
A tensile-compression fatigue response of Al matrix composites containing different amount of SiC nanoparticles (50 nm diameter) up to 6 vol. pct was studied. The nanocomposite powders were prepared by a powder metallurgy (P/M) route consisting of mechanical alloying, hot extrusion, and hot closed-die forging. The microstructure of the materials was evaluated by optical microscopy, scanning and transmission electron microscopies, and electron backscattered diffraction. A fine distribution of the nanoparticles in submicron and ultrafine grains was obtained. The low cycle fatigue behavior was examined in stress control mode under fully reversed tension-compression cycle at 1 Hz up to 1000...
Fatigue Behavior of Al-SiC Nanocomposite
, M.Sc. Thesis Sharif University of Technology ; Simchi, Abdolreza (Supervisor) ; Ekrami, Ali Akbar (Supervisor)
Abstract
Recently, mechanical properties of advanced materials such as nanostructured and ultra-fine materials and especially nanocomposites were studied by lots of researcher. In this study, fatigue behavior of Al-SiC nanocomposites is observed. Ultra-fine grains Al matrix nanocomposites reinforced with 50 nm diameter SiC nanoparticles were produced by milling and hot extrusion. For this purpose, pure aluminum powder was mixed with 2, 4 and 6 Vol. % of SiC nanoparticles and then milled by planetary mill. The milled powder then were degased in an Argon atmosphere furnace, cold pressed and then hot extruded. Closed die-hot forging was used with about 18.8% reduction in cross section in order to...
Friction stir welding of a P/M Al-Al2O3 nanocomposite: microstructure and mechanical properties
, Article Materials Science and Engineering A ; Volume 585 , 2013 , Pages 222-232 ; 09215093 (ISSN) ; Ghasemi Yazdabadi, H ; Kokabi, A. H ; Simchi, A ; Sharif University of Technology
2013
Abstract
Solid-state joining of powder-metallurgy processed (P/M) Al-2vol% Al2O3 (15nm) nanocomposite by friction stir welding (FSW) was studied. The nanocomposite was prepared via high-energy mechanical milling followed by hot consolidation processes. The microstructure, mechanical properties and fracture behavior of the welds were evaluated and compared with FSWed wrought 1050 aluminum sheets (WAS). We have found that unlike WAS that can processed at various FSW conditions, the working window for the solid-state joining of P/M nanocomposite is narrow and only feasible at relatively high heating inputs. Microstructural studies showed the formation of melted zones with high hardness at the advancing...
Modeling and integral sliding mode control of a roll-yaw seeker by removing the singularity condition
, Article AUT Journal of Modeling and Simulation ; Volume 56, Issue 2 , 2024 , Pages 235-256 ; 25882953 (ISSN) ; Nobahari, H ; Mohammadkarimi, H ; Sharif University of Technology
2024
Abstract
This paper aims to model and sliding mode control of a roll-yaw seeker. In the roll-yaw seeker, a singularity occurs when the seeker is directed precisely to a target, and the seeker will lose the target. Thus, the Controller design should contain a tracking strategy to deal with the singularity. In this paper, Newton-Euler’s method is applied to the dynamic model of a roll-yaw seeker’s roll and yaw gimbals. The dynamics of the roll-yaw seeker are highly nonlinear. Also, unmodeled uncertainties and perturbations reduce the model’s reliability. A two-input, two-output integral sliding mode controller is designed to control the nonlinear dynamics of the seeker and deal with uncertainties. The...
A new achievable rate region for the gaussian two-way relay channel via hybrid broadcast protocol
, Article IEEE Communications Letters ; Vol. 18, issue. 11 , 2014 , pp. 1883-1886 ; ISSN: 10897798 ; Behroozi, H ; Sharif University of Technology
2014
Abstract
In this letter, we study the Gaussian two-way relay channel (GTWRC) with a direct link in which two nodes want to exchange information with each other with the help of a relay node in the presence of a direct link between two nodes. Specially, we focus on a protocol with four phases, which is called the hybrid broadcast (HBC) protocol. In the HBC protocol, sequential transmissions from both users are followed by a transmission from the relay. Using nested lattice codes, we obtain a new achievable rate region for this protocol. In fact, utilizing a four-stage lattice partition chain, we introduce an intermediate lattice in our lattice-based coding scheme, and by using it, we split the...
