CONVEYOR BELT OR STRAP

DE502019013850D1Active Publication Date: 2025-09-18CONTITECH DEUTSCHLAND GMBH
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Patent Information

Application Number
DE502019013850
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-07-30
Filing Date
2019-06-17
Publication Date
2025-09-18
Estimated Expiration
2039-06-17

AI Technical Summary

Technical Problem

Conventional conveyor belts experience premature failure due to cracks in side profiles caused by radial stretching and material fatigue, leading to costly repairs and downtime, especially in filter belts used for liquid drainage.

Method used

A conveyor belt design featuring an adhesive layer with a textile fabric embedded between the side profile and the elastomeric base element, where the textile fabric's fibers are oriented obliquely to absorb loads in both longitudinal and transverse directions, reducing stress on the base element and preventing crack formation.

Benefits of technology

Enhances durability and longevity of the conveyor belt by absorbing loads in multiple directions, minimizing material fatigue and extending the service life, thereby reducing maintenance costs and improving system availability.

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Description

[0001] The present invention relates to a conveyor belt or belt according to the preamble of claim 1.

[0002] In the field of conveyor belts, so-called filter belts are well known, which are used to drain liquids from the material being conveyed. The endlessly closed filter belt is used on a belt conveyor and moved continuously by it in a conveying or rotating direction. The underside of the filter belt glides over a vacuum chamber of the belt conveyor. A filter cloth rests on the upper side of the filter belt and is carried by the filter belt. The filter belt has transverse grooves with holes, usually in the middle of the belt. Since the holes are only located in the area above the vacuum chamber of the belt conveyor, a negative pressure can be maintained across the entire width of the belt. This allows liquids to pass through the filter cloth and into the transverse grooves and from there to be drained towards the center by means of the vacuum chamber through the holes in the filter belt.

[0003] The filter belt itself typically comprises an elastomeric base belt, which is supported flatly in the transverse direction by the belt conveyor and moved in the longitudinal direction, which is the conveying direction or the direction of movement. The elastomeric base belt can be reinforced in the circumferential direction, which is the direction of tension of movement, with a textile tension member to absorb the tensile forces in the longitudinal direction or in the circumferential direction. The textile tension member of the elastomeric base belt is endlessly closed in the circumferential direction, and the fibers of the textile tension member are aligned in the circumferential direction.

[0004] Typically, side profiles are arranged on the two lateral edge regions of the elastomeric base belt in the transverse direction. These profiles are also made of an elastomeric material and extend at least substantially perpendicularly from the surface of the filter belt facing away from the belt conveyor, which can also be referred to as the top side of the filter belt. The side profiles prevent liquids and the conveyed material from overflowing to the side of the filter belt. Such a filter belt, including a belt conveyor, is known, for example, from DE 42 03 349 A1.

[0005] So far, it is known for such filter belts to apply the side profiles to the top side of the elastomeric base belt by means of an adhesive layer, which is applied as an intermediate rubber of approximately 2 mm thickness between an underside of the side profile and the top side of the elastomeric base belt in the area of ​​the lateral edge areas.

[0006] This adhesive layer is subject to severe stress during operation, which occurs primarily due to the stretching of the belt and the side profiles as the filter belt is deflected over deflection or drive rollers. In other words, with each revolution on an idler pulley, support rollers, idler rollers, or drive roller, radial stretching occurs, resulting in a yield load on the side profiles. The side profiles are also subject to aging, material fatigue, and wear from the conveyed material.

[0007] This can lead to cracks in the side profiles during operation, which can extend into the elastomeric base belt if the cracks are not detected and repaired promptly. However, repairs are usually only possible at considerable expense and time.

[0008] Tearing of the side profiles into the elastomeric base belt can, for example, cause moisture to penetrate the elastomeric base belt. This can result in damage or even destruction of the preferably textile tension member, which can lead to the filter belt tearing and thus to the complete failure of the belt conveyor. Such a production downtime can result in significant costs for the belt conveyor operator. The costs of purchasing, installing, and commissioning a new filter belt must also be considered.

[0009] The filter belt's function may be compromised even earlier if cracks in the elastomer base belt prevent the formation of a vacuum. Furthermore, cracks in the side profiles can lead to the leakage of liquid or conveyed material.

