Kumar / Senthil kumar | Automation in Textile Machinery | E-Book | sack.de
E-Book

E-Book, Englisch, 456 Seiten

Kumar / Senthil kumar Automation in Textile Machinery

Instrumentation and Control System Design Principles
1. Auflage 2018
ISBN: 978-1-351-65137-0
Verlag: Taylor & Francis
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

Instrumentation and Control System Design Principles

E-Book, Englisch, 456 Seiten

ISBN: 978-1-351-65137-0
Verlag: Taylor & Francis
Format: EPUB
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



Automation is the use of various control systems for operating equipment such as machinery and processes. In line, this book deals with comprehensive analysis of the trends and technologies in automation and control systems used in textile engineering. The control systems descript in all chapters is to dissect the important components of an integrated control system in spinning, weaving, knitting, chemical processing and garment industries, and then to determine if and how the components are converging to provide manageable and reliable systems throughout the chain from fiber to the ultimate customer.
Key Features:

• Describes the design features of machinery for operating various textile machineries in product manufacturing
• Covers the fundamentals of the instrumentation and control engineering used in textile machineries
• Illustrates sensors and basic elements for textile automation
• Highlights the need of robotics in textile engineering
• Reviews the overall idea and scope of research in designing textile machineries

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Weitere Infos & Material


CONTROL SYSTEMS ENGINEERING

Introduction

Electrical Terminology

Principles of Control Systems

INSTRUMENTATION

Introduction

Order of Control and Measurements Systems

Temperature Measurement Systems

Instrumentation and Control - Pressure Detectors

Angular Displacement

Encoders

Linear Position

2.8 Level Detectors
2.9 Instrumentation and Control Module on Flow Detectors
2.10 Instrumentation and Control Module on Position Indicators
2.11 Switches

Variable Output Devices

3. PROGRAMMABLE LOGIC CONTROL SYSTEMS
3.1 Introduction
3.2 PLC Hardware
3.3 Logical Sensors
3.4 Logical Actuators
3.5 Boolean Logic Design
3.6 PLC OPERATION
3.7. Latches, Timers, Counters and more
3.8. Structured Logic Design
3.9. Flowchart Based Design
3.10 PLC Memory
3.11 Analog Inputs And Outputs
3.12 Continuous Actuators
3.13 Continuous Control

4. INSTRUMENTATION AND CONTROL SYSTEMS ON BLOWROOM SEQUENCE
4.1 Introduction
4.2 Bale Management
4.3 Mixing Bale Opener
4.4 Bale Pluckers
4.5 Compact Blowroom
4.6 Detection and Removal of Contamination
4.7 Dust & Metal Extraction Machine (DMEM)
4.8 Automatic Waste Evacuation System (Intermittent)
4.9
Chute Feeding Systems
5. INSTRUMENTATION AND CONTROL SYSTEM IN CARDING
5.1 Introduction
5.2 Measuring devices
5.3 Sensofeed
5.4 Flat Control (FCT)
5.5 Precision Flat Setting (PFS)
5.6 IGS top automatic grinding system
5.7 Carding Drives
5.8 Coiler Sliver Stop Motion
5.9 Thermistor Protection Unit
5.10 Safety Switches
5.11 On Card Filter
5.12 Continuous Quality and Production Monitoring
5.13 Card Manager
6. INSTRUMENTATION AND CONTROL SYSTEMS IN DRAWFRAME AND SPEED FRAME
6.1 Control Systems in Draw Frame
6.2 Control Systems in Comber
6.3 Speed Frame Controls
6.4 Automatic Doffing
7. INSTRUMENTATION AND CONTROL SYSTEMS IN RING AND ROTOR SPINNING
7.1 Control Systems in Ring Spinning
7.2 Controls in Rotor Spinning

