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7075 Aluminum T7351 USI Test 3.75000 (+-.115)
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7075 Aluminum T7351 USI Test 3.75000 (+-.115)
Numéro de pièce:
ALFLR01039
Material:
Aluminum
Alloy:
7075
Shape:
Plate
Temper:
T7351
Testing:
USI Test
Weight:
54.54 lb/sq ft
Thickness:
3.75" (+-.115)
Specification/Revision:
ASTM B 209/B 209M|SAE AMS-QQ-A-250/12|SAE AMS 4078|SAE AMS-STD-2154|ASTM B 594 CLASS A|BSS 7055|A|MMS 159|CMMP025|2012|DPS 4.713 CL A|DPS 4.713 CL A
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Propriétés du produit
Chimiques
This table contains the chemical composition limits of wrought aluminum alloys in percent by weight maximum unless shown as a range or minimum. Except for “aluminum” and “others, ” analysis normally is made for elements for which specific limits are shown. For purposes of determining conformance to these limits, an observed value or a calculated value obtained from analysis is rounded off to the nearest unit in the last right-hand place of figures used in expressing the specified limit, in accordance with ASTM Recommended Practice E29.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
(1) Includes listed elements for which no specific limit is shown.
(2) A .0008 weight percent maximum beryllium is applicable to any alloy to be used as welding electrode or welding rod.
(3) The sum of those “others” metallic elements 0.010 percent or more each, expressed to the second decimal before determining the sum.
(4) The aluminum content for unalloyed aluminum not made by a refining process is the difference between 100.00 percent and the sum of all other metallic elements present in amounts of 0.010 percent or more each, expressed to the second decimal before determining the sum.
(5) Beryllium 0.0008 maximum for welding electrode and welding rod only.
(6) Also contains 0.20 to 0.6 percent each of lead and bismuth.
(9) Boron 0.06 percent maximum.
(10) Also contains 0.40 to 0.7 percent each of lead and bismuth.
(12) Also contains 0.08 to 0.15 percent of zirconium.
Mécanique
The following typical properties are not guaranteed since in most cases they are averages for various sizes, product forms, and methods of manufacture and may not be exactly representative of any particular product or size. These data are intended only as a basis for comparing alloys and tempers and should not be specified as engineering requirements or used for design purposes. The indicated typical mechanical properties for all except 0 temper material are higher than the specified minimum properties. For 0 temper products, typical ultimate and yield values are slightly lower than specified (maximum) values.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
(1) Based on 500,000,000 cycles of completely reversed stress using the R.R. Moore type of machine and specimen.
(2) Average of tension and compression moduli. Compression modulus is about 2% greater than tension modulus.
Physique
The following typical properties are not guaranteed since in most cases they are averages for various sizes, product forms, and methods of manufacture and may not be exactly representative of any particular product or size. These data are intended only as a basis for comparing alloys and tempers and should not be specified as engineering requirements or used for design purposes.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
Fabrication
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
- Ratings A through E are relative ratings in decreasing order of merit, based on exposures to sodium chloride solution by intermittent spraying or immersion. Alloys with A and B ratings can be used in industrial and seacoast atmospheres without protection. Alloys with C, D, and E ratings generally should be protected at least on faying surfaces
- Stress corrosion cracking ratings are based on service experience and on laboratory tests of specimens exposed to the 3.5% sodium chloride alternate immersion test and are expressed as follows:
- A = No known instance of failure in service or in laboratory tests.
- B = No known instance of failure in service; limited failures in laboratory tests of short transverse specimens.
- C = Service failures with sustained tension stress acting in short transverse direction relative to grain structure; limited failures in laboratory tests of long transverse specimens.
- D = limited service failures with sustained longitudinal or long transverse stress.
- This rating may be different for material held at elevated temperature for long periods
- Ratings A through D for Workability (cold), and A through E for Machinability, are relative ratings in decreasing order of merit.
- Ratings A through D for Weldability and Brazeability are relative ratings defined as follows:
- A = Generally weldable by all commercial procedures and methods.