[0010] DE 10 2009 025 911 A1 describes a conveyor belt according to the preamble of claim 1. The conveyor belt comprises an elastomeric material, on whose supporting surface at least one structural part comprising a foot strip is arranged. In order to attach a structural part to the conveyor belt with a permanent and secure connection and with minimal effort, the structural part and conveyor belt are joined together with a hook-and-loop fastener. The contact surfaces of the foot strip and the supporting surface of the conveyor belt each have an active part or the hook-and-loop fastener. Between these two active parts, the hook-and-loop fasteners, an adhesive layer is arranged, which permanently secures the closed hook-and-loop fastener.

[0011] An object of the present invention is to provide a conveyor belt or strap of the type described above, so that the service life of the conveyor belt or strap can be increased. In particular, the connection of the side profiles to the elastomeric base element is to be improved. At the very least, an alternative to known conveyor belts or straps is to be provided.

[0012] The object is achieved according to the invention by a conveyor belt or belt having the features according to patent claim 1. Advantageous further developments are described in the subclaims.

[0013] The present invention thus relates to a conveyor belt or belt with an elastomeric base element that is endlessly closable or endlessly closed in a longitudinal direction and with at least one side profile that extends in the longitudinal direction and is arranged at least in sections on the upper side of the elastomeric base element. Such a conveyor belt can be used in particular as a filter belt, as described above. However, such a conveyor belt can also be used in an inclined or vertical conveyor or in other conveyor belt applications in which side profiles are used, for example to hold the material to be conveyed on the upper side of the elastomeric base belt of the conveyor belt during transport in the transverse direction. Such a belt can be used, for example, as an elevator belt, as a drive belt and the like.

[0014] In the conveyor belt or strap, an adhesive layer is arranged between the underside of the side profile and the top side of the elastomeric base element. This adhesive layer enables a material-to-material bond between the side profile and the elastomeric base element. The adhesive layer can preferably comprise an elastomeric material, allowing the side profile to be vulcanized onto the top side of the elastomeric base element. It is irrelevant whether the vulcanization is hot or cold. Alternatively, the adhesive layer can preferably be formed as a thin, flat adhesive layer.

[0015] The adhesive layer comprises at least one textile fabric with at least one fiber, which is oriented at least partially, preferably completely, both differently from the longitudinal direction of the conveyor belt or strap and differently from the transverse direction of the conveyor belt or strap. In other words, the textile fabric is designed to have at least one fiber that runs neither in the longitudinal direction nor in the transverse direction of the conveyor belt or strap, which is its direction of movement or tension, but has a different orientation.

[0016] By means of this fiber, loads can be absorbed which occur not only in the longitudinal direction of the conveyor belt or strap but also in the transverse direction. In this way, extensibility can be achieved in both the longitudinal and transverse directions, whereby such loads can be absorbed and at least partially kept away from the elastomeric base element. Such loads can occur, for example, in the case of a conveyor belt with each revolution on a deflection pulley or on a drive pulley of the conveyor belt system and lead to radial expansion and thus to tensile stress on the side profiles of the conveyor belt and the adhesive layer underneath. These tensile stresses can be absorbed according to the invention by such an aligned fiber of the textile fabric of the adhesive layer, so that the formation of cracks in the base belt can be reduced or even prevented.In any case, the durability and longevity of the conveyor belt can be improved. This also applies to other flat elastomer elements such as belts.

[0017] Damage can also be limited to the side profiles. This allows repairs to be avoided or, if necessary, carried out more quickly and / or easily, because these usually only affect the side profiles and not the base belt body of the elastomeric base belt. Overall, the availability of the corresponding conveyor belt system can be increased. This also applies to other flat elastomer elements, such as belts.

[0018] The production of such a conveyor belt can also be comparatively simple and therefore cost-effective, as the textile fabric of the adhesive layer can be applied as a prefabricated layer by simply unwinding it onto the top side of the elastomeric base belt. This also applies to other flat elastomer elements such as belts.

[0019] According to the invention, the textile fabric comprises a woven fabric with a plurality of warp threads extending at least substantially in the longitudinal direction of the conveyor belt or strap, wherein the woven fabric has at least one weft thread running at an angle oblique to the transverse direction. This allows the previously described properties and advantages to be realized by means of a woven fabric. Using a woven fabric as a textile fabric can be advantageous in that the orientation of the threads of the fabric can be defined and reproducibly specified, so that the resulting properties can also be defined accordingly.Not using a fabric with transversely aligned weft thread as previously known, but allowing the weft thread to run at a predetermined angle oblique to the transverse direction can offer a defined possibility of achieving a predetermined extensibility of the textile fabric in the longitudinal direction as well as in the transverse direction, as previously described.

