Assembly line belt cleaning machine

文档序号:1052315 发布日期:2020-10-13 浏览:7次 中文

阅读说明:本技术 一种流水线皮带清洗机 (Assembly line belt cleaning machine ) 是由 李工妹 于 2020-07-17 设计创作,主要内容包括:本发明公开了一种流水线皮带清洗机,其结构包括冲击管、控制箱、连接箱、移动推车、变压器,冲击管设有弹力杆、褶皱、旋转机构、压力机构、固定环、连接槽,通过旋转机构与连接槽的螺纹配合,使得旋转机构内部的连接块对受力机构作用,从而使得滑动块在限位机构下滑动,对其进行作用使限位机构进行弯曲,达到直径减小的效果,通过旋转旋转机构上的滑动环,减小其摩擦力,对限位机构的弯曲度进行调整,继而对冲击口直径进行调整,通过按压弯曲板外侧的摩擦块,圆形板之间相互支撑,相互支撑形成间隙,形成向特定方向作用的力,使得出口的扁平结构风力更均匀,避免粉尘在作用力下回流,防止粉尘扩散范围增大,避免粉尘重新附和在传送皮带上。(The invention discloses an assembly line belt cleaning machine, which structurally comprises an impact tube, a control box, a connecting box, a movable trolley and a transformer, wherein the impact tube is provided with an elastic rod, a fold, a rotating mechanism, a pressure mechanism, a fixing ring and a connecting groove, the rotating mechanism is in threaded fit with the connecting groove, the connecting block inside the rotating mechanism acts on a stress mechanism, so that a sliding block slides under a limiting mechanism and acts on the limiting mechanism to bend the limiting mechanism, the effect of reducing the diameter is achieved, the friction force of the sliding ring on the rotating mechanism is reduced through rotation, the bending degree of the limiting mechanism is adjusted, the diameter of an impact opening is adjusted, the friction block on the outer side of a bending plate is pressed, the circular plates are mutually supported and form a gap through mutual support, the force acting towards a specific direction is formed, and the wind power of a flat structure at an outlet is more uniform, the dust is prevented from flowing back under the action of force, the dust diffusion range is prevented from being enlarged, and the dust is prevented from being attached to the conveying belt again.)

1. The utility model provides an assembly line belt cleaning machine, its structure is including strikeing pipe (1), control box (2), connecting box (3), removing shallow (4), transformer (5), it installs in the inside of connecting box (3) to strike pipe (1), control box (2) and connecting box (3) interconnect, control box (2) are embedded in the upper end of removing shallow (4), the lower extreme welding of transformer (5) is on the surface of removing shallow (4), its characterized in that:

impact tube (1) is equipped with elastic rod (11), fold board (12), rotary mechanism (13), accrual organization (14), solid fixed ring (15), spread groove (16), fold board (12) laminating is in the outside of elastic rod (11), rotary mechanism (13) and spread groove (16) carry out screw-thread fit, the inboard of elastic rod (11) is inlayed and is fixed in the outside of solid fixed ring (15), the inboard of solid fixed ring (15) is inlayed and is fixed on the right side of accrual organization (14), accrual organization (14) and connecting box (3) pipe connection.

2. The in-line belt cleaning machine of claim 1, further comprising: the rotating mechanism (13) is provided with a connecting block (131), a sliding ring (132), a steel ball (133) and a stress mechanism (134), the steel ball (133) is embedded and fixed on the surface of the sliding ring (132), the connecting block (131) and the sliding ring (132) are of an integrated structure, the stress mechanism (134) is attached to the inner side of the sliding ring (132), and the steel ball (133) is attached to the right side of the elastic rod (11).

3. The in-line belt cleaning machine of claim 2, wherein: force mechanism (134) are equipped with stop gear (a 1), fixed block (a 2), slide rail (a 3), spring lever (a 4), sliding block (a 5), stop gear (a 1) welds the left side at fixed block (a 2), the lower extreme at stop gear (a 1) is laminated in sliding block (a 5), the lower extreme of sliding block (a 5) is inlayed and is fixed in the upper end of spring lever (a 4), spring lever (a 4) is located the upper end of slide rail (a 3), slide rail (a 3) and connecting block (131) clearance fit.

