Lathe Machine Operations [Complete Guide] with Picture & PDF (2024)

In this article, you will learn about what are the different types of lathe machine operations performed on the lathe machine.

Lathe Machine Operations

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A lathe is a machine that rotates the workpiece about an axis to perform different operations such as turning, facing, taper turning, knurling, grooving, parting off, thread cutting, reaming, etc.

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Let’s discuss all lathe machine operations one by one as follows.

To perform different lathe machine operations on a lathe, the workpiece may be supported and driven by any one of the following methods:

  1. Workpiece held between centres and tool driven by carriers and catch plates.
  2. Workpiece held on a mandrel which is supported between centers and driven by carriers and catch plates.
  3. Held and driven by chuck with the other end supported on the tailstock center.
  4. Held and driven by a chuck a faceplate or an angle plate.
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The above methods of holding the work may be classified under two headings:

  1. Workpiece held between centres.
  2. Workpiece held by a chuck or any other fixture.

Types of Lathe Machine Operations

The lathe machine operations are classified into three main categories and are as follows.

Following are the Lathe machine operations done either by holding the workpiece between centers or by a chuck:

  1. Turning Operation
    1. Plain or Straight Turning
    2. Rough Turning
    3. Shoulder Turning
    4. Taper Turning
    5. Eccentric Turning
  2. Facing Operation
  3. Chamfering Operation
  4. Knurling Operation
  5. Thread cutting Operation
  6. Filing Operation
  7. Polishing Operation
  8. Grooving Operation
  9. Spinning Operation
  10. Spring Winding
  11. Forming

Lathe machine operations which are performed by holding the work by a chuck or a faceplate or an angle plate are:

  1. Drilling
  2. Reaming
  3. Boring
  4. Counterboring
  5. Taper boring
  6. Tapping
  7. Undercutting
  8. Internal thread cutting
  9. Parting-off

The operation which is performed by using special attachments are:

  1. Grinding
  2. Milling

Read Also: Types of Different Lathe Machines

Turning Operation

It is the most common type of operation in all lathe machine operations. Turning is the operation of removing the excess material from the workpiece to produce a cylindrical surface to the desired length.

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The job is held between the center or a chuck and rotating at a required speed. The tool moves in a longitudinal direction to give the feed toward the headstock with the proper depth of cut. The surface finish is very good.

#1 Straight Turning

The workpiece is held on the chuck and it is made to rotate about the axis, and the tool is fed parallel to the lathe axis. The straight turning produces a cylindrical surface by removing excess metal from the workpiece.

#2 Rough Turning

It is the process of removing excess material from the workpiece in minimum time by applying high-rate feed and heavy depth of cut. in rough turning the average depth of cut 2mm to 4mm can be given and feed is from 0.3 to 1.5mm per revolution of the work.

#3 Shoulder Turning

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When a workpiece has different diameters and is to be turned, the surface forming steps from one diameter to the other is called the shoulder, and machining this part of the workpiece is called shoulder turning.

#4 Eccentric Turning

When a cylindrical surface has two separate axis of rotation, with the first axis, is offset to the other axis then such a workpiece is machined by the operation called eccentric turning. Here three sets of centre holes are drilled.

By holding the workpiece at these three centers the machining operation for each of the surfacescan be completed.

#5 Taper Turning

  • A ”taper” is the uniform increase or decrease in the diameter of the workpiece and measured along with its length.
  • Taper turning means to produce a conical shape by a gradual reduction in diameter from a cylindrical workpiece.
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The amount of taper in the workpiece is usually specified based on the difference in diameter of the taper to its length. It is known as a cone and it is indicated by the letterK.

It has the formula K = D-d / 1 to produce the taper on the workpiece.

  • D = Larger diameter of taper.
  • d = Small diameter of taper.

In the case of a lathe, the taper on a given workpiece is obtained by tuning the job and feeding the tool at an angle to produce a gradual increase or decrease in the diameter of the workpiece.

  • The two important types of tapers are,
    • ”More taper” here, the angle is very small and varies from 1.4 to 1.5°.
    • ”Metric taper” is available in seven standard sizes with standard taper angles.
  • Methods of taper turning,
    • Form tool method
    • Combined feeds method
    • Compound rest method or swiveling compound rest method
    • Tailstock set over method
    • Taper turning attachment method
a) Form Tool Method

Here the taper length obtained is equal to the width of the form tool. To obtain the required size of the taper the form tool is fed slowly straight into the workpiece by operating the cross slide perpendicular to the lathe axis.

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This is the simplest method of taper turning. It is limited to obtain small taper length such as chamfering the side of the workpiece. The method is done at a faster rate.

b) Combined Feeds Method
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The combined feed is made with the movement of a tool in longitudinal and lateral directions simultaneously while moving the workpiece.

