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Test Methods for Explosives, Hardcover by Suceska, Muhamed
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Specificaties
- Objectstaat
- ISBN
- 9780387945552
- Subject Area
- Technology & Engineering, Science
- Publication Name
- Test Methods for Explosives
- Publisher
- Springer New York
- Item Length
- 9.3 in
- Subject
- Materials Science / General, Chemistry / Physical & Theoretical, Chemistry / Industrial & Technical
- Publication Year
- 1995
- Series
- Shock Wave and High Pressure Phenomena Ser.
- Type
- Textbook
- Format
- Hardcover
- Language
- English
- Item Weight
- 40.2 Oz
- Item Width
- 6.1 in
- Number of Pages
- IX, 225 Pages
Over dit product
Product Identifiers
Publisher
Springer New York
ISBN-10
0387945555
ISBN-13
9780387945552
eBay Product ID (ePID)
763384
Product Key Features
Number of Pages
IX, 225 Pages
Publication Name
Test Methods for Explosives
Language
English
Subject
Materials Science / General, Chemistry / Physical & Theoretical, Chemistry / Industrial & Technical
Publication Year
1995
Type
Textbook
Subject Area
Technology & Engineering, Science
Series
Shock Wave and High Pressure Phenomena Ser.
Format
Hardcover
Dimensions
Item Weight
40.2 Oz
Item Length
9.3 in
Item Width
6.1 in
Additional Product Features
Intended Audience
Scholarly & Professional
LCCN
95-019429
Dewey Edition
20
Number of Volumes
1 vol.
Illustrated
Yes
Dewey Decimal
662/.2
Table Of Content
1. General Concepts and Classification of Explosives.- 1.1. Safety Precautions in Handling Explosives.- 1.2. Initiating Devices.- 1.2.1. Initiation of High Explosive Charges.- 2. Sensitivity of Explosives.- 2.1. Determination of the Heat Sensitivity of Explosives.- 2.2. Determination of the Sensitivity of Explosives to Electric Spark.- 2.3. Determination of the Adiabatic Sensitivity of Explosives.- 2.4. Sensitivity of Explosives to Mechanical Stimuli.- 2.5. Determination of the Initiating Strength of Primary Explosives.- 2.6. Determination of the Sensitivity of High Explosives to Detonators.- 2.7. Shock Wave Initiation of Detonation.- 2.8. Determination of Blasting and Technical Characteristics of Detonators.- 2.9. Determination of the Initiating Strength of Boosters.- 3. Combustion of Explosives.- 3.1. Determination of the Combustion Pressure at Constant Volume Conditions.- 3.2. Determination of the Composition and the Volume of Combustion Products.- 3.3. Determination of the Combustion Rate of Propellants at Constant Pressure Conditions.- 3.4. Determination of the Heat of Combustion of Explosives.- 4. Detonation.- 4.1. Determination of the Detonation Velocity.- 4.2. Determination of the Detonation Wave Parameters.- 4.3. Determination of the Detonation Temperature.- 4.4. Determination of the Composition of Detonation Products.- 5. Working Capacity of Explosives.- 5.1. Lead Block Test for Determination of the Strength of Explosives.- 5.2. Determination of Explosive Strength Using the Ballistic Mortar.- 5.3. Determination of Explosive Strength by Underwater Detonation.- 5.4. Determination of Explosive Performances by the Double Pipe Test.- 5.5. Determination of the Parameters of Explosive Effects from the Cylinder Expansion Test.- 5.6. Determination of the Brisance by the Hess Test.- 5.7. Determination of the Brisance by Kast's Method.- 5.8. Determination of the Brisance by the Plate-Denting Test.- 5.9. Determination of the Shock Wave Parameters.- References.
Synopsis
It seems that there is no book that treats the measurement of the physical pa rameters of explosives as its only subject, although limited information is avail able in a number of books. Therefore, I have tried to bridge this gap in the lit erature with this book. A large number of various physical parameters have to be determined ex perimentally in order to test or characterise an explosive. Various physical principles have been applied for such measurements. Accordingly, a large number of different experimental methods exist, as well as various testing appa ratuses and procedures. On the other hand, great progress has been made recently in the study of detonation phenomena. New measuring techniques can assess extremely short processes to below nanoseconds scale. They make it possible to determine im portant parameters in detonation physics. I have made a great attempt to cover the available literature data on the subject. Because it would be a highly demanding task to include in a single volume all the methods that are in use by various testing agencies, I have tried to give primarily the principles for determination of individual physical pa rameters of explosives by different measuring methods as well as data treatment procedures., It seems that there is no book that treats the measurement of the physical pa- rameters of explosives as its only subject, although limited information is avail- able in a number of books. Therefore, I have tried to bridge this gap in the lit- erature with this book. A large number of various physical parameters have to be determined ex- perimentally in order to test or characterise an explosive. Various physical principles have been applied for such measurements. Accordingly, a large number of different experimental methods exist, as well as various testing appa- ratuses and procedures. On the other hand, great progress has been made recently in the study of detonation phenomena. New measuring techniques can assess extremely short processes to below nanoseconds scale. They make it possible to determine im- portant parameters in detonation physics. I have made a great attempt to cover the available literature data on the subject. Because it would be a highly demanding task to include in a single volume all the methods that are in use by various testing agencies, I have tried to give primarily the principles for determination of individual physical pa- rameters of explosives by different measuring methods as well as data treatment procedures.
LC Classification Number
TA418.5-.84
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