Showing posts with label 1032. Show all posts
Showing posts with label 1032. Show all posts

Zinc Plated Steel Machine Screw, Pan Head, Phillips Drive, #10-32, 5/16" Length (Pack of 100)

Zinc Plated Steel Machine Screw, Pan Head, Phillips Drive, #10-32, 5/16" Length (Pack of 100) Reviews



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Zinc Plated Steel Machine Screw, Pan Head, Phillips Drive, #10-32, 5/16" Length (Pack of 100) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Zinc Plated Steel fasteners are suitable where strength and corrosion resistance are primary considerations
  • Pan head allows for higher tightening torques
  • Phillips drive is designed to cam out under too much torque
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Steels are designated by a 4 number SAE Steel grade.  The first two digits indicate the primary materials used to form the steel.  The last 2 digits identify the percentage of carbon for the alloy (in hundredths).  The steel used in these fasteners has a tensile strength ranging from 100,000 to 150,000 psi (pounds per square inch).  Zinc Plating helps to prevent corrosion.

Pan head fasteners have a low, large cylindrical head with a high rounded top edge for higher tightening torques - these fasteners are often recommended to replace older head styles such as round, binding, or truss-head where possible. The Phillips drive style was originally designed so that the driver would slip out under extreme torque, preventing over-tightening and damage to the fastener or the material.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Oct 03, 2011 09:37:04

Stainless Steel 316 Machine Screw, Round Head, Slotted Drive, #10-32, 3/4" Length (Pack of 10)

Stainless Steel 316 Machine Screw, Round Head, Slotted Drive, #10-32, 3/4" Length (Pack of 10) Reviews



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Stainless Steel 316 Machine Screw, Round Head, Slotted Drive, #10-32, 3/4" Length (Pack of 10) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Stainless Steel 316 is suitable for use where Stainless Steel 304 does not provide enough corrosion resistance
  • Round head style for a finished appearance
  • Driven by a flat-bladed driver
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness. These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements. The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels. Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).

Stainless Steel 316 has a higher nickel and molybdenum content than most Austenitic stainless steels which means that this material offers more corrosion resistance without giving up strength or hardness. Tensile strength is 35,000 psi (pounds per square inch).

Round head fasteners have a dome-shaped head. An older style of head, it is typically used when replacing existing round-head fasteners where an exact match is desired. Common applications for slotted screws include woodworking, although the drive style is not designed to be used with power drivers.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Sep 04, 2011 21:36:04

Zinc Plated Steel Machine Screw, Flat Head, Phillips Drive, #10-32, 1/4" Length (Pack of 100)

Zinc Plated Steel Machine Screw, Flat Head, Phillips Drive, #10-32, 1/4" Length (Pack of 100) Reviews



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Zinc Plated Steel Machine Screw, Flat Head, Phillips Drive, #10-32, 1/4" Length (Pack of 100) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Zinc Plated Steel fasteners are suitable where strength and corrosion resistance are primary considerations
  • Flat head style allows fastener to sit flush to the surface
  • Phillips drive is designed to cam out under too much torque
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Steels are designated by a 4 number SAE Steel grade.  The first two digits indicate the primary materials used to form the steel.  The last 2 digits identify the percentage of carbon for the alloy (in hundredths).  The steel used in these fasteners has a tensile strength ranging from 100,000 to 150,000 psi (pounds per square inch).  Zinc Plating helps to prevent corrosion.

Flat head fasteners are designed to fit flush to the surface when used with countersunk holes. Length is measured from the top of the head. The Phillips drive style was originally designed so that the driver would slip out under extreme torque, preventing over-tightening and damage to the fastener or the material.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jul 25, 2011 06:50:23

Stainless Steel Machine Screw, Fillister Head, Slotted Drive, #10-32, 1/2" Length (Pack of 100)

Stainless Steel Machine Screw, Fillister Head, Slotted Drive, #10-32, 1/2" Length (Pack of 100) Reviews



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Stainless Steel Machine Screw, Fillister Head, Slotted Drive, #10-32, 1/2" Length (Pack of 100) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Stainless Steel is suitable where formability and cost are important considerations
  • Fillister head for high torque and good hold-down strength
  • Driven by a flat-bladed driver
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness.  These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements.  The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels.   Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).  Another common naming convention for Austenitic Stainless Steels are 18/8, 18/10, 18/0, etc. where the 18 refers to the % of Chromium and 8 to the % of Nickel contained in the material.    

