Projekthandbuch. Project Manual Industriehydraulik. Industrial Hydraulics RE 00846/ Trainee's manual. Schülerhandbuch

Similar documents
Project Manual Industrial Hydraulics

Projekthandbuch. Project Manual Industriehydraulik. Industrial Hydraulics RE 00846/ Trainee's manual. Schülerhandbuch

Project 05: Simulating loads at the hydraulic cylinder using a throttle check valve

What does pressure refer to in relation to hydrostatics and what is it dependent on?

Test Which component has the highest Energy Density? A. Accumulator. B. Battery. C. Capacitor. D. Spring.

Basic Hydraulics and Pneumatics

Basic Hydraulics. Module 2: Actuators and directional control valves. Curriculum Development Unit PREPARED BY. August 2013

PNEUMATIC & HYDRAULIC SYSTEMS

Module 6 Assignment Part A

University of Jordan School of Engineering Mechatronics Engineering Department. Fluid Power Engineering Lab

Mounting and Operating Instructions EB 5894 EN. Electric control valves with jet pump. Flanged version of valve with jet pump

LECTURE-23: Basic concept of Hydro-Static Transmission (HST) Systems

Design and Modeling of Fluid Power Systems ME 597/ABE 591

Training systems for hydraulics. Edition:

Module 5: Valves. CDX Diesel Hydraulics. Terms and Definitions. Categories of Valves. Types of Pressure Control Valves

DEPARTMENT OF MECHANICAL ENGINEERING QUESTION BANK. Sub. Code/Name: ME1305 Applied Hydraulics and Pneumatics Year/Sem: III/V

Table of Contents. Table of Contents Pneumatik / Hydraulik

Introduction. Pre-Lab

Test. What type of cylinder would you use? A. Single-acting cylinder B. Double-acting cylinder Answer:

Hours / 100 Marks Seat No.

Lecture 25 HYDRAULIC CIRCUIT DESIGN AND ANALYSIS [CONTINUED]

Engineering Diploma Resource Guide ST280 ETP Hydraulics (Engineering)

Electropneumatics Basic Level Set of Overhead Transparencies TP 201

I) Clamping the work piece II) Drilling the work piece. III) Unclamping the work piece. 10

Chapter B-6. Chapter 6. Systems. Festo Didactic TP101

LUDV control block in mono block/sandwich plate design M7-20

Fluid Power Systems: Hydraulics and Pneumatics

CH.4 Basic Components of Hydraulic and Pneumatic System/16 M HAP/17522/AE5G

Applications of Pneumatics and Hydraulics

CH.6 Hydraulic and Pneumatic Circuits/20M. 6.1 Hydraulic Circuits

LESSON 2 BASIC CONSTRUCTION AND OPERATION OF HYDRAULIC ACTUATING DEVICES, FLOW CONTROL, AND DIRECTIONAL DEVICES. STP Tasks:

Flow sharing control block in mono block / sandwich plate design M6-22

Mounting and Operating Instructions EB 8227 EN. Pneumatic Control Valve Type 3331/BR 31a Special version Type 3331/3278. Type 3331 Butterfly Valve

Electrohydraulics Advanced Level Workbook TP 602

Fluid Forming Hydroforming with Rexroth

Hydraulic energy control, conductive part

Considerations on Flow Regeneration Circuits and Hydraulic Motors Speed Variation at Constant Flow

Basic Pneumatics. Module 6: Flow control Valves. Academic Services PREPARED BY. April 2012

The pneumatic circuit and parts' list needed to perform this operation are shown by Figure C.1.

ACHL Series Pump. Operation and Maintenance Manual Air Driven, Hand Operated High Pressure Liquid Pump

Flow sharing control block in mono block / sandwich plate design M6-15

FLUID POWER P&IDs. IDENTIFY the symbols used on engineering fluid power drawings for the following components:

CETOP POSITION PAPER PP 07

CURRICULUM BOSCH-REXROTH (CENTRE OF EXCELLENCE) GANPAT UNIVERSITY

Main Steam Isolation Valves (MSIV) in Nuclear Power Plants with PWR

HYDRAULIC JACKS & TOOLS

Type 3271 Pneumatic Actuator. Actuator area: cm². Mounting and Operating Instructions EB EN

Module 6. Actuators. Version 2 EE IIT, Kharagpur 1

D5 & 10-5 SERIES AIR OPERATED LIQUID PUMPS

DO NOT INSTALL, OPERATE, OR MAINTAIN AN ATI PRODUCT UNLESS TRAINED AND QUALIFIED IN PRODUCT AND ACCESSORY INSTALLATION, OPERATION AND MAINTENANCE.

