A Complete Guide To Pipe Bending Mandrels (2024)

  • December 10, 2021
  • hippobender

A Complete Guide To Pipe Bending Mandrels (1)

Precision is an absolute factor for any kind of bending operation. A perfectly bent tube can enhance the performance and durability of any equipment it is used in.

Sometimes, a tube may endure bending damages and errors including wrinkles and collapses. Tubes with a tight radius, thin internal walls, and harder to bend material are prone to these errors. Wrinkled tubes can decrease the overall lifespan of the tube.

To prevent these errors and achieve exceptional bends you must use a mandrel. It is a steel rod inserted in the tube avoiding it from collapsing during the bending process. This technique perfects the tube bend without wrinkling or breaking it at the bending point.

A mandrel is a tooling component that is used during a pipe bending operation to boost its accuracy to offer incomparable performance. It is designed to tackle many bending issues, including errors and damages caused during the tube fabricating process.

Tube flattening, wrinkling, kinking, and collapsing are caused by when a high pressure to bend the tube is exerted. They can drop the quality of bends and the functionality of the equipment in which such damaged pipes would be used. They can also cause fatigue in metal, steel, and even plastic pipes.

Mostly, a certain degree of error is acceptable but only for some applications, however, others can’t tolerate even a small bit.

That’s why a mandrel bender must be used to prevent bending issues and errors. It allows you to maintain a highly precise and exceptionally functional performance of tube bending machines.

A Complete Guide To Pipe Bending Mandrels (2)

What is the Proper Way of Using a Mandrel?

Usually, a mandrel is considered more as a pipe bending die than a tool. You can easily install and use a mandrel without any worries, as it is quite straightforward to use.

The mandrel is held and secured in a position and the tube to be bent is slowly pulled over it. As the pressure is applied the mandrel supports the inner radius of the tube and allows it to be stretched so that it can be bent perfectly without any damages.

The mandrel can be used for various types of pipes and tubes, except for the ones with an incredibly smaller inner radius. As they contain no additional space for the mandrel to be placed in.

The mandrel needs to be placed in the perfect position. The pipe can still encounter wrinkling or any other issue if the mandrel is fixed quite deep or more of its portion is outside the pipe.

Materials Used for Mandrel Production

Apart from mandrel position inside the tube, its composition also determines the extent to which it can prevent tube wrinkling. Using a mandrel with proper material is quite necessary to prevent pipe damages and maintain the durable performance of the mandrel.

Most mandrels are made using an aluminum-bronze alloy or tool steel with rigid chrome plating. The composition of a mandrel should be selected in contrast to the pipe material you intend to bend.

Aluminum-bronze alloy combination is used while bending pipes and tubes made of rather hard materials. It can be used to attain precise results by bending stainless steel, titanium, and Inconel-based pipes.

Alternatively, chromed-plated steel mandrels can’t be used for stainless steel pipes and tubes. They are mostly compatible with mild hard materials including, steel, copper, aluminum, and some soft materials.

Sometimes, a chromed mandrel can offer better performance as compared to aluminum alloy while bending titanium and Inconel pipes.

Many other materials and coatings can be used for the process.

Types of Mandrels

There are many different types of mandrels available on market. The style and material of a mandrel depend upon your bending requirements i.e. outside diameter (OD), and wall thickness (WT) of the tube to be bent.

You can find various mandrels ranging from simpler design options to incredibly complex ones. Here are some prominent types of mandrels designed exclusively for distinctive operation necessities:

  • Ball Mandrel

A standard ball mandrel is one of the most eminent types of the mandrel used to support a tube. It is designed to offer exceptional internal support to a tube beyond curvature depending upon the number of segments placed inside the entire bend.

The mandrel can be used with pipes having regular wall thickness (wall factor from 15 to 70), and an average radius.

You can calculate the wall factor of a tube by using this formula:

Wall factor = Outside diameter/Wall thickness

Normally, the ball mandrels can stretch in all planes. As the name suggests, the mandrel can move in multiple directions, this flexibility allows the formation of multi-radius dies. You can also use a single-plane mandrel if required but they can’t offer exceptionally precise operations.

The mandrel is fixed and used in alliance with a wiper die clamp and pressure die while bending pipes with normal wall thickness.

A Complete Guide To Pipe Bending Mandrels (3)

  • Plug Mandrel

A plug mandrel is a solid rod used exceptionally for heavy thick-walled tubes and a larger radius. It is mostly used for international pipe sizes (IPS) operations with no help from wiper dies.

  • Formed-tip Mandrel

A formed-tip mandrel is a variant of a plug mandrel, but it contains a radius cut at its tip to match the bending radius for creating more precise and damage-free bends. A formed end offers exceptional support to the tube interior.

Such mandrel is normally used for heavier thick-walled tubes with an average radius. The mandrel is incredibly effective against heat exchange tube bending.

  • Inserted-ball Mandrel

Inserted-ball mandrel contains a replaceable nosepiece making it appropriate for various high-volume bending operations. When the nosepiece is damaged or worn down, it is more cost-effective to only replace it instead of replacing the whole mandrel shank.