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The taper, which we are going to obtain, is equal to the resultant to the magnitude of the longitudinal and lateral feeds. Changing the feed rates in both directions can change the direction and the taper angle.

c) Compound Rest Swivel Method

Here the workpiece rotates and the cutting tool is fed at an angle by a swivelled compound rest. The base of the compound rest is graduated in degrees.

The taper angle is the angle at which the compound rests to be rotated and is calculated by using the formula tanα = D-d / 21, where, D= bigger diameter, d = smaller diameter, l = length of the workpiece.

Compound rest can be swiveled to the required angle α. Once the compound rest is set to a particular angle then the tool is moved by compound rest and wheel.

d) Taper Turning Attachment Method

This method is similar to the compound rest method. Here the job or workpiece rotates and the tool is fed at the taper angleα.

In this, arrangement, which has a guide block graduated in degrees, with the help of this the block can be required to taper angle to the lathe axis. The taper angle is calculated similarly to the compound rest method using the formula: tanα = D-d / 21.

e) Tailstock Set Over Method

Here the workpiece on the job is tilted at the required taper angle. The tool is fed parallel to the axis.

The tilting of the workpiece or the job to the required taper angle is achieved by the movement of the tailstock with the help of the tailstock set over the screw. This method is useful for small tapers.

Read Also:Cutting Speed, Feed, Depth of Cut abd Machining Time Explained

Facing Operation

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It is an operation of reducing the length of the workpiece by feeding the perpendicular to the lathe axis. This operation reduces a flat surface on the end of the workpiece. For this operation, a regular turning tool or facing tool may be used.

The cutting edge of the tool should be set to the same height as the center of the workpiece.

  • Facing consist of 2 operations
    • Roughing: Here the depth of cut is 1.3mm
    • Finishing: Here the depth of cut is 0.2-0.1mm.

Chamfering Operation

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It is the operation of getting a beveled surface at the edge of a cylindrical workpiece. This operation is done in the case of bolt ends and shaft ends.

Chamfering helps to avoid damage to the sharp edges and protects the operation from getting hurt during other operations. Chamfering on the bolt helps to screw the nut easily.

Knurling Operation

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It is an operation of obtaining a diamond shape on the workpiece for the gripping purpose. This is done to provide a better gripping surface when operated by hands. It is done using a knurling tool. The tool consists of a set of hardened steel rollers, and it is held rigidly on the toolpost.

Knurling is done at the lowest speed available on a lathe. It is done on the handles and also in the case of ends of gauges. The feed varies from 1 to 2 mm per revolution. Two or three cuts may be necessary to give the full impression.

Thread Cutting

It is an important operation in the lathe to obtain the continuous ”helical grooves” or ” threads‘.

When the threads or helical grooves are formed on the outer surface of the workpiece is called external thread cutting.

When the threads or helical grooves are formed on the inner surface of the workpiece is called internal thread cutting. The workpiece is rotating between the two centers i.e., the live center and the dead center of the lathe.

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Here the tool is moved longitudinally to obtain the required type of thread. When the tool is moved from the right to the left we get the left-hand thread. Similarly, when the tool is moved from the left to the right we get the right-hand thread.

Here the motion of the carriage is provided by the lead screw. A pair of change gears drives the lead screw and by rotating the handle the depth of cut can be controlled.

Filling Operation

It is the finishing operation performed after turning. This is done on a lathe to remove burrs, sharp corners, and feed marks on a workpiece and also to bring it to its size by removing a very small amount of metal.

The operation consists of passing a flat single-cut file over the workpiece which revolves at a high speed. The speed is usually twice that of turning.

Polishing Operation

This operation is performed after failing to improve the surface quality of the workpiece. Polishing with successively finer grades of emery cloth after filing results in a very smooth, bright surface. The lathe is run at high speeds from 1500 to 1800m/min, and oil is used on the emery cloth.

Parting Operation

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Parting is a machining process in which a part is cut off at the end of the machining operation. In this method, a tool with a unique shape is used to make progressive cuts on the workpiece while it rotates perpendicular to the rotating axis.

Once the cutting tool edge reaches the centre of the workpiece, it drops off. A part catcher is frequently used to collect the removed portion.

Grooving Operation

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It is the process of reducing the diameter of a workpiece over a very narrow surface. It is done by a groove tool. A grooving tool is similar to the parting-off tool. It is often done at the end of a thread or adjacent to a shoulder to leave a small margin.