Drive & Control Academy Fluid Power Training Systems. Training topics for industrial and mobile hydraulics

Hydraulic Master Cylinders

Series 250 Pneumatic Control Valves Type and

Hydraulics Simulation Software (LVSIM -HYD) - 10 Users Network (6385-Q0)

System description for cylinder lubrication and valve seat lubrication on large 4-stroke diesel engines

Installation & Service Instructions

Operating and Installation Instructions Swing Piston Compressors and Vacuum Pumps

2-port seat valves PN16 with flanged connection

Hydraulic cylinders Tie rod design. Type CD70 / CG70. Features. Contents

Infinitely Variable Capacity Control

LESSON Transmission of Power Introduction

Actuators and directional control valves

Electrohydraulics Basic Level Textbook TP 601

Hydraulic Motor (Radial Piston, Multi-Stroke)

Learning System for Automation and Communications. Electropneumatics. Workbook Basic Level S1 K1 K1 Y1

Starting up hydraulic systems

Hydraulic Drive Technology for Woodworking Machinery

DS4NA Fluid Power Training System

Rotary-Linear Actuator HSE4 Hydraulic / 100 Bar

Industrial Mechanic (Millwright) Level 3

3/2 and 4/2 directional poppet valve with solenoid actuation

Servo-Hydraulic Actuator SHA Fields of Application. Technical Information. Contents. RE Edition:

Compensation unit AGE-XY 50-80

Mounting and Operating Instructions EB 8053 EN. Series 250 Type and Type Pneumatic Control Valves

Content. Chapter 1 Hydraulic energy converters... 10

Mounting and Operating Instructions EB 8222 EN. Type 3310/AT and Type 3310/3278 Pneumatic Control Valves. Type 3310 Segmented Ball Valve

3/2 and 4/2 directional seat valves with solenoid actuation

A company of ThyssenKrupp Elevator. ThyssenKrupp Aufzugswerke. Operating Manual. Oil buffer

Module 6. Actuators. Version 2 EE IIT, Kharagpur 1

Z1 B1 B2 Z2 B3 B4. Steuerteil + 24 V. Leistungsteil K1 K2 K1 K2. Practice for Professionals Electropneumatics Trainee s manual. Version 1.

three different ways, so it is important to be aware of how flow is to be specified

'' ''' '' ''' Code No: R R16 SET - 1

TECHNICAL DATA 1-1/2 (dn40)

Basic Pneumatics. Module 4. One way flow control valve & Quick exhaust valve PREPARED BY. IAT Curriculum Unit. January 2011

Experiments on Hydraulic and Pneumatic circuit trainers HYDRAULIC CIRCUITS:

Chapter 2 Dynamic Analysis of a Heavy Vehicle Using Lumped Parameter Model

Nomenclature... xi Hydraulic Laws, Theorems, and Equations...xii

2013 THERMAL ENGINEERING-I

EB EN. Type 3372 Electropneumatic Actuator. Translation of original instructions

PNEUMATIC CYLINDERS. Pneumatic Cylinders. Pneumatic Cylinders. Pneumatic Cylinders sometimes known as air cylinders are mechanical devices

Linear Motion Technology Handbook. The Drive & Control Company

Mounting and operating instructions EB 5801 EN. Electric Actuators Type 5801 (Rotary Actuator) Type 5802 (Linear Actuator)

LECTURE 24 TO 26 - HYDRAULIC CIRCUIT DESIGN FREQUENTLY ASKED QUESTIONS

Focus Area Level Report Including Knowledge and Skills, and Performance Indicators

PRESENTATION ON HYDRAULIC BASED COMPONENT

Chapter B-3. Chapter 3. Actuators and output devices. Festo Didactic TP101

All From One Source Hydraulic Closed Loop Control Systems for Gas and Steam Turbines

Mounting and operating instructions EB Pneumatic Control Valve Type and Type Globe Valve Type 3522 ANSI Class 300

M-22 DUAL FUEL ENGINE

Open center control block in mono block design MO-16, 22, 32

Transcription:

Electric Drives and Controls Hydraulics Linear Motion and Assembly Technologies Pneumatics Service Projekthandbuch Project Manual Industriehydraulik Industrial Hydraulics RE 00846/04.07 Schülerhandbuch Trainee's manual

