Steel band coiling mechanism

文档序号:820269 发布日期:2021-03-30 浏览:22次 中文

阅读说明:本技术 一种钢带收卷装置 (Steel band coiling mechanism ) 是由 周毅 周贤平 于 2020-12-22 设计创作,主要内容包括:本发明涉及一种钢带收卷装置。它包括带盘、机座和排线机构。机座内有动力机构。排线机构含有底板和两个挡杆。底板的一对相对边上均有竖板,两个竖板间连有滑杆,滑杆上有滑座。其特点是:所述带盘含有内、外法兰。内法兰固定在机座侧壁上且动力机构的输出轴所在的基座一测。输出轴一侧有底座,底座上有立轴。立轴上有轴套。轴套外侧有支架,支架两端分别与轴套和外法兰相连。竖杆外侧有连杆,连杆外端后侧有支杆,支杆上端与连杆外端间连有油缸。内、外法兰上边均有的L形豁口,L形豁口与滑座间有悬臂。两个挡杆呈竖立状连接在临近L形豁口处的悬臂一端上。适用于钢带加工过程中钢带卷绕。采用这种装置,可避免钢带擦伤,提高产品质量。(The invention relates to a steel belt winding device. It comprises a tape reel, a machine base and a wire arranging mechanism. The machine base is internally provided with a power mechanism. The wire arranging mechanism comprises a bottom plate and two stop rods. A pair of opposite edges of the bottom plate are provided with vertical plates, a sliding rod is connected between the two vertical plates, and a sliding seat is arranged on the sliding rod. The method is characterized in that: the tape reel includes inner and outer flanges. The inner flange is fixed on the side wall of the machine base, and the output shaft of the power mechanism is located on the first side of the base. One side of the output shaft is provided with a base, and the base is provided with a vertical shaft. The vertical shaft is provided with a shaft sleeve. The outer side of the shaft sleeve is provided with a support, and two ends of the support are respectively connected with the shaft sleeve and the outer flange. The outer side of the vertical rod is provided with a connecting rod, the rear side of the outer end of the connecting rod is provided with a supporting rod, and an oil cylinder is connected between the upper end of the supporting rod and the outer end of the connecting rod. L-shaped openings are arranged on the upper edges of the inner flange and the outer flange, and a cantilever is arranged between each L-shaped opening and the sliding seat. The two stop levers are vertically connected to one end of the cantilever close to the L-shaped opening. The steel belt winding device is suitable for winding steel belts in the steel belt processing process. By adopting the device, the steel belt can be prevented from being scratched, and the product quality is improved.)

1. A steel belt winding device comprises a belt reel, a base (6) and a wire arrangement mechanism; a power mechanism is arranged in the machine base (6), and an output shaft (19) of the power mechanism extends out; the wire arranging mechanism comprises a bottom plate (2) and two stop rods (7); the pair of opposite edges of the bottom plate (2) are provided with vertical plates (3), the bottom plate (2) between the two vertical plates (3) is connected with a sliding seat (1), the sliding seat (1) is provided with a horizontal hole, a sliding rod (5) is arranged in the horizontal hole, and two ends of the sliding rod (5) are respectively connected with the corresponding vertical plates (3); the method is characterized in that: the tape reel comprises an inner flange (21) and an outer flange (20): the inner flange (21) is fixed on the side wall of the machine base (6), and the outer end of the output shaft (19) of the power mechanism movably penetrates out of the inner flange (21); a base (16) is arranged on one side of the output shaft (19), a vertical shaft (171) is arranged on the base (16), and the lower end of the vertical shaft (171) is fixed on the base (16); the vertical shaft (171) is provided with a shaft sleeve (17) which is matched with the vertical shaft in a rotatable way; a support is arranged on the outer side of the shaft sleeve (17), the support comprises two L-shaped rods which are parallel, the bent parts of the two L-shaped rods are connected together through a vertical rod (14), the outer ends of the transverse parts (15) of the two L-shaped rods are connected to the same side of the shaft sleeve (17), and the vertical parts (18) of the two L-shaped rods are respectively fixed on the outer side surface of the outer flange (20); a connecting rod (13) is arranged on the outer side of the vertical rod (14), the connecting rod is parallel to the vertical part (18) of the L-shaped rod, the inner end of the connecting rod is connected with the vertical rod (14), and a supporting rod (11) is arranged on the rear side of the outer end of the connecting rod; the lower end of the supporting rod (11) is fixed on the support, and an oil cylinder (12) is connected between the upper end of the supporting rod and the outer end of the connecting rod (13); the outer flange (20) can be driven to rotate to be parallel to the inner flange (21) by means of the outward extension of the oil cylinder (12), so that the shaft hole of the outer flange (20) is sleeved on the outer end of the output shaft (19); the upper edges of the inner flange (21) and the outer flange (20) are respectively provided with L-shaped openings (9) which correspond to each other, and a cantilever (4) is arranged between each L-shaped opening (9) and the sliding seat (1); one end of the cantilever (4) is fixed on the sliding seat (1), and the other end of the cantilever extends to the L-shaped opening (9); the two stop levers (7) are vertically connected to one end of the cantilever (4) close to the L-shaped opening (9).