Forming Operation

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It is the process of turning a convex, concave, or irregular shape. Form-turning may be accomplished by the following method:

  1. Using a forming tool.
  2. Combining cross and longitudinal feed.
  3. Tracing or copying a template.

Forming tools are not supposed to remove much of the material and are used mainly for finishing formed surfaces. Generally, two types of forming tools are used straight and circular. The straight type is used for wider surfaces and the circular type for narrow surfaces.

Drilling Operation

Drilling is the operation of producing a cylindrical hole in a workpiece. It is done by a rotating tool, the rotating side of the cutter, known as a drill. In this operation, The workpiece is revolving in a chuck or a faceplate, and the drill is held in the tailstock drill holder or drill chuck.

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The feeding is affected by the movement of the tailstock spindle. This method is adopted for the drilling of regular-shaped workpieces.

Reaming Operation

Reaming is the operation of finishing and sizing a hole that has been already drilled or bored. The tool used is called the reamer, which has multi-plate cutting edges.

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The reamer is held on the tailstock spindle, either directly or through a drill chuck, and is held stationary while the work is revolved at a very slow speed.

Boring Operation

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Boring is the operation of enlarging the hole that is already drilled, punched, or forged. It cannot produce a hole.

Boring is similar to the external turning operation and can be performed in a lathe. In this operation, the workpiece is revolved in a chuck or a faceplate, and the tools that are fitted to the tool post are fed into the work.

It consists of a boring bar having a single-point cutting tool that enlarges the hole. It also corrects out of the roundness of a hole. This method is adopted for boring small-sized works only. The speed of this process is slow.

Counterboring Operation

Counterboring is the operation of enlarging the end of the hole through a certain distance. It is similar to shoulder work in external turning.

The operation is similar to boring and plain boring tools or a counterbore may be used. The tool is used called a counterbore. The speed is slightly less than drilling.

Taper Boring Operation

The principle of turning a tapered hole is similar to the external taper turning operation and is completed by rotating the work on a chuck or a faceplate. The feeding tool is at an angle to the axis of rotation of the workpiece.

A boring tool is mounted on the tool post and by swiveling the compound slide to the desired angle, a short taper hole is machined by hand feeding.

Tapping Operation

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Tapping is the operation of cutting internal threads of small diameter using a multipoint cutting tool called the tap. In a lathe, the work is mounted on a chuck or a faceplate and revolved at a very slow speed. A tap of the required size held on a special fixture is mounted on the tailstock spindle.

Undercutting Operation

Undercutting is similar to a grooving operation when performed inside a hole. It is the process of boring a groove or a large hole at a fixed distance from the end of a hole.

This is similar to the boring operation, except that a square nose parting is used. Undercutting is done at the end of an internal thread or a counterbore to provide clearance for the tool or any part.

Milling Operation

Milling is the operation of removing metal by feeding the work against a rotating cutter having multiple cutting edges.

For cutting keyways or grooves, the work is supported on the cross-slide by a special attachment and fed against a rotating milling cutter held by a chuck. The depth of cut is given by vertical adjustment of the work provided by the attachment.

The depth of cut is given by verticle adjustment of the work provided by the attachment. The feeding movement is provided by the carriage and the vertical movement of the cutter is arranged in the attachment.

Grinding Operation

Grinding is the operation of removing the metal in the form of minute chips by feeding thework against a rotating abrasive wheel known as the grinding wheel.

Both the internal and external surfaces of a workpiece may be ground by using a special attachment mounted on the cross slide. For the grinding external surface, the work may be revolved between centers or on a chuck. For internal grinding, the work must be revolved around a chuck or faceplate.

The feeding is done by the carriage and the depth of cut is provided by the cross slide. Grinding is performed in a lathe for finishing a job, sharpening a cutter, or sizing a workpiece after it has been hardened.

Conclusion:

As we discussed lathe has a wide range of applications in manufacturing industries. Performing any operation on the lathe is much easier than other machines and learning about this machine is equally easier.

That is it, thanks for reading. If you like our article on “lathe machine operations” then please share it with your friends. If you have any questions about this topic ask in the comments.

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Read Next:

  • Types of CNC Machines
  • What are the different types of milling machine?
  • Different Types of Grinding Machines

Image credit for lathe machine: http://engineering.myindialist.com/2009/working-principle-of-lathe-machine/

FAQs

What is a lathe machine?

A lathe machine is a tool that precisely cuts, shapes, and drills a workpiece by rotating it around its axis.

What are the advantages of lathe machine?

A lathe machine can finish machining operations fast and efficiently, especially when using automated procedures. A lathe machine can be an affordable way to produce custom parts in small-scale production.

What are the different types of lathe operations?

The most frequent lathe operations include turning, facing, grooving, parting, threading, drilling, boring, knurling, and tapping.

