Tire hot press and method for manufacturing tire

By adopting a side-by-side arrangement of cavities and fixed columns in the tire hot press, and using a drive unit to move the upper part of the press, the problem of large space requirements for the tire hot press is solved, the installation density on the production site is increased, and the operation process is simplified.

CN121532286APending Publication Date: 2026-02-13HARBURG FREUDENBERGER MASCHINENBAU GMBH
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Patent Information

Application Number
CN202480031120.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2023-05-08
Filing Date
2024-03-25
Publication Date
2026-02-13

AI Technical Summary

Technical Problem

Existing tire hot presses require a large amount of space, limiting the number that can be installed on the production site.

Method used

The press adopts a column press design with two side-by-side cavities and a fixed column. The vertical movement of the upper part of the press is achieved through a drive unit, which ensures synchronous operation of the cavities and reduces space occupation.

Benefits of technology

This reduces the space requirements of tire hot presses, increases installation density on the production site, and simplifies loading and unloading processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a tyre hot press and a method for producing tyres, the tyre hot press being designed as a column press having two cavities arranged next to one another, the tyre hot press having a press lower part and a press upper part, the press upper part can move in the vertical direction relative to the press lower part by means of at least one driving unit so as to open and close the cavity. According to the invention, all uprights are arranged between the lateral ends of the cavities facing away from each other, such that the width of the tire hot press is defined by the cavities adjacent to each other. A method for manufacturing a tire allows for the control of cavities side by side with each other together.
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Description

TECHNICAL FIELD

[0001] The invention relates to a tire heat press having two cavities arranged next to each other, wherein the tire heat press is configured as a column press having at least two columns.

[0002] Furthermore, the invention also relates to a method for producing a tire by means of a tire heat press. BACKGROUND

[0003] A tire heat press has at least one cavity in which a supplied green tire is vulcanized by means of heat and pressure. Here, the cavity is opened for charging and discharging, while it is closed for tire vulcanization.

[0004] A tire heat press having two cavities arranged next to each other is known and can reduce costs and space requirements compared to two tire heat presses each having only one cavity.

[0005] The space requirement for installing a tire heat press at the production site is an important feature of a tire heat press. The smaller the space requirement, the more tire heat presses can be installed in a given area. SUMMARY

[0006] It is therefore the task of the invention to realize a tire heat press having two cavities arranged next to each other and at least two columns, which has a reduced space requirement compared to known structures.

[0007] According to the invention, this task is solved by a tire heat press according to claim 1.

[0008] Furthermore, it is the task of the invention to provide a method for producing a tire by means of which the two cavities of a tire heat press can be operated in a common movement.

[0009] According to the invention, this task is solved by a method for producing a tire according to claim 12.

[0010] Advantageous configurations of the invention are claimed in the dependent patent claims.

[0011] The features of the tire heat press and the method for producing a tire disclosed below are part of the invention in all realizable combinations.

[0012] The tire heat press according to the invention is configured as a column press and has two cavities arranged next to each other and at least two columns.

[0013] In embodiments of the application, the column is configured as a fixed column. In comparison to a pivotable column or a sinkable column, a fixed column enables a reduced space requirement of the tire heat press, so that no space has to be reserved in front of or behind the tire heat press for pivoting the press upper part for opening, or below the tire heat press for sinking of the column, when the tire heat press is in operation.

[0014] In embodiments of the application, the fixed column is neither pivotable nor sinkable, but is positionally fixed and immovable in all functional states of the assembled tire heat press.

[0015] In embodiments of the application, the tire heat press has exactly two columns.

[0016] The tire heat press is divided into a press lower part and a press upper part, wherein the press upper part is movable relative to the press lower part in vertical direction for opening and closing the cavity.

[0017] In embodiments of the application, the at least two columns are configured for guiding the press upper part.

[0018] The at least two columns are arranged vertically along their longitudinal direction.

[0019] In embodiments of the application, the columns are configured as circular guides.

[0020] In embodiments of the application, the columns are fixedly connected with the press lower part and the press upper part is guided in its movement along the columns. Preferably, in these embodiments of the application, the columns are configured as fixed columns.

