Injection Mold Coating Technology.

Bibliographic Details
Main Author: Schlutter, Ruben
Corporate Author: ScienceDirect (Online service)
Format: eBook
Language:English
Published: München : Carl Hanser Verlag, 2024.
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • Intro
  • Contents
  • Preface
  • The Authors
  • The Editor
  • The Co-Authors
  • 1 Introduction
  • Dr. Ruben Schlutter
  • 1.1 Defect Patterns in Injection Molding
  • 1.2 Preparation of a Specification Sheet and Functional Specification Sheets
  • 2 Tool Steels and Their Coatability
  • Markus Pothmann
  • 2.1 Introduction
  • 2.1.1 Definition of Tool Steels
  • 2.1.2 Development of Tool Steels
  • 2.1.3 Types of Tool Steels
  • 2.2 Injection Molding Tool Steels
  • 2.2.1 Introduction
  • 2.2.2 Properties of Injection Molding Tool Steels
  • 2.2.3 Composition of Injection Molding Tool Steels
  • 2.2.4 Heat Treatment of Injection Molding Tool Steels
  • 2.2.5 Surface Treatment of Injection Molding Tool Steels
  • 2.2.6 Maintenance and Care of Injection Molding Tool Steels
  • 2.3 Selection of Injection Molding Tool Steels
  • 2.3.1 Factors that Influence the Choice of Material for Injection Molding Tool Steels
  • 2.3.2 Challenges in the Selection of Injection Molding Tool Steels
  • 2.3.3 Selecting Materials for Injection Molding Tool Steels
  • 2.3.4 Future Development of Injection Molding Tool Steels
  • 3 Fundamentals of Coating Technologies
  • 3.1 Electrolytically Deposited Metallic Layers and Hybrid Systems
  • Dr. Orlaw Massler
  • 3.1.1 Background and Challenges
  • 3.1.2 Galvanic Layers
  • 3.1.2.1 Challenges and Actions
  • 3.1.3 Electroless Separation
  • 3.1.3.1 Electroless Nickel Plating
  • 3.1.3.2 Principle of Electroless Nickel Plating
  • 3.1.3.3 Electroless Nickel Coatings with Solid Additives (Dispersion)
  • 3.1.3.4 Dispersion Layers as a Special Case
  • 3.1.3.5 Friction-Increasing Layers
  • 3.1.3.6 Sensor- and Indicator Layers
  • 3.1.4 Loading Types
  • 3.1.5 Coating-Compatible Design
  • 3.2 Physical Vapor Deposition
  • Dr. Ruben Schlutter
  • 3.2.1 Introduction
  • 3.2.2 Process Variants
  • 3.2.2.1 Evaporation
  • 3.2.2.2 Sputtering
  • 3.2.2.3 Ion Plating
  • 3.2.3 Layer Growth and Adhesion Mechanisms for PVD Coatings
  • 3.2.4 Multilayer Coating Systems
  • 3.3 Chemical Vapor Deposition
  • 3.3.1 Metalorganic Chemical Vapor Deposition
  • Vanessa Frettlöh
  • 3.3.1.1 Classification of the Technology
  • 3.3.1.2 Processes during MOCVD-coating
  • 3.3.1.3 Requirements for Organometallic Precursors
  • 3.3.1.4 Structure of an MOCVD System
  • 3.3.1.5 Gap mobility and 3D capability of the coatings
  • 3.3.2 Solid-Based Chemical Vapor Deposition
  • Dr. Ruben Schlutter
  • 3.3.2.1 Basics of CVD with Solid Precursors
  • 3.3.2.2 Transport of the Solid Precursor
  • 3.3.3 Plasma-Based Chemical Vapor Deposition
  • Patrick Engemann
  • 3.3.3.1 Plasmas
  • 3.3.3.2 Plasma-Activated Chemical Vapor Deposition
  • 3.3.4 Precursors
  • Molecular Sources for Functional Materials
  • Prof. Dr. Sanjay Mathur, Dr. Veronika Brune, and Dr. Thomas Fischer
  • 3.3.4.1 Chemical Strategies in Material Synthesis
  • 3.3.4.2 Outlook
  • 3.4 Simulation of Layer Deposition
  • Ameya Kulkarni
  • 3.4.1 Introduction