Hugendubel.info - Die B2B Online-Buchhandlung 

Merkliste
Die Merkliste ist leer.
Bitte warten - die Druckansicht der Seite wird vorbereitet.
Der Druckdialog öffnet sich, sobald die Seite vollständig geladen wurde.
Sollte die Druckvorschau unvollständig sein, bitte schliessen und "Erneut drucken" wählen.

Simulation in Injection Molding

E-BookPDF1 - PDF WatermarkE-Book
691 Seiten
Englisch
Hanser Fachbuchverlagerschienen am08.04.20241. Auflage
In plastics technology, a wide variety of computer programs are used for the design and optimization of molded plastic parts and for mold design. These programs calculate the filling process, the holding pressure phase, and the cooling phase of the molded part in the mold. The results include, for example, pressures, temperatures, weld/knit lines, and voids. The shrinkage and warpage behavior of the molded part can also be predicted. Understanding and interpreting these simulation results is not trivial, although they are colorful representations with numerical values. Regardless of whether one has many years of experience as a designer, a mold maker, or an injection molder, or whether one is in training or studying, simulation is becoming increasingly important. For this reason, experts who know how to use these programs correctly are increasingly sought after in the market.
This book is intended to expand readers' specialist knowledge in the field of simulation, thereby increasing their ability to recognize and avoid molding errors at an early stage. Readers will also learn to draw the right conclusions from the simulation results and develop their own solutions.

Prof. Dr.-Ing. Thomas Schröder is professor at the Department of Mechanical and Plastics Engineering at the Darmstadt University of Applied Sciences (h_da), specializing in the subjects of injection molding, mold making, rheology, and simulation technology.
mehr
Verfügbare Formate
BuchGebunden
EUR199,99
E-BookPDF1 - PDF WatermarkE-Book
EUR199,99

Produkt

KlappentextIn plastics technology, a wide variety of computer programs are used for the design and optimization of molded plastic parts and for mold design. These programs calculate the filling process, the holding pressure phase, and the cooling phase of the molded part in the mold. The results include, for example, pressures, temperatures, weld/knit lines, and voids. The shrinkage and warpage behavior of the molded part can also be predicted. Understanding and interpreting these simulation results is not trivial, although they are colorful representations with numerical values. Regardless of whether one has many years of experience as a designer, a mold maker, or an injection molder, or whether one is in training or studying, simulation is becoming increasingly important. For this reason, experts who know how to use these programs correctly are increasingly sought after in the market.
This book is intended to expand readers' specialist knowledge in the field of simulation, thereby increasing their ability to recognize and avoid molding errors at an early stage. Readers will also learn to draw the right conclusions from the simulation results and develop their own solutions.

Prof. Dr.-Ing. Thomas Schröder is professor at the Department of Mechanical and Plastics Engineering at the Darmstadt University of Applied Sciences (h_da), specializing in the subjects of injection molding, mold making, rheology, and simulation technology.
Details
Weitere ISBN/GTIN9781569909324
ProduktartE-Book
EinbandartE-Book
FormatPDF
Format Hinweis1 - PDF Watermark
Erscheinungsjahr2024
Erscheinungsdatum08.04.2024
Auflage1. Auflage
Seiten691 Seiten
SpracheEnglisch
Artikel-Nr.14290803
Rubriken
Genre9200

Inhalt/Kritik

Leseprobe
1 Basics of Injection Molding
2 Rheological Basics
3 Introduction to Simulation Technology
4 Mathematical Basics
5 Types of Meshing, Errors in Meshing and Meshing Quality
6 Material Cards in Simulation Programs
7 Easy Basic Exercises for Simulating Injection Processes
8 Simulating the Molded-Part Formation Process in the Injection Mold
9 Gating Systems in Injection Molding
10 Temperature Control Systems for Injection Molds
11 Knit Lines and Meld Lines
12 Mechanical Design of Injection Molds
13 Simulation of Inserts
14 Core Offset Simulation
15 Integrative Simulation - Structural Analysis
16 Sensor Technology for Injection Molding
17 Process Optimization by Means of Statistical Design of Experiments (DoE)
18 Special Injection Molding Processes
19 Crosslinking Molding Compounds
20 Mesh-Friendly Optimization of CAD Models with CATIA V5
mehr