Manual of engineering drawing [[electronic resource] ] : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire
| Manual of engineering drawing [[electronic resource] ] : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire |
| Autore | Simmons C. H (Colin H.) |
| Edizione | [4th ed.] |
| Pubbl/distr/stampa | Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 |
| Descrizione fisica | 1 online resource (ix, 369 p.) : ill |
| Disciplina | 604.2 |
| Altri autori (Persone) |
PhelpsNeil
MaguireD. E (Dennis E.) |
| Soggetto topico |
Mechanical drawing
Engineering drawings Technical illustration |
| Soggetto genere / forma | Electronic books. |
| ISBN |
1-283-73491-5
0-08-096653-5 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910461805803321 |
Simmons C. H (Colin H.)
|
||
| Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Manual of engineering drawing [[electronic resource] ] : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire
| Manual of engineering drawing [[electronic resource] ] : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire |
| Autore | Simmons C. H (Colin H.) |
| Edizione | [4th ed.] |
| Pubbl/distr/stampa | Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 |
| Descrizione fisica | 1 online resource (ix, 369 p.) : ill |
| Disciplina | 604.2 |
| Altri autori (Persone) |
PhelpsNeil
MaguireD. E (Dennis E.) |
| Soggetto topico |
Mechanical drawing
Engineering drawings Technical illustration |
| ISBN |
1-283-73491-5
0-08-096653-5 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Record Nr. | UNINA-9910790297403321 |
Simmons C. H (Colin H.)
|
||
| Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Manual of engineering drawing : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire
| Manual of engineering drawing : technical product specification and documentation to British and international standards / / Colin H. Simmons, Neil Phelps, Dennis E. Maguire |
| Autore | Simmons C. H (Colin H.) |
| Edizione | [4th ed.] |
| Pubbl/distr/stampa | Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 |
| Descrizione fisica | 1 online resource (ix, 369 p.) : ill |
| Disciplina | 604.2 |
| Altri autori (Persone) |
PhelpsNeil
MaguireD. E (Dennis E.) |
| Soggetto topico |
Mechanical drawing
Engineering drawings Technical illustration |
| ISBN |
9781283734912
1283734915 9780080966533 0080966535 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Front Cover -- Manual of Engineering Drawing -- Copyright -- Contents -- Preface -- Acknowledgements -- Chapter 1 - Drawing Office Management and Organization -- Engineering Drawing Practices -- Drawing Practice and the Computer (CAD: Computer Aided Draughting and Design) -- Why Introduce BS 8888 and Withdraw BS 308? -- Chapter 2 - Product Development and Computer Aided Design -- Computer Aided Draughting and Design -- Technical Product Documentation -- Access into the Computer Network -- Quality Assurance -- Chapter 3 - Design for Manufacture to End of Life -- Chapter 4 - Intellectual Property and Engineering Design -- Patents -- Designs -- Copyright -- Trademarks -- Important Points to Remember -- Chapter 5 - CAD Organization and Applications -- Computer and Software Purchase -- Project Development -- Size of Computer -- Parametric Design -- Sheet Metalwork Application -- Pipework Systems -- Communicating Design Concepts -- Materials Options -- Typical CAD Drawings and 3D Models -- Chapter 6 - Principles of First and Third Angle Orthographic Projection -- First Angle Projection -- Third Angle Projection -- Projection Symbols -- Drawing Procedure -- Reading Engineering Drawings -- Projection Exercises -- Chapter 7 - Linework and Lettering -- Drawing Paper Sizes -- Presentation -- Types of Line and Their Application -- Chain Lines -- Coinciding Lines -- Lettering -- Minimum Character Height for Capital Letters and Numerals -- Drawing Modifications -- Care and Storage of Original Drawings -- Chapter 8 - Three-dimensional Illustrations Using Isometric and Oblique Projection -- Isometric Projection -- Oblique Projection -- Chapter 9 - Drawing Layouts and Simplified Methods -- Single-part Drawing -- Collective Single-part Drawings -- Assembly Drawings -- Collective Assembly Drawing -- Design Layout Drawings -- Combined Detail and Assembly Drawings.
