Lifting machine brush equipment

文档序号:560907 发布日期:2021-05-18 浏览:7次 中文

阅读说明:本技术 一种提升机毛刷设备 (Lifting machine brush equipment ) 是由 徐艳培 于 2021-01-29 设计创作,主要内容包括:本发明公开了一种提升机毛刷设备,其结构包括毛刷、衔接板、固定轴,衔接板的中部嵌入于固定轴的外表面位置,所述毛刷与固定轴的内侧相焊接,通过毛刷转动产生的甩力,能够使外扩板在联动块的配合下沿着位固块向外滑动伸出,再通过外扩板向外伸出产生的惯性力,能够使撞击块对承载板的内壁产生撞击,从而使承载板外表面夹持在毛丝之间的扁豆能够被振落,有效的避免了破碎的湿扁豆会产生汁液,导致破碎扁豆黏附在相邻毛丝之间的情况,通过外扩板向外伸出产生的惯性力,能够使振动块在底框内部反复伸缩,从而使振动块能够反复的撞击受力板的内侧,并且当振动块收缩时,滑动块在弹力杆的配合下能够沿着连接板继续伸缩。(The invention discloses a lifter brush device, which structurally comprises a brush, a connecting plate and a fixed shaft, wherein the middle part of the connecting plate is embedded in the outer surface of the fixed shaft, the brush is welded with the inner side of the fixed shaft, an outward expansion plate can slide outwards along a position fixed block under the matching of a linkage block through the throwing force generated by the rotation of the brush, and then an inertia force generated by the outward expansion plate can make an impact block impact the inner wall of a bearing plate, so that hyacinth beans clamped between hairlines on the outer surface of the bearing plate can be vibrated down, the condition that the crushed wet hyacinth beans are adhered between adjacent hairlines due to the juice generated by the outward expansion of the outward expansion plate is effectively avoided, the vibration block can repeatedly stretch out and draw back in a bottom frame through the inertia force generated by the outward expansion plate, so that the vibration block can repeatedly impact the inner side of a stress plate, and when the vibration block shrinks, the sliding block can continue to stretch out and draw back along the connecting plate under the cooperation of elasticity pole.)

1. The utility model provides a lifting machine brush equipment, its structure includes brush (1), joint board (2), fixed axle (3), the middle part of joint board (2) is embedded in the surface position of fixed axle (3), its characterized in that: the brush (1) is welded with the inner side of the fixed shaft (3);

the hairbrush (1) comprises an outer expansion plate (11), a linkage block (12) and a position fixing block (13), the inner side of the outer expansion plate (11) is attached to the outer side of the linkage block (12), and the linkage block (12) is movably clamped with the inner part of the position fixing block (13).

2. The elevator brush apparatus as set forth in claim 1, wherein: the outer expanding plate (11) comprises a broken wire (a1), an impact block (a2) and a bearing plate (a3), the broken wire (a1) is fixed at the outer side position of the bearing plate (a3), and the impact block (a2) is installed at the inner position of the bearing plate (a 3).

3. The elevator brush apparatus as set forth in claim 2, wherein: the bearing plate (a3) comprises a plate (a31), a ventilation cavity (a32) and an absorption plate (a33), wherein the ventilation cavity (a32) penetrates through the inner position of the plate (a31), and the bottom of the absorption plate (a33) is attached to the upper end of the ventilation cavity (a 32).

4. A hoist brush apparatus as claimed in claim 3, characterized in that: the ventilating cavity (a32) comprises a bearing plate (b1), a through cavity (b2), a frame (b3) and a ventilating block (b4), the bearing plate (b1) is fixed at the inner side position of the frame (b3), the through cavity (b2) penetrates through the inner position of the bearing plate (b1), and the ventilating block (b4) is embedded in the inner position of the through cavity (b 2).

5. A hoist brush apparatus as claimed in claim 3, characterized in that: the absorption plate (a33) comprises a stress plate (c1), a bottom frame (c2) and a vibration block (c3), wherein the stress plate (c1) is embedded at the upper end position of the bottom frame (c2), and the vibration block (c3) is connected with the inner wall of the bottom frame (c 2).