8. CONTROL SYSTEMS IN CONE WINDING MACHINE
8.1 Introduction
8.2 Electronic yarn clearer (EYC)
8.3 Electronic Anti-Patterning device
8.4 Length and diameter measuring device
8.5 Sensor-monitored winding process
8.6 The Informator – central operating and control unit
8.7 Automatic Tension Controlling Device
8.8 Yarn Clearer
8.9 Variable material flow systems
8.10 Winding head control
8.11 Full Cone Monitors
8.12 The automatic package doffer
8.13 Cleaning and dust removal systems
8.14 Automation Variants
8.15 Caddy identification systems
8.16 Spindle identification
8.17 Package Quality Control
8.18 Variopack System
9. INSTRUMENTATION AND CONTROL SYSTEMS IN WARPING AND SIZING MACHINE
9.1 Control Systems in Warping
9.2 Measurement And Control Systems Used In Sizing
10. CONTROL SYSTEMS IN WEAVING
10.1 Introduction
10.2 Electronic Shedding
10.3 Electronic Jacquard
10.4 Automatic Pick Controller (APC)
10.5 Controls in weft Insertion System
10.6 Let-off Electronic Control Warp Beam
10.7 Electronic Take – up Motion
10.8 Warp stop motion
10.9 Electronic controls and monitoring devices on shuttle weaving machines
10.10 Electronic yarn tension control
10.11 Sumo Drive System
10.12 Electronic Selvedge Motions
10.13 Weave Master Reporting Report and Formula Generator
10.14 Weave Master Production Scheduling
11. CONTROLS IN KNITTING
11.1 Designing and Patterning
11.2 Electronic Jacquard
11.3 Control systems
11.4 Individual Needle Selection
11.5 Knitting machine- needle detector
11.6 Knit Master System
11.7 Simodrive sensor measuring systems
11.8 Monitoring Yarn Input Tension for Quality Control in Circular Knitting
11.9 Warp knitting machine control
12. CONTROLS IN TESTING INSTRUMENTS
12.1 Introduction
12.2 Fibre Properties
12.3 Fibre Diameter Analyzer (FDA)
12.4 Fibre Fineness
12.5 Fineness and Maturity Testing
12.6 High Volume Instrument (HVI)
12.7 Advanced Fibre Information System (AFIS)

Auto Sorter

12.9 Electronic Twist Tester
12.10 Yarn Evenness measuring instruments
12.11 Electronic inspection board (EIB)
12.12. Hairiness Measurement – photo electric method
12.13 Tensile Strength Testing Of Textiles
12.14 Optical Trash Analysis Device (OPTRA)
13. AUTOMATION AND CONTROL IN CHEMICAL PROCESSING
13.1 Control systems in dyeing process
13.2 Control Systems in Textile Finishing Machinery
13.3 Special Purpose Drying Machine and Felt Finishing Range
13.4 Digital Textile Printing Ink Technologies

14. AUTOMATION IN GARMENTS
14.1 Introduction
14.2 Automated Fabric Inspection
14.3 Automatic pattern making system
14.4 Body Measurement System
14.5 Automatic fabric spreading machine
14.6 Automatic fabric cutting process
14.7 Sewing
14.8 Finishing process
14.9 Automatic material transport
15. CAD/CAM SOLUTIONS FOR TEXTILES
15.1 Textile Design Systems
15.2 CAD/CAM’s Effect on the Jacquard Weaving Industry
15.3 Computer Aided Manufacturing
15.4 CIM - Data Communications Standards for Monitoring of Textile Spinning Processes


Dr L Ashok Kumar is a Postdoctoral Research Fellow from San Diego State University, California.

M. Senthilkumar joined as Lecturer in Department of Textile Technology, PSG Polytechnic College, Coimbatore, India from September 2006 to June 2017 and promoted as Head of the Department and working till date. So far he has published nearly 50 research papers in various international and national journals. He has contributed one chapter as a co-author for the book entitled on Military Textiles, Wood head publication, Cambridge, England.



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