Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Sithipong Mahathanabodee"'
Autor:
Peerawat Khongkliang, Maneerat Khemkhao, Sithipong Mahathanabodee, Sompong O-Thong, Abudukeremu Kadier, Chantaraporn Phalakornkule
Publikováno v:
Chemosphere. 321:138086
Autor:
Donruedee, Toyen, Yupadee, Paopun, Dararat, Changjan, Ekachai, Wimolmala, Sithipong, Mahathanabodee, Theerasarn, Pianpanit, Thitisorn, Anekratmontree, Kiadtisak, Saenboonruang
Publikováno v:
Polymers
This work reports on the simulated neutron and self-emitted gamma attenuation of ultra-high-molecular-weight polyethylene (UHMWPE) composites containing varying Sm2O3 contents in the range 0–50 wt.%, using a simulation code, namely MCNP-PHITS. The
Autor:
Patiparn Ninpetch, P. Ratanadecho, Pruet Kowitwarangkul, Prasert Chalermkarnnon, Sithipong Mahathanabodee
Publikováno v:
THE SECOND MATERIALS RESEARCH SOCIETY OF THAILAND INTERNATIONAL CONFERENCE.
The metal 3D printing technologies are a joining materials process to create the metal 3D parts through CAD model, usually layer by layer, as opposed to subtractive manufacturing. This technology can be classified into four methods: selective laser m
Autor:
Ekachai Wimolmala, Teerasak Markpin, Siriwan Jansinak, Narongrit Sombatsompop, Sithipong Mahathanabodee
Publikováno v:
Journal of Reinforced Plastics and Composites. 37:1255-1266
This work investigated the cure characteristic, physical mechanical properties, and tribology behavior of carbon black filled acrylonitrile butadiene rubber composites using multi-walled carbon nanotubes as co-reinforcing additive in various contents
Autor:
Ruangdaj Tongsri, Monnapas Morakotjinda, Sithipong Mahathanabodee, Apichit Luechaisirikul, Thanyaporn Yotkaew, Patiparn Ninpetch, Nattaya Tosangthum, Roongthip Krataitong
Publikováno v:
Materials Today: Proceedings. 5:9409-9416
In this work, a pre-alloyed powder of Fe-3% Cr-0.5% Mo was admixed with boron nitride (BN) and graphite powder (0 to 0.4%). The tensile test specimens with the green density about 6.5 g/cm 3 were compacted. The specimens were sintered in vacuum furna
Publikováno v:
Materials Today: Proceedings. 5:9461-9466
Austenitic stainless steels AISI 316L is widely used in chemical and food manufacturing because they possess a unique combination of mechanical and corrosion resistance properties. However, applications of 316L stainless steels are limited due to the
Publikováno v:
Materials Today: Proceedings. 5:9384-9392
This research was to study the corrosion behavior of 316L stainless steel sheet, the sintered of 316L stainless steel mixed with 0, 5, 10 and 15 wt% of MoS 2 using the electrochemical techniques and the acoustic emission spectroscopy (AE). The specim
Autor:
Theerasarn Pianpanit, Yupadee Paopun, Ekachai Wimolmala, Donruedee Toyen, Kiadtisak Saenboonruang, Thitisorn Anekratmontree, Dararat Changjan, Sithipong Mahathanabodee
Publikováno v:
Polymers
Volume 13
Issue 19
Polymers, Vol 13, Iss 3390, p 3390 (2021)
Volume 13
Issue 19
Polymers, Vol 13, Iss 3390, p 3390 (2021)
This work reports on the simulated neutron and self-emitted gamma attenuation of ultra-high-molecular-weight polyethylene (UHMWPE) composites containing varying Sm2O3 contents in the range 0–50 wt.%, using a simulation code, namely MCNP-PHITS. The
Autor:
Surapol Raadnui, Pongsak Wila, Sithipong Mahathanabodee, Ruangdaj Tongsri, Monnapas Morakotjinda
Publikováno v:
Wear. 476:203676
The main aim of this paper is to statistically discuss the friction and wear behavior of 316L stainless steel (SS316L) composites added with h-BN and MoS2 solid lubricant under different running conditions at room temperature. The SS316L composites a
Autor:
Sittipong Eiumtadanai, Sumate, Poomiapiradee, Ruangdaj Tongsri, Sithipong Mahathanabodee, Bhanu Vetayanugul
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 1137:012031
The powder metallurgical (PM) process, consisting of compaction and sintering, is commonly used to produce sintered structural parts applied in various industrial fields. Sintered parts always have porosity due to limited materials transport by solid