[0020] According to one embodiment of the present invention, the weft thread runs at an angle of at least approximately 30°, preferably approximately 45°, to the transverse direction. With such an orientation of the weft thread at an angle to the transverse direction, the properties and advantages described above can be achieved particularly effectively. In particular, with an orientation at an angle of approximately 45°, uniform extensibility can be achieved in both the longitudinal and transverse directions.

[0021] According to a further embodiment of the present invention, at least one warp thread, preferably all warp threads, are designed to dissolve during the vulcanization of the conveyor belt or strap. This can be achieved by appropriately selecting the warp thread material. In this way, the warp thread can have a stabilizing effect on the weft thread during the application of the adhesive layer, but subsequently dissolve and thereby lose all effect. The transmission of forces can then occur exclusively via the weft thread, as described above.

[0022] According to a further embodiment of the present invention, at least one warp thread, preferably all warp threads, are formed from the elastomeric material of the elastomeric base element. In this way, a comparable effect to that described above can be achieved, since the warp thread merges into the elastomeric base element, and thus the transmission of forces also occurs exclusively via the weft thread, as described above.

[0023] According to a further embodiment of the present invention, at least one warp thread, preferably all warp threads, have at least the same elasticity, preferably a higher elasticity, than the elastomeric material of the elastomeric base element. This also makes it possible to ensure that forces are transmitted exclusively via the weft thread, as described above, since the extensibility of the warp threads is too great to transmit forces.

[0024] According to a further embodiment of the present invention, at least one warp thread, preferably all warp threads, are designed to break under bending stress, preferably with fine / short fibers. This can be achieved by appropriately selecting the material of the warp thread. Such a bending load can occur, for example, through deflection of the conveyor belt or belt, for example as a conveyor belt or as a belt on a deflection or drive roller. This also makes it possible to ensure that forces are transmitted exclusively via the weft thread as described above. The fine or short-fiber fragility of the warp threads, which can be achieved by appropriately selecting the material, ensures that the broken warp threads can transmit as little or no force as possible, so that this occurs exclusively via the weft thread.

[0025] According to a further embodiment of the present invention, the side profile is a continuously closed side profile. In this way, a conveyed product can be held laterally on the upper side of the elastomeric base belt over the entire extent of the side profile. At the same time, the previously described properties and advantages of the adhesive layer can have a positive effect over the entire extent of the side profile.

[0026] According to a further embodiment of the present invention, the adhesive layer comprises an elastomeric material into which the textile fabric is embedded at least partially, preferably completely. This allows a material bond between the side profile and the upper side of the elastomeric base belt to be achieved by vulcanization as previously known, while simultaneously utilizing the previously described properties and advantages of the textile fabric in this adhesive layer.

[0027] According to a further embodiment of the present invention, the elastomeric base element comprises, at least in sections, at least one textile tensile member designed to absorb tensile forces at least in the longitudinal direction of the conveyor belt or strap. This allows tensile forces in the direction of movement of the conveyor belt or strap to be absorbed, thus relieving the material of the elastomeric base element of these loads, which can increase the durability and longevity of the conveyor belt or strap.

[0028] According to a further embodiment of the present invention, the textile tensile member is embedded in the elastomeric base element. This creates a particularly durable connection between the textile tensile member and the material of the elastomeric base element. Forces between the textile tensile member and the material of the elastomeric base element can also be transmitted particularly effectively.

[0029] According to a further embodiment of the present invention, the elastomeric base element has a lateral edge region in the transverse direction, each of which extends in the longitudinal direction, with a side profile arranged on the upper side of each lateral edge region of the elastomeric base element. This allows the widest possible area of ​​the upper side of the elastomeric base element to be used for receiving a conveyed material between the side profiles.

[0030] According to a further embodiment of the present invention, the conveyor belt is designed as a filter belt and has a plurality of transverse grooves, each of which extends at least partially in the transverse direction and which are arranged spaced apart from one another in the longitudinal direction. This allows the previously described properties and advantages to be utilized in a filter belt application.

[0031] The inventive design of the textile fabric as a woven fabric with a plurality of warp threads extending at least substantially in the longitudinal direction of the conveyor belt or strap, wherein the fabric has at least one weft thread running at an angle oblique to the transverse direction, can be advantageous in that the conveyor belt or strap can be designed to be comparatively long and continuous in the longitudinal direction and can be manufactured and used in a corresponding length "in one piece." This can simplify application and enable the most consistent use possible of the previously described properties and advantages in the longitudinal direction of a conveyor belt or strap.