6. The elevator brush apparatus as set forth in claim 5, wherein: the vibrating mass (c3) comprises a pull-back strip (c31), a lower connecting plate (c32), a connecting ring (c33) and an upper swinging plate (c34), wherein the pull-back strip (c31) is fixed between the inner wall of the upper swinging plate (c34) and the lower connecting plate (c32), the connecting ring (c33) is connected with the top of the lower connecting plate (c32), and the upper swinging plate (c34) is hinged with the side of the connecting ring (c 33).

7. The elevator brush apparatus as set forth in claim 6, wherein: the lower connecting plate (c32) comprises a sliding block (d1), a connecting plate (d2), a built-in frame (d3) and an elastic rod (d4), wherein the sliding block (d1) is movably clamped with the inside of the connecting plate (d2), the built-in frame (d3) is embedded into the bottom position of the inner wall of the connecting plate (d2), and the elastic rod (d4) is in sliding fit with the inside of the built-in frame (d 3).

Technical Field

The invention relates to the field of elevators, in particular to elevator brush equipment.

Background

The elevator brush roller mainly is the equipment that is used for driving the board upper surface to clear up on the inside drive belt of elevator, installs the inner wall in the elevator usually to the hair of elevator brush roller contacts with driving the board upper surface, when driving the board and upwards being driven by the conveyer belt, then can make elevator brush roller rotate and sweep the residue on the band moving board, based on the above-mentioned description the inventor discovers that a present elevator brush equipment mainly has following not enoughly, for example:

due to the fact that the volume of the hyacinth beans is large, and the juice in the wet hyacinth beans is large, if the lifter lifts and conveys the wet hyacinth beans, the situation that a part of the hyacinth beans are extruded and crushed, the juice in the hyacinth beans is attached to the driving plate, and the hairlines on the hairbrush rollers of the lifter are distributed compactly, so that the crushed hyacinth beans are attached between adjacent hairlines and are difficult to separate from the hairbrush rollers of the lifter is easy to occur.

Disclosure of Invention

Aiming at the problems, the invention provides a brush device of a lifting machine.

In order to achieve the purpose, the invention is realized by the following technical scheme: a lifter brush device structurally comprises a brush, a connecting plate and a fixed shaft, wherein the middle of the connecting plate is embedded into the outer surface of the fixed shaft, and the brush is welded with the inner side of the fixed shaft; the brush comprises an outer expanding plate, a linkage block and a position fixing block, wherein the inner side of the outer expanding plate is attached to the outer side of the linkage block, and the linkage block is movably clamped with the inner part of the position fixing block.

As a further optimization of the invention, the outer expanding plate comprises a broken wire, five impact blocks and a bearing plate, wherein the broken wire is fixed at the outer side position of the bearing plate, the impact blocks are arranged at the inner position of the bearing plate, and the five impact blocks are uniformly distributed in the bearing plate in an arc shape.

As a further optimization of the invention, the bearing plate comprises a plate block, a ventilating cavity and an absorption plate, wherein the ventilating cavity penetrates through the inner position of the plate block, the bottom of the absorption plate is attached to the upper end of the ventilating cavity, and the absorption plate is made of wear-resistant polyether sponge.

As a further optimization of the invention, the ventilation cavity comprises a bearing plate, a through cavity, a frame and a ventilation block, the bearing plate is fixed at the inner side position of the frame, the through cavity penetrates through the inner position of the bearing plate, the ventilation block is embedded in the inner position of the through cavity, and the ventilation block is made of textile fiber materials with strong ventilation property.

As a further optimization of the invention, the absorption plate comprises a stress plate, a bottom frame and four vibration blocks, wherein the stress plate is embedded and fixed at the upper end position of the bottom frame, the vibration blocks are connected with the inner wall of the bottom frame, and the four vibration blocks are uniformly distributed at the bottom of the stress plate in an arc shape.

As a further optimization of the invention, the vibrating block comprises a pulling strip, a lower connecting plate, two connecting rings and an upper swinging plate, the pulling strip is fixed between the inner wall of the upper swinging plate and the lower connecting plate, the connecting rings are connected with the top of the lower connecting plate, the upper swinging plate is hinged with the side of the connecting rings, and the two upper swinging plates are uniformly and symmetrically distributed at the upper end of the lower connecting plate.

As a further optimization of the present invention, the lower connecting plate includes a sliding block, a connecting plate, an internal frame, and an elastic rod, the sliding block is movably engaged with the inside of the connecting plate, the internal frame is embedded in the bottom position of the inner wall of the connecting plate, the elastic rod is slidably engaged with the inside of the internal frame, and the sliding block can be repeatedly retracted up and down along the connecting plate in cooperation with the elastic rod by an inertial force generated by the retraction of the mechanism.