[0021] In other embodiments of the application, the columns are fixedly connected with the press upper part and are guided in the area of the press lower part. In this embodiment of the application, the columns are preferably sinkable into the floor on which the tire heat press is installed.

[0022] For moving the press upper part relative to the press lower part, the tire heat press according to the application has at least one drive unit.

[0023] In embodiments of the application, the at least one drive unit is electrically and / or hydraulically operable.

[0024] In embodiments of the application, the at least one drive unit is realized as a cylinder, in particular a hydraulic cylinder.

[0025] However, embodiments with other drive units are conceivable. It is important that these drive units are suitable for lifting or lowering the weight of the press upper part in vertical direction in a controllable manner.

[0026] In an embodiment of the application with a drive unit, the drive unit is preferably arranged centrally between two uprights.

[0027] In an embodiment of the application, each of the at least two uprights is assigned a separate drive unit and the drive unit is arranged in the area of the respective upright.

[0028] In an embodiment of the application, the assigned drive unit is arranged close to the respective upright.

[0029] In other embodiments of the application, the drive unit is integrated in at least one upright.

[0030] In an advantageous embodiment of the application with at least one cylinder as drive unit, the drive unit is arranged such that the force is directly transmitted to the ground on which the tire heat press is mounted.

[0031] The arrangement of the cavities next to each other is mechanically connected to each other in the part of the press upper part, so that these parts can be moved together.

[0032] In an embodiment of the application, by the mechanical connection of the cavities to each other, the same movement is achieved for both cavities. This means that the cavities can be controlled synchronously for the vulcanization process, in particular the opening and closing of the cavities.

[0033] In an embodiment of the application, the part of the cover-like construction of the cavities is arranged on the press upper part.

[0034] In a preferred embodiment of the application, the cavities next to each other are arranged very close to each other. Thereby, a particularly small width of the tire heat press can be achieved. Preferably, the parts of the cavities in the press upper part next to each other are arranged so close to each other that they do not touch.

[0035] In an embodiment of the application, all uprights are arranged between the side ends of the cavities facing away from each other, so that the width of the tire heat press is defined by the cavities next to each other.

[0036] In an embodiment of the application, the uprights are arranged completely within the area defined by the smallest rectangle enclosing the cavities in a top view. Thereby, the width and the depth of the tire heat press are defined by the width and the depth of the cavities, without being increased by uprights located outside the cavities.

[0037] In a preferred embodiment of the application, at least two uprights are arranged in the space between two cavities. Thereby, a particularly small width of the tire heat press can be achieved.

[0038] If all uprights are arranged in the space between two cavities, the cavities can be approached freely from the outside without the uprights blocking the path, for example for a loading and / or unloading device.

[0039] In an embodiment of the application, the cavities have a circular or similar circular contour in a top view.

[0040] In an embodiment of the application, the space between the cavities is produced by the free space between the cavities in a top view and two tangents, which respectively touch the points of the outer sides of the two cavities on one side.

[0041] In an advantageous embodiment of the application, at least one post is arranged in the front intermediate space between the cavities and at least one post is arranged in the rear intermediate space between the cavities.

[0042] In an embodiment of the application, at least two posts are arranged on a straight line, which extends through the centre of gravity of the press upper part.

[0043] In an embodiment of the application, it is also possible to consider a post position, which is offset from the intermediate space of the cavities in a horizontal direction perpendicular to the line of the centre points of the cavities.

[0044] In a particularly advantageous embodiment of the application, at least one post in the front intermediate space is arranged symmetrically with at least one post in the rear intermediate space in a top view, wherein the line of the centre points of the cavities is used as the axis of symmetry.

[0045] In a particularly preferred embodiment of the application, the posts are arranged on a horizontally extending straight line, which intersects perpendicularly in the middle the line of the centre points of the cavities. In the case of a symmetrical design of the press upper part, this straight line corresponds to the straight line, which extends through the centre of gravity of the press upper part.

[0046] Preferably, not only at least two posts but also at least one drive unit are arranged on this straight line. Thereby, a uniform movement of the press upper part relative to the two cavities can be achieved.

