Overview of processes.

Slides:



Advertisements
Similar presentations
Changes in Matter Chapter 3 sections 1 and 3. Solid Definite Shape and Definite Volume.
Advertisements

MECHANICAL PROPERTIES OF MATERIALS
Manufacturing Processes, 1311 Dr Simin Nasseri
Lecture # 9 Polymer structure Characteristic ,Applications and processing of polymers Learning objectives: 1- Describe a typical polymer molecule in terms.
1 Polymers Chapter 8- Part 1 Manufacturing Processes, 1311 Dr Simin Nasseri Southern Polytechnic State University.
Thermoforming Process
MECHANICAL PROPERTIES OF MATERIALS
SHAPING PROCESSES FOR PLASTICS Chapter 13- Part 2 Injection Molding
Manufacturing Processes, MET 1311 Dr Simin Nasseri
EBB 220/3 POLYMER RHEOLOGY.
Introduction. Outline Fluid Mechanics in Chemical and Petroleum Engineering Normal Stresses (Tensile and Compressive) Shear stress General Concepts of.
©2010 John Wiley & Sons, Inc. M P Groover, Fundamentals of Modern Manufacturing 4/e Classification of solidification processes.
Classification of solidification processes
MECHANICAL PROPERTIES OF MATERIALS
PHYSICAL PROPERTIES OF MATERILAS Manufacturing Processes, MET 1311 Dr Simin Nasseri Southern Polytechnic State University (© Fundamentals of Modern Manufacturing;
Materials.
Plastic Processing Material From Dr. Piyawit Khumphong (MTEC) AE447: Short Overview of.
Manufacturing with Plastics
Manufacturing Processes
SHAPING PROCESSES FOR PLASTICS
1. How to process electrically conductive plastics?
IE 337: Materials & Manufacturing Processes
Material Science and Materials Processing (Day 1) Class
Lecture 4 SHAPING PROCESSES FOR PLASTICS
Chapter 14: Fabrication of Plastics, Ceramics, and Composites
Plastics Plastics are a common material used today. Examples of plastic products: a) b)
Chapter 14 Fabrication of Plastics, Ceramics, and Composites (Review) EIN 3390 Manufacturing Processes Spring, 2011.
VISCOSITY The measure of a fluid’s resistance to flow. High Viscosity – thick Low Viscosity - thin.
The Processing of Polymers Spring Module 3 Spring 2001Dr. Ken Lewis ISAT 4302 Introduction Three types of polymers of importance Thermoplastics.
FUNDAMENTALS OF METAL FORMING
PVC PE PS Classification of polymers according to their thermal behaviours: 1) THERMOPLASTICS Thermoplastic polymers can be softened when heated and hardened.
SHAPING PROCESSES FOR PLASTICS
ETPL 1100 Chapter 11 Extrusion and Blow Molding. Introduction a.Extrusion derived from Latin Word “extrudere” i.Ex – out ii.Trudere – to push b.Central.
Introduction to Manufacturing Processes Pt. 2 © 2012 Project Lead The Way, Inc.Principles Of Engineering.
Casting process.
Foundations of Technology Manufacturing
Materials Science Polymers. Polymers and plastics Polymers are materials with large macro- molecules, of which plastics is just one group. Plastics are.
Viscoelasticity.
Extrusion Plastics 001 Profile Extrusion. Extrusion Plastics 001 Introduction – Extrusion is a process that can make long parts with a constant cross-section.
Chapter Polymer Formation There are two types of polymerization –Addition (or chain) polymerization –Condensation (step) polymerization.
Plastics Wan Sharuzi Wan Harun Faculty of Mechanical Engineering Universiti Malaysia Pahang
Introduction to nonferrous metal and alloys
EBP 200/3 POLYMER RHEOLOGY DR AZURA A.RASHID Room 2.19 School of Materials And Mineral Resources Engineering, Universiti Sains Malaysia, Nibong Tebal,
Manufacturing Foundations of Technology Manufacturing © 2013 International Technology and Engineering Educators Association STEM  Center for Teaching.
ViscosityPlastics 001 Viscosity If volcano ‘A’ is erupting high viscosity lava and volcano ‘B’ is erupting low viscosity lava. Which volcano will be taller?
©2007 John Wiley & Sons, Inc. M P Groover, Fundamentals of Modern Manufacturing 3/e MECHANICAL PROPERTIES OF MATERIALS 1.Hardness 2.Effect of Temperature.
La Termoformatura. Thermoforming Process used to shape thermoplastic sheet into discrete parts Basic principles –Heat a thermoplastic sheet until it softens.
Thermoplastics. Important Roles of Polymers Polymers are one of the most widely used materials these days in our daily life. It is playing a more and.
SHAPING PROCESSES FOR PLASTICS
Classification of solidification processes
Kalol Institute Of Technical & Research Center
Injection molding Injection molding is similar to casting in that
I – Basics of Hydraulics
Principle of the process
Classification of solidification processes
Thermoforming Process
Classification of solidification processes
Lecture 4 SHAPING PROCESSES FOR PLASTICS
SHAPING PROCESSES FOR PLASTICS
POLYMERS Polymer Technology Thermoplastic Polymers
Principle of the process
Principle of the process
Casting process.
Overview of processes.
SHAPING PROCESSES FOR PLASTICS
Overview of processes Module 8.
Classification of solidification processes
Foundations of Technology Manufacturing
PDT 151 Introduction to Materials Processing Technology
Engineering Materials
Presentation transcript:

Overview of processes

Classification of solidification processes

Principle of the process Structure/Configuration Process modeling Defects/quality control Design For Manufacturing (DFM) Process variation

Shaping Processes For Plastics 1. Introduction Plastics is one of the Polymers: plastics and rubbers Plastics materials have general two types Thermoplastic polymers, or thermoplastics (TP) thermosetting polymer, or thermosets (TS)

Shaping Processes For Plastics Thermoplastics (TP): repeated heating and cooling is possible Thermosets (TS): no repeated heating and cooling is possible As curing process involved a chemical reaction that changes the molecular structure

Shaping Processes For Plastics 2. Plastics versus Metal On a volumetric basis, usage of plastics exceeds metals Plastics can be easily formed by molding into intricate part geometries No further processing required -> net shape processing Low density relative to metals Good strength-to-weight ratios

Shaping Processes For Plastics 2. Plastics versus Metal (Cont.) High corrosion resistance; Low electrical and thermal conductivity; Melting point of plastics is several hundreds. Thus requires less energy Easy for equipment (handling, etc) implementation

Shaping Processes For Plastics 3. Plastic shaping processes continuous extruded products with a constant cross section other than sheets, films, and filaments continuous sheets and films continuous filaments (fibers) Molded parts Hollow molded parts with thin wall Casting, foamed products

Shaping Processes For Plastics 4. Properties and mechanics Plastics materials heated up to melt -> flow Molten state -> polymer melt High Viscosity Behavior of polymer melt Viscosity Relates SHEAR STRESS experienced during fluid flow to RATE OF SHEAR Most shaping involves fluid flow through small opening High flow rate high rate of shear high shear stress

Shaping Processes For Plastics Viscosity relation at CONSTANT TEMPERATURE Viscosity Pseudoplastic fluid Newtonian fluid Shear rate

Shaping Processes For Plastics The relationship between shear stress and shear rate: Shear stress Viscosity Shear rate Newtonian Fluid K: a constant corresponding to ƞ N: flow behavior index, n=1 for Newtonian fluid, n<1 for polymer melt Pseudoplastic fluid

Shaping Processes For Plastics Viscosity of “polymer melt” is a function of temperature Temperature increases  Viscosity decreases Viscoelasticity Polymer melts: an ability of Non-constant viscosity and viscoelasticity: two factors for the difficulty to control the quality of polymer products

Shaping Processes For Plastics Die swell: due to the viscoelasticity Extruded material “remembers” its former shape and attempts to return to it after leaving die orifice Compressive stresses do not relax immediately when material exits orifice, and the unrelieved stress causes cross-section to expand Increasing time in channel can reduce die swell

Shaping Processes For Plastics Die swell Dx Dd The measure of die swell

Shaping Processes For Plastics Melt Flow Index (MFI): The weight of material flowing through the die orifice within a specified time and temperature MFI is not just related to a type of polymer melt but more related to a specific state of the polymer melt at particular time and temperature. Therefore, MFI should not be used for comparison of different types of polymer. Used for grading of polymer melts for a specific type