Corrosion-resistant thread lock washers
The stainless steel thread lock washer with a thick body and knurled surfaces addresses the limitations of special steel alloys by enhancing spring action and corrosion resistance, ensuring effective thread locking in demanding environments.
Patent Information
- Application Number
- JP2022513660
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-03-26
- Filing Date
- 2021-02-26
- Publication Date
- 2025-10-15
- Estimated Expiration
- 2041-02-26
AI Technical Summary
Existing thread lock washers made of special steel alloys face challenges in achieving sufficient spring action and corrosion resistance while maintaining cost-effectiveness, especially in applications requiring high corrosion protection like the food industry, due to limited spring effect and adverse effects from heat treatment processes.
A corrosion-resistant thread lock washer with a stainless steel washer body having a thickness of at least 1.5 mm, featuring a convex shape and knurled surfaces, combined with controlled surface hardening and angled annular surfaces, to enhance spring action and locking performance.
The solution provides a washer with high spring action and improved corrosion resistance, effectively maintaining preload force in threaded connections, while being cost-effective and suitable for high-corrosion environments.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a corrosion-resistant thread lock washer having an annular stainless steel washer body for placement between a screw head and a flat support. [Background technology]
[0002] Thread lock washers serve to prevent loosening of threaded connections, which occurs from loss of preload force as a result of permanent deformation and / or creep in the parts that are threadedly fastened together.
[0003] To counteract this type of loosening, thread lock washers have a spring-like effect. The spring force must be set so that the thread lock washer can compensate for the loss of preload force caused by permanent deformation and / or creep, while still maintaining the clamping force required for the operational reliability of the threaded connection.
[0004] As the demands for corrosion protection increase, especially in the food industry, screw connections made of special steel are being used. When connecting to special steel screws, the thread locking elements are also made of special steel. In addition to the good corrosion protection properties of special steel, the same electrical potential of the thread locking elements prevents contact corrosion.
[0005] Special steels generally have only a very small spring effect. In the case of special steel alloys, an improved spring effect can be achieved through a heat treatment process. These special steel alloys and heat treatment processes are, on the one hand, very expensive, and, on the other hand, the heat treatment process adversely affects corrosion properties. In particular, the resulting spring properties are usually insufficient to meet the imposed requirements. For this reason, heat-treated special steel materials are rarely used in practice for thread locking elements.
[0006] Special steels with material numbers 1.4301 or 1.4401 (X5CrNi18-10 or X5CrNiMo17-12-2) according to DIN EN 10027-2:2015-07 are often used as spring-like special steels with good or very good corrosion properties. These special steels undergo surface hardening during strip rolling. This hardening results in a limited spring effect at thin steel sheet thicknesses of up to 1 mm, which increases as the steel sheet thickness decreases. It is noteworthy that these materials undergo work hardening, resulting in only a very limited spring effect at larger thicknesses, which is insufficient to compensate for permanent deformation in threaded connections. After work hardening, these materials can only be further processed or deformed to a limited extent. Summary of the Invention [Problem to be solved by the invention]
[0007] The present invention will now be described. The problem underlying the invention is to provide a corrosion-resistant thread lock washer with a special steel washer body that can be used even in cases where high corrosion protection requirements are required, for example in the food industry, has a high spring action, and is inexpensive to manufacture. According to the invention, this problem is solved by a thread lock washer having the features set forth in the characterizing part of claim 1. [Means for solving the problem]
[0008] The present invention provides a corrosion-resistant thread lock washer with a stainless steel washer body that can be used, even in applications with high corrosion protection requirements, such as in the food industry, has a high spring action, and can be manufactured inexpensively. The upper and lower surfaces of the washer body are compressed by a stamping process, and the washer body has a material thickness of at least 1.5 mm. The convex shape of the washer body achieves a high spring action to compensate for the effects of permanent deformation in order to maintain the preload force of the threaded connection. The desired spring action is achieved by combining a sufficiently dimensionally sizable material thickness with the hardening of the surface layer in the deformed state and the surface stresses that occur during tightening. Surprisingly, it has been found that the spring action increases with increasing material thickness. Preferably, the thread lock washer is formed from a single piece. Preferably, the washer body has a material thickness of at least 2 mm, particularly preferably at least 2.5 mm, and in particular at least 3.0 mm.
[0009] In one refinement of the invention, at least one of the upper and lower surfaces of the washer body is knurled. In this refinement, a linear contour is stamped into the surface, which achieves additional point-like compression of the surface. This makes it possible to adjust the surface stress of the thread locking washer and thus the resulting spring effect. Preferably, both the upper and lower surfaces of the washer body of the thread locking washer are knurled. In this case, the two surfaces may be knurled differently in terms of knurl depth and / or knurl pattern, which maximizes the spring effect.
[0010] In one embodiment of the present invention, the stainless steel washer body is made of stainless steel with material number 1.4401 or 1.4301 according to DIN EN 10027-2:2015-7. This stainless steel is an inexpensive material with excellent corrosion properties. The use of such a commercially available, deformable starting material facilitates the stamping of the notches, achieving good surface hardening of the thread locking washer. The hardening of the soft starting material is combined in the process with the shaping of the surface by compression and the stamping of the notches on one or both sides of the thread locking washer.