2. The steel strip winding device according to claim 1, wherein: the cantilever (4) is a rectangular plate, the plate surface of the cantilever is perpendicular to the plate surfaces of the inner flange (21) and the outer flange (20), and the two stop levers (7) are connected to the upper surface of one end of the cantilever (4) close to the L-shaped opening (9).

3. The steel strip winding device according to claim 1, wherein: the adjacent surfaces of the inner flange (21) and the outer flange (20) are circumferentially and uniformly provided with rollers (10) which are arranged in a radial direction; the adjacent surfaces of the inner flange (21) and the outer flange (20) at the two ends of the roller (10) are respectively provided with a shaft seat (8), and the two ends of the roller (10) can rotatably extend into the corresponding shaft seats (8).

4. The steel strip winding device according to claim 1, wherein: the vertical two sides of the machine base (6) are connected with the corresponding sides of the inner flange (21) through fixing rods (22).

Technical Field

The invention relates to a steel belt winding device. In particular to a steel strip winding device which is used for winding the steel strip processed in the previous procedure on a coil in the steel strip processing process.

Background

It is known in the steel strip production industry to wind a steel strip processed in a previous step onto a coil by means of a winding device during the steel strip processing. Wherein, traditional steel band coiling mechanism contains tep reel, frame and winding displacement mechanism. The machine base is internally provided with a power mechanism, and an output shaft of the power mechanism extends out of the machine base. The wire arranging mechanism comprises a bottom plate, a pair of opposite edges of the bottom plate are connected with vertical plates, a sliding seat is connected to the bottom plate between the two vertical plates, two horizontal holes are machined in the sliding seat, a sliding rod is installed in each horizontal hole, and two ends of each sliding rod are connected with the corresponding vertical plates respectively. Two stop levers which are vertically arranged are arranged on the sliding seat, and a space which is convenient for the steel belt to pass through is reserved between the two stop levers.

The belt disc comprises an inner flange and an outer flange, central holes are processed on the inner flange and the outer flange, and a shaft sleeve is connected between the two central holes, so that the inner flange and the outer flange are connected with the two ends of the shaft sleeve respectively. When the steel belt winding device is used, the output shaft of the power mechanism extends into the shaft sleeve in the belt disc and the shaft sleeve is fixed in the circumferential direction, and when a steel belt is wound, the inner flange, the outer flange and the shaft sleeve rotate together along with the output shaft of the power mechanism. After the steel belt is fully coiled, the belt reel consisting of the inner flange, the outer flange and the shaft sleeve and the steel belt on the belt reel are detached from an output shaft of the power mechanism together, so that the steel belt needs one belt reel, the required belt reels are large, and the equipment investment is large. And because the two stop levers are directly arranged on the sliding seat and the whole wire arranging mechanism including the sliding seat is positioned in front of the wheel disc, the sliding seat and the stop levers on the sliding seat are far away from the shaft sleeve of the belt disc. In the steel belt winding process, when the steel belt turns around from one end of the shaft sleeve to the other end, the steel belt can be stacked. This stacking situation needs to be eliminated by manual intervention. Although the steel strip stacking phenomenon can be eliminated by adopting manual intervention, the operation is troublesome. In addition, the winding displacement mechanism is far away from the shaft sleeve of the belt disc. The axis of the steel strip is not perpendicular to the longitudinal direction of the shaft sleeve, so that friction can be generated between the two sides of the steel strip and the inner side surfaces of the inner flange and the outer flange, the steel strip is scratched, and the product quality is reduced.