4. The in-line belt cleaning machine of claim 3, wherein: limiting mechanism (a 1) is equipped with limiting plate (a 11), atress board (a 12), magnetic force piece (a 13), limiting plate (a 11) are inlayed and are consolidated in the left side of atress board (a 12), magnetic force piece (a 13) are located the lower extreme of limiting plate (a 11), atress board (a 12) are inlayed and are consolidated in the left side of fixed block (a 2).

5. The in-line belt cleaning machine of claim 1, further comprising: the pressure mechanism (14) is provided with a circulating port (w 1), a spring (w 2), a support rod (w 3), a bending plate (w 4), a pressure block (w 5), a deformation mechanism (w 6), a friction block (w 7) and a compression rod (w 8), wherein the circulating port (w 1) is attached to the inner side of the bending plate (w 4), the friction block (w 7) is installed on the surface of the deformation mechanism (w 6), the spring (w 2) is located on the outer side of the support rod (w 3), the compression rod (w 8) is located on the inner side of the support rod (w 3), the spring (w 2) is embedded to the outer side of the support rod (w 3), the pressure block (w 5) is attached to the inner side of the bending plate (w 4), and the circulating port (w 1) is located on the left side of the fixing ring (15).

6. The in-line belt cleaning machine of claim 5, wherein: deformation mechanism (w 6) is equipped with circular slab (w 61), triangular pyramid (w 62), bending ring (w 63), supporting shoe (w 64), circular slab (w 61) are embedded and are fixed in the left side of triangular pyramid (w 62), triangular pyramid (w 62) are embedded and are fixed inside bending ring (w 63), supporting shoe (w 64) laminating is on the left side of bending ring (w 63), the right side of supporting shoe (w 64) is embedded and is fixed in the inboard of bending slab (w 4).

Technical Field

The invention relates to the field of belt production lines, in particular to a production line belt cleaning machine.

Background

The assembly line belt is carrying the in-process to the product, the subsidiary dust of product often can gather on the belt, need regularly clear up, produce electrostatic absorption and belt and skid when preventing belt transportation plastic products, keep the clean and tidy nature of belt, but under the high-speed impact of the air current of the circular impact tube of cleaning machine was passed through to current belt, the dust of piling up in its inside clearance drifts easily, and cylindrical impact tube is acted on one point of conveying belt when wasing, make the dust backward flow under the effort easily, cause the diffusion of dust, rejoin on the conveying belt, because the diameter transform of injection pipe needs to be changed the pipeline, and make the scope that the dust flies upward easily when assaulting the conveying belt enlarge, the degree of difficulty of gathering when increasing the dust washing.

Disclosure of Invention

The invention is realized by the following technical scheme: the utility model provides an assembly line belt cleaning machine, its structure is including strikeing pipe, control box, connecting box, removal shallow, transformer, it installs in the inside of connecting box to strike the pipe, control box and connecting box interconnect, the control box inlays the upper end at the removal shallow, the lower extreme welding of transformer is on the surface of removal shallow, it is equipped with elastic rod, fold board, rotary mechanism, pressure mechanism, solid fixed ring, spread groove to strike the pipe, the fold board laminating is in the outside of elastic rod, rotary mechanism carries out screw-thread fit with the spread groove, the inboard of elastic rod inlays the outside at solid fixed ring, solid fixed ring's inboard inlays the right side at pressure mechanism, pressure mechanism and connecting box pipe connection, the elastic rod is spring structure, carries out clearance fit with rotary mechanism.

As a further improvement of the invention, the rotating mechanism is provided with a connecting block, a sliding ring, steel balls and a stress mechanism, wherein the steel balls are embedded and fixed on the surface of the sliding ring, the connecting block and the sliding ring are of an integrated structure, the stress mechanism is attached to the inner side of the sliding ring, the steel balls are attached to the right side of the elastic rod, the steel balls are annularly surrounded on the inner side of the connecting block, and the number of the steel balls are the same.

As a further improvement of the invention, the stress mechanism is provided with a limiting mechanism, a fixed block, a sliding rail, a spring rod and a sliding block, the limiting mechanism is welded on the left side of the fixed block, the sliding block is attached to the lower end of the limiting mechanism, the lower end of the sliding block is embedded and fixed at the upper end of the spring rod, the spring rod is positioned at the upper end of the sliding rail, the sliding rail is movably matched with the connecting block, the limiting mechanism is made of high-toughness aluminum alloy materials, and the fixed block is used as a fixed point for bending movement.

