Dissertation > Excellent graduate degree dissertation topics show
Preparation of nHA Bone Tissue Engineering Scaffold Based on MAM Freeform Fabrication
Author: LiMengJun
Tutor: ZhangXiangLin
School: Huazhong University of Science and Technology
Course: Materials Processing Engineering
Keywords: bone tissue engineering scaffold nHA slurry freeform fabrication microwave sintering
CLC: R318.08
Type: Master's thesis
Year: 2011
Downloads: 30
Quote: 0
Read: Download Dissertation
Abstract
|
MAM (motor assisted microsyringe) freeform fabrication is a new technology to process bone tissue engineering scaffolds, which has unique advantages in the fabracation of three-dimensional porous scaffolds with precise structure and complex micropores. Nano-hydroxyapatite (nHA) possesses satisfying chemical stability, biocompatibility and mechanical properties. And it is widely used in the regeneration and renovation of bone tissues. The preparation of nHA ceramic slurry, technology of MAM freeform fabrication and the sintering process of nHA bone tissue engineering scaffolds were investigated in the paper.The performance of the scaffold is determined by the properties of slurry. The influence of dispersant and PH on the HA slurry was firstly researched in this paper. Combined with MAM free forming tests of scaffold fabrication, it was analysed that solid fraction had effects on the scaffold processing. The 35vol% nHA ceramic slurry was prapared with 1.5% NH4PAA and PH 9~10. The moisturizer and the thickener were added to improve the jetting and forming properties of nHA slurry.The parameters of processing have direct effects on the performance of scaffolds. The optimized processing parameters were found out through lots of experiments, aiming to obtain scaffolds with perfect appearance and porous structure. The diameter of nozzle was 0.34mm, the scan speed was 5mm/s, the jetting speed was 0.004mm/s, the layer height was 0.3mm, and the center-to-center rod spacing was set to be 0.6mm or 0.8mm. Draw-back and expiation were set during the processing, to stop the leakage from the nozzle to improve scaffold quality.Sintering conditions influenced the phase composition, pore structure, microstructure and mechanical strength of scaffolds. Two different sintering methods were used in the paper, conventional sintering and microwave sintering. The influence of sintering temperature and sintering method on the phase, microstructure and the compressive strength of scaffolds was analyzed in this paper. The better sintering process was obtained. The scaffolds with linear shrinkage of 31.2% showed good pore structure with 56.2% porosity (interconnected macro pore size was 175~440μm, micro pore size was 1~10μm within the rods), and improved mechanical properties (the compressive strength was 45.2Mpa) when sintered to 1200℃for 30min by microwave sintering.
|
Related Dissertations
- LSGM electrolyte thin films and electrochemical properties of,TM911.4
- Preparation and Characterization of Polymer Micro/Nano Fibers by Laser Melt Electrospinning,TQ340.64
- Oil sludge production and use of coal- water slurry experimental study,TQ536
- Study of Intelligent Soft Sensor Modeling for Furnace Temperature of Coal-Water Slurry Gasifier and It’s Application,TQ546
- Study on Pilot Test of Removal of Solid Catalyst Particles in FCC Slurry Oil by Ultrasonic Treatment,TE624.91
- Microwave drive power and microwave sintering furnace study,TN015
- Research and Application on Thixotropic Cement Slurry,TE256
- Microwave sintered W-Ni-Fe high density alloy,TF124.5
- Microwave sintering properties of Fe-4Ni-2Cu-0.6Mo-0.6C alloy steel,TF124.5
- Municipal Wastewater Microalgae Species Indentifying and Cultivating Chlorella by Wastewater,X703
- Research on Microstructure and Properties of Ti(C, N) Based Cermets Reinforced by Nano Particles,TG148
- Research on the System of Temperature Tolerable High-intensity Lightweight Cement Slurry,TE256
- Development of the Industrial Technology for Synthetic Gas Production by Coal-Based Multi-Component Slurry to Replace Heavy Oil,TE665.3
- Research on Microwave Sintering Ceramics of Nano ZnO,TQ174.1
- Microwave Sinter High-purity Alumina Ceramic and Toughening Improvement Research,TQ174.1
- Microwave sintered ZnO varistor research,TM54
- Design and Research of the High Pressure Particle Mud Valve and the Particle Process System Used in the Particle Impact Drilling Technology,TE242.6
- Phosphorus fine pulp DRA performance evaluation of the experimental device research and application,TE869
- Research on Viscosity Reduction of Mixed Heavy Fuel Oil,TE624.5
- Effect of Different Catalytic Slurry on Mesophase Formation and Quality of Needle Coke,TE626.87
- ZrO_2-Al_2O_3-SiO_2 ceramic microwave sintering and connecting,TQ174.1
CLC: > Medicine, health > Basic Medical > Medical science in general > Biomedical Engineering > General issues > Biomaterial
© 2012 www.DissertationTopic.Net Mobile
|