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You can see three different custom-made solutions with screw drives.
You can see three different custom-made solutions with screw drives.
Linear Motion Technology

Custom-made screw drives – the top five requirements

How machinery and equipment manufacturers efficiently implement special requirements for ball and planetary screw assemblies

In robotics, medical technology, semiconductor manufacturing, machine tools and intralogistics – the need for specific screw drives is growing. In some instances, the focus is on dynamics, compactness or safety, while in others it is on corrosion protection, temperature management or vacuum suitability.

The common denominator with all these applications is that they need to be realized faster and more economically despite increasing requirements. Read this blog post to find out how to:

  • Quickly implement suitable screw drive solutions.
  • Avoid additional costs for special construction and subsequent modifications.
  • Make engineering more efficient.

Tip: You can find an overview of the main types of screw drives – from ball assemblies and planetary screws assemblies to complete drive units with nut housings and pillow block units – on our screw drives product page.

Customized solutions based on proven standards

There are many reasons why so many application-specific screw drives are needed:

  • Corrosion shortens the service life
  • Temperature influences precision
  • Interfaces determine the integration work required
  • Mounting determines the actual cost


The challenge:
Once it is determined that the application requires a ball or planetary screw assembly not available in the standard catalog, the engineering and manufacturing costs increase significantly. Special designs are not only costly, but also rarely tried and tested in practice.

The solution:
Bosch Rexroth offers you the possibility to order custom-made screw drives made from tried-and-tested standard and add-on components, which are machined directly in the factory according to customer requirements.

The result:
Machinery and equipment manufacturers receive practical solutions more quickly with a predictable cost – including CAD data and comprehensive documentation.

The Rexroth offering includes coatings, special lengths and machining according to customer specifications, combined screws and special nuts, all the way through to pre-assembled units for heavy-duty applications.

Typical screw modifications: Special lengths, extensions, special machining and nuts.

Typical screw modifications: Special lengths, extensions, special machining and nuts. (Image: Bosch Rexroth)

The top five requirements for screw drives


1. Coatings and materials for special environments

In the case of screw drives operating under special conditions of use, the surface finish is a critical factor for precision and service life. Moisture, aggressive media, or vacuum conditions not only affect the material – they also change friction and wear. Optical reflections can also pose a challenge in certain applications.

Typical examples of coated and corrosion-resistant solutions include screws and nuts coated with thin-layer hard chrome, stainless steel versions for hygiene-critical areas such as food production, and matt black or matt silver chrome-plated surfaces for semiconductor production or the optical industry.

Corrosion-resistant finishes: Thin-film hard-chrome plated in black and matte silver, as well as a stainless steel version.

Corrosion-resistant finishes: Thin-film hard-chrome plated in black and matte silver, as well as a stainless steel version. (Image: Bosch Rexroth)

2. Screws as system components

In many applications, the screw has long since become more than a transmission element. It also takes on additional functions such as:

  • Integration into the drive
  • Thermal stabilization
  • Implementation of complex movements

An example from machine tool construction are temperature-controllable screws. In these, targeted cooling using deep-hole bores and hose lines enables thermal influences to be controlled – and process stability increased without additional installation space. In the patented screw temperature control system from Bosch Rexroth, the cooling medium is introduced via a stationary rotary feed-through at the end of the screw and guided longitudinally through the screw. This results in up to 75% higher part precision from the first workpiece.

Screw with hollow-drilled shaft and rotary lead-through for optimum temperature control.

Screw with hollow-drilled shaft and rotary lead-through for optimum temperature control. (Image: Bosch Rexroth)

The machining of screw ends is also frequently desired. This usually involves:

  • Positive-locking motor connection using internal toothing, external toothing, drive journals, or PTO shafts
  • Hardened bearing seats, shrink rings, and special lengths
  • Extra-long, bolting screw drives made from screw sections two to eight meters long
Various machining options at the spindle end (from left): External splining with internal thread, internal splining with external thread, and internal keyway.

Various machining options at the spindle end (from left): External splining with internal thread, internal splining with external thread, and internal keyway. (Image: Bosch Rexroth)

Combined screws have two sections, each with a right-hand and left-hand thread, if necessary, also with different leads. This allows opposing movements in opening, closing, and clamping mechanisms to be achieved with just one drive. Typical examples of applications include gripping car tires in the automotive industry or lateral fork adjustment in AMR (autonomous mobile robots) for handling different pallet types in intralogistics.

Combined screw with opposing threads, bolting, and connecting bolt.

Combined screw with opposing threads, bolting, and connecting bolt. (Image: Bosch Rexroth)

3. Special nuts as functional components

The potential for adaptation offered by screw nuts is often underestimated.

Targeted modifications allow functions to be integrated into the screw drive which would otherwise require additional components and would increase the solution costs unnecessarily. These include:

  • Specific geometries for machine integration (e.g. interference contours, slots, threads)
  • Additional lubrication or fastening options
  • Special nuts with external toothing for pinion drives
  • Safety functions such as arrestor nuts


Arrestor nuts are essential in safety-critical applications for vertically operated ball screw assemblies. Whether as an integrated solution or as an attachment, they prevent the screw drive nut and the elements attached to it from suddenly falling off uncontrollably. They are used, for example, in medical technology, where they act as a safety mechanism to keep the CT scanner securely in place above the patient.