[0032] An embodiment and further advantages of the invention are explained below in conjunction with the following figures. Therein: Fig. 1 a perspective schematic sectional view of a conveyor belt according to the invention from above; Fig. 2 the representation of the Fig. 1 as a cross-section; Fig. 3 a perspective schematic sectional view of a conveyor belt according to the invention without side profile from above; and Fig. 4 the representation of the Fig. 3 from above.

[0033] The description of the above figures is given in Cartesian coordinates with a longitudinal direction X, a transverse direction Y perpendicular to the longitudinal direction X and a vertical direction Z perpendicular to both the longitudinal direction X and the transverse direction Y. The longitudinal direction X can also be referred to as depth X, the transverse direction Y as width Y and the vertical direction Z as height Z.

[0034] The conveyor belt 1 according to the invention is considered in particular as a filter belt 1. The filter belt 1 has an elastomeric base element 2 in the form of an elastomeric base belt 2 with two side profiles 4, each of which is held on the elastomeric base belt 2 by means of an adhesive layer 3.

[0035] The elastomeric base belt 2 has a base element body 20 as the base belt body 20, which consists of a vulcanized elastomeric material, preferably rubber, and is endlessly closable in the longitudinal direction X, which corresponds to the direction of movement or conveying direction, or is endlessly closed during operation. To transmit tensile forces in the longitudinal direction X, a textile tension member 24 in the form of a conventional woven fabric 24 with warp threads running in the longitudinal direction X and a weft thread running in the transverse direction (not shown) is embedded in the elastomeric material of the base belt body 20.

[0036] The elastomeric base belt 2 or its base belt body 20 has an upper side 21, which can receive the conveyed material during operation and faces away from the drive rollers and deflection rollers of a conveyor belt system. Due to the use of the conveyor belt 1 according to the invention as a filter belt 1, the elastomeric base belt 2 or its base belt body 20 has a plurality of transverse grooves 22 on its upper side 21, extending in the transverse direction Y in the central region. These transverse grooves serve to drain liquid toward the center in order to discharge the liquid there radially through the base belt body 20 (not shown).

[0037] In the transverse direction Y, to the left and right of the transverse grooves 22, lateral edge regions 23 are formed on the upper side 21 of the base belt body 20, which are free of the transverse grooves 22 and extend continuously in the longitudinal direction X. On each of the two lateral edge regions 23, a side profile 4 is arranged as a filter belt edge 4, which each consists of an elastomeric material and extends essentially radially away from the upper side 21 of the elastomeric base belt 2 or from its base belt body 20. The side profiles 4 are designed to be endlessly closed and circumferential in the longitudinal direction X. The side profiles 4 serve to hold the conveyed material in the transverse direction Y on the upper side 21 of the elastomeric base belt 2 during operation.

[0038] The side profiles 4 each have a flat underside 40, with which they are each arranged on the corresponding edge region 23 of the elastomeric base belt 2 by means of the adhesive layer 3. The adhesive layer 3 comprises an elastomeric material, so that a material-to-material connection can be established between the upper side 21 of the elastomeric base belt 2 and the underside 40 of the respective side profile 4 via the adhesive layer 3 by vulcanization. The adhesive layer 3 can therefore also be referred to as an elastomeric adhesive layer 3. Such a structure of a filter belt 1 is known.

[0039] According to the invention, a textile fabric 30 is embedded in the elastomeric material of the adhesive layer 3, wherein at least one fiber 30b is at least partially oriented unevenly with the longitudinal direction X of the filter belt 1. The textile fabric 30 is designed as a woven fabric 30 and has a plurality of warp threads 30a running in the longitudinal direction X, which are preferably endlessly closed in the longitudinal direction X. According to the invention, the weft thread 30b is oriented obliquely to the transverse direction Y at an angle α of approximately 45°.