- B = Weldable with special techniques or for specific applications which justify preliminary trials or testing to develop welding procedure and weld performance.
- C = Limited Weldability because of crack sensitivity or loss in resistance to corrosion and mechanical properties.
- D = No commonly used welding methods have been developed.
Services à valeur ajoutée
Les services á valeur ajoutée pour ce produit sont comme suit.
Blanchard Grinding:
The process of grinding the large surfaces of plate to meet customer specifications.
Circle Saw Cutting:
The process of using a circle saw to cut rings or circles out of plate to meet customer specifications.
Bending:
The process of bending material of various sizes and lengths to meet customers specifications.
Rolling:
The process of rolling metal to reduce and unify the thickness of material into a variety of shapes to meet customer specifications, including rings or ring segments.
Contour Saw Shapes:
The process of contour sawing shapes out of plate to meet customer specifications.
CNC Machining - Router:
The process of using a computer-controlled cutting device to cut material of various sizes and lengths to meet to customers specifications.
Deburring:
The process of removing burrs and sharp corners from cut piece pieces, often done by hand or a vibratory tumbler, depending on the size of the product and the number of pieces.
Double Disc Grinding:
The process of simultaneously grinding two sides of plate to customer specification.
Heat Treat/Annealing:
The process of applying heat to metal in order to alter mechanical or physical properties to meet customer specifications.
Laser Cutting:
The process of using a laser to cut plate and sheet to customer specifications.
Miter Cutting:
The process of cutting angles in plate to meet customer specifications.
Polishing:
The process of smoothing or refining the surface of a material.
Precision Saw:
The process of cutting material to meet tight tolerances of customer specifications.
Testing:
Additional material tests can be conducted to help customers meet their requirements.
Waterjet Cutting:
The process of using an extremely high-pressure water jet to cut or shear the material to customer specifications.
Welding:
The process of joining materials by using high heat to melt the parts together and allowing them to cool, causing fusion.
If you would like to request for any of the value added services, please utilize this special request form to initiate the discussion with our sales team.
Réussite
Your request has been sent. A representative from Copper & Brass Sales will reach out to you soon.
A confirmation email has also been sent to: {0}
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Propriétés du produit
Chimiques
This table contains the chemical composition limits of wrought aluminum alloys in percent by weight maximum unless shown as a range or minimum. Except for “aluminum” and “others, ” analysis normally is made for elements for which specific limits are shown. For purposes of determining conformance to these limits, an observed value or a calculated value obtained from analysis is rounded off to the nearest unit in the last right-hand place of figures used in expressing the specified limit, in accordance with ASTM Recommended Practice E29.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
(1) Includes listed elements for which no specific limit is shown.
(2) A .0008 weight percent maximum beryllium is applicable to any alloy to be used as welding electrode or welding rod.
(3) The sum of those “others” metallic elements 0.010 percent or more each, expressed to the second decimal before determining the sum.
(4) The aluminum content for unalloyed aluminum not made by a refining process is the difference between 100.00 percent and the sum of all other metallic elements present in amounts of 0.010 percent or more each, expressed to the second decimal before determining the sum.
(5) Beryllium 0.0008 maximum for welding electrode and welding rod only.
(6) Also contains 0.20 to 0.6 percent each of lead and bismuth.
(9) Boron 0.06 percent maximum.
(10) Also contains 0.40 to 0.7 percent each of lead and bismuth.
(12) Also contains 0.08 to 0.15 percent of zirconium.
Mécanique
The following typical properties are not guaranteed since in most cases they are averages for various sizes, product forms, and methods of manufacture and may not be exactly representative of any particular product or size. These data are intended only as a basis for comparing alloys and tempers and should not be specified as engineering requirements or used for design purposes. The indicated typical mechanical properties for all except 0 temper material are higher than the specified minimum properties. For 0 temper products, typical ultimate and yield values are slightly lower than specified (maximum) values.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
(1) Based on 500,000,000 cycles of completely reversed stress using the R.R. Moore type of machine and specimen.
(2) Average of tension and compression moduli. Compression modulus is about 2% greater than tension modulus.