Exploded Assembly Drawings -- Simplified Drawings -- Machine Drawings -- Drawing Scales -- Scale Used in Geometric Construction -- Abbreviations -- Chapter 10 - Sections and Sectional Views -- Half Sections -- Revolved Sections -- Removed Sections -- Sections through Thin Material -- Local Sections -- Components Not Drawn in Section -- Successive Sections -- Sections in Two Parallel Planes -- Chapter 11 - Geometrical Constructions and Tangency -- To Bisect a Given Angle AOB (Fig. 11.1) -- To Bisect a Given Straight Line AB (Fig. 11.2) -- To Bisect a Given Arc AB (Fig. 11.3) -- To Find the Centre of a Given Arc AB (Fig. 11.4) -- To Inscribe a Circle in a Given Triangle ABC (Fig. 11.5) -- To Circumscribe a Circle Around Triangle ABC (Fig. 11.6) -- To Draw a Hexagon, Given the Distance Across the Corners -- To Draw a Hexagon, Given the Distance Across the Flats (Fig. 11.8) -- To Draw a Regular Octagon, Given the Distance Across Corners (Fig. 11.9) -- To Draw a Regular Octagon, Given the Distance Across the Flats (Fig. 11.10) -- To Draw a Regular Polygon, Given the Length of the Sides (Fig. 11.11) -- Tangency -- To Draw a Tangent to a Point A on the Circumference of a Circle, Centre O (Fig. 11.13) -- To Draw a Tangent to a Circle From Any Given Point A Outside the Circle (Fig. 11.14) -- To Draw an External Tangent to Two Circles (Fig. 11.15) -- To Draw an Internal Tangent to Two Circles (Fig. 11.16) -- To Draw Internal and External Tangents to Two Circles of Equal Diameter (Fig. 11.17) -- To Draw a Curve of Given Radius to Touch Two Circles when the Circles Are Outside the Radius (Fig. 11.18) -- To Draw a Curve of Given Radius to Touch Two Circles When the Circles Are Inside the Radius (Fig. 11.19) -- To Draw a Radius to Join a Straight Line and a Given Circle (Fig. 11.20) -- To Draw a Radius Which is Tangential to Given Straight Lines (Fig. 11.21). Chapter 12 - Loci Applications -- Methods of Drawing an Ellipse -- The Involute -- Archimedean Spiral -- Right-hand Cylindrical Helix -- Right-hand Conical Helix -- The Cycloid -- The Epicycloid -- The Hypocycloid -- Chapter 13 - True Lengths and Auxiliary Views -- Chapter 14 - Conic Sections and Interpenetration of Solids -- To Draw an Ellipse from Part of a Cone -- To Draw a Parabola from Part of a Cone -- To Draw a Rectangular Hyperbola from Part of a Cone -- Interpenetration -- Chapter 15 - Development of Patterns from Sheet Materials -- Chapter 16 - Dimensioning Principles -- Dimensioning of Features not Drawn to Scale -- Chain Dimensioning and Auxiliary Dimensioning -- Parallel Dimensioning -- Running Dimensioning -- Staggered Dimensions -- Dimensioning Circles -- Dimensioning Radii -- Dimensioning Spherical Radii and Diameters -- Dimensioning Curves -- Dimensioning Irregular Curves -- Unidirectional and Aligned Dimensions -- Angular Dimensions -- Tapers -- Dimensioning Tapers -- Dimensioning Two Mating Tapers -- Dimensioning Chamfers -- Dimensioning Squares or Flats -- Dimensioning Holes -- Dimensioning Counterbores -- Dimensioning Countersunk Holes -- Dimensioning Spotfaces -- Dimensioning for Manufacture -- Chapter 17 - Screw Threads and Conventional Representations -- Screw Threads -- ISO Metric Threads -- Unified Threads -- Threads for Power Transmission -- Draughting Conventions Associated with Threads -- Multiple Threads -- The Application of Thread Conventions -- Tapping Drill -- Clearance Drill -- Chapter 18 - Nuts, Bolts, Screws, and Washers -- Drawing Nuts and Bolts -- Approximate Construction for Nuts and Bolts (Figs 18.2 and 18.3) -- Socket Head Screws Manufactured to BS EN ISO 4762 and BS 3643-2 -- ISO Metric Socket Cap Screws (Dimensions in Table 18.2) -- ISO Metric Hexagon Socket Shoulder Screws (Dimensions in Table 18.3). ISO Metric Hexagon Socket