ARMY MIL-STD-3021 CHG 1-2011 MATERIALS DEPOSITION COLD SPRAY.pdf
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1、 METRIC MIL-STD-3021 w/CHANGE 1 13 July 2011_ SUPERSEDING MIL-STD-3021 4 August 2008 DEPARTMENT OF DEFENSE MANUFACTURING PROCESS STANDARD MATERIALS DEPOSITION, COLD SPRAY AMSC N/A AREA MFFP DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited. Provided by IHSNot for Resal
2、eNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-3021 w/Change 1 ii FOREWORD 1. This standard is approved for use by all Departments and Agencies of the Department of Defense. 2. The purpose of this standard is to develop the manufacturing process controls for a cold spr
3、ay operation utilizing a high-velocity jet of solid-phase particles. The jet temperatures are below the melting thresholds of many engineering materials. This allows the process to be used to apply deposits on a wide variety of substrates, such as, alloys, ceramics, and plastics. Moreover, the delet
4、erious effects of deposit oxidation, evaporation, and residual thermal stresses are avoided. 3. This standard is required because the cold spray deposition process has significant differences from thermal spray coating technologies such as high velocity oxy-fuel (HVOF), detonation gun, plasma spray,
5、 flame spray, and arc spray. These process differences result in application criteria, process equipment, and operating parameters that are considerably different than previously documented processes. The objective is to enable the application of Cold Spray Deposition with the success of the aforeme
6、ntioned processes when properly applied. 4. Comments, suggestions, or questions on this document should be addressed to: Director, U.S. Army Research Laboratory, Material & Manufacturing Science Directorate, Materials Manufacturing Technologies Branch, Specifications and Standards Office, Attn: RDRL
7、-WMM-D, Aberdeen Proving Ground, MD 21005-5069 or emailed to richard.j.squillacioti.civmail.mil. Since contact information can change, you may want to verify the currency of this address information using the ASSIST Online database at https:/assist.daps.dla.mil/. Provided by IHSNot for ResaleNo repr
8、oduction or networking permitted without license from IHS-,-,-MIL-STD-3021 w/Change 1 iii SUMMARY OF CHANGE 1 MODIFICATIONS The following modifications to MIL-STD-3021 have been made: Paragraph Modification 1.2 Added 1.2.1 Changed Figure 1 Changed Figure 2 Changed 3.1 Changed 3.4 Powder meter wheel.
9、 Deleted 4.1 Changed 4.3.1 Changed Table I Changed 4.3.2.2.2 Changed 4.3.3 Changed Figure 1 Changed 4.4 Changed 5.1.2 Changed 5.1.2.1 Changed 5.1.2.2.2 Changed 5.1.3.4 Changed 5.2.2 Changed Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-3021
10、 w/Change 1 iv CONTENTS PARAGRAPH PAGE FOREWORD ii 1. SCOPE 1.1 Purpose 1 1.2 Process. 1 1.2.1 Types. . 1 1.3 Applications. . 1 2. APPLICABLE DOCUMENTS 2.1 General 2 2.2 Government documents. 2 2.2.1 Specifications, standards, and handbooks. . 2 2.3 Non-Government publications 3 2.4 Order of precede
11、nce 3 3. DEFINITIONS 3.1 Cold spray. . 3 3.2 Nozzle. . 3 3.3 Powder lot. . 3 3.4 Simulated part. 4 3.5 Substrate 4 3.6 Lot 4 3.7 Pass. 4 3.8 Increment 4 3.9 Layer. 4 3.10 Thermal spraying. . 4 4. GENERAL REQUIREMENTS 4.1 Application 4 4.2 Process. . 4 4.2.1 Cold spray equipment 4 4.2.2 Material. 5 4