As a further improvement of the invention, the limiting mechanism is provided with a limiting plate, a stress plate and a magnetic block, the limiting plate is embedded and fixed on the left side of the stress plate, the magnetic block is positioned at the lower end of the limiting plate, the stress plate is embedded and fixed on the left side of the fixed block, and the limiting plate and the magnetic block are magnets with the same magnetism and interact in an included angle state.

The pressure mechanism is further improved by comprising a flow opening, springs, a support rod, a bending plate, pressure blocks, a deformation mechanism, friction blocks and compression rods, wherein the flow opening is attached to the inner side of the bending plate, the friction blocks are arranged on the surface of the deformation mechanism, the springs are arranged on the outer side of the support rod, the compression rods are arranged on the inner side of the support rod, the springs are fixedly embedded on the outer side of the support rod, the pressure blocks are attached to the inner side of the bending plate, the flow opening is arranged on the left side of a fixing ring, the number of the springs is six, two of the springs are distributed on the outer side of the support rod, four springs are attached to two ends of the bending plate, and the inner side of the bending plate is of a curved inward-concave structure, so that.

As a further improvement of the invention, the deformation mechanism is provided with a circular plate, a triangular cone, a bending ring and a supporting block, wherein the circular plate is embedded and fixed on the left side of the triangular cone, the triangular cone is embedded and fixed inside the bending ring, the supporting block is attached to the left side of the bending ring, the right side of the supporting block is embedded and fixed on the inner side of the bending plate, the circular plates are in disc-shaped structures and mutually support to form a gap, and force acting towards a specific direction is formed.

Advantageous effects

Compared with the prior art, the invention has the beneficial effects that:

1. through the screw-thread fit of rotary mechanism and spread groove, make the inside connecting block of rotary mechanism to the effect of atress mechanism, thereby make the sliding block slide under spacing mechanism, act on it and make spacing mechanism crooked, reach the effect that the diameter reduces, the diameter reduces its pressure reinforcing, thereby make the injection effect of impact pipe stronger, make it have stronger impact force, through the slip ring on the rotary mechanism, make the steel ball when the elastic rod right side rotates, reduce its frictional force, adjust stop mechanism's crookedness, then adjust impact mouthful diameter, the limiting plate is contained angle state interact with the magnetic block, prevent simultaneously that outside foreign matter from getting into inside.

2. Through pressing the clutch blocks in the crooked board outside, make deformation mechanism move about through both ends vertically spring, then deformation mechanism is parallel to each other, make the bending ring change structural shape, support each other between the circular slab, support each other and form the clearance, form the power to the specific direction effect, make the flat structure wind-force of export more even, avoid the dust to flow back under the effort, prevent the increase of dust diffusion scope, avoid the dust to adhere to again on the conveying belt, when the end, press the spring and make the bracing piece act on the pressure block, make crooked board resume the annular state.

Drawings

FIG. 1 is a schematic structural diagram of an in-line belt cleaning machine according to the present invention.

FIG. 2 is a schematic plan view of an impingement tube of the present invention.

Fig. 3 is a schematic plan view of a rotating mechanism according to the present invention.

Fig. 4 is a schematic plan view of a force-receiving mechanism according to the present invention.

Fig. 5 is a schematic plan structure view of a limiting mechanism of the present invention.

Fig. 6 is a schematic plan view of a press mechanism according to the present invention.

Fig. 7 is a partial structural schematic view of a deformation mechanism according to the present invention.

In the figure: the device comprises an impact tube-1, a control box-2, a connecting box-3, a movable cart-4, a transformer-5, an elastic rod-11, a corrugated plate-12, a rotating mechanism-13, a pressure mechanism-14, a fixing ring-15, a connecting groove-16, a connecting block-131, a sliding ring-132, a steel ball-133, a stress mechanism-134, a limiting mechanism-a 1, a fixing block-a 2, a sliding rail-a 3, a spring rod-a 4, a sliding block-a 5, a limiting plate-a 11, a stress plate-a 12, a magnetic block-a 13, a flow port-w 1, a spring-w 2, a supporting rod-w 3, a bending plate-w 4, a pressure block-w 5, a deformation mechanism-w 6, a friction block-w 7, a compression rod-8, a circular plate-w 61, a compression rod-w 61, a compression, A triangular pyramid-w 62, a bending ring-w 63 and a support-w 64.

Detailed Description

The technology of the present invention is further described with reference to the accompanying drawings:

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