The invention has the following beneficial effects:

1. the swinging force generated by rotation of the hairbrush can enable the outer expanding plate to slide outwards along the position fixing block under the matching of the linkage block, and the inertia force generated by the outward extension of the outer expanding plate can enable the impact block to impact the inner wall of the bearing plate, so that the hyacinth beans clamped between the hairlines on the outer surface of the bearing plate can be vibrated down, and the condition that the broken wet hyacinth beans are adhered between the adjacent hairlines due to the fact that the broken hyacinth beans are generated by juice is effectively avoided.

2. Through the inertia force that expands the board and outwards stretch out the production outward, can make the vibrating mass stretch out and draw back in underframe inside repeatedly to make the inboard of the striking atress board that the vibrating mass can relapse, and when the vibrating mass shrink, the sliding block can continue to stretch out and draw back along the connecting plate under the cooperation of elastic rod, effectual light and graceful skin of hyacinth bean directly attached to the upper surface of absorbing the board of ground of having avoided, then can lead to the striking piece striking to be difficult to the condition that falls the skin of hyacinth bean vibration because of adnexed tension.

Drawings

Fig. 1 is a schematic structural diagram of a brush device of an elevator according to the present invention.

FIG. 2 is a side view of a half-section of the brush of the present invention.

FIG. 3 is a side view of the outer expanding plate with a half-section structure.

FIG. 4 is a side view of a half-section structure of the carrier plate of the present invention.

FIG. 5 is a schematic side view of a semi-section of the venting chamber of the present invention.

FIG. 6 is a side view of a half-section of an absorbent panel of the present invention.

FIG. 7 is a side view of a vibrating mass with a half-section structure according to the present invention.

FIG. 8 is a side view of a half-section of the lower plate of the present invention.

In the figure: the hair brush-1, the connecting plate-2, the fixed shaft-3, the outward expansion plate-11, the linkage block-12, the position fixing block-13, the hair-a 1, the impact block-a 2, the bearing plate-a 3, the plate-a 31, the ventilation cavity-a 32, the absorption plate-a 33, the bearing plate-b 1, the ventilation cavity-b 2, the frame-b 3, the ventilation block-b 4, the stress plate-c 1, the bottom frame-c 2, the vibration block-c 3, the pull back strip-c 31, the lower connecting plate-c 32, the connecting ring-c 33, the upper swinging plate-c 34, the sliding block-d 1, the connecting plate-d 2, the built-in frame-d 3 and the elastic rod-d 4.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Example 1

As shown in fig. 1-5:

the invention provides a lifter brush device which structurally comprises a brush 1, a connecting plate 2 and a fixed shaft 3, wherein the middle part of the connecting plate 2 is embedded into the outer surface of the fixed shaft 3, and the brush 1 is welded with the inner side of the fixed shaft 3; the hairbrush 1 comprises an outer expanding plate 11, a linkage block 12 and a position fixing block 13, wherein the inner side of the outer expanding plate 11 is attached to the outer side of the linkage block 12, and the linkage block 12 is movably clamped with the inner part of the position fixing block 13.

The outer expanding plate 11 comprises hairlines a1, an impact block a2 and a bearing plate a3, the hairlines a1 are fixed at the outer side position of the bearing plate a3, the impact block a2 is mounted at the inner position of the bearing plate a3, five impact blocks a2 are arranged and evenly distributed in an arc shape in the bearing plate a3, the bearing plate a3 can impact the inner wall of the impact block a2 through the inertia force generated by the outward extension of the mechanism, and accordingly lentils on the outer side of the hairlines a1 can be vibrated down.

The bearing plate a3 comprises a plate a31, an air permeable cavity a32 and an absorption plate a33, wherein the air permeable cavity a32 penetrates through the plate a31, the bottom of the absorption plate a33 is attached to the upper end of the air permeable cavity a32, the absorption plate a33 is made of wear-resistant polyether sponge, and juice on the surface of the lentils can be absorbed through the absorption plate a 33.