On the capacity of state-dependent Gaussian cognitive interference channel
, Article Eurasip Journal on Wireless Communications and Networking ; Vol. 2014, issue. 1 , Oct , 2014 ; Behroozi, H ; Sharif University of Technology
2014
Abstract
A Gaussian cognitive interference channel with state (G-CICS) is studied. In this paper, we focus on the two-sender, two-receiver case and consider the communication situation in which two senders transmit a common message to two receivers. Transmitter 1 knows only message W1, and transmitter 2, referred to as the cognitive user, knows both messages W1 and W2 and also the channel’s states sequence non-causally. Receiver 1 needs to decode only W1 while receiver 2 needs to decode both messages. In this paper, we investigate the weak and moderate interference case where we assume that the channel gain a satisfies |a|≤1. In addition, inner and outer bounds on the capacity region are derived in...
Nested lattice codes for the state-dependent gaussian interference channel with a common message
, Article IWCIT 2014 - Iran Workshop on Communication and Information Theory ; 7-8 May , 2014 ; Behroozi, H ; Sharif University of Technology
2014
Abstract
In this paper, we consider the generalized point-to-point Additive White Gaussian Noise (AWGN) channel with state: The State-Dependent Gaussian Interference Channel (SD-GIC) with a common message in which two senders transmit a common message to two receivers. Transmitter 1 knows only message μ1 while transmitter 2 in addition μ1 also knows the channel state sequence non-causally. In this paper, we consider the strong interference case where the channel state has unbounded variance. First, we show that a scheme based on Gelfand-Pinsker coding cannot achieve the capacity within a constant gap for channel gains smaller than unity. In contrast, we propose a lattice-based transmission scheme...
Interference neutralization using lattice codes
, Article 2013 IEEE Information Theory Workshop, ITW 2013 2013 ; 2013 ; 9781479913237 (ISBN) ; Behroozi, H ; Sharif University of Technology
2013
Abstract
Deterministic approach of [1] models the interaction between the bits that are received at the same signal level by the modulo 2 sum of the bits where the carry-overs that would happen with real addition are ignored. By this model in a multi-user setting, the receiver can distinguish most significant bits (MSBs) of the stronger user without any noise. A faithful implementation of the deterministic model requires one to 'neutralize interference' from previous carry over digits. This paper proposes a new implementation of 'interference neutralization' [2] using structured lattice codes. We first present our implementation strategy and then, as an application, apply this strategy to a symmetric...
State-dependent Gaussian Z-interference channel: New results
, Article Proceedings of 2014 International Symposium on Information Theory and Its Applications, ISITA 2014 ; 26- 29 October , 2014 , pp. 468-472 ; ISBN: 9784885522925 ; Behroozi, H ; Sharif University of Technology
2014
Abstract
A class of Gaussian Z-interference channels with state is investigated in the regime of high state power in which two transmitters communicate two independent messages through a 'dirty' Z-interference channel. Transmitter 1 (primary user) interferes with receiver 2 while transmitter 2 (secondary user) does not interfere with receiver 1. In addition, receiver 2 suffers from a random state sequence which is non-causally known only at transmitter 1. For this setup, which is also investigated by Duan et al. in [1], first we characterize the capacity region for the deterministic case and then by the obtained insight from analyzing the deterministic case, we establish sufficient conditions under...
On the sum-capacity and lattice-based transmission strategies for state-dependent Gaussian interference channel
, Article IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, PIMRC ; 2012 , Pages 1944-1948 ; 9781467325691 (ISBN) ; Behroozi, H ; Sharif University of Technology
2012
Abstract
In this work, we consider an additive state-dependent Gaussian interference channel (ASD-GIC) where there is a common additive interference, known to both transmitters but not to the receivers. First, we obtain an outer bound on the sum-capacity for the asymptotic case where the interference is assumed to be Gaussian variable with unbounded variance. This asymptotic case has been referred to as the "strong interference" in [1]. By applying a lattice-based coding scheme, an achievable rate-region is provided. Under some conditions, which depend on the noise variance and channel power constraints, this achievable sum-rate region meets the outer bound and therefore lattice codes can achieve the...
