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Jiaxing Chengda mould Co., Ltd

Enterprise Name: CHENGDA MODEL SET

Contact person: Business Department

Tel: 0573-8460-1118

       0573-8460-1119

Mobile phone: 198-5734-5006

                         178-5703-1367

Mailbox: jschengda@163.com

Fax: 0573-8418-2057

Address: 39 Success Road, Jiashan Economic Development Zone, Zhejiang Province

Website: www.chengda-mould.com

Websit   :   en.chengda-mould.com 


Hexagonal die

Hexagonal die

  • Category:Screw die
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  • Release time:2022-07-21 16:55:57
  • Product description

Material selection requirements of die manufacturers


Fatigue fracture property


In the process of die working, fatigue fracture is often caused by the long-term effect of cyclic stress. Its forms include low energy multiple impact fatigue fracture, tensile fatigue fracture, contact fatigue fracture and bending fatigue fracture.


The fatigue fracture performance of the die mainly depends on its strength, toughness, hardness, and the content of inclusions in the material.


High temperature performance


When the working temperature of the die is higher, the hardness and strength will decrease, leading to early wear or plastic deformation of the die and failure. Therefore, the die material should have a high tempering stability to ensure that the die has a high hardness and strength at the working temperature.


Cold and hot fatigue resistance


Some moulds are heated and cooled repeatedly during the working process, which makes the surface of the mould cavity subject to tensile and pressure variable stress, causing surface cracking and peeling, increasing friction, hindering plastic deformation, reducing dimensional accuracy, and thus leading to mould failure. Cold and hot fatigue is one of the main forms of failure of hot working dies, which should have high cold and hot fatigue resistance.


Corrosion resistance


When some molds, such as plastic molds, are working, due to the presence of elements such as chlorine and fluorine in the plastic, they decompose and release strong corrosive gases such as HCI and HF after being heated, which erode the surface of the mold cavity, increase its surface roughness, and aggravate wear failure.

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