Conveyer belt containing carbon fiber enhancement layer

文档序号:1622270 发布日期:2020-01-14 浏览:28次 中文

阅读说明:本技术 一种含碳纤维增强层的输送带 (Conveyer belt containing carbon fiber enhancement layer ) 是由 刘礼华 刘红芳 程渊 于 2019-11-20 设计创作,主要内容包括:本发明提供一种含碳纤维增强层的输送带所述上覆盖层的下端面与上增强层的上端面相贴合,所述上增强层的下端面与钢丝绳芯层的上端面相贴合,所述钢丝绳芯层的下端面与下增强层的上端面相贴合,所述下增强层的下端面与下覆盖层的上端面相贴合,增加了碳纤维筋材使整个输送带强度更高,带体更柔软,可以减小芯层钢丝绳的直径,由于碳纤维筋材的物理特性从而大幅度降低输送带的重量,并且碳纤维束间的环氧树脂可以提高整体与橡胶的粘合度,而限位柱穿过下覆盖层与阻挡块相固定,通过该设计起到对阻挡块位置的固定,通过将阻挡块固定在上覆盖层的上侧,进而传输带上的被运输物体被阻挡块做阻挡,进而便于被运输物体的传输。(The invention provides a conveyor belt containing a carbon fiber reinforced layer, wherein the lower end surface of an upper covering layer is jointed with the upper end surface of the upper reinforcing layer, the lower end surface of the upper reinforcing layer is jointed with the upper end surface of a steel wire rope core layer, the lower end surface of the steel wire rope core layer is jointed with the upper end surface of a lower reinforcing layer, the lower end surface of the lower reinforcing layer is jointed with the upper end surface of a lower covering layer, a carbon fiber rib material is added to ensure that the strength of the whole conveyor belt is higher, a belt body is softer, the diameter of a steel wire rope of the core layer can be reduced, the weight of the conveyor belt can be greatly reduced due to the physical characteristics of the carbon fiber rib material, the adhesion degree of the whole body and rubber can be improved by epoxy resin among carbon fiber bundles, a limiting column penetrates through the lower covering layer to be fixed with a blocking block, the position of the blocking block is fixed on the upper covering layer, thereby facilitating the transportation of the transported object.)

1. A conveyor belt comprising a carbon fibre-reinforced layer, comprising an upper covering layer (1), characterized in that: the lower end face of the upper covering layer (1) is attached to the upper end face of the upper reinforcing layer (2), the lower end face of the upper reinforcing layer (2) is attached to the upper end face of the steel wire rope core layer (3), the lower end face of the steel wire rope core layer (3) is attached to the upper end face of the lower reinforcing layer (4), and the lower end face of the lower reinforcing layer (4) is attached to the upper end face of the lower covering layer (5).

2. A conveyor belt comprising a carbon fiber reinforced layer according to claim 1, wherein: go up enhancement layer (2) and the same with the specification of lower enhancement layer (4), the internal distribution of going up enhancement layer (2) has carbon fiber reinforcement material (6), carbon fiber reinforcement material (6) are arranged at the inside transverse arrangement of last enhancement layer (2) and equidistance between carbon fiber reinforcement material (6), go up enhancement layer (2) and be a component that adopts the epoxy preparation to form.

3. A conveyor belt comprising a carbon fiber reinforced layer according to claim 1, wherein: the specifications of the upper covering layer (1) and the lower covering layer (5) are the same.

4. A conveyor belt comprising a carbon fiber reinforced layer according to claim 1, wherein: the steel wire rope core layer is characterized in that steel wire ropes (7) are distributed in the steel wire rope core layer (3), the steel wire ropes (7) are longitudinally arranged in the steel wire rope core layer (3), and the steel wire ropes (7) distributed in the steel wire rope core layer (3) are arranged in an equidistance mode among a plurality of steel wire ropes (7).

5. A conveyor belt comprising a carbon fiber reinforced layer according to claim 1, wherein: through holes (10) are formed in the lower port of the lower covering layer (5), the through holes (10) are provided with a plurality of through holes (10) which are arranged on the lower covering layer (5) at equal intervals in the transverse direction, and the through holes (10) penetrate through the limiting columns (9) to be screwed with the blocking blocks (8) distributed on the upper side of the upper covering layer (1).

6. A conveyor belt comprising a carbon fiber reinforced layer according to claim 5, wherein: the upper end part of the blocking block (8) is of an isosceles trapezoid prism structure, and the lower end part of the blocking block (8) is of a prism structure with a rectangular cross section.

Technical Field

The invention relates to a conveying belt containing a carbon fiber reinforced layer, belonging to the field of conveying belts.

Background

The common conveying uses fiber fabric as belt core and common rubber as covering material, and the surface is smooth and flat. The belt core is a layered or integral fabric woven by fibers such as cotton, nylon, polyester or vinylon. The special conveyor belt needs to have the characteristics of high strength, heat resistance, cold resistance, flame resistance and the like, and generally uses a steel wire rope as a belt core, and is supplemented with a steel wire rope, a steel wire cord, a fiber rope, a fiber fabric and the like as reinforcing layers, wherein the steel wire rope and the steel wire cord reinforcing layers have good flexibility, high strength, extremely small elastic elongation and good impact resistance, but have great self weight and increase the running cost; fiber ropes and fiber fabric (generally nylon or polyester fiber) reinforced layers are easy to generate heat when heated, influence the internal stability of products, and have low strength and poor impact resistance, so a new structure is needed to solve the problem.

Disclosure of Invention

In view of the shortcomings of the prior art, the present invention aims to provide a conveyor belt with a carbon fiber reinforced layer, so as to solve the problems in the background art.

