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Nov 20.2023

Manufacturing of Machine Tool castings

Material selection

More than 80% of machine tool castings on the market are made of gray cast iron. The many characteristics and advantages of gray cast iron determine that it is one of the most suitable materials for making machine tool castings.

Advantages of grey iron:

Ø Gray cast iron has better casting performance and cutting performance

Compared with cast steel, the melting temperature of gray cast iron is lower, and the smelting equipment and smelting process are relatively simple.

Ø The fluidity of the gray cast iron melt is good, which makes the castings have good formability and are not easy to crack.

Ø The graphite in gray cast iron is in the form of flakes, and this graphite structure makes gray cast iron insensitive to cuts.

Ø Gray cast iron has good wear resistance

The graphite contained in gray cast iron is a good lubricant. The cavities left after the flake-like graphite falls off from the matrix are convenient for storing lubricating oil. This feature makes gray cast iron a good wear-resistant material .

Ø Gray cast iron has good shock absorption properties

The flake graphite in gray cast iron is equivalent to a cavity, which plays a certain role in splitting the matrix. It can accelerate the attenuation of vibration energy when it encounters vibration, so it has good shock absorption performance.

Casting Processes:

Lost Foam:


Ø Lost foam does not require the production of permanent molds or special sand boxes, and is suitable for small batch and multi-variety orders.

Ø Simplify the molding process, no box closing or mold removal is required, thus avoiding casting defects caused by box closing and mold removal.

Ø The shape of parts produced by lost foam casting is not limited by traditional casting processes, reducing the workload of mechanical designers and enabling them to design the required casting shape based on the performance of the part. The pouring riser of appropriate shape can be set at the ideal position without considering the influence of factors such as parting and mold taking, thus reducing the internal defects of the produced castings.

Ø During the pouring process, the white mold will absorb heat, causing the temperature difference of the molten iron entering the mold to be too large. The low-temperature molten iron at the front end will cause insufficient gasification of the white mold, resulting in carbon deposition.

Ø When using lost foam casting, if the pouring temperature is too low, the white mold will be insufficiently vaporized. The liquefied white mold will contaminate the dry sand, reduce its air permeability, and increase the probability of pores.

Permanent MoldWooden Molds/Metal Molds

Ø Can be reused, low cost, suitable for large castings and small batch production.

Ø The mold is made with high precision and the castings produced are of high precision.

Ø Mold production takes a long time and the initial investment is high.

Methods and importance of heat treatment of machine tool castings:

 Ø Heat the machine tool casting to the appropriate temperature, heat it to the appropriate temperature, adopt different holding times according to the material and workpiece size, and then slowly cool it.

 Ø Making the internal structure of the metal reach or approach an equilibrium state, obtaining good process performance and usability, and eliminating internal stress.

Machining of machine tool castings

Ø The machining of machine tool parts is generally divided into rough machining-secondary heat treatment or aging treatment-finishing-rail surface grinding.

Ø Machining equipment used:

Vertical machining centers:

Large gantry machining centers

Large vertical lathe

Large gantry grinder

Common types of machine tool castings

Base of Vertical Machining Centers:

Gantry machining center castings:

Lathe inclined bed:


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