This application claims the priority of German Patent Application, Serial No. 10 2016 200 354.2, filed Jan. 14, 2016, pursuant to 35 U.S.C. 119(a)-(d), the content of which is incorporated herein by reference in its entirety as if fully set forth herein.
The invention concerns a rotating device module for a toy.
Rotating device modules for toys are known by the market as, for example, wheels, rollers or other rotors. U.S. Pat. No. 2,634,168 describes a wheel of an aeroplane model with a rotatable hub and a rim screwed to it.
The present invention has an object of designing a removable rotating device module of this type to increase play value wherein this is to be derived at low cost and effort in producing and assembling the rotating device module.
This object is resolved according to the invention by a rotating device module for a toy,
The disc part can take the form, for example, of a wheel rim, a roller, a cable pulley, or another rotating part. According to the invention, the torque proof screw connection of the hub part to the disc part is feasible without an additional fastening element, in particular not needing an additional nut. The internal thread can be formed on the disc part. The external thread can be formed on the hub part. The internal thread has no more than one thread turn. This type of internal thread has a circumferential groove of no more than 360°. With this type of design, it is possible to make the disc part as an injection moulded part easily removable from the mould. The circumferential groove of the internal thread can be less than 360° and can be 350°, for example.
A contact face, in which the hub part has at least one contact face as an abutment against the screwed disc part, can serve as an aid to positioning when placing the disc part on the hub part during assembly. This makes assembly easier for children in particular.
By providing a rotatable connection between of the hub part and the axle component, the hub part can be rotated relative to the axle component.
Also, where the axle is fixed, it is possible for the hub part to be rotated to attach or release the disc part. In the case of a hub part of a vehicle hub, this also produces a desirable differential effect.
In one embodiment of the thread connection as a left-hand thread, when screwing on, the inner hub part can be rotated relative to the stationary outer disc part, wherein the left-hand thread allows the hub part to be screwed on to the disc part by intuitively turning the hub part clockwise.
A plurality of thread segments, in which the external thread is designed as a plurality of thread segments arranged around the rotation axis with gaps between one another in a circumferential direction, makes it easier to screw on the thread components of the threaded connection.
A contact face having a plurality of contact face segments arranged around the rotation axis with gaps between one another in a circumferential direction saves material. In addition, the contact face segments can be arranged in the circumferential direction where there are gaps in the thread segments of the external thread. This enables the hub part to be designed as an injection moulded part easily removable from the mould.
The advantages of a toy with a rotating device module according to the invention correspond to those that have been explained above in reference to the rotating device module. The toy can involve a toy vehicle.
An assembly module with a rotating device module according to the invention and with a plug-in tool, which has a plug-in tool circumferential contour, which is designed to be complementary to a socket contour of the hub part, has corresponding advantages. By using the plug-in tool, it is possible to design the hub part without a rotary actuating element so that the hub part can be designed to be realistic, approximating to a real life example. Alternatively, a wing projection can be formed on the hub part, for example, to perform the rotation. In this case, a plug-in tool can be dispensed with.
A plug-in tool for an assembly module according to the invention provides the advantages that have been explained above in reference to the assembly module.
Embodiment examples of the invention are explained in more detail below with the aid of the drawings.
An assembly module 1 illustrated in its entirety in
The rotating device module 2 has an axle component 3a which provides a rotating axle of the rotating device module 2. In addition, the rotating device module 2 has a hub part 5, which is connected to the axle component 3a, and a disc part 6. The disc part 6 can involve, for example, a wheel rim, which is explained below in more detail with particular reference to
This threaded connection comprises an external thread 7 which is a component part of the hub part 5. The external thread 7 is designed as a plurality of thread segments 8 around the rotation axis 4 with gaps between one another in a circumferential direction. Furthermore, the threaded connection has an internal thread 9 complementary to the external thread 7, which is a component part of the disc part 6. The external thread 7 is formed on the hub part 5. The internal thread 9 is formed on the disc part 6.
The internal thread 9 has just one thread turn extending no more than 360° around the rotation axis 4. In the embodiment according to
Furthermore, the hub part 5 has a contact face 10 as an abutment against the screwed disc part 6. In the case where the disc part 6 is not screwed, the contact face 10 serves to position the disc part 6 on hub part 5.
The contact face 10 comprises a plurality of contact face segments 11 around the rotation axis 4 with gaps between one another in a circumferential direction. The contact face segments 11 are arranged in the circumferential direction where there are gaps between the thread segments 8. This makes it easier to remove the hub part 5 from the mould when it is made as an injection-moulded part.
The threaded connection with the external thread 7 and the internal thread 9 complementary to it are designed as a left-hand thread.
The plug-in tool 3 has a circumferential contour 12 which is made to be complementary to a socket contour 13 of the hub part 5. In addition, the plug-in tool circumferential contour 12 has a plurality of bulges which are designed to be complementary to mock-up nuts 14 formed on hub part 5.
To fit the rotating device module, the disc part 6 is placed on the hub part 5 so that the internal thread 9 of the disc part 6 enters the thread segments 8 of the external thread 7 of the hub part 5. During this, the contact face segments 11, which are now in contact with the rear side of the disc part 6, help in positioning. Next, the plug-in tool 3 is placed on the hub part 5, wherein the plug-in tool circumferential contour 12 engages positively with the socket contour 13 of the hub part 5. The plug-in tool 3 is now rotated clockwise, wherein an actuating wing 15 of the plug-in tool 3 is grasped by the operating person between thumb and index finger. In rotating the plug-in tool 3 in this manner, the hub part 5 is rotated clockwise relative to the stationary disc part 6. The left-handed design of the threaded connection ensures that the external thread 7 of the hub part 5 engages with the internal thread 9 of the disc part 6. Once the threaded connection 7, 9 is screwed on, the disc part 6 is clamped positively between the thread segments 8 and the contact face segments 11 respectively. Thus, this has produced a reliable and non-rotational connection between the hub part 5 and the disc part 6. The plug-in tool 3 can now be withdrawn. An additional fastening nut is unnecessary.
With the aid of
The assembly module 16 again has a hub part 5 and a disc part 6.
In the assembly module 16, the hub part 5 is connected to an axle component 17 so that it rotates, wherein said axle can be designed as a rigid axle. This rotatable connection of the axle component 17 to the hub part 5 of the rotating device module 2 according to
With the rotating device module 2 according to
With the aid of
In the case of the rotating device module 20, the disc part is designed as a wheel rim 21 of a toy vehicle wheel 22.
A plug-in tool can be inserted based on the type of plug-in tool 3 for rotating device module 20 also.
The toy, of which the toy vehicle wheel 22 is a component part, can involve a tractor, a lorry, a crane vehicle or some other vehicle, such as a trailer.
The entire assembly module 1, 16 as well as the rotating device module 2, 20 can be made exclusively from plastic components.
Number | Date | Country | Kind |
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10 2016 200 354.2 | Jan 2016 | DE | national |