What is the difference between turning and facing on a lathe?

The facing operation is used to shorten the length of a material. The turning action reduces the diameter of the material.

Lathe Machine Operations [Complete Guide] with Picture & PDF (2024)

FAQs

What are the 7 operations of a lathe machine? ›

The most common lathe operations are turning, facing, grooving, parting, threading, drilling, boring, knurling, and tapping.

How to operate a lathe machine step by step? ›

Step 2: Making the Cut
  1. Start the lathe. Release the E-Stop. ...
  2. Change the RPM to the calculated value.
  3. Move the cutting tool close to the desired starting point.
  4. Gently engage the cutting tool.
  5. Make the first cutting pass. ...
  6. Move the spindle speed range lever to the center to stop the spindle.

What is lathe machine pdf? ›

Lathe is a machine, which removes the metal from a piece of work to the required shape and size. ➢ Lathe is one of the most important machine tools in themetal working industry.A. lathe operates on the principle of a rotating workpiece and a fixed cutting tool.

What are the complete parts of lathe machine? ›

The main parts of the lathe are: (1) the bed, (2) the quick-change gearbox, (3) the headstock, (4) the carriage, and (5) the tailstock. 1. The bed: is the strong cast metal part which runs the length of the lathe and which supports the other main parts.

What are the 5 principles parts of the lathe machine? ›

Now let's discuss these parts one by one.
  • Legs. The legs are the most important part of the lathe machine, it is the foundation. ...
  • Chip Pan: Chip pan is thin and wide metal tray mounted above the legs. ...
  • Bed. The bed is a large horizontal structure mounted above the chip pan. ...
  • Headstock. ...
  • Spindle. ...
  • Tailstock. ...
  • Carriage. ...
  • Lead Screw.
Mar 7, 2019

What is the basic knowledge of lathe machine? ›

A lathe is a machine tool that processes metal by rotating the material to be processed and applying a blade to cut it into a cylindrical shape. For a simple example, imagine peeling an apple. It is like peeling an apple thinly with a knife while slowly rotating the apple.

What is the basic principle of lathe operation? ›

Lathe machine is one of the most important machine tools which is used in the metalworking industry. It operates on the principle of a rotating work piece and a fixed cutting tool. The cutting tool is feed into the work piece which rotates about its own axis causing the workpiece to form the desired shape.

What angle do you turn a lathe machine? ›

The rake angle is generally selected between -5° and 25°. Usually, the rake angle (γ0) is not pre-made when making the turning tool, but the rake angle is obtained by sharpening the chip flute on the turning tool.

Why lathe is called the mother of all machines? ›

Lathe Machine – A Mother Of All Machine Tools

Lathe machines are known as the mother of all machine tools for a specific reason, which was that the heavy-duty lathe was the first machine tool which led to the invention of other machine-based tools.

What is the difference between a lathe and a turning machine? ›

Traditional lathes are less complex than turning centers and may have fewer automated features. Turning Centers: Multifunctionality: Turning centers are a more advanced version of lathes and often come with additional features.

What is the half nut on a lathe used for? ›

A half nut is used to engage the lead screw to the carriage so that the carriage moves longitudinally in a direction parallel to the axis of rotation when the lead screw rotates through the spindle motor.

What are the 5 basic machining operations of a lathe machine? ›

Using these mechanics, lathes support a variety of machining processes.
  • #1) Cutting. If a manufacturing company needs to cut a significant amount of material off a workpiece, it may use a lathe. ...
  • #2) Drilling. ...
  • #3) Sanding. ...
  • #4) Knurling. ...
  • #5) Deformation. ...
  • #6) Turning. ...
  • #7) Facing.
Nov 18, 2019

What are the four main units of a lathe? ›

The main parts of a lathe machine include: the bed, headstock, carriage and tailstock.

How many processes are there in a lathe machine? ›

Such operations carried out in lathe machines are centering, turning, taper turning, facing, knurling, filing, polishing, grooving, spinning, spring winding, forming, eccentric turning, chamfering, thread cutting, drilling, reaming, boring, counter boring, taper boring, internal thread cutting, tapping, undercutting, ...

What are the functions of lathe machine? ›

A lathe (/leɪð/) is a machine tool that rotates a workpiece about an axis of rotation to perform various operations such as cutting, sanding, knurling, drilling, deformation, facing, threading and turning, with tools that are applied to the workpiece to create an object with symmetry about that axis.

What are the basic machining operation? ›

Traditional machining

Turning operations involve rotating the exterior of the workpiece against a non rotating cutting tool that is moved into the workpiece. The rotation of the workpiece is the method of producing a relative motion against the tool. Lathes are the principal machine tool used in turning.

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