Button Head Screws (Dimensions in Table 18.4) -- ISO Metric Socket Countersunk Head Screws (Dimensions in Table 18.5) -- ISO Metric Hexagon Socket Set Screws (Dimensions in Table 18.6) -- Machine Screws -- 'Posidriv' Machine Screws, Countersunk and Raised Countersunk Head (Dimensions in Table 18.7) -- 'Posidriv' Machine Screws, Pan Head (Dimensions in Table 18.8) -- Slotted Machine Screws, Countersunk and Raised Countersunk Head (Dimensions in Table 18.9) -- Slotted Machine Screws, Pan Head (Dimensions in Table 18.10) -- Slotted Machine Screws, Cheese Head (Dimensions in Table 18.11) -- Machine Screw Nuts -- Wing Nuts -- Locking and Retaining Devices -- Slotted Nuts and Castle Nuts -- Simmonds Locknut -- Spring Washers -- Shakeproof Washers -- Wire Locking -- Tab Washers -- Locking Plates -- Taper Pins and Parallel Pins -- Split Cotter Pins -- Locking by Adhesives -- Peening -- Thread-cutting Screws -- Chapter 19 - Keys and Key Ways -- Sunk Keys -- Woodruff Keys -- Dimensioning Keyways (Parallel Keys) -- Chapter 20 - Worked Examples in Machine Drawing -- Bushed Bearing Bracket -- Drill Table -- Cam Operated Clamp -- Plug Cock -- Air Engine -- Toolbox -- Solution Notes -- Chapter 21 - Limits and Fits -- Elements of Interchangeable Systems (Fig. 21.9) -- Unilateral and Bilateral Limits -- Bases of Fits -- Selected ISO Fits - Hole Basis (Extracted from BS 4500) -- Interpretations of Limits of Size in Relation to Form -- Chapter 22 - Geometrical Tolerancing and Datums -- Geometrical Tolerances -- Applications -- Advantages -- General Rules -- Theoretically Exact Dimensions (TEDs) -- Definitions -- Method of Indicating Geometrical Tolerances on Drawings -- Methods of Applying the Tolerance Frame to the Toleranced Feature -- Procedure for Positioning Remarks which are Related to Tolerance. The Application of Tolerances to a Restricted Length of a Feature -- Tolerance Zones -- Projected Toleranced Zone -- Datums and Datum Systems -- Datums -- Methods of Specifying Datum Features -- Datum Systems -- Common Datums -- Datum Targets -- Dimensioning and Tolerancing Non-rigid Parts -- Chapter 23 - Application of Geometrical Tolerances -- Straightness -- Flatness -- Circularity (Roundness) -- Cylindricity -- Profile Tolerance of a Line -- Profile Tolerance of a Surface -- Parallelism -- Perpendicularity (Squareness) -- Angularity -- Circular Run-out -- Total Run-out -- Position -- Concentricity and Coaxiality -- Symmetry -- Chapter 24 - Maximum Material and Least Material Principles -- Maximum Material Condition (MMC) -- Least Material Condition (LMC) -- Maximum Material Condition Related to Geometrical Form -- Maximum Material Condition Applied to Straightness -- Maximum Material Condition Applied to Squareness -- Maximum Material Condition Applied to Position -- Maximum Material Condition Applied to Coaxiality -- Maximum Material Condition and Perfect Form -- The Application of Maximum Material Condition and its Relationship with Perfect Form and Squareness -- The Application of Maximum Material Condition and its Relationship with Perfect Form and Coaxiality -- The Application of Maximum Material Condition to Two Mating Components -- Chapter 25 - Positional Tolerancing -- Theoretically Exact Dimensioning (TED) (True-position) -- Typical Product Requirement -- Chapter 26 - Surface Texture -- Graphical Symbols to Indicate Surface Texture -- Expanded Graphical Symbols -- Complete Graphical Symbols -- 'All Surfaces Around a Workpiece' Graphical Symbol -- Composition of Complete Graphical Symbols for Surface Texture -- Mandatory Positions for Complementary Requirements -- Chapter 27 - Surface Finish and Corrosion of Metals -- Surface Finish. Corrosion of Metals. |
| Record Nr. | UNINA-9910964420303321 |
Simmons C. H (Colin H.)