Fillister head fasteners are considered an improvement over round head equivalents - the smaller head creates more downward pressure for a given torque level and the thicker head plus deeper drive slot allows higher torque levels to be generated. Common applications for slotted screws include woodworking, although the drive style is not designed to be used with power drivers.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jul 15, 2011 14:27:04

Stainless Steel 18-8 Machine Screw, Oval Head, Phillips Drive, #10-32, 2" Length (Pack of 100)

Stainless Steel 18-8 Machine Screw, Oval Head, Phillips Drive, #10-32, 2" Length (Pack of 100) Reviews



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Stainless Steel 18-8 Machine Screw, Oval Head, Phillips Drive, #10-32, 2" Length (Pack of 100) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • General Purpose Stainless Steel suitable where formability and cost are important considerations
  • Oval head style for recessed finish with a slightly rounded surface
  • Phillips drive is designed to cam out under too much torque
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness. These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements. The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels. Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316). Another common naming convention for Austenitic Stainless Steels are 18/8, 18/10, 18/0, etc. where the 18 refers to the % of Chromium and 8 to % of Nickel contained in the material.

Stainless Steel 18-8 denotes 18% chromium and 8% nickel. Stainless Steel 18-8 can be formed and welded. Stainless Steel 18-8 is typically non-magnetic, though the material can become slightly magnetic when cold worked (cold working refers to altering the physical properties of the material without the use of temperature).

Similar to a flat-head style, the oval head style has a slightly convex top surface; it is typically used for appearance. The Phillips drive style was originally designed so that the driver would slip out under extreme torque, preventing over-tightening and damage to the fastener or the material.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jul 06, 2011 14:16:04

Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/4" Length (Pack of 25)

Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/4" Length (Pack of 25) Reviews



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Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/4" Length (Pack of 25) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Stainless Steel is suitable where formability and cost are important considerations
  • Socket cap head fasteners are very common in industrial applications
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness.  These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements.  The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels.   Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).  Another common naming convention for Austenitic Stainless Steels are 18/8, 18/10, 18/0, etc. where the 18 refers to the % of Chromium and 8 to the % of Nickel contained in the material.    

With a high cylindrical head, socket cap head fasteners have a recessed driving area and offer high hold power at high torque levels. Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jun 25, 2011 11:06:35

Stainless Steel 316 Machine Screw, Flat Head, Phillips Drive, #10-32, 3/4" Length (Pack of 25)

Stainless Steel 316 Machine Screw, Flat Head, Phillips Drive, #10-32, 3/4" Length (Pack of 25) Reviews



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Stainless Steel 316 Machine Screw, Flat Head, Phillips Drive, #10-32, 3/4" Length (Pack of 25) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Stainless Steel 316 is suitable for use where Stainless Steel 304 does not provide enough corrosion resistance
  • Flat head style allows fastener to sit flush to the surface
  • Phillips drive is designed to cam out under too much torque
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness. These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements. The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels. Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).

Stainless Steel 316 has a higher nickel and molybdenum content than most Austenitic stainless steels which means that this material offers more corrosion resistance without giving up strength or hardness. Tensile strength is 35,000 psi (pounds per square inch).

Flat head fasteners are designed to fit flush to the surface when used with countersunk holes. Length is measured from the top of the head. The Phillips drive style was originally designed so that the driver would slip out under extreme torque, preventing over-tightening and damage to the fastener or the material.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jun 24, 2011 15:01:04

Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, #10-32, 3/4" Length (Pack of 100)

Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, #10-32, 3/4" Length (Pack of 100) Reviews



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Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, #10-32, 3/4" Length (Pack of 100) Feature

  • Socket Cap Screws are durable and reliable
  • Alloy Steel is one of the strongest materials used in fasteners, making this an ideal material to use when the primary concern is the application pulling apart
  • Flat head style allows fastener to sit flush to the surface
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Socket Cap Screws are reliable and durable and are used in many applications. They are available in a variety of head styles and materials.

Alloy Steel is steel that has been alloyed with other materials to improve overall physical properties. Steels are designated by a 4 number SAE Steel grade. The first two digits indicate the primary materials used to form the steel. The last 2 digits identify the percentage of carbon for the alloy (in hundredths). Tensile strength ranges for the alloys typically used in these fasteners range from 170,000 to 180,000 psi (pounds per square inch), making these amongst the strongest of materials.