Physique
The following typical properties are not guaranteed since in most cases they are averages for various sizes, product forms, and methods of manufacture and may not be exactly representative of any particular product or size. These data are intended only as a basis for comparing alloys and tempers and should not be specified as engineering requirements or used for design purposes.
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
Fabrication
Note : Utilisez les flèches ci-dessus pour défiler à gauche ou à droite et afficher des champs supplémentaires.
- Ratings A through E are relative ratings in decreasing order of merit, based on exposures to sodium chloride solution by intermittent spraying or immersion. Alloys with A and B ratings can be used in industrial and seacoast atmospheres without protection. Alloys with C, D, and E ratings generally should be protected at least on faying surfaces
- Stress corrosion cracking ratings are based on service experience and on laboratory tests of specimens exposed to the 3.5% sodium chloride alternate immersion test and are expressed as follows:
- A = No known instance of failure in service or in laboratory tests.
- B = No known instance of failure in service; limited failures in laboratory tests of short transverse specimens.
- C = Service failures with sustained tension stress acting in short transverse direction relative to grain structure; limited failures in laboratory tests of long transverse specimens.
- D = limited service failures with sustained longitudinal or long transverse stress.
- This rating may be different for material held at elevated temperature for long periods
- Ratings A through D for Workability (cold), and A through E for Machinability, are relative ratings in decreasing order of merit.
- Ratings A through D for Weldability and Brazeability are relative ratings defined as follows:
- A = Generally weldable by all commercial procedures and methods.
- B = Weldable with special techniques or for specific applications which justify preliminary trials or testing to develop welding procedure and weld performance.
- C = Limited Weldability because of crack sensitivity or loss in resistance to corrosion and mechanical properties.
- D = No commonly used welding methods have been developed.
Services à valeur ajoutée
Les services á valeur ajoutée pour ce produit sont comme suit.
Blanchard Grinding:
The process of grinding the large surfaces of plate to meet customer specifications.
Circle Saw Cutting:
The process of using a circle saw to cut rings or circles out of plate to meet customer specifications.
Bending:
The process of bending material of various sizes and lengths to meet customers specifications.
Rolling:
The process of rolling metal to reduce and unify the thickness of material into a variety of shapes to meet customer specifications, including rings or ring segments.
Contour Saw Shapes:
The process of contour sawing shapes out of plate to meet customer specifications.
CNC Machining - Router:
The process of using a computer-controlled cutting device to cut material of various sizes and lengths to meet to customers specifications.
Deburring:
The process of removing burrs and sharp corners from cut piece pieces, often done by hand or a vibratory tumbler, depending on the size of the product and the number of pieces.
Double Disc Grinding:
The process of simultaneously grinding two sides of plate to customer specification.
Heat Treat/Annealing:
The process of applying heat to metal in order to alter mechanical or physical properties to meet customer specifications.
Laser Cutting:
The process of using a laser to cut plate and sheet to customer specifications.
Miter Cutting:
The process of cutting angles in plate to meet customer specifications.
Polishing:
The process of smoothing or refining the surface of a material.
Precision Saw:
The process of cutting material to meet tight tolerances of customer specifications.
Testing:
Additional material tests can be conducted to help customers meet their requirements.
Waterjet Cutting:
The process of using an extremely high-pressure water jet to cut or shear the material to customer specifications.
Welding:
The process of joining materials by using high heat to melt the parts together and allowing them to cool, causing fusion.
If you would like to request for any of the value added services, please utilize this special request form to initiate the discussion with our sales team.
Réussite
Your request has been sent. A representative from Copper & Brass Sales will reach out to you soon.
A confirmation email has also been sent to: {0}
Demandez une soumission pour des services à valeur ajoutée
Aluminum Valeur des métaux
Vous trouverez ci-dessous le prix d'aujourd'hui pour Aluminum. Vous pouvez voir comment ce prix a changé par rapport au mois dernier, à l'année passée et aux deux dernières années. Pour voir des graphiques semblables pour d'autres matériaux, visitez notre page des prix des métaux en temps réel.
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