[0011] In another embodiment of the present invention, the underside of the thread lock washer facing the support has an outer annular surface and an inner annular surface arranged at an angle to each other, with the outer edge of the outer annular surface resting on the support when the washer is not tightened, and both annular surfaces form an acute angle with the support, with the angle α formed between the outer annular surface and the support being greater than the angle β formed between the inner annular surface and the support. This causes the mounting force to act at a steeper angle against the flat support, i.e., the force component in the vertical direction is higher than the force component in the horizontal direction. This allows the outer edge of the outer annular surface to press more firmly against the flat support when tightening the screw, thereby achieving an improved locking effect. Furthermore, the outer diameter of the washer can be kept relatively small when a high locking effect is required.
[0012] In one refinement of the invention, the acute angle between the outer annular surface and the support is between 10° and 20°, preferably between 12° and 15°, in the unclamped state. These values provide good spring and locking properties for the washer. Advantageously, the acute angle between the inner annular surface and the support is between 3° and 15°, preferably between 5° and 10°, in the unclamped state.
[0013] Advantageously, the angle γ between the two annular sections facing the flat support is obtuse. Preferably, the acute angle β between the inner annular section and the flat support is approximately half the size of the acute angle α between the outer annular section and the flat support in the unclamped state.
[0014] In a further embodiment of the invention, the surface of at least one of the abutment surfaces, preferably both abutment surfaces, is polished, thereby additionally improving the already very good corrosion resistance of the special steel material of the thread locking washer.
[0015] Further refinements and configurations of the invention are set forth in the other dependent claims.An embodiment of the invention is shown in the drawing and will be explained in more detail below. [Brief explanation of the drawings]
[0016] [Figure 1] FIG. 1 is a schematic diagram of a special steel screw lock washer. [Figure 2] 2 is a schematic cross-sectional view of one half of the thread lock washer shown in FIG. 1; FIG. [Figure 3] FIG. 2 is a schematic diagram of the special steel screw fastener including the lock washer shown in FIG. 1, where the left side of the figure shows the lock washer in an untightened state, and the right side of the figure shows the lock washer in a tightened state. DETAILED DESCRIPTION OF THE INVENTION
[0017] The thread lock washer selected as an example is made of V4A special steel (X5CrNiMo17-12-2) with material number 1.4401 and has a ring-shaped convex washer body with a material thickness of 2.5 mm. The thread lock washer has an upper washer surface 6 and a lower washer surface 1, each of which has been compressed by a stamping process.
[0018] The washer lower surface 1 is convex and divided into two annular sections 2, 3, an outer annular section 2 and an inner annular section 3. The annular sections 2, 3 are disposed at an angle to each other.
[0019] The lock washer is configured so that, in the unclamped state, the outer edge 4 of its outer annular surface 2 rests on a flat support 5. In the unclamped state, the outer annular surface 2 forms an angle α with the flat support 5, and the inner annular surface 3 forms an angle β with the flat support 5 (see FIG. 3). The angles α and β are acute angles, and angle β is always smaller than angle α. In this example, angle α is 14° and angle β is 6°.
[0020] The upper surface 6 of the thread lock washer, facing away from the support 5, is curved. During the stamping process, notches 7 are formed in the surface of the upper surface 6, extending in the circumferential direction, thereby achieving additional hardening. In this embodiment, the notches 7 are formed by an arrangement of lines (see FIG. 1). Depending on the desired partial hardening of the surface, other notch patterns may be formed. In this embodiment, both the upper surface 6 and the lower surface 1 are provided with notches 7. To improve corrosion resistance, the surfaces of the upper surface 6 and the lower surface 1 are polished.
Claims
1. A corrosion-resistant thread lock washer for placement between a screw head and a flat support (5), comprising an annular stainless steel washer body having an upper washer surface (6) and a lower washer surface (1) facing towards the support, The surfaces of the upper washer surface (6) and the lower washer surface (1) of the washer body are compressed by a stamping process, and the washer body has a material thickness of at least 2.0 mm and is formed in a convex shape; the washer body is made from stainless steel with material number 1.4401 according to DIN EN 10027-2:2015-7, Thread lock washer, characterized in that both the upper (6) and lower (1) surfaces of the washer body are provided with knurls (7) which differ from each other in terms of knurl depth and / or knurl pattern.
2. 2. The thread locking washer according to claim 1, wherein an outer annular section surface (2) and an inner annular section surface (3) are arranged at an angle to one another on the underside (1) of the thread locking washer facing the support body (5), the outer edge of the outer annular section surface (2) rests on the support body (5) in the untightened state of the washer, the two annular section surfaces (2, 3) each form an acute angle with the support body (5), and the angle α formed between the outer annular section surface (2) and the support body (5) is preferably greater than the angle β formed between the inner annular section surface (3) and the support body (5).
3. 3. The thread lock washer according to claim 2, wherein at least one of the upper and lower surfaces of the washer body is polished.
4. 4. A thread locking washer according to claim 2 or 3, characterized in that the acute angle α between the outer annular section surface (2) and the support (5) is between 10° and 20°, preferably between 12° and 15°, in the unclamped state, and the acute angle β between the inner annular section surface (3) and the support (5) is between 3° and 15°, preferably between 5° and 10°, in the unclamped state.
5. 5. Thread lock washer according to claim 2, characterized in that the angle γ between the two annular section surfaces (2, 3) facing towards the flat support body (5) is obtuse.
6. 6. A thread lock washer according to claim 2, wherein the acute angle β between the inner annular section surface (3) and the flat support (5) is approximately half the size of the acute angle α between the outer annular section surface (2) and the flat support (5) in the unclamped state.
Citation Information
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