In order to achieve the purpose, the invention is realized by the following technical scheme: the conveying belt comprises an upper covering layer, wherein the lower end face of the upper covering layer is attached to the upper end face of the upper reinforcing layer, the lower end face of the upper reinforcing layer is attached to the upper end face of a steel wire rope core layer, the lower end face of the steel wire rope core layer is attached to the upper end face of a lower reinforcing layer, and the lower end face of the lower reinforcing layer is attached to the upper end face of the lower covering layer.

Further, go up the enhancement layer and the same with the specification of enhancement layer down, the internal distribution of going up the enhancement layer has carbon fiber reinforcement material, carbon fiber reinforcement material arranges at the inside transverse arrangement of last enhancement layer and equidistance between the carbon fiber reinforcement material, go up the enhancement layer and be a component that adopts the epoxy preparation to form.

Further, the upper and lower cover layers are of the same specification.

Furthermore, steel wire ropes are distributed in the steel wire rope core layer, the steel wire ropes are longitudinally arranged in the steel wire rope core layer, and the steel wire ropes distributed in the steel wire rope core layer are provided with a plurality of steel wire ropes which are arranged at equal intervals.

Further, the through-hole has been seted up to the lower port of overburden down, the through-hole is provided with a plurality of and a plurality of through-holes and arranges at overburden down horizontal equidistance, the inside of through-hole passes through via spacing post and distributes and close mutually with the stopper that goes up the overburden upside.

Further, the upper end part of the blocking block is of an isosceles trapezoid prism structure, and the lower end part of the blocking block is of a prism structure with a rectangular cross section.

The invention has the beneficial effects that: according to the conveying belt containing the carbon fiber reinforced layer, the carbon fiber ribs are added, so that the strength of the whole conveying belt is higher, the belt body is softer, the diameter of a core layer steel wire rope can be reduced, the weight of the conveying belt is greatly reduced due to the physical characteristics of the carbon fiber ribs, the adhesion degree of the whole conveying belt and rubber can be improved due to epoxy resin among carbon fiber bundles, the limiting columns penetrate through the lower covering layer and are fixed with the blocking blocks, the positions of the blocking blocks are fixed through the design, the blocking blocks are fixed on the upper side of the upper covering layer, and then conveyed objects on the conveying belt are blocked by the blocking blocks, so that the conveying of the conveyed objects is facilitated.

Drawings

Other features, objects and advantages of the invention will become more apparent upon reading of the detailed description of non-limiting embodiments with reference to the following drawings:

FIG. 1 is a schematic structural diagram of a conveyor belt including a carbon fiber reinforced layer according to the present invention;

FIG. 2 is a cross-sectional view of a conveyor belt including a carbon fiber reinforced layer according to the present invention;

FIG. 3 is a schematic structural view of a stopper in a conveyor belt comprising a carbon fiber reinforced layer according to the present invention;

in the figure: 1-upper covering layer, 2-upper reinforcing layer, 3-steel wire rope core layer, 4-lower reinforcing layer, 5-lower covering layer, 6-carbon fiber reinforcement, 7-steel wire rope, 8-blocking block, 9-limiting column and 10-through hole.

Detailed Description

In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.

Referring to fig. 1-3, the present invention provides a technical solution: the conveying belt comprises an upper covering layer 1, wherein the lower end face of the upper covering layer 1 is attached to the upper end face of an upper reinforcing layer 2, the lower end face of the upper reinforcing layer 2 is attached to the upper end face of a steel wire rope core layer 3, the lower end face of the steel wire rope core layer 3 is attached to the upper end face of a lower reinforcing layer 4, and the lower end face of the lower reinforcing layer 4 is attached to the upper end face of a lower covering layer 5.

Go up enhancement layer 2 the same with the specification of enhancement layer 4 down, the internal distribution of going up enhancement layer 2 has carbon fiber reinforcement 6, carbon fiber reinforcement 6 is arranged at the inside transverse arrangement of last enhancement layer 2 and equidistance between carbon fiber reinforcement 6, it is a component that adopts the epoxy preparation to form to go up enhancement layer 2, it makes whole conveyer belt intensity higher to have increased carbon fiber reinforcement 6, the area body is softer, can reduce sandwich layer wire rope 7's diameter, thereby reduce the weight of conveyer belt by a wide margin because carbon fiber reinforcement 6's physical characteristic, and epoxy between the carbon fiber bundle can improve whole and the degree of adhesion of rubber.

The specifications of the upper and lower cover layers 1 and 5 are the same.

Wire rope 7 is distributed to the inside of wire rope sandwich layer 3, and wire rope 7 is at the inside longitudinal arrangement of wire rope sandwich layer 3, and the wire rope 7 that distributes in wire rope sandwich layer 3 inside is provided with many and the equidistance between many wire rope 7 and arranges, wherein is 90 arranging between wire rope 7 and the carbon fiber muscle material 6, through adopting the great improvement whole transmission band intensity of arranging of wire rope 7 and carbon fiber muscle material 6.

Through-hole 10 has been seted up to the lower port of lower overburden 5, and through-hole 10 is provided with a plurality of and a plurality of through-hole 10 and arranges at overburden 5 transversely equidistance down, and the inside of through-hole 10 passes through with the distribution blocks 8 at the upper side of overburden 1 and closes mutually soon via spacing post 9, and spacing post 9 passes overburden 5 down and blocks that 8 are fixed mutually, plays through this design to blocking 8 fixed of piece position.

The upper end part of the blocking block 8 is of an isosceles trapezoid prism structure, the lower end part of the blocking block 8 is of a prism structure with a rectangular cross section, the blocking block 8 is fixed on the upper side of the upper covering layer 1, and then transported objects on the transmission belt are blocked by the blocking block 8, so that the transported objects can be conveniently transmitted.

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