Flat head fasteners are designed to fit flush to the surface when used with countersunk holes. Length is measured from the top of the head. Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Jun 18, 2011 09:39:04

Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, Nylon Patch, #10-32, 1-1/2" Length (Pack of 5)

Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, Nylon Patch, #10-32, 1-1/2" Length (Pack of 5) Reviews



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Alloy Steel Socket Cap Screw, Flat Head, Hex Socket Drive, Nylon Patch, #10-32, 1-1/2" Length (Pack of 5) Feature

  • Socket Cap Screws are durable and reliable
  • Alloy Steel is one of the strongest materials used in fasteners, making this an ideal material to use when the primary concern is the application pulling apart
  • Flat head style allows fastener to sit flush to the surface
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Socket Cap Screws are reliable and durable and are used in many applications. They are available in a variety of head styles and materials.

Alloy Steel is steel that has been alloyed with other materials to improve overall physical properties. Steels are designated by a 4 number SAE Steel grade. The first two digits indicate the primary materials used to form the steel. The last 2 digits identify the percentage of carbon for the alloy (in hundredths). Tensile strength ranges for the alloys typically used in these fasteners range from 170,000 to 180,000 psi (pounds per square inch), making these amongst the strongest of materials.

Flat head fasteners are designed to fit flush to the surface when used with countersunk holes. Length is measured from the top of the head. Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths. A spot of nylon applied to the threads increases gripping power and keeps the screw in place.


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May 20, 2011 06:13:03

Zinc Plated Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1/4" Length (Pack of 50)

Zinc Plated Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1/4" Length (Pack of 50) Reviews



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Zinc Plated Alloy Steel Set Screw, Hex Socket Drive, Cup Point, #10-32, 1/4" Length (Pack of 50) Feature

  • Set Screws keep parts from turning relative to a shaft
  • Zinc Plated Steel fasteners are suitable where strength and corrosion resistance are primary considerations
  • Do not have an external head
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Set Screws are often used for holding a pulley, gear, or other parts from turning relative to a shaft.

Alloy Steel is steel that has been alloyed with other materials to improve overall physical properties. Steels are designated by a 4 number SAE Steel grade. The first two digits indicate the primary materials used to form the steel. The last 2 digits identify the percentage of carbon for the alloy (in hundredths). Tensile strength ranges for the alloys typically used in these fasteners range from 170,000 to 180,000 psi (pounds per square inch), making these amongst the strongest of materials. Zinc Plating helps to prevent corrosion.

Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits. Cup Point is the most common point type, with good holding capability.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Apr 10, 2011 12:07:04

Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/2" Length (Pack of 50)

Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/2" Length (Pack of 50) Reviews



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Stainless Steel Machine Screw, Hex Socket Drive, MIL-SPEC, #10-32, 1-1/2" Length (Pack of 50) Feature

  • Machine Screws are often used with nuts or driven into tapped holes
  • Stainless Steel is suitable where formability and cost are important considerations
  • Socket cap head fasteners are very common in industrial applications
  • Drive system is a hexagon-shaped hole
  • Fine threads tap better into harder materials and thin walls, and are stronger in tension than coarse threads
Machine Screws, also referred to as Machine Bolts, are often used with nuts or driven into tapped holes. They come in a variety of head types and drive styles, but are generally available in smaller sizes.

Stainless steels are used for their corrosion resistance, high-temperature strength, scaling resistance, and low-temperature toughness.  These properties account for their extremely wide use in practically every industry. Austenitic Stainless Steels are alloys of iron and carbon that contain between 16% and 30% Chromium, a maximum of 0.15% carbon, along with Nickel (or Manganese), and other alloying elements.  The chromium, which helps develop a passive surface oxide film, provides corrosion resistance in stainless steels.   Austenitic Stainless Steels are designated by a 3 digit SAE Stainless Steel Grade beginning with the number 3 (e.g. 304, 316).  Another common naming convention for Austenitic Stainless Steels are 18/8, 18/10, 18/0, etc. where the 18 refers to the % of Chromium and 8 to the % of Nickel contained in the material.    

With a high cylindrical head, socket cap head fasteners have a recessed driving area and offer high hold power at high torque levels. Hex socket drive systems are driven by hex wrenches or power tools with hexagonal bits.

A threaded fastener's size name includes information about the major external diameter, followed by the threads per inch, which indicates if it is coarse or fine. Fine threads are preferable when working with harder materials or when threading into a thin material. They are also stronger in tension than coarse threads, and generally provide higher shear strengths.


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Mar 22, 2011 14:47:04