12、.2.2.1 Gas. . 5 4.2.2.1.1 Gas specifications 5 4.2.2.2 Coating powder. 5 4.3 Required procedures and operations. 5 4.3.1 Process control. . 5 4.3.1.1 Gauges, meters, and sensors 6 4.3.1.2 Checks 6 4.3.2 Surface preparation. 6 4.3.2.1 Cleaning. . 6 Provided by IHSNot for ResaleNo reproduction or netw
13、orking permitted without license from IHS-,-,-MIL-STD-3021 w/Change 1 v CONTENTS PARAGRAPH PAGE 4.3.2.2 Handling and storage. 6 4.3.2.2.1 Handling. . 6 4.3.2.2.2 Storage. 6 4.3.2.3 Overspray protection. 6 4.3.3 Abrasive blast. . 8 4.3.3.1 Blast contamination 8 4.3.4 Preheating. . 8 4.3.5 Coating dep
14、osition. 8 4.3.6 Identification. . 8 4.4 Operator certification. 8 4.4.1 Cold spray operator. 8 4.4.1.1 Continuance of certification 9 5. DETAILED REQUIREMENTS 5.1 General. 9 5.1.1 Certification. 9 5.1.1.1 Certification samples. . 9 5.1.1.2 Re-certification . 9 5.1.2 Test specimens. 9 5.1.2.1 Metall
15、ographic test specimens . 9 5.1.2.1.1 Test specimen panel configuration 10 5.1.2.2 Bond strength test specimens. 10 5.1.2.2.1 Size. 10 5.1.2.2.2 Material. 10 5.1.2.2.3 Deposit. . 10 5.1.2.2.4 Deposition thickness. 10 5.1.3 Process approvals. . 10 5.1.3.1 Processing data. . 10 5.1.3.2 Sample part. .
16、10 5.1.3.3 Rework. . 10 5.1.3.3.1 Stripping. . 10 5.1.3.4 Metallographic test specimen. 10 5.1.4 Process certification. 11 5.2 Test methods. . 11 5.2.1 Visual. 11 5.2.2 Microscopic examination. 11 5.2.3 Oxides and porosity. 11 5.2.4 Bond strength test. 11 6. NOTES 6.1 Intended use 12 6.2 Acquisition
17、 requirements. 12 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-STD-3021 w/Change 1 vi CONTENTS PARAGRAPH PAGE 6.3 Issue of DoDISS. . 13 6.4 Safety. 13 6.4.1 Material safety data sheets (MSDS). . 13 6.5 English units . 13 6.6 Subject term (key
18、word) listing. 13 TABLE I. Operating parameters . 6 FIGURE 1. High pressure powder injection system . 2 2. Low pressure powder injection system. 2 3. Typical cold spray control sheet 7 CONCLUDING MATERIAL 14 Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IH
19、S-,-,-MIL-STD-3021 w/Change 1 1 1. SCOPE 1.1 Purpose. The procedures covered by this standard are intended to ensure that cold spray coating operations, either manual or automated, meet prescribed requirements. This process can be used to restore dimensionally discrepant parts, or parts requiring pr
20、otection from corrosion and wear (e.g. abrasion, cavitations, and erosion) but not limited to these applications. 1.2 Process. This standard describes the process requirements for surfacing by means of cold spray deposition. The term “cold spray” has been used to describe this process because both t
21、he temperature of the powder-laden gas jet and the temperature of the powder material are low enough to prevent a phase change or stress in the deposit or substrate. Cold spray is a process whereby metal powder particles are utilized to form a deposit by means of ballistic impingement upon a substra
22、te. The metal powders typically range in particle size from 1.0 to 100 micrometers (m) and are accelerated by injection into a high-velocity stream of gas. The high velocity gas stream is generated through the expansion of a pressurized, preheated, gas through a nozzle. The nozzle may be a contracti
23、ng-expanding supersonic type or a contracting sonic type. The pressurized gas is expanded in order to achieve high velocity, with an accompanying decrease in pressure and temperature. The powder particles, initially carried by a separate gas stream, are injected into the nozzle either at the nozzle
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