The ventilating cavity a32 comprises a bearing plate b1, a through cavity b2, a frame b3 and a ventilating block b4, the bearing plate b1 is fixed at the inner side position of the frame b3, the through cavity b2 penetrates through the inner position of the bearing plate b1, the ventilating block b4 is embedded in the inner position of the through cavity b2, the ventilating block b4 is made of textile fiber materials with high air permeability, hyacinth bean juice flowing downwards on the bearing plate b1 can be absorbed and blocked through the ventilating block b4, and air flow can pass through the inside of the ventilating block b 4.

The detailed use method and action of the embodiment are as follows:

in the invention, the outward expansion plate 11 can slide outwards along the position fixing block 13 under the coordination of the linkage block 12 by the throwing force generated by the rotation of the hairbrush 1, and then the impact block a2 can impact the inner wall of the bearing plate a3 by the inertia force generated by the outward expansion of the outward expansion plate 11, so that lentils clamped between the hairlines a1 on the outer surface of the bearing plate a3 can be shaken off, juice in the crushed lentils can be absorbed by the absorption plate a33, and when the outward expansion plate 11 contracts, air flow can be extruded outwards by the ventilation cavity 493a 32, so that the lentils juice in the absorption plate a33 can be dried, and through the receiving plate b1, the absorption plate 33 can absorb a large amount of juice of the crushed lentils to block the juice downwards, and through the ventilation cavity b2, the part of the air flow guided out upwards by the ventilation cavity a32 can be guided into the air flow, so that the juice absorbed on the plate b1 can be discharged upwards, the condition that the crushed wet hyacinth beans generate juice and the crushed hyacinth beans are adhered between the adjacent hair filaments a1 is effectively avoided.

Example 2

As shown in fig. 6-8:

wherein, absorption plate a33 includes atress board c1, underframe c2, vibrating mass c3, atress board c1 inlays the upper end position in underframe c2, vibrating mass c3 is connected with the inner wall of underframe c2, vibrating mass c3 is equipped with four, and even bottom at atress board c1 is the arc distribution, and through the power of getting rid of that the mechanism rotates the production, can make vibrating mass c3 inside the repeated flexible of underframe c2 to make vibrating mass c3 can produce the striking to the inner wall of atress board c 1.

The vibrating block c3 comprises a pull-back strip c31, a lower connecting plate c32, a connecting ring c33 and an upper swinging plate c34, the pull-back strip c31 is fixed between the inner wall of the upper swinging plate c34 and the lower connecting plate c32, the connecting ring c33 is connected with the top of the lower connecting plate c32, the upper swinging plate c34 is hinged to the side of the connecting ring c33, the upper swinging plate c34 is provided with two connecting plates, the upper ends of the lower connecting plate c32 are symmetrically distributed uniformly, and the upper swinging plate c34 can swing upwards along the connecting ring c33 by the object generated between the two upper swinging plates c34, so that the upper swinging plate c34 can generate extrusion on the object.

The lower plate c32 includes a sliding block d1, a connecting plate d2, a built-in frame d3 and a spring rod d4, the sliding block d1 is movably engaged with the inside of the connecting plate d2, the built-in frame d3 is embedded in the bottom position of the inner wall of the connecting plate d2, the spring rod d4 is in sliding fit with the inside of the built-in frame d3, and the sliding block d1 can be repeatedly contracted up and down along the connecting plate d2 under the cooperation of the spring rod d4 due to the inertia force generated by contraction of the mechanism, so that the mechanism can repeatedly press objects.

The detailed use method and action of the embodiment are as follows:

in the invention, since the impact block a2 is used for removing broken lentils, if light lentil belt juice is directly attached to the upper surface of the absorbing plate a33, the impact block a2 is impacted to hardly shake off the lentils due to the excessive tightness of the attachment, the vibration block c3 can be repeatedly stretched and contracted in the bottom frame c2 by the inertial force generated by the outward extension of the outward expanding plate 11, so that the vibration block c3 can repeatedly impact the inner side of the stressed plate c1, the upper swinging plate c34 can be upwards swung along the lower connecting plate c32 by the extrusion between the two upper swinging plates c34 by the inner wall of the stressed plate c1, the contact area of the upper swinging plate c34 to the bottom of the stressed plate c1 can be enhanced, and when the vibration block c3 is contracted, the sliding block d1 can continue to stretch and contract along the connecting plate c2 under the cooperation of the elastic rod d4, thereby effectively avoiding the direct attachment of the light lentils to the upper surface of the absorbing plate 33, the impact block a2 is impacted due to the adhesion being too tight, and the soybean hull is difficult to shake off.

The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

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