[0040] As a result, loads and, in particular, strains in both the longitudinal direction X and the transverse direction Y can be absorbed by the fabric 30, which may occur not in the longitudinal direction X of the filter belt 1 but at least partially in the transverse direction Y. In this way, the initiation of cracks from the side profiles 4 into the base belt body 20, as well as the progression of crack formation in the base belt body 20, can be prevented or at least reduced. This can improve the durability and longevity of the filter belt 1. List of reference symbols (part of the description)

[0041] αAngle of the weft thread 30b oblique to the transverse direction Y XLongitudinal direction; Depth YTransverse direction; Width Zvertical direction; Height 1-flat elastomer element; conveyor belt; belt; filter belt 2Elastomeric base element; elastomeric base belt 20Base element body; base belt body 21Top side of the elastomeric base element body 2 22Transverse grooves of the top side 21 23Lateral edge areas of the elastomeric base element body 2 24Textile tension member of the elastomeric base element body 2 3Elastomer element; (elastomeric) adhesive layer 30Textile fabric; woven fabric; knitted fabric; braided fabric; scrim 30aWarp threads 30bWeft threads 4Side profiles; (filter belt) edges 40Underside of the side profiles 4

Claims

1. Conveyor belt (1) or belt (1), having an elastomeric base element (2), which can be or is endlessly closed in a longitudinal direction (X), and having at least one side profile (4), which extends in the longitudinal direction and is at least partly arranged on the upper side (21) of the elastomeric base element (2), wherein an adhesive layer (3) is arranged between an underside (40) of the side profile (4) and the upper side (21) of the elastomeric base element (2), wherein the adhesive layer (3) comprises at least one textile sheet-like structure (30) having at least one fibre (30b), which is at least partly, preferably completely, oriented both differently from the longitudinal direction (X) of the conveyor belt (1) or belt (1) and differently from the transverse direction (Y) of the conveyor belt (1) or belt (1), wherein the textile sheet-like structure (30) comprises a woven fabric (30), characterized in that the woven fabric (30) comprises a plurality of warp threads (30a), which extend at least substantially in the longitudinal direction (X) of the conveyor belt (1) or belt (1), wherein the woven fabric (30) comprises at least one weft thread (30b), which runs obliquely at an angle (α) to the transverse direction (Y).

2. Conveyor belt (1) or belt (1) according to Claim 1, characterized in that the weft thread (30b) runs at an angle (α) of at least about 30°, preferably of about 45°, to the transverse direction (Y).

3. Conveyor belt (1) or belt (1) according to Claim 1 or 2, characterized in that at least one warp thread (30a), preferably all of the warp threads (30a), is / are designed to disintegrate during the vulcanization of the conveyor belt (1) or belt (1).

4. Conveyor belt (1) or belt (1) according to Claim 1 or 2, characterized in that at least one warp thread (30a), preferably all of the warp threads (30a), is / are formed from the elastomeric material of the elastomeric base element (2).

5. Conveyor belt (1) or belt (1) according to Claim 1, 2 or 4, characterized in that at least one warp thread (30a), preferably all of the warp threads (30a), has / have at least the same elasticity, preferably a greater elasticity, than the elastomeric material of the elastomeric base element (2).

6. Conveyor belt (1) or belt (1) according to Claim 1 or 2, characterized in that at least one warp thread (30a), preferably all of the warp threads (30a), is / are designed to break under flexural loading, preferably into fine / short fibres.

7. Conveyor belt (1) or belt (1) according to one of the preceding claims, characterized in that the side profile (4) is an endlessly closed side profile (4).

8. Conveyor belt (1) or belt (1) according to one of the preceding claims, characterized in that the adhesive layer (3) comprises an elastomeric material in which the textile sheet-like structure (30) is at least partly, preferably completely, embedded.

9. Conveyor belt (1) or belt (1) according to one of the preceding claims, characterized in that the elastomeric base element (2) at least partly comprises at least one textile tension member (24), which is designed to absorb tensile forces at least in the longitudinal direction (X) of the conveyor belt (1) or belt (1).

10. Conveyor belt (1) or belt (1) according to Claim 9, characterized in that the textile tension member (24) is embedded in the elastomeric base element (2).

11. Conveyor belt (1) or belt (1) according to one of the preceding claims, characterized in that the elastomeric base element (2) comprises on each side in the transverse direction (Y) a lateral border region (23), which extend in the longitudinal direction (X), wherein a side profile (4) is arranged on the upper side (21) of each lateral border region (23) of the elastomeric base element (2).

12. Conveyor belt (1) or belt (1) according to one of the preceding claims, characterized in that the conveyor belt (1) or belt (1) is designed as a filter belt (1) and comprises a plurality of transverse grooves (22), which respectively extend at least partly in the transverse direction (Y) and which are arranged spaced apart from one another in the longitudinal direction (X).