The present invention relates to the technical field of hardware fasteners, in particular to an anti-loosening fastener, specifically involving bolts, nuts, elastic washers, and fixed washers.
There are many ways to prevent loosening of existing bolts. Common methods include using a bolt to pass through the nut and screw and fix them at one point to prevent the nut and screw from sliding relative to each other as well as using double nuts to prevent loosening. These types of bolt anti-loosening methods are used in specific usage environments, such as fastening train sleepers and rails, locomotives, vehicles, tanks, armored vehicles, ships, excavators, shield machines, loaders, subways, high-speed railways, bridges, mining machinery, petroleum electric machinery, urban assembly integrated construction, military aviation and aerospace, weapons and equipment and other environments that are prone to high-frequency vibration and high temperature are very likely to lead to sliding or deformation of fastening parts, resulting in loosening of fastening parts. Another way to prevent loosening of bolts is to use a welding gun to weld the nuts and screws together or use other foreign objects to fix the bolts and nuts on the object carrying the bolts, in order to achieve the purpose of preventing loosening. This type of bolt anti-loosening method is a one-time anti-loosening structure, which can be damaged once disassembled and cannot be reused, thereby increasing the cost of use and inconvenient maintenance.
In a first novel aspect, an anti-loosening fastener includes a bolt including a head and a screw tail, a first washer configured to fit around the screw tail of the bolt, a first nut configured to screw onto the screw tail of the bolt, a second nut configured to screw onto the screw tail of the bolt, a first cutting surface located on the screw tail of the bolt. A first surface of the first washer includes one or more wedge-shaped helical teeth. A first surface of the first nut includes one or more wedge-shaped helical teeth. The bolt, the first washer, the first nut, the second nut, and the cutting surface are capable of affixing a component.
In a second novel aspect, a method, includes: inserting a bolt through a fixed component (the bolt includes a screw tail), inserting the bolt though a first nut, inserting the bolt through a first washer, inserting the bolt through a second washer (a first surface of the second washer including one or more wedge-shaped helical teeth), and inserting the bolt through a second nut (a first surface of the second nut includes one or more wedge-shaped helical teeth). The first surface of the second washer is facing the first surface of the second nut.
In a third novel aspect, an anti-loosening fastener includes a bolt including a screw tail, a first nut, a first washer, and a means for meshing together a first surface of the first nut with a first surface of a first washer. The means includes a first surface of the first nut including one or more wedge-shaped helical teeth, a first surface of the first washer including one or more wedge-shaped helical teeth, and a first cutting surface located on the screw tail of the bolt.
Further details and embodiments and techniques are described in the detailed description below. This summary does not purport to define the invention. The invention is defined by the claims.
The accompanying drawings, where like numerals indicate like components, illustrate embodiments of the invention.
Reference will now be made in detail to background examples and some embodiments of the invention, examples of which are illustrated in the accompanying drawings. In the description and claims below, relational terms such as “top”, “down”, “upper”, “lower”, “top”, “bottom”, “left” and “right” may be used to describe relative orientations between different parts of a structure being described, and it is to be understood that the overall structure being described can actually be oriented in any way in three-dimensional space.
The following items are illustrated in
The present invention proposes an anti-loosening fastener that can ensure that bolts do not loosen under high-frequency vibration and high temperature environments, and its stress remains unchanged compared to standard components.
The technical solution of the present invention is implemented as follows.
A type of anti-loosening fastener, including bolts, fixed components, fixed washers sequentially connected to bolts, and first nut 3.
The fixed component includes second nut 4 and a cutting surface 11, wherein one or two cutting surfaces are cut out on one or both sides of the screw tail of the bolt 1, and the second nut 4 is sleeved on the bolt 1, close to the head of the bolt 1, and set away from the cutting surface 11 of the screw tail of the bolt 1.
The shape and size of the hole in the middle of the fixed gasket 2 match the cross-sectional surface of the screw tail of the bolt 1, so that the fixed gasket 2 is fixed relative to the bolt 1.
The first nut 3 is set away from the head of the bolt 1, and the surface of the first nut 3 in contact with the fixed gasket 2 is equipped with at least two wedge-shaped helical teeth 31. The surface of the fixed gasket 2 in contact with the first nut 3 is equipped with wedge-shaped grooves 21 that mesh with the wedge-shaped helical teeth 31.