  • Thin Wall Mandrel

The thin wall mandrel also known as the close-pitch mandrel is widely used for thinner walls with a wall factor of 70 or more and a tight radius. Ultrathin-walls or ultra-close pitch mandrel is a modification of thin wall mandrel and can be used for the thinnest walls wall factor of 200 or more) with the tightest radii.

A thin or ultrathin mandrel shouldn’t be preferred over a standard mandrel. Apart from their numerous benefits, they have a rather fragile design.

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A Complete Guide To Pipe Bending Mandrels (2024)

FAQs

What is the basic of mandrel bending? ›

A mandrel bending operation begins its cycle. A mandrel is inserted into the tube's inside diameter. The bend die (to the left) determines the radius. The clamp die (at the right) guides the tube around the bend die to establish the angle.

How do you calculate where to bend a pipe? ›

Rule for 90 degree and 180 degree Bends

90 degree bends: Multiply the radius of the bend by 1.57 (Radius is measured to the center of the pipe) To find the length of a 90-degree bend. 180 degree bends: Multiply the radius of the bend by 3.14 to find the length of a 180-degree bend.

What is the cheapest pipe bending method? ›

Ram Style Bending: Ram style bending is the simplest and cheapest method of bending pipe and tube.

What is the best material for a mandrel? ›

Mandrel Bending – Traditionally, aluminum bronze and hard-chrome-plated steel are the material choices for mandrel tooling. These materials will help ensure a long life and wear rather than break failure, as long as the mandrel is properly placed (the nose supporting the point of the bend).

How to calculate mandrel size? ›

In a word, the selection of a reasonable mandrel diameter and its adequate lubrication are indispensable elements for the quality of the bend. You could refer to the following empirical formula: d ≈ (0.94 to 0.98) D to decide the mandrel ball size. D- tube inner diameter size.

What is the taper per foot of a solid mandrel? ›

A tapered mandrel (often called a plain mandrel) has a taper of approximately 0.005 inches per foot and is designed to hold work by being driven into an accurate hole on the work, gripping the work by friction.

What is the pipe bending rule? ›

Generally speaking, the minimum bending radius should not be less than 2-2.5 times the outer diameter of the pipe, and the shortest straight distance should not be less than 1.5-2 times the outer diameter of the pipe, except in special cases.

Which pipe bending method is simplest? ›

As the name suggests, the compression bending technique relies on a pushing force in order to produce the desired deformity on the pipe material. This is one of the simplest forms of pipe bending and is generally used in the manufacture of electrical conduit pipes that require only simple bending formations.

Do you add or subtract when bending pipe? ›

Subtract take-up from the desired stub height to calculate the starting point for the bend from the end of the pipe.

What is the best pipe bender for beginners? ›

Our Verdict

The JMR Raceline tube bender is a very basic machine that is best suited for beginners and amateurs, not for heavy-duty use. If you are working on DIY projects without long-term commitments in mind, the JMR Raceline may be a good fit for you. NOTE: Dies must be purchased separately.

Can you bend pipe without a bender? ›

You may need to use a hair dryer to heat the pipe up if it's especially thick, but copper is weak enough that you can often bend it without heat. The longer and thinner your pipe is, the easier it will be to bend by hand. You can always use wrenches or a vice to get some extra leverage.

What is the minimum radius for pipe bending? ›

Standard draw bend radius is 2 x D

It is possible to have a tighter bend radius, even as low as ½ x D, although anything below 2 x D will usually require costly tooling and probably mandrel bending.

What can I use instead of a mandrel? ›

Prescription pill bottles make fabulous mandrels for earrings and necklaces. A wooden rolling pin works well as a bracelet mandrel if you like round bangles. I prefer oval-shaped bracelets, so I eventually bought a hardwood bracelet mandrel.

What are the disadvantages of a mandrel? ›

Challenges of mandrel bending

Weaker mandrels can never prevent structural deformation of the tubes, which will further increase the material damage risks. If the mandrel is too small, the tube will form wrinkles and ripples along the bent region.

What are the requirements for a mandrel? ›

The effective diameter of the mandrel must be 95 percent of the nominal pipe diameter and verified using a proving ring. The mandrel is sized to allow for up to 5% deformation of the installed pipe. Nominal pipe diameters are defined in the respective AASHTO standards.

What is the basic principle of bending? ›

bending process, a steeply rising linear phase (purely elastic forming) is followed by a non-linear phase (elastic-plastic bending phase, plasticizing in cross section) and then by the weak linear rise of a further range (plasticizing in the longitudinal section only) up to the end.

How does a mandrel work? ›

Mandrel bending is a method of rotary draw bending, in which – the mandrel, a solid mandrel shaft with up to five segmented, donut shaped, balls that are just slightly smaller than the ID of the pipe/tube that is being bent – is inserted into the pipe/tube to provide internal support during bending.

What is the criteria for mandrel? ›

The effective diameter of the mandrel must be 95 percent of the nominal pipe diameter and verified using a proving ring. The mandrel is sized to allow for up to 5% deformation of the installed pipe. Nominal pipe diameters are defined in the respective AASHTO standards.

What is the radius of a bending mandrel? ›

Mandrel Bending

This form of bending generally is used for tighter radii in tube (typically 3D ie; the radius is 3 times the o/dia of the tube). It controls the flow of plasticizing material at the point of bend in order to maintain the shape of tube as it sets into the arc of the bend.

References

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