SET OF MOLDING ELEMENTS AND MOLD
20180147748 ยท 2018-05-31
Inventors
Cpc classification
B29D2030/0613
PERFORMING OPERATIONS; TRANSPORTING
B29C33/302
PERFORMING OPERATIONS; TRANSPORTING
B29D30/0606
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C33/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention provides for a set of molding elements (4, 5) adapted to be attached in a mold for molding tires, each molding element being able to mold a cut in a tire tread, wherein the set of molding elements comprises complex shaped molding elements, each molding element being able to connect to another molding element from the set of molding elements along a generally straight interface (54) defined between connecting molding elements The invention also provides for a mold for molding tires, said mold comprising a set of molding elements as described above attached to a main cast aluminum body.
Claims
1. A set of molding elements adapted to be attached in a mold for molding tires, each molding element being able to mold a cut in a tire tread, comprising: a circumferential molding element and a transverse molding element that have complex shapes, the circumferential molding element being able to connect to the transverse molding element from the set of molding elements along a generally straight interface defined between the circumferential molding element and the transverse molding element connecting molding elements.
2. A set of molding elements according to claim 1, wherein the set of molding elements having molding elements that comprise undulated blades having generally straight blade edges for connection to other ones of the molding elements.
3. A set of molding elements according to claim 1, wherein the circumferential and transverse molding elements comprise generally straight receiving zones arranged on lateral walls of said circumferential and transverse molding elements.
4. A set of molding elements according to claim 3 wherein the receiving zones are slots arranged in a protruding part from the lateral wall of the circumferential molding element.
5. A set of molding elements according to claim 4 wherein the protruding part is a forming post extending along a full molding height of the lateral wall.
6. A set of molding elements according to claim 1, wherein the set of molding elements having molding elements with voids arranged in bar portions of the molding elements, said voids being able to receive bar portion from a connecting one of the molding elements.
7. A set of molding elements according to claim 1, wherein the set of molding elements having molding elements that are obtained by a laser sintering process.
8. A set of molding elements according to claim 7 wherein all molding elements are obtained by a laser sintering process.
9. A mold for molding tires, said mold comprising a set of molding elements according to claim 1 attached to a main cast aluminum body.
10. A set of molding elements according to claim 1, wherein the set of molding elements having molding elements.
11. A set of molding elements according to claim 10, wherein the molding elements comprising complex shaped molding elements, each one of the molding elements being able to connect to at least one other one of the molding elements from the set of molding elements along a generally straight interface defined between the connecting molding elements.
12. A set of molding elements adapted to be attached in a mold for molding tires, comprising a plurality of molding elements each able to mold a cut in a tire tread, wherein each molding element has a complex shape, wherein each molding element being able to connect to another molding element from the set of molding elements along a generally straight interface defined between connecting molding elements, wherein the molding elements have undulated blades with generally straight blade edges for connection to other molding elements, wherein the molding elements have generally straight receiving zones arranged on a lateral wall of the molding elements that are slots that receive the generally straight blade edges.
13. A set of molding elements according to claim 12, wherein the molding elements having a plurality of circumferential molding elements and transverse molding elements for molding circumferential grooves and transverse grooves into the tire.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Further features and advantages of the invention will become apparent from the following description given by way of non-limiting example with reference to the attached drawings in which:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DETAILED DESCRIPTION OF A PARTICULAR EMBODIMENT
[0027] Reference will now be made in detail to embodiments of the invention, examples of which are illustrated in the drawings. Those examples are provided by way of explanation of the invention. In the description that follows, elements that are substantially identical or similar will be denoted by identical references.
[0028]
[0029] In the present embodiment there are three sets 31, 32, 33 of those molding elements. Each set is assembled from individual molding elements that connect together and are held in the cast aluminum segment main bodies. Here, the bases of all of the molding elements are buried in the main body and the edges of some of the molding elements are buried in solid cast aluminum circumferential ridges 21 that will mold main circumferential grooves in the tire tread.
[0030] Despite their small size, the molding elements must resist great forces during the molding and unmolding steps of the tire manufacturing process. The molding elements are preferably made out of steel and preferably obtained by a 3-D printing process using laser sintering.
[0031] As shown in more detail on
[0032]
[0033] The left side part of
[0034] The right side part of
[0035] The width of the slot is slightly greater than the thickness of the edge that will be received in this slot, so as to allow a necessary clearance for assembling the two molding elements.
[0036] Comparing again
[0037]
[0038]
[0039]
[0040] The molding elements are preferably manufactured from steel in a 3-D printing process using laser sintering. Obtaining a large network by manufacturing much smaller individual molding elements allows for a much more effective laser sintering process.
[0041] As an alternative, these individual molding elements can be manufactured by any other suitable manufacturing method such as stamping, casting or machining.
[0042] The straight interface between elements allows for small relative movements that make assembling the networks more simple and less subject to warping under thermal expansion and stresses during the subsequent aluminum casting process.