On the transmission strategies for the two-user state-dependent gaussian interference channel
, Article Proceedings of the International Symposium on Wireless Communication Systems ; Aug , 2013 , Pages 224-228 ; 21540217 (ISSN) ; 9783800735297 (ISBN) ; Behroozi, H ; Sharif University of Technology
IEEE Computer Society
2013
Abstract
In this paper, we study a general additive state-dependent Gaussian interference channel (ASD-GIC) where we consider two-user interference channel with two independent states known non-causally at both transmitters, but unknown to either of the receivers. A special case, where there is a common additive state is studied in [1], [2], where it is shown that the gap between the achievable symmetric rate and the upper bound is less than 1 /4 bits for the strong interference case. Here, we also consider the case where interference link gains satisfy a12 ≥ N1/ N2 and a 21 ≥ N2/ N1 (Ni is the channel noise variance) and each channel state has an unbounded variance [3], which is referred to as the...
Sending a Gaussian source over an AWGN channel in the presence of an unknown interference
, Article 2012 46th Annual Conference on Information Sciences and Systems, CISS 2012, Princeton, NJ, 21 March 2012 through 23 March 2012 ; 2012 ; 9781467331401 (ISBN) ; Behroozi, H ; Sharif University of Technology
2012
Abstract
This paper analyzes the problem of transmitting a Gaussian source over an additive white Gaussian noise (AWGN) channel in the presence of an unknown interference. The goal is to estimate the source at the receiver with minimum mean squared error (MMSE) distortion. We introduce a lattice-based coding scheme and calculate its achievable distortion. If the interference distribution and the lattice voronoi region satisfy some conditions, the effect of interference can be reduced
Sending linear functions of correlated gaussian sources over a MAC in the presence of known interference at the transmitter
, Article 2012 46th Annual Conference on Information Sciences and Systems, CISS 2012, 21 March 2012 through 23 March 2012 ; March , 2012 , Page(s) 1 - 6 ; 9781467331401 (ISBN) ; Behroozi, H ; Sharif University of Technology
2012
Abstract
In this work, we consider the problem of communicating linear functions of correlated Gaussian sources over a two-user additive Gaussian noise multiple access channel (MAC) in the presence of known interference at the transmitter. The goal is to estimate a linear combination of two sources at the receiver with minimum average mean squared error (MSE) distortion. Here, a lattice-based coding scheme is presented and its achievable distortion is analyzed. In addition, two lower bounds on the achievable distortion are derived. The proposed lattice coding scheme can cancel channel interference completely
Lattice-coded cooperation protocol for the half-duplex Gaussian two-way relay channel
, Article Eurasip Journal on Wireless Communications and Networking ; Volume 2015, Issue 1 , 2015 , Pages 1-18 ; 16871472 (ISSN) ; Behroozi, H ; Sharif University of Technology
2015
Abstract
This paper studies the Gaussian two-way relay channel (GTWRC), where two nodes exchange their messages with the help of a half-duplex relay. We investigate a cooperative transmission protocol, consisting of four phases: multiple access (MA) phase, broadcast (BC) phase, and two cooperative phases. For this setup, we propose a new transmission scheme based on superposition coding for nested lattice codes, random coding, and jointly typical decoding. This scheme divides the message of each node into two parts, referred to as satellite codeword and cloud center. Depending on the phase type, the encoder sends a linear combination of satellite codewords or cloud centers. For comparison, a rate...
On reconstructing linear combinations of correlated gaussian sources over a MAC
, Article IEEE Communications Letters ; Volume 20, Issue 12 , 2016 , Pages 2450-2453 ; 10897798 (ISSN) ; Behroozi, H ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2016
Abstract
In this letter, we study the joint source-channel coding problem of communicating the linear functions of correlated Gaussian sources over a Gaussian multiple access channel. In this setup, each transmitter observes one of two correlated sources. The receiver aims to reconstruct a linear combination of both correlated Gaussian sources within an average distortion level. For this setup, we first obtain a new lower bound on the achievable distortion and then, we propose a novel lattice-based hybrid transmission scheme and its achievable distortion is derived. We show that our proposed scheme can achieve the optimal distortion under some conditions
Enhanced mechanical properties of martensitic stainless steels resistance spot welds enabled by in situ rapid tempering
, Article Science and Technology of Welding and Joining ; Volume 25, Issue 2 , 2020 , Pages 119-126 ; Aghajani, H ; Ghasemi, A ; Sharif University of Technology
Taylor and Francis Ltd
2020
Abstract
Resistance spot weldability of martensitic stainless steels is impaired by the formation of brittle martensite in the fusion zone (FZ). In this paper, in situ rapid tempering via applying a second pulse current after a first melting/solidification pulse during resistance spot welding of AISI 420 martensitic stainless steel sheets was used as a pathway to enhance the toughness of the FZ. By using proper second pulse conditions, the FZ with reduced hardness can be generated which is featured by a decomposed martensitic structure with nano-sized carbide precipitations. The improved toughness as a consequence of this modified microstructure resulted in remarkable enhancement of the peak load and...