Furthermore, the fixed component can be replaced by a vertical groove 12 and a buckle that is matched with the vertical groove 12. The vertical groove 12 is arranged on the screw tail of the bolt 1, parallel to the axis of the screw tail of the bolt 1, and the buckle is arranged on the inner side of the fixed gasket 2.
Furthermore, the wedge-shaped helical teeth 31 are evenly distributed on the surface of the first nut 3, radiating outwards from the center. Furthermore, it also includes an elastic gasket 5, which is sleeved onto the bolt 1 and arranged on the side near the bolt 1 head of the fixed gasket 2. The elastic gasket 5 has elasticity to support close contact between the fixed gasket 2 and the first nut 3.
Furthermore, the elastic gasket 5 is a circular ring gasket, and the circular ring gasket has a notch, and the two surfaces opposite the notch are misaligned.
The Beneficial Effects of the Present Invention:
The present invention utilizes the inherent structure of fasteners to effectively prevent loosening of bolts and nuts under high-frequency or low-frequency vibrations or irregular frequency vibrations, as well as under high-temperature or low-temperature vibrations or high-temperature or low-temperature environments, thereby avoiding major accidents and having reusability. The setting of a second nut 4 ensures that the stress of the fastener is consistent with that of the original standard component. The position of the fixed gasket 2 is limited by the fixed component. Once the wedge-shaped helical teeth 31 on the surface of first nut 3 are screwed into the wedge-shaped groove 21 of the fixed gasket 2, they cannot be unscrewed, thereby achieving the effect of never loosening. The vertical groove 12 set on the screw tail of the bolt 1 has less impact on the original stress of the bolt 1 and it is combined with the buckle of the fixed gasket 2 so to fasten the fixed gasket 2 to the bolt 1. The shape and size of the central hole of the fixed gasket 2 should match the cross-sectional shape and size of the screw tail of bolt 1 so to prevent sliding or displacement between the fixed gasket 2 and the bolt 1. The elastic gasket 5 (circular ring gasket) has a gap and misalignment to ensure elasticity to support a tighter contact between the fixed gasket 2 and the first nut 3.
The following will provide a clear and complete description of the technical solution in the embodiments of the present invention, in conjunction with the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, not all of them. Based on the embodiments in the present invention, all other embodiments obtained by ordinary technicians in the art without creative labor fall within the scope of protection of the present invention.
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Specifically, the shape and size of the hole in the middle of the fixed gasket 2 match the cross-sectional surface of the screw to prevent sliding or displacement between the fixed gasket 2 and the bolt 1.
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In another embodiment, during the specific installation and use process, when the bolt 1 or first nut 3 is tightened, the first nut 3 generates a force to compress the fixed gasket (fixed washer) 2, which in turn drives the fixed washer 2 to compress the elastic gasket (elastic washer) 5 and washer 7, and further drives the washer 7 to compress the fixed component 6 until it is fully tightened. The size and shape of the center hole in the fixed gasket 2 match the cross-sectional surface of the screw tail of bolt 1. The buckle 22 of the fixed gasket 2 is inserted into the vertical groove 12 of the screw, and the fixed gasket 2 is firmly fixed on the screw without rotation. The structural functions of other components are consistent with the above embodiments.
The above is only a preferred embodiment of the present invention and is not intended to limit it. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Although certain specific embodiments are described above for instructional purposes, the teachings of this patent document have general applicability and are not limited to the specific embodiments described above. Accordingly, various modifications, adaptations, and combinations of various features of the described embodiments can be practiced without departing from the scope of the invention as set forth in the claims.
Number | Date | Country | Kind |
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202220825531.4 | Apr 2022 | CN | national |
This application is a continuation-in-part of, and claims priority under 35 U.S.C. § 120 and § 365(c) from International Patent Application No. PCT/CN2023/083766, filed on Mar. 24, 2023, which in turn claims priority from Chinese Application No. 202220825531.4, filed on Apr. 11, 2022 in China. The subject matter of each of the foregoing documents is incorporated herein by reference.
Number | Date | Country | |
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Parent | PCT/CN2023/083766 | Mar 2022 | US |
Child | 18220663 | US |