Nordlock washers
Nordlock washers consist of two washers with wedge surfaces on the inside and radial serrations on the outside. Nordlock wedge-locking washers secure bolted joints against loosening under dynamic loads through a combination of form fit and friction. According to DIN EN 17976, they are not suitable for securing bolted joints against slackening and are not suitable for electrical connections of any kind.
- Definition and Construction
Nord-Lock washers are two-piece, mechanically acting securing elements specifically designed to prevent self-acting loosening by rotation. They consist of two washers with opposing wedge surfaces on the inside and radial serrations on the outside. The wedge surfaces create a positive-lock locking mechanism, while the serrations prevent the component from rotating along with the screw.
- Principles of Operation
- Positive-lock wedge action:
As the screw begins to loosen, the wedge surfaces engage, causing the screw to lift axially, which increases the preload and prevents further rotation.
- Frictional interlocking:
The radial grooves on the outer surface of the washer plastically deform the mating surfaces during tightening, thereby preventing the washers from rotating along with the screw.
- Applications and Limitations
Nordlock locking washers are suitable exclusively for mechanical bolted joints, but not for:
- Electrical contact glands
- Earthing or equipotential bonding applications
- Increasing elastic resilience or compensating for settlement
- Advantages
- Effective protection against self-acting loosening by rotation
- Reproducible, consistent friction characteristics
- Quick and easy to install
- Disadvantages
- No protection against loosening due to embedding or creeping
- Increased embedding and creeping values due to two-part design and interlocking teeth
- Possible damage to mating surfaces (plastic indentation of the ribs)
- High cost; more complex component testing recommended
- Not compliant with standards for applications requiring residual spring force (DIN 267-26) in the spring-loaded version
- Normative Classification
The previous DIN 25201 has been replaced by DIN EN 17976.
Nord-Lock washers are classified therein as form-fit securing elements.
The spring action per DIN 267 Part 26 is insufficient for the spring-loaded variant per DIN EN 17976 to be used as a spring-loaded element for rail vehicles.
- Design Notes
- Install only in pairs, with the keyway surfaces facing inward and the serrations facing outward.
- Flat, hard mating surfaces are required.
- Ideal for use with high-strength screws (≥ 8.8).
- For softer materials or critical applications, embedding and creep tests should be conducted
- Recommendation
For requirements involving multifunctional locking—that is, a combination of anti-loosening and anti-backlash protection— increased resistance to sliding, and elastic resilience, modern solutions such as NSK washers (types NSK-L and NSK-N) are technically and normatively superior. They reduce settlement, protect the mating surfaces, and provide both force-fit and form-fit retention.
Back to the glossary overview
DIN EN 17976
DIN EN 17976:2025-03 defines new Europe-wide standards for screw connections in rail vehicles, replacing the previous DIN 25201. The focus is on a dual-security approach to prevent slackening and unscrewing. Outdated components such as spring rings are not permitted. For electrical glands, only single securing elements are allowed. Based on the defined properties of spring elements, elastic resilience and slip resistance can be increased. See also Eisenbahningenieur Technical Report.
Read more about DIN EN 17976
Slackening
First, the slackening phase occurs in the slackening mechanism of bolted joints. During slackening—or in the slackening phase of bolted joints—the preload force decreases due to embedding, relaxation, and creeping. The sliding resistance is maintained, so that operational forces continue to be transmitted through clamping. Embedding occurs through the plastic leveling of rough surfaces immediately after assembly. Relaxation and creeping lead to further force reduction over the long term. Screw connections can be secured against slackening using special screw locking elements or multifunctional screw locking elements.
Read more about Slackening
Loosening
Self-acting loosening by rotation refers to the rotational movement of a screw or nut without an external torque load, resulting from the loss of preload and anti-slip strength, preceded by slackening and triggered by dynamic transverse loads. The self-loosening mechanism proceeds in several phases—beginning with relative rotational movements and bending stress (Phase 1), through thread slippage and head tilting (Phase 2), to rotation caused by stored torsion (Phase 3), and finally to complete loosening due to loss of friction (Phase 4). To ensure safety, securing elements such as anti-loosening elements or multifunctional locking elements such as NSK® washers are required; in addition to preventing loosening, these elements also increase slip resistance and resilience, thereby improving overall resilience—especially with short clamping lengths.
Read more about Loosening
Electrical Contact Glands
Electrical contact glands transmit current via the clamped contact surfaces of the conductor materials, not via the screw. They require stable contact pressure and a minimal number of interface surfaces. NSK-E/EL washers offer elastic resilience, anti-loosening protection, and safety in accordance with standards—ideal for modern applications. See also NSK-E Technical Report.
Read more about Electrical Contact Glands
Elastic Resilience
Elastic resilience has a significant influence on the preload force and sliding resistance of bolted joints. It is determined by the screw, the backing surfaces, and suitable spring elements. Lock washers conforming to DIN 6796 or NSK washers enhance this effect and reduce loss of preload, especially with short clamping lengths. Unsuitable elements are excluded; variants that comply with standards can be verified by measuring the residual spring force. See also Railway Engineer Technical Report.
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Embedding
During the settling phase, the preload of a bolted joint initially decreases due to embedding effects. This “embedding” occurs through the plastic leveling of surface roughness in the contact areas, the loaded flanks of the mated threads, and other interface surfaces. The amount of set depends on the number of interface surfaces and the surface roughness. The settling process begins as early as the assembly stage and is completed within a few hours.
Read more about Embedding
Creeping
Creeping is a time-dependent, plastic, and irreversible deformation that occurs during the relaxation phase of a bolted joint under constant stress as a result of dislocation movements in the material. It occurs under long-term loading, particularly when the time-dependent strength or fatigue strength is exceeded. In bolted joints, creeping leads to a loss of preload over time.
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DIN 267-26
"Mechanical fasteners—Technical delivery conditions—Part 26: Spring steel locking washers for bolted joints" specifies requirements for conical spring steel locking washers designed to compensate for a loss of preload due to embedding or creeping. It specifies materials, hardness (420–490 HV), surface finishes, test methods (e.g., embedding, endurance, and spring force tests), as well as packaging and marking. The standard ensures the quality and functional reliability of the washers.
Read more about DIN 267-26
DIN 25201
DIN EN 17976:2025-03 fully replaces the national standard DIN 25201 and standardizes design, safety, and functional requirements for bolted joints in rail vehicle construction across Europe. For the first time, the new standard defines specific requirements for residual spring effect during slackening—in addition to the already detailed requirements for protection against self-acting loosening by rotation—which is central to lightweight construction and operational safety. See also Eisenbahningenieur Technical Report.
Read more about DIN 25201
NSK Washers
NSK washers are one-piece, multifunctional screw-locking elements that provide both a force-fit and a form-fit to prevent slackening and unscrewing. They increase elastic resilience and anti-seize properties; up to property class 12.9, they are also suitable for electrically conductive connections (earthing & electrical potential equalisation) as well as electrical contact glands, and comply with various standards, such as DIN EN 17976, DIN 25201, DIN 50343, and DIN 267 Part 26; they are considered state-of-the-art and offer assembly-friendly, standards-compliant, and cost- and weight-efficient solutions.
Read more about NSK Washers