|
||
| Amsterdam, : Elsevier/Butterworth-Heinemann, 2012 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Manual of engineering drawing [[electronic resource] /] / Colin H. Simmons, Dennis E. Maguire, Neil Phelps
| Manual of engineering drawing [[electronic resource] /] / Colin H. Simmons, Dennis E. Maguire, Neil Phelps |
| Autore | Simmons C. H (Colin H.) |
| Edizione | [Third edition] |
| Pubbl/distr/stampa | Burlington, MA, : Newnes, an imprint of Elsevier, 2009 |
| Descrizione fisica | 1 online resource (337 p.) |
| Disciplina |
604.2
744.422 |
| Soggetto topico |
Mechanical drawing
Mechanical drawing - Standards Engineering & Applied Sciences Technology - General |
| Soggetto genere / forma | Electronic books. |
| ISBN |
1-282-73767-8
9786612737671 0-08-094362-4 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Front Cover; Manual of Engineering Drawing; Copyright Page; Contents; Preface; Acknowledgements; Chapter 1 Drawing offi ce management and organization; Engineering drawing practices; Drawing practice and the computer (CAD: Computer aided draughting and design); Why introduce BS 8888 and withdraw BS 308?; Chapter 2 Product development and computer aided design; Computer aided draughting and design; Technical product documentation; Access into the computer network; Quality assurance; Chapter 3 CAD organization and applications; Computer and software purchase; Project development
Parametric designSheet metalwork application; Pipework systems; Communicating design concepts; Chapter 4 Principles of fi rst and third angle orthographic projection; First angle projection; Third angle projection; Projection symbols; Drawing procedure; Reading engineering drawings; Projection exercises; Straight line examples; First angle projection examples with plotted curves (Fig. 4.22); Pictorial sketching from orthographic views; Geometric solids in third angle projection; Sectional views in third angle projection; Dimensioning examples (first angle projection) Chapter 5 Linework and letteringDrawing paper sizes; Presentation; Types of line and their application; Chain lines; Coinciding lines; Lettering; Drawing modifications; Care and storage of original drawings; Chapter 6 Three-dimensional illustrations using isometric and oblique projection; Isometric projection; Oblique projection; 7 Drawing layouts and simplifi ed methods; Single-part drawing; Collective single-part drawings; Assembly drawings; Collective assembly drawing; Design layout drawings; Combined detail and assembly drawings; Exploded assembly drawings; Simplified drawings Machine drawingDrawing scales; Scale used in geometric construction; Abbreviations; Chapter 8 Sections and sectional views; Half sections; Revolved sections; Removed sections; Sections through thin material; Local sections; Components not drawn in section; Successive sections; Sections in two parallel planes; Chapter 9 Geometrical constructions and tangency; To bisect a given angle AOB; To bisect a given straight line AB; To bisect a given arc AB; To find the centre of a given arc AB; To inscribe a circle in a given triangle ABC; To circumscribe a circle around triangle ABC To draw a hexagon, given the distance across the cornersTo draw a regular octagon, given the distance across corners; To draw a regular octagon, given the distance across the flats; To draw a regular polygon, given the length of the sides; Tangency; To draw a tangent to a point A on the circumference of a circle, centre O; To draw a tangent to a circle from any given point A outside the circle; To draw an external tangent to two circles; To draw an internal tangent to two circles; To draw internal and external tangents to two circles of equal diameter To draw a curve of given radius to touch two circles when the circles are outside the radius |
| Record Nr. | UNINA-9910511694603321 |
Simmons C. H (Colin H.)
