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  2. Shear (sheet metal) - Wikipedia

    en.wikipedia.org/wiki/Shear_(sheet_metal)

    A 5-degree shear angle decreases the force by about 20% [citation needed]. The amount of energy used is still the same. The moving blade may also be inclined 0.5 to 2.5°, called the rake angle, to keep the material from becoming wedged between the blades. However, raking the blade compromises the squareness of the edge. [4] The machine ...

  3. Industrial shredder - Wikipedia

    en.wikipedia.org/wiki/Industrial_shredder

    Industrial shredder. This shredder is set up in line with a granulator, in order to reduce the size of the processed material more. An industrial shredder is a machine used to break down materials for various applications such as recycling, volume reduction, and product destruction. Industrial shredders come in many different sizes and design ...

  4. Shearing (manufacturing) - Wikipedia

    en.wikipedia.org/wiki/Shearing_(manufacturing)

    Shearing, also known as die cutting, [1] is a process that cuts stock without the formation of chips or the use of burning or melting. Strictly speaking, if the cutting blades are straight the process is called shearing; if the cutting blades are curved then they are shearing-type operations. [2]

  5. Snips - Wikipedia

    en.wikipedia.org/wiki/Snips

    Snips, also known as shears, are hand tools used to cut sheet metal and other tough webs. It is a cutting tool. It is a cutting tool. Workers use various types of snips, with the cutting edges being straight or curved to various degrees.

  6. Roll slitting - Wikipedia

    en.wikipedia.org/wiki/Roll_slitting

    Although the razor blades are of low cost, they need to be frequently changed to ensure a good quality slit edge. Rotary shear slitting. Male and female circular knives, or as they are also called, top and bottom shear-cut knives [2], engage to give a scissor cutting effect. This system is used widely on paper, films and foils.

  7. Tool steel - Wikipedia

    en.wikipedia.org/wiki/Tool_steel

    D2 is very wear resistant but not as tough as lower alloyed steels. The mechanical properties of D2 are very sensitive to heat treatment. It is widely used for the production of shear blades, planer blades and industrial cutting tools; sometimes used for knife blades.