Electric Drives and Controls Hydraulics Linear Motion and Assembly Technologies Pneumatics Service Introduction Introduction Imparting knowledge through project work Project designation with short description of the industrial application Overview of components Safety aspects A Project tasks B 01 Hydraulic power unit 02 Hydraulic pump/variable displacement pump characteristic curve Single-rod cylinder/pressure intensification 04 Single-rod cylinder/ flow 05 Hydraulic motor 06 4/3 directional valve 07 Check valve 08 Check valve, pilot operated 09 Throttle valve, adjustable 10 Throttle check valve 11 Flow control valve 12 Pressure relief valve, direct operated 13 Pressure relief valve controls 14 Pressure reducing valve 15 Pressure switch 16 Pressure switch/hysteresis 17 Hydraulic accumulator 18 Regenerative circuit 19 Rapid speed/creep speed control 20 Valve circulation control 21 Commissioning, inspection, maintenance, troubleshooting, repair Annex RE 07008 General product information about hydraulic products from Bosch Rexroth AG C

Single-rod cylinder/pressure intensification Project : Single-rod cylinder/pressure intensification Project definition A workpiece is to be shifted by a horizontally installed single-rod cylinder to the working range of a simple fixture when the hydraulic pump is switched on. To this end, the extension velocity of the cylinder must be adjustable. Retracting is to be achieved by means of a 4/2 directional valve. The customer installed a throttle valve on the piston rod side and, while adjusting the extension velocity, recognizes that the pressure upstream of the throttle becomes higher than the set system pressure. Apart from the technical documentation he wishes to get an explanation of the pressure intensification of the single-rod cylinder. Fig..1 Practical example: Hydraulic cylinder of tie rod design Notes

Single-rod cylinder/pressure intensification Project information If in a hydraulic system the hydraulic force, which is converted into mechanical energy, is to be transmitted to an actuator in the form of a linear (straight) movement, a hydraulic cylinder is used. We distinguish hydraulic cylinders by their design principles: Plunger, single-rod and double-rod cylinders. The hydraulic cylinder as output element forms the link between the hydraulic circuit and the working element/tool in a technological system. Lifting, lowering, locking and transporting loads are typical applications of hydraulic cylinders. Neglecting friction, the possible maximum cylinder force F in kn depends on the possible maximum system pressure p and the effective piston area A of the hydraulic cylinder, i.e. F = p A in dn p in bar; A in cm 2 The piston velocity v in m/s of the hydraulic cylinder is determined by the pump flow supplied. Flow control valves are used to change, i.e. reduce, the piston velocity. When throttling, for example, the piston extension velocity, important physical laws must be taken into account. In the following Project knowledge is to be acquired with regard to the use of single-rod cylinders as machine elements. Project steps Informing: Accepting and understanding the order, among others, through discussions with the customer. Planning: Planning and organizing the execution of the customer order; among others, through the selection of hydraulic components from the data sheet collection (RE 179 Hydraulic cylinders, tie rod design). Deciding: Preparation of a schematic diagram sketch and selection of components. Executing: Set-up of the hydraulic control on the training system. Working out and documenting the system parameters required by the customer and explanations with regard to pressure intensification on the basis of a calculation example. Checking: Are all customer requirements met? Evaluating: Are there further possibilities of meeting the customer requirement or simpler ways of project execution? Have unforeseeable problems occurred?

Single-rod cylinder/pressure intensification 3 Meeting the customer requirement The customer requirements of Project is to be met through the set-up of an electrohydraulic control. The hydraulic components required for the order can be determined on the basis of circuit diagrams and other technical documentation. Also manufacturers' documents such as technical data sheets can be used, with modern information and communication media (Internet) being also a helpful source of information. After order-oriented planning the control is to be set up observing all current safety regulations and product information. The project order should be analyzed in view of its feasibility. Detailed technical documentation such as: Hydraulic circuit diagrams, Parts list of hydraulic components, Functional description, Note on possible optimizations are essential points for fulfilling the customer order. A final evaluation of work results is to be supplemented by: A proof of sources of technical documentation and a project sequence chart/documentation of the work carried out. Note: To recapitulate the work done and the order handling method, complete the project sequence chart at the end of the project. Notes

Single-rod cylinder/pressure intensification 4 Hydraulic circuit diagram Item 1.0 Item 0.2 Item 0.3 Item 1.3 Item 1.1 Item 0.1 Item 1.2 Measuring glass Power unit limit Fig..2 Hydraulic circuit diagram: Feeding cylinder

Single-rod cylinder/pressure intensification 5 Electrical circuit diagram Control 4/2 directional valve Retraction -Single-rod cylinder- Note: The single-rod cylinder extends automatically when the hydraulic pump is switched on. Fig..3 Wiring diagram for hydraulic circuit diagram Fig..2

Single-rod cylinder/pressure intensification 6 Component selection with parts list Item Qty Component designation Type designation Symbol 1.0 1.1 1.2 1.3 Distributor plate with four ports 0.1-0.3 Pressure gauge with hose and quick release coupling without check valve hose with quick release coupling with check valve Hose Table.1 Parts list for hydraulic circuit diagram Fig..2

