Background of the Invention
1. Field of the Invention
The present invention relates to a double locknut assembly provided with a locking function or a function to prevent it from becoming loose.
2. Prior Art
Heretofore, there has been known various kinds of double locknut assemblies provided with a locking function. However, there has been disadvantage in that locknuts having a satisfactory locking function are difficult to manufacture while locknuts which can be simply manufactured have an unsatisfactory locking function.
The present invention is devised in view of the abovementioned problem inherent to prior art locknuts.
Accordingly, the main object of the present invention is to provide a double locknut assembly which can be simply manufactured and which has a satisfactory locking function.
Further objects and advantages thereof will be apparent from the following description of the invention.
Summary of the Invention
According to the present invention there is provided a double locknut assembly composed of a first nut having a projecting part and a ring-like second nut for fastening the first nut onto a bolt. The above-mentioned first nut is composed of a flange section and a part projecting from the flange section. A bolt hole into which a bolt is inserted is formed by piercing the flange section and the projecting part at the center thereof, and formed therein with a female screw thread which is threaded to be engaged with a main thread on a bolt. The outer peripheral surface of the above-mentioned projecting part has a truncated-conical outer surface on which a male screw thread is formed. The above-mentioned first nut is formed therein with a slit such that it can be radially contracted. The second nut is formed in the center section thereof with a bore for receiving the projecting part of the first nut, having a truncated-conical inner surface formed therein with a female screw thread adapted to be engaged with the male screw thread on the outer peripheral surface of the projecting part.
Brief Description of the Drawings
FIG. 1 is a cross-sectional view explaining the threadedly engaging condition of a first nut and a second nut;
FIG. 2 is a front view of the first nut;
FIG. 3 is a plan view of the first nut;
FIG. 4 is a front view of the second nut;
FIG. 5 is a plan view of the second nut;
FIG. 6 is a plan view illustrating another embodiment form of the first nut; and
FIG. 7 is a cross-sectional view illustrating another embodiment form of the present invention.
Detailed Description of the Invention
The present invention will be explained in one embodiment form with reference to the accompanying drawings
Referring to FIGS. 1 to 5, a double locknut assembly M according to the present invention is composed of a first nut having a projecting part 4 and a ring-like second nut 2. The first nut comprises a flange section 3 and a projecting part 4 projecting from the flange section 3. The first nut is formed in the center section thereof with a bolt hole through which a bolt 5 is adapted for insertion, and in which a female screw thread 6a threaded to engage with a male screw thread 5a on the bolt 5a is formed. The outer peripheral surface of the above-mentioned projecting part 4 has a truncated-conical outer surface on which a male screw thread 4a is formed The pitch of the male screw thread 4a is preferably less than that of the above-mentioned female screw thread 6a. Further, an axial slit S1 is formed in the first nut 1. Due to the provision of the slit S1, the diameter of the first nut 1 can be reduced when the first nut 1 is tightened by the second nut 2 so that the female screw thread 6a embraces the male screw thread 5a of the bolt 5.
The ring-like second nut 2 is formed in its center section with a bore having a truncated-conical inner surface, for receiving the projecting part 4 of the first nut 1, formed therein with a female screw thread 2a threaded to engage with the male screw thread 4a on the projecting part 4.
When this double locknut assembly M is fitted onto the bolt 5, after the second nut 2 is engaged through threads with the projecting part 4 of the first nut 1 by a slight degree to form one body unit, the first nut 1 is tightened on the bolt 5 until the first nut 1 sufficiently fastens the member 7 to be tightened. Thereafter, the second nut 2 is tightened. Then, the first nut 1 is squeezed by the second nut 2 in the direction in which the diameter of the first nut 1 is reduced, and therefore, the female screw thread 6a of the first nut 1 wedges into the male screw thread 5a of the bolt 5. Simultaneously, the bottom surface 2b of the second not 2 has strong frictional contact with the upper surface 3a of the flange section 3 of the first nut.
It is possible to select such a relationship that the inner diameter of the second nut is smaller than the outer diameter of the projecting part 4 in order to reduce the diameter of the first nut 1 by means of the second nut 2, or such that the degree of the taper of the hole of the second nut 2 is slightly larger than that of the taper of the projecting part 4 in order to squeeze the upper section alone of the projecting part 4.
It is to be noted here that although the male screw thread 4a on the outer peripheral surface of the first nut 1 and the female screw thread 2a in the second nut 2 have been explained as right-handed screw threads, respectively, these can be left-handed screw threads for squeezing the outer peripheral surface of the first nut 1 inward. Further, although it is illustrated that the above-mentioned slit S1 in the first nut 1 is formed to extend over the entire length of the first nut 1, a slit S2 can be formed instead of the slit S1 within the range of the projecting part 4. Further, not only one slit S2 but a plurality of slits S2 may also be formed at suitable intervals. In the practice of this invention, it is preferred that three or four slits S2 be formed in the first nut 1.
Further, as shown in FIG. 7, it is possible to provide such an arrangement that thin screw threads 4a, 2a are formed on a projecting part 3 of the first nut 1 and in the second nut 2, respectively in a part of the entire height thereof while inclined surfaces 4b, 2c are formed on and in them in the remaining part thereof with a frictional force being effected there-between.
As explained above, according to the present invention, the double locknut assembly may have a satisfactory locking effect and be manufactured without difficulty.
While, the invention has been explained with reference to specific embodiment, it is to be noted that the description is illustrative and the invention is limited only by the appended claims.