[0047] In other embodiments of the application, at least one fixed post is arranged on the side of the cavities. For example, one fixed post each is arranged on the straight line connecting the centre points of the cavities outside the cavities.

[0048] In other embodiments of the application, at least one fixed post is arranged on the side of the cavities and at least one fixed post is arranged in the intermediate space between the cavities.

[0049] In a preferred embodiment of the invention, where at least one cylinder serves as the drive unit, the drive unit has at least one extension at the upper part of the tire heat press. This extension is connected to the cavity and protrudes upward beyond the cavity. The extension enables the tire heat press to be mounted on a flat surface while providing the stroke required to fully open the cavity. Here, the extension sets the point of action of at least one cylinder at the upper part of the press upward to such an extent that the required stroke can be achieved.

[0050] In an embodiment of the tire hot press according to the invention, the tire hot press has at least one loading and / or unloading device.

[0051] The method for manufacturing tires according to the present invention includes at least the following steps: - Open the two side-by-side chambers of the tire heat press together. - The cavities are loaded separately to produce fetuses using at least one loading device. - Close both chambers together. - This allows the tire to be vulcanized in two cavities. - Open both cavities together. - Unload the two cavities using at least one unloading device.

[0052] In an advantageous embodiment of the invention, the cavity is loaded and / or unloaded simultaneously, allowing the loading and / or unloading process to proceed more quickly.

[0053] In a preferred embodiment of the method for manufacturing tires according to the present invention, a tire hot press according to the present invention is used. Attached Figure Description

[0054] Exemplary embodiments of the invention are illustrated in the following figures. The figures show: Figure 1 A side view of the tire hot press according to the present invention, taken from the front. Figure 2 :and Figure 1 Compared to a side view of the tire hot press according to the invention rotated 90°, and Figure 3 Top view of the tire hot press according to the present invention. Detailed Implementation

[0055] exist Figure 1 The image shows a side view of one embodiment of the tire hot press 1 according to the present invention.

[0056] The tire hot press 1 includes an upper press 2, a lower press 3, and at least two columns 4 and 5. The upper press 2 is movable relative to the lower press 3 and is guided along the vertically oriented columns 4 and 5. In the diagram shown, only the first column 4 is visible, while the second column 5 is obscured by it.

[0057] The tire hot press 1 has two cavities 6 and 7 arranged side by side, which are shown in the open state.

[0058] Figure 2 shows that... Figure 1 A side view of an embodiment of the tire hot press 1 shown, relative to... Figure 1 The implementation method was rotated by 90°.

[0059] Drive devices 8 and 9, configured as cylinders, are respectively arranged beside the first column 4 and the second column 5 to move the upper part 2 of the press relative to the lower part 3 of the press, thereby opening and closing the cavities 6 and 7. The columns 4 and 5 are located within the width defined by the cavities 6 and 7 and are therefore arranged in the intermediate space between the cavities 6 and 7.

[0060] In the illustrated embodiment, drive devices 8 and 9 are respectively arranged on the outside of columns 4 and 5. However, it is also possible to consider an embodiment in which at least one drive device 8 or 9 is arranged between columns 4 and 5.

[0061] The drive units 8 and 9 are fixed to the upper part 2 of the press by means of the fixing element 10.

[0062] The drive units 8 and 9, the columns 4 and 5, and the lower part of the press 3 are firmly connected to each other through a frame structure.

[0063] Figure 3 An embodiment of the tire hot press 1 according to the present invention is shown in top view.

[0064] The cavities 6 and 7 are arranged on the upper part 2 of the press and are mechanically and securely connected to each other by connecting element 11. Furthermore, in the illustrated embodiment, the connecting element 11 forms a sleeve that runs on the columns 4 and 5, so that the upper part 2 of the press is guided along the columns 4 and 5.

[0065] Cavities 6 and 7 are arranged side by side directly next to each other.

[0066] Drive devices 8 and 9 are respectively arranged on the outside of columns 4 and 5, and the drive devices are respectively connected to the upper part 2 of the press through connecting element 11.

[0067] The pillars 4 and 5 are arranged in the middle space and centrally between the cavities 6 and 7. The first pillar 4 is arranged in the front middle space 12, and the second pillar 5 is arranged in the rear middle space 13.