Single-rod cylinder/pressure intensification 7 Safety notes Warning Caution To ensure the operability of plant and machinery, and consequently to allow the recognition of potential risks, safety regulations must be observed before and during the execution of the order. Relevant sources of regulations are given in the introduction of the present manual. If work on electrohydraulic components is carried out improperly, risks of injury and a safety risk can arise during operation of the system, including danger to life. Before starting work on the training stand, check that the electrical ON/ OFF switch on the hydraulic power unit is pressed in, i.e. that the system is switched off. Use the system pressure gauges to check that the system is depressurized. Hydraulic systems can store pressure energy when at rest. It can cause injury when the system is opened. Notes

Single-rod cylinder/pressure intensification 8 Execution of the order Set up the control as described below: 1. Mount the components required according to Table.1 in a clearly arranged form on the training system according to the prepared circuit diagram. Connect the hydraulic control according to Hydraulic circuit diagram Fig..2 by means of hoses. For connections, to which pressure gauges with minimess line are to be connected, use hydraulic hoses. Hand-tighten the pressure gauge measuring lines at the relevant minimess connection of the hydraulic hose. The correct and proper fit of the component connections with hoses can be checked by slightly turning the hoses. Make sure that pipes or hoses are connected to all connections - in this case also to minimess lines, or that the connections are plugged by means of plug Warning screws or protective caps. Leakage oil may drip through open connections and cause a slipping risk. Before commissioning the hydraulic control, i.e. before switching the hydraulic pump on, check, whether all pressure control valves are set to minimum Caution pressure (spring unloaded) and all throttle valves are open. Wire the electrical control according to wiring diagram Fig..3. 2. Switch the hydraulic pump on and inspect the set up control for leakage. No pressure gauge may indicate a pressure. 3. Check the pressure set on the variable displacement pump of the drive power unit (if required, correct to 50 bar). 4. Set the system pressure on pressure relief valve Item 1.2 to 50 bar plus one turn; operate push-button S2 to prevent the piston of hydraulic cylinder Item 1.0 from extending. 5. After having adjusted the system pressure, check that the piston of the single-rod cylinder moves properly. 6. Switch the hydraulic pump off and wait until the system is depressurized. Close throttle valve Item 1.3. To this end, turn in the adjustment element counter-clockwise to the limit stop. Switch the hydraulic pump on and extend the piston against the meter-out throttle Is this possible, or why doesn't the piston extend?

Single-rod cylinder/pressure intensification 7. Measure the pressure values while the directional valve is not operated and the hydraulic pump is switched on, and enter the values in Table.2. Caution After having completed practical work on the training system switch the hydraulic pump off! Turn all pressure valves of the electrohydraulic control back to minimum pressure. Completely open throttle valves, if installed. No pressure gauge may indicate a pressure! 8. To meet the customer requirement and to explain the pressure intensification of the singlerod cylinder more clearly, make the hydraulic calculation below. For this, we recommend the utilization of a technical data sheet. Measured values Hydraulic cylinder Extending/ Y1 not operated Measuring point M1 System pressure p in bar M2 piston side p in bar M3 piston rod side p in bar Table.2 Measured values of pressure intensification Additional task in conjunction with the customer requirement: Calculation of the pressure intensification on the basis of given hydraulic cylinder values. Hydraulic cylinder of tie rod design: Type CD T3...25/18...200 Bore: 25 mm A piston =..... cm 2 Piston rod diameter: 18 mm A rod =..... cm 2 A K A R FR A annulus =... cm 2 F K F R F St... cm 2 =... : 1... cm 2 If the meter-out throttle is completely closed, then: F K = F R p A = p A K K R R p R =.......... bar =... bar

Single-rod cylinder/pressure intensification 10 Evaluating the work results with regard to the customer requirement Hydraulic cylinders perform and transmit the in the form of. Double-acting hydraulic cylinders with areas are called. Single-rod cylinders are. can be kept over the entire stroke. Notes

Single-rod cylinder/pressure intensification 11 Project sequence chart: Project Last name, first name Project handler Project designation Informing from the project definition. Planning steps Planning of the project objective and the proceeding. Sources of information Deciding Deciding on and selecting components; complementing the circuit diagram and parts list. (Overleaf)

Single-rod cylinder/pressure intensification 12 Execution of the order Executing Set-up of the electrohydraulic control and acquisition of required data.. Special points? Quality check Checking Are all customer requirements met? Evaluating Optimize project steps (If required, add supplementary sheet) Project Note of completion by confirmation of the project manager/place, date, signature