Arrestor nuts (integrated and external) for protection against falling loads and special nuts with external toothing.

Arrestor nuts (integrated and external) for protection against falling loads and special nuts with external toothing. (Image: Bosch Rexroth)

For high temperatures, in highly dynamic components, or even in a vacuum, we have developed special deflectors that are used, for example, in the semiconductor industry or in glass production.

Total deflection enables high load capacities by using the full nut length, quiet running, and particularly uniform torque curve.

Metal deflectors for applications in demanding environmental conditions, such as high temperatures and vacuum.

Metal deflectors for applications in demanding environmental conditions, such as high temperatures and vacuum. (Image: Bosch Rexroth)

4. Pre-assembled units reduce the required assembly work

As well as the structural design itself, assembly is another often underestimated factor in the development of cost-effective custom solutions.

Large screw drives for heavy-duty applications – for example in servo presses for sheet metal forming – place high demands on assembly and handling. In addition to the heavy weight of the individual components, they are also difficult to handle. For example, a 53 kg flange bearing for a 75x20-sized planetary screw assembly must be heated before being mounted, and then the slotted nut must be tightened with the correct torque. Pre-assembled screw drives with end bearings shift this work to the manufacturer. This means:

  • Shorter assembly time
  • Reduced risk of errors
  • No special tools
Complete solution with a pre-assembled end bearing for heavy-duty applications, such as in servo presses.

Complete solution with a pre-assembled end bearing for heavy-duty applications, such as in servo presses. (Image: Bosch Rexroth)

Overview: Requirements for screw drives and typical solutions

Requirement Typical solutions Benefits
Corrosion, hygiene, optics Coatings, stainless steel Safe processes, longer service life
Precision, temperature Temperature-controlled screws More stable processes, higher precision
Integration, movement Special geometries, combined threads More compact and efficient structural design
Safety, function Special nuts, arrestor nuts Greater operational safety
Assembly, time Pre-assembled end bearings and assemblies Less work, lower error rate

5. Streamlining engineering: finding solutions efficiently

In addition to technology and function, there is one factor that is becoming increasingly decisive: time. Whether coated, modified, or with ready-mounted bearings – every customized screw drive needs to be designed, manufactured, and supplied as quickly as possible.

Digital tools such as the Linear Motion Technology Selector help to quickly find a robust solution – without getting lost in variants. They enable rapid pre-selection of suitable standard solutions and provide technical data and CAD models as the basis for customer-specific drawings and modifications.

From here, it requires only a few clicks to send the modification request to the Rexroth Engineering Team, which implements the customer-specific adaptations in dialog with you. This results in a perfectly adapted screw drive based on tried-and-tested standard components – in proven Rexroth quality and including project documentation with instructions, 3D CAD data, and calculation information.

What is your specific requirement?

Use the Linear Motion Technology Selector to find the right screw drive and submit your modification request directly to the Rexroth Engineering Team.

To the Selector

Contact the Rexroth team directly!

Contact us
Rainer Sauer

Author: Rainer Sauer

Position: Product Manager Screw Drives

FAQ – Customer-specific screw drives

When is a customer-specific screw drive worthwhile?

A standard screw drive reaches its limits when there are special requirements in terms of the environment, precision, safety, installation space, or integration. Typical examples are aggressive media, high thermal loads, vacuum, special connection geometries, or applications where safety is critical. In such cases, many requirements can be met economically by means of modified standard components.

What coatings are available for ball and planetary screw assemblies?

Depending on the application, thin-layer hard chrome and stainless steel are used. They improve corrosion protection, wear behavior, hygiene, or optical properties – for example for the food and packaging industry, medical technology, or semiconductor production.

What end machining options are available for screw drives?

Depending on the drive concept and installation situation, screw drives with different end machining can be ordered. These include, for example, internal and external toothing, drive journals, power take-off shafts, hardened bearing seats, slots, or special lengths. Such machining facilitates integration into motors, bearings, and machine structures.

What special screw drive nuts are available?

Screw nuts can be adapted to different functional and safety requirements. Typical examples include nuts with external teeth for pinion drives, specific fastener and lubrication options, and arrestor nuts for protection against falling loads in vertical applications. In addition, special deflection systems ensure smooth running and a uniform torque curve for high precision requirements or sensitive processes.

How quickly can customer-specific screw drives be configured?

Digital engineering tools such as the Linear Motion Technology Selector and the Configurator speed up the selection and preliminary design process. Customer-specific modifications based on standardized components can be implemented significantly faster than with complete special designs.

Why are screw drives temperature controlled?

Temperature-controlled screw drives minimize the impact of thermal effects on precision. Integrated cooling channels help to compensate for temperature differences and improve process stability – especially in machine tools or high-precision machining processes.

What are combined screws?

Combined screws have several threaded sections with different directions of rotation or leads. This allows opposing or synchronized movements to be realized with only one drive, for example, for mechanisms for clamping, gripping, or opening and closing.