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Moldflow Design Analysis Solutions
Imtech Design Moldflow Analysis & Polymer Engineering solutions, operate the full
suite of Moldflow flow simulation programs and software for injection molding product
design advice and are able to analyses the smallest medical device to the largest car
instrument panel quickly and efficiently to give you practical solutions to complex
injection moulding problems for almost any type of plastic material on the database.
Imtech Design have offices in UK, USA and Australia. For more information Click Here
Imtech Design Ltd was founded to provide our consultancy clients with the most practical
polymer solutions and service. Imtech is committed to the client and understanding markets
they serve and the injection moulding technology required to help design for success and
bring new products to market quickly and efficiently.
Imtech Design are Moldflow Silver Certified Plastic Flow Simulation Consultants
and Engineers and are experts in Mpi filling, cooling and warpage analysis. Imtech Design
web site provides usefull information on trouble shooting plastics moulds including
free mould flow design advice for plastics professionals.
Contact us for a budgetary quote.
Moldflow Plastic Adviser, Plastics Insight, Moldflow Mpi, Mold flow communicator
and Mold Adviser are Mould flow software products for simulating the injection
molding of plastic materials. Imtech use CAD Connectivity Tools to link structural
CAD - CAE to MPI, MPA and MPX Community projects in the plastics and tool making industry.
Moldflow is the registered trademark Moldflow Corporation & Moldflow
Europe ltd and Mold flow Plastics Labs as advised in the flow front magazine and trade publications.
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A plastic is made up principally of a binder together with plasticizers, fillers, pigments, and other additives. The binder gives a plastic its main characteristics and usually its name. Thus, polyvinyl chloride is both the name of a binder and the name of a plastic into which it is made. Binders may be natural materials, e.g., cellulose derivatives, casein, or milk protein, but are more commonly synthetic resins. In either case, the binder materials consist of very long chainlike molecules called polymers. Cellulose derivatives are made from cellulose, a naturally occurring polymer; casein is also a naturally occurring polymer. Synthetic resins are polymerized, or built up, from small simple molecules called monomers. Plasticizers are added to a binder to increase flexibility and toughness. Fillers are added to improve particular properties, e.g., hardness or resistance to shock. Pigments are used to impart various colors. Virtually any desired color or shape and many combinations of the properties of hardness, durability, elasticity, and resistance to heat, cold, and acid can be obtained in a plastic.
For more plastic injection molding information from Imtech Design Click Here
Common generic polymer names include: ABS, ABS GPS HIPS SAN ASA SBS PC PMMA PES PSU PUR FPVC RPVC PP PPO HDPE LDPE PA6 PA66 PA11 PA12 PBT PET POM POM PPS Acrylonitrile Butadiene Styrene Plating High Heat Polystyrene High Impact Polystyrene Styrene Acrylonitrile Acrylate Styrene Acrylonitrile Styrene Butadiene Polycarbonate Polymethyl Methacrylate Acrylic Polyethersulfone Polysulfone Polyurethane Flexible Polyvinyl Chloride Rigid polyvinyl Chloride Polypropylene Polyphenylene Oxide High Density Polyethlene Low Density Polyethlene Nylon 6 Nylon 66 Nylon 11 Nylon 12 Polybutylene Terephthalate Polyethylene Terephthalate Polyoxymethylene Homo Polyoxymethylene Copolymer Polyphenylene Sulphide
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Plastic Fact Sheet One
Polyesters (Thermoplastic - PETP, PBT, PET)
Properties: PBT, PET and PBT Blends are engineering plastics with excellent processing characteristics and high strength and rigidity for a broad range of applications.
Applications: Engineering polymers are used in the manufacture of a wide range of components, including under bonnet parts, exterior parts (window wiper holders and exterior mirror housing).
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Plastic Fact Sheet Two
Thermoplastic Elastomers (TPE, TPR)
Properties: Flexible, clear, elastic, wear resistant and impermeable.
Applications: Soles and heels for sports shoes, hammerheads, seals, gaskets, skate board wheels, synthetic leather fabrics, and silent running gears.
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Plastic Fact Sheet Three
Poly-phenylene Oxide (PPO)
Properties: Rigid, opaque, good dimensional stability at high temperature and humidity conditions, difficult to process (blended to ease injection moulding), tough.
Applications: Coffee pot and washing m/c parts (where high temperature and moisture are critical), replacement for die castings, drink vending machines, microwave components.
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Imtech's Injection Moulding Problem Solving guide indicates typical methods for fine tuning the plastic injection moulding machine to reduce the occurrence of common molding problems including:-
Parts stick in the mould, Flash, Poor Weld Lines, Burn marks, Short Shots, Pit Marks, Surface Ripples, Sink Marks, Voids, Splay Marks / De-lamination, Discoloration, Warpage / Distortion, Brittleness, Nozzle drool, Incomplete melting of pellets.
For more plastic injection molding information from Imtech Design Click Here
Common moulding simulation and calculation problems include: sink marks, air traps, air trap, weldline, moldflow examples, moldflow, weld as a line, weld line, weld lines
Plastic injection molding information in Chinese language from Imtech Design Click Here
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