[0068] In the top view, the intermediate space is bounded by the adjacent sides of cavities 6 and 7 facing each other, as well as tangents C1 and C2.

[0069] In the preferred embodiment shown here, the columns 4 and 5 are spaced apart from each other only to such an extent that the diameter of the sleeves running on the respective columns 4 and 5 is approximately equal to or slightly smaller than the distance between the cavities 6 and 7 at the respective points. Thus, the depth of the tire heat press 1 can be reduced compared to a structure with columns arranged further out.

[0070] In other embodiments of the invention, the upper part 2 of the press is guided along the columns 4, 5 by means of other types of elements. For example, pins that move in slots in the columns 4, 5, or elements that only partially surround the columns 4, 5, may be considered.

[0071] In the embodiment of the invention shown, the center points of columns 4 and 5 and drive devices 8 and 9 are located on a straight line B perpendicular to the line A connecting the center points of cavities 6 and 7 in the cross-section of the top view.

Claims

1. A tire hot press (1), comprising a column press having two cavities (6, 7) arranged side by side, wherein, The tire heat press (1) has a lower press (3) and an upper press (2), the upper press being movable in a vertical direction relative to the lower press (3) by means of at least one drive unit (8, 9) to open and close the cavities (6, 7), characterized in that all the columns (4, 5) are arranged between the opposite side ends of the cavities (6, 7) such that the width of the tire heat press (1) is defined by the cavities (6, 7) arranged side by side.

2. The tire hot press (1) according to claim 1, characterized in that, The at least two columns (4, 5) are configured to guide the upper part (2) of the press.

3. The tire hot press (1) according to any one of the preceding claims, characterized in that, Each of the at least two columns (4, 5) is equipped with a separate drive unit (8, 9), and the drive unit is arranged in the area of ​​the respective column (4, 5).

4. The tire hot press (1) according to any one of the preceding claims, characterized in that, The cavities (6, 7) arranged side by side on the upper part (2) of the press are mechanically connected to each other so that these parts can move together.

5. The tire hot press (1) according to any one of the preceding claims, characterized in that, The columns (4, 5) are arranged entirely within a plane defined by the smallest rectangle that surrounds the cavity (6, 7) in the top view.

6. The tire hot press (1) according to any one of the preceding claims, characterized in that, The at least two columns (4, 5) are arranged in the space between the two cavities (6, 7).

7. The tire hot press (1) according to claim 6, characterized in that, At least one column (4) is arranged in the intermediate space (12) in front of the cavities (6, 7), and at least one column (5) is arranged in the intermediate space (13) behind the cavities (6, 7).

8. The tire hot press (1) according to claim 7, characterized in that, At least one column (4) in the front intermediate space (12) is arranged symmetrically with at least one column (5) in the rear intermediate space (13) in the top view, wherein the line (A) connecting the center points of the cavities (6, 7) serves as the axis of symmetry.

9. The tire hot press (1) according to any one of the preceding claims, characterized in that, In the top view, the columns (4, 5) are arranged on a horizontally extending straight line (B), which intersects perpendicularly in the middle with the line (A) connecting the center point of the cavities (6, 7).

10. The tire hot press (1) according to any one of claims 7 to 9, characterized in that, At least two columns (4, 5) are arranged on a straight line passing through the center of gravity of the upper part (2) of the press.

11. The tire hot press (1) according to any one of claims 8 to 10, characterized in that, The at least one drive unit (8, 9) is arranged on a straight line extending through the position of the column (4, 5).

12. A method for manufacturing a tire, comprising at least the following steps: a. Open the two side-by-side chambers (6, 7) of the tire heat press (1) together. b. Using at least one loading device, load the cavities (6, 7) respectively to produce a fetus. c. Close both cavities (6 and 7) together. d. Vulcanize the tire in the two cavities (6, 7). e. Open the two cavities (6, 7) together. f. Unload the two cavities (6, 7) using at least one unloading device.

13. The method according to claim 12, characterized in that, Use the tire hot press (1) according to any one of claims 1 to 11.