Ejectors in focus: Choosing the right material and surface finish

Ejectors are among the components in an injection mould that are subjected to the greatest load and must meet a variety of requirements. Your choice affects service life, process stability, maintenance requirements and component quality, and should therefore not be based solely on dimensions and cost-related criteria. A variety of materials and surface finishes are used – ranging from cold-work and hot-work steel to DLC coatings.

DLC coated for minimal friction and wear

The mechanical stress placed on an ejector results in high friction between the ejector and the guiding hole and can cause wear or jamming of the ejector. DLC (diamond-like carbon) coatings reduce the coefficient of friction and increase surface hardness. This significantly improves wear resistance, process reliability and service life – particularly in the case of a high number of strokes, increased wear or dry-running.

DLC coated ejectors offer up to 10 times longer service life.

  • High wear resistance due to low coefficient of friction
  • Enhanced corrosion resistance due to high chemical resistance
  • Excellent dry-running properties
  • No abrasion on light-coloured or transparent plastic parts

Typical applications:

  • Cleanroom production
  • Visible part production
  • Processing of abrasive plastics
  • Moulds with a high number of strokes
E 1700 DLC DLC涂层型HSS淬硬缩径顶针
E 1700 DLC
DLC涂层型HSS淬硬缩径顶针
E 1710 DLC 淬硬型DLC涂层顶针
E 1710 DLC
淬硬型DLC涂层顶针
E 1728 DLC 淬硬扁顶针带4个圆角半径,带DLC涂层
E 1728 DLC
淬硬扁顶针带4个圆角半径,带DLC涂层
E 17264 DLC 加长型扁顶针,4个圆角半径,淬硬,DLC涂层
E 17264 DLC
加长型扁顶针,4个圆角半径,淬硬,DLC涂层
E 1770 DLC 淬硬型DLC涂层排气顶针
E 1770 DLC
淬硬型DLC涂层排气顶针

Nitrided and oxidation-coated for wear protection and corrosion resistance

Nitriding gives the ejector pins, e.g. E 1741, a very high surface hardness, which prevents fretting in the mould and significantly increases wear resistance. The combination of a hard surface and a tough core ensures a long service life – even at mould temperatures of up to 500 °C. It also makes the surface more resistant to moisture and corrosion.

Nitrided-oxidation coated ejectors offer additional benefits: The oxide layer reduces static and sliding friction, prevents molten metal from sticking and minimises abrasion. This improves wear and corrosion protection as well as sliding properties, and increases mould service life and emergency operating properties. As the oxide layer wears away slightly over time, these ejectors, e.g. E 1740, are primarily used in die casting.

Typical applications:

  • High mould temperatures
  • Standard moulds in everyday use
  • Applications with increased abrasive load
  • Die casting moulds
E 1730 氧化涂层型氮化缩径顶针
E 1730
氧化涂层型氮化缩径顶针
E 1740 表面氮化-氧化型顶针
E 1740
表面氮化-氧化型顶针
E 1755 氮化扁顶针表面氧化
E 1755
氮化扁顶针表面氧化
E 1741 氮化顶针
E 1741
氮化顶针
E 1750 氮化丝筒
E 1750
氮化丝筒
E 1745 氮化光亮型圆锥头顶针
E 1745
氮化光亮型圆锥头顶针

Stainless steel for corrosive environments and cleanroom applications

Our stainless steel ejector pin E 17109 is manufactured from corrosion resistant 1.4112 steel and is designed for environments where conventional tool steels are subjected to severe corrosion. It offers consistently high corrosion resistance and reduces rust formation even when the equipment is not in use. This makes the ejectors particularly suitable for moulds used in cleanrooms. They are also the ideal choice for the processing of chemically aggressive and gas-forming plastics.

Typical applications:

  • Cleanroom production
  • Medical injection moulded parts
  • Processing chemically aggressive and gas-forming plastics

HSS material for high thermal and mechanical loads

HSS (high speed steel) ejectors are designed to withstand high levels of wear and high temperatures. They offer high hot hardness and compressive strength, and retain their mechanical characteristics even under prolonged thermal and mechanical stress. This reduces plastic deformation and significantly extends service life when working with abrasive materials. Particularly when used in small dimensions, 1.3343 offers very high elasticity, which prevents ejector breakage.

Typical applications:

  • Glass fibre reinforced plastics
  • Processing plastics containing abrasive fillers
  • High mould temperatures
  • Ejectors and cores subjected to high mechanical loads
E 17003 HSS淬硬缩径顶针
E 17003
HSS淬硬缩径顶针
E 17103 HSS淬硬顶针
E 17103
HSS淬硬顶针

Anti-rotation design for precise contour guidance within the mould

Our anti-rotation ejectors and core pins ensure consistently precise positioning within the mould thanks to their anti-rotation mechanism. This reduces burr forming and ensures consistently high, reproducible component quality. All core pins feature a g6 tolerance ground along the entire length of the shaft, enabling particularly precise alignment. The standard anti-rotation feature also reduces design and manufacturing costs, as only the contour needs to be machined.

E 1711 单侧防转动型淬硬顶针
E 1711
单侧防转动型淬硬顶针
E 1790 热作钢型镶针
E 1790
热作钢型镶针
E 1786 剖边顶针
E 1786
剖边顶针
E 1702 防转型淬硬缩径顶针
E 1702
防转型淬硬缩径顶针
E 1712 防转型淬硬顶针
E 1712
防转型淬硬顶针

Range of ejector solutions

Get an overview of our wide and well-structured range.

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