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Dive into the research topics where Muhammad Zubair Khan is active.

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Featured researches published by Muhammad Zubair Khan.


Polymers | 2016

Effect of Argon Plasma Treatment on Tribological Properties of UHMWPE/MWCNT Nanocomposites

Nitturi Naresh Kumar; Farah bt Samsudin; Muhammad Zubair Khan; Rama Pattela Srinivasa

Ultra-high molecular weight polyethylene (UHMWPE) is widely used in artificial joints in the replacement of knee, hip and shoulder that has been impaired as a result of arthritis or other degenerative joint diseases. The UHMWPE made plastic cup is placed in the joint socket in contact with a metal or ceramic ball affixed to a metal stem. Effective reinforcement of multi-walled carbon nanotubes (MWCNTs) in UHMWPE results in improved mechanical and tribological properties. The hydrophobic nature of the nanocomposites surface results in lesser contact with biological fluids during the physiological interaction. In this project, we investigate the UHMWPE/MWCNTs nanocomposites reinforced with MWCNTs at different concentrations. The samples were treated with cold argon plasma at different exposure times. The water contact angles for 60 min plasma-treated nanocomposites with 0.0, 0.5, 1.0, 1.5, and 2.0 wt % MWCNTs were found to be 55.65°, 52.51°, 48.01°, 43.72°, and 37.18° respectively. Increasing the treatment time of nanocomposites has shown transformation from a hydrophobic to a hydrophilic nature due to carboxyl groups being bonded on the surface for treated nanocomposites. Wear analysis was performed under dry, and also under biological lubrication, conditions of all treated samples. The wear factor of untreated pure UHMWPE sample was reduced by 68% and 80%, under dry and lubricated conditions, respectively, as compared to 2 wt % 60 min-treated sample. The kinetic friction co-efficient was also noted under both conditions. The hardness of nanocomposites increased with both MWCNTs loading and plasma treatment time. Similarly, the surface roughness of the nanocomposites was reduced.


Physics of Plasmas | 2016

Dust charging processes with a Cairns-Tsallis distribution function with negative ions

A. A. Abid; Muhammad Zubair Khan; H. Terças; S. Mahmood

Dust grain charging processes are presented in a non-Maxwellian dusty plasma following the Cairns-Tsallis (q, α)–distribution, whose constituents are the electrons, as well as the positive/negative ions and negatively charged dust grains. For this purpose, we have solved the current balance equation for a negatively charged dust grain to achieve an equilibrium state value (viz., qd = constant) in the presence of Cairns-Tsallis (q, α)–distribution. In fact, the current balance equation becomes modified due to the Boltzmannian/streaming distributed negative ions. It is numerically found that the relevant plasma parameters, such as the spectral indexes q and α, the positive ion-to-electron temperature ratio, and the negative ion streaming speed (U0) significantly affect the dust grain surface potential. It is also shown that in the limit q → 1 the Cairns-Tsallis reduces to the Cairns distribution; for α = 0 the Cairns-Tsallis distribution reduces to pure Tsallis distribution and the latter reduces to Maxwell...


The Scientific World Journal | 2014

Low-Energy Plasma Focus Device as an Electron Beam Source

Muhammad Zubair Khan; Yap Seong Ling; Ibrar Yaqoob; Nitturi Naresh Kumar; Lim Lian Kuang; Wong Chiow San

A low-energy plasma focus device was used as an electron beam source. A technique was developed to simultaneously measure the electron beam intensity and energy. The system was operated in Argon filling at an optimum pressure of 1.7 mbar. A Faraday cup was used together with an array of filtered PIN diodes. The beam-target X-rays were registered through X-ray spectrometry. Copper and lead line radiations were registered upon usage as targets. The maximum electron beam charge and density were estimated to be 0.31 μC and 13.5 × 1016/m3, respectively. The average energy of the electron beam was 500 keV. The high flux of the electron beam can be potentially applicable in material sciences.


FRONTIERS IN PHYSICS: 4th International Meeting | 2014

Study on electron beam in a low energy plasma focus

Muhammad Zubair Khan; Yap Seong Ling; Wong Chiow San

Electron beam emission was investigated in a low energy plasma focus device (2.2 kJ) using copper hollow anode. Faraday cup was used to estimate the energy of the electron beam. XR100CR X-ray spectrometer was used to explore the impact of the electron beam on the target observed from top-on and side-on position. Experiments were carried out at optimized pressure of argon gas. The impact of electron beam is exceptionally notable with two different approaches using lead target inside hollow anode in our plasma focus device.


Journal of Fusion Energy | 2013

Effect of Cathode Designs on Radiation Emission of Compact Diode (CD) Device

Muhammad Zubair Khan; Muhammad Afzal Khan; Attiq-ur-Rehman; M. Zakaullah


Journal of Fusion Energy | 2016

Parametric Optimisation of Plasma Focus Devices for Neutron Production

L. K. Lim; L. H. Lim; Y. S. Neoh; Muhammad Zubair Khan; S. K. Ngoi; Seong Shan Yap; S. Lee


Pramana | 2015

Imperative function of electron beams in low-energy plasma focus device

Muhammad Zubair Khan; L. K. Lim; C. S. Wong


Indian Journal of Physics | 2014

Estimation of electron temperature and radiation emission of a low energy (2.2 kJ) plasma focus device

Muhammad Zubair Khan; C. S. Wong


Archive | 2013

The impact of plasma interference profile (PIP) on argon discharge in plasma focus device

Muhammad Zubair Khan; Yap Seong Ling; Wong Chiow San


Physics of Plasmas | 2015

Dust grains potential variation in a Vasyliunas Cairns-distributed plasmas with negative ions

A. A. Abid; Muhammad Zubair Khan; C. S. Wong

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A. A. Abid

Federal Urdu University

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Attiq-ur-Rehman

Government College University

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Ibrar Yaqoob

Information Technology University

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M. Zakaullah

Quaid-i-Azam University

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S. Lee

INTI International University

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