|
||
| Burlington, MA, : Newnes, an imprint of Elsevier, 2009 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||
Manual of engineering drawing [[electronic resource] /] / Colin H. Simmons, Dennis E. Maguire, Neil Phelps
| Manual of engineering drawing [[electronic resource] /] / Colin H. Simmons, Dennis E. Maguire, Neil Phelps |
| Autore | Simmons C. H (Colin H.) |
| Edizione | [Third edition] |
| Pubbl/distr/stampa | Burlington, MA, : Newnes, an imprint of Elsevier, 2009 |
| Descrizione fisica | 1 online resource (337 p.) |
| Disciplina |
604.2
744.422 |
| Soggetto topico |
Mechanical drawing
Mechanical drawing - Standards Engineering & Applied Sciences Technology - General |
| ISBN |
1-282-73767-8
9786612737671 0-08-094362-4 |
| Formato | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione | eng |
| Nota di contenuto |
Front Cover; Manual of Engineering Drawing; Copyright Page; Contents; Preface; Acknowledgements; Chapter 1 Drawing offi ce management and organization; Engineering drawing practices; Drawing practice and the computer (CAD: Computer aided draughting and design); Why introduce BS 8888 and withdraw BS 308?; Chapter 2 Product development and computer aided design; Computer aided draughting and design; Technical product documentation; Access into the computer network; Quality assurance; Chapter 3 CAD organization and applications; Computer and software purchase; Project development
Parametric designSheet metalwork application; Pipework systems; Communicating design concepts; Chapter 4 Principles of fi rst and third angle orthographic projection; First angle projection; Third angle projection; Projection symbols; Drawing procedure; Reading engineering drawings; Projection exercises; Straight line examples; First angle projection examples with plotted curves (Fig. 4.22); Pictorial sketching from orthographic views; Geometric solids in third angle projection; Sectional views in third angle projection; Dimensioning examples (first angle projection) Chapter 5 Linework and letteringDrawing paper sizes; Presentation; Types of line and their application; Chain lines; Coinciding lines; Lettering; Drawing modifications; Care and storage of original drawings; Chapter 6 Three-dimensional illustrations using isometric and oblique projection; Isometric projection; Oblique projection; 7 Drawing layouts and simplifi ed methods; Single-part drawing; Collective single-part drawings; Assembly drawings; Collective assembly drawing; Design layout drawings; Combined detail and assembly drawings; Exploded assembly drawings; Simplified drawings Machine drawingDrawing scales; Scale used in geometric construction; Abbreviations; Chapter 8 Sections and sectional views; Half sections; Revolved sections; Removed sections; Sections through thin material; Local sections; Components not drawn in section; Successive sections; Sections in two parallel planes; Chapter 9 Geometrical constructions and tangency; To bisect a given angle AOB; To bisect a given straight line AB; To bisect a given arc AB; To find the centre of a given arc AB; To inscribe a circle in a given triangle ABC; To circumscribe a circle around triangle ABC To draw a hexagon, given the distance across the cornersTo draw a regular octagon, given the distance across corners; To draw a regular octagon, given the distance across the flats; To draw a regular polygon, given the length of the sides; Tangency; To draw a tangent to a point A on the circumference of a circle, centre O; To draw a tangent to a circle from any given point A outside the circle; To draw an external tangent to two circles; To draw an internal tangent to two circles; To draw internal and external tangents to two circles of equal diameter To draw a curve of given radius to touch two circles when the circles are outside the radius |
| Record Nr. | UNINA-9910783091303321 |
Simmons C. H (Colin H.)
|
||
| Burlington, MA, : Newnes, an imprint of Elsevier, 2009 | ||
| Lo trovi qui: Univ. Federico II | ||
| ||