Effect of electrodeposition time on the super-capacitive performance of electrodeposited MnO2 on g-C3N4 nanosheets
, Article Journal of Alloys and Compounds ; Volume 904 , 2022 ; 09258388 (ISSN) ; Bahiraei, H ; Ghasemi, S ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
Herein, the effect of electrodeposition time on the super-capacitive performance of three-dimensional (3D) MnO2/g-C3N4 heterostructured electrodes was investigated. MnO2 nanoparticles were electrodeposited on the g-C3N4 nanosheets drop-casted on the Ni foam substrate. The microstructural analysis, carried out by FE-SEM and TEM, confirmed the homogeneous distribution of MnO2 nanoparticles on g-C3N4 nano-sheet layers. The electrochemical capacitive performances of the MnO2/g-C3N4 electrodes were evaluated by cyclic voltammetry (CV), galvanostatic charge/discharge tests, and electrochemical impedance spectra (EIS). The obtained results suggested that the supercapacitor (SC) performance of all...
A kinetic study on the electrodeposition of cadmium with the presence of organic agents in sulfate solutions
, Article Materials Chemistry and Physics ; Volume 94, Issue 1 , 2005 , Pages 23-28 ; 02540584 (ISSN) ; Afshar, A ; Ghasemi, H ; Sharif University of Technology
2005
Abstract
The electrodeposition of cadmium is studied by electrochemical techniques with the presence of the organic agents. The cyclic voltammetry results clearly show that the electrodeposition of cadmium is a diffusion-controlled process associated with a typical nucleation process. With addition of the thiourea, 3-Picolin and benzyl alcohol organic agents simultaneously in sulfate solution, the redox potential of cadmium is shifted to more negative potentials. In this case, the current transients reveal an instantaneous nucleation with a typical three-dimensional (3D) growth mechanism, while it shows progressive nucleation mechanism without the ternary-species organic agents. In addition, the...
Experimental measurement and analytical determination of shot peening residual stresses considering friction and real unloading behavior
, Article Materials Science and Engineering A ; Volume 657 , 2016 , Pages 309-321 ; 09215093 (ISSN) ; Farrahi, G. H ; Mahmoudi, A. H ; Ghasemi, A ; Sharif University of Technology
Elsevier Ltd
2016
Abstract
This paper presents an analytical model to predict the residual stress distribution induced by Shot peening. The analytical approach is based on the work of Shen and Atluri (2006) [18] with some modifications. The modifications are related to the elasto-plastic unloading of shot impingements, friction coefficient effect and the fraction of kinetic energy transmitted to the treated material. In order to predict more realistic residual stresses, the elasto-plastic unloading phase of shot impacts is modeled using two nonlinear kinematic hardening models considering the Bauschinger effect. Moreover, the effect of the Coulomb friction between target surface and shots is evaluated. For this...
A lattice-based compress-and-forward strategy for Gaussian two-way relay channel with direct links
, Article IEEE Wireless Communications Letters ; Volume 5, Issue 5 , 2016 , Pages 500-503 ; 21622337 (ISSN) ; Mardani, S ; Behroozi, H ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2016
Abstract
In this letter, the Gaussian two-way relay channel with direct links is investigated in which two users aim at exchanging their messages with the help of a relay node. We propose a new lattice-based compress-and-forward strategy and obtain its achievable rate-region. We show that the proposed scheme is superior to all previously known achievable schemes for channel gains larger than one. In particular, under the symmetric case, the proposed scheme is able to achieve a capacity region within 0.5 bit or (1/2)log 3 ≅ 0.79 bit, depending on the power of the relay