Disclosure of Invention

The invention provides a steel belt winding device for overcoming the defects. The winding device is easy to operate. By adopting the steel belt winding device, the steel belt can be prevented from being scratched, and the product quality is improved.

The above problems to be solved by the present invention are realized by the following technical solutions:

the steel belt winding device comprises a belt reel, a machine base and a wire arrangement mechanism, wherein a power mechanism is arranged in the machine base, and an output shaft of the power mechanism extends out of the machine base. The wire arranging mechanism comprises a bottom plate and two stop rods. A pair of opposite edges of the bottom plate are provided with vertical plates, the bottom plate between the two vertical plates is connected with a sliding seat, the sliding seat is provided with a horizontal hole, a sliding rod is arranged in the horizontal hole, and two ends of the sliding rod are respectively connected with the corresponding vertical plates. The method is characterized in that: the tape reel includes an inner flange and an outer flange. The inner flange is fixed on the side wall of the machine base, and the outer end of the output shaft of the power mechanism penetrates out of the inner flange in a movable manner. One side of the output shaft is provided with a base, a vertical shaft is arranged on the base, and the lower end of the vertical shaft is fixed on the base. The vertical shaft is provided with a shaft sleeve which is rotatablely matched with the vertical shaft. The outer side of the shaft sleeve is provided with a support, the support comprises two L-shaped rods, the two L-shaped rods are parallel, the bent parts of the two L-shaped rods are connected together through a vertical rod, the outer ends of the transverse parts of the two L-shaped rods are connected to the same side of the shaft sleeve, and the vertical parts of the two L-shaped rods are fixed on the outer side surface of the outer flange respectively. The outer side of the vertical rod is provided with a connecting rod which is parallel to the vertical part of the L-shaped rod, the inner end of the connecting rod is connected with the vertical rod, the rear side of the outer end of the connecting rod is provided with a supporting rod and a supporting rod, the lower end of the supporting rod is fixed on the base, and an oil cylinder is connected between the upper end of the supporting rod and the outer end of. The outer flange can be driven to rotate to be parallel to the inner flange by means of the outward extension of the oil cylinder, and the shaft hole of the outer flange is sleeved on the outer end of the output shaft. The upper edges of the inner flange and the outer flange are provided with L-shaped openings which correspond to each other, and a cantilever is arranged between each L-shaped opening and the sliding seat. One end of the cantilever is fixed on the sliding seat, and the other end of the cantilever extends to the L-shaped opening. The two stop levers are vertically connected to one end of the cantilever close to the L-shaped opening.

Wherein: the cantilever is rectangular plate, and its face is perpendicular with the face of interior flange and outer flange, two the pin is connected on the cantilever one end upper surface that closes on L shape opening department.

The invention has the further improvement scheme that the adjacent surfaces of the inner flange and the outer flange are circumferentially and uniformly provided with rolling shafts which are arranged in a radial manner. The adjacent surfaces of the inner flange and the outer flange at the two ends of the rolling shaft are respectively provided with a shaft seat, and the two ends of the rolling shaft can rotatably extend into the corresponding shaft seats.

Wherein, the vertical both sides of frame all link together with the help of the dead lever with the corresponding limit of inner flange within a definite time.

According to the scheme, the belt disc comprises the inner flange and the outer flange, the inner flange is fixed on the side wall of the base, and the outer end of the output shaft of the power mechanism movably penetrates out of the inner flange. One side of the output shaft is provided with a base, and the base is provided with a vertical shaft. The upright post is provided with a shaft sleeve and the upright post are matched in a rotatable manner. The outer side of the shaft sleeve is provided with a support, the support comprises two L-shaped rods, the two L-shaped rods are parallel, the bent parts of the two L-shaped rods are connected together through a vertical rod, the outer ends of the transverse parts of the two L-shaped rods are connected to the same side of the shaft sleeve, and the vertical parts of the two L-shaped rods are fixed on the outer side surface of the outer flange respectively. The outer side of the vertical rod is provided with a connecting rod which is parallel to the vertical part of the L-shaped rod, the inner end of the connecting rod is connected with the vertical rod, and the rear side of the outer end of the connecting rod is provided with a supporting rod. The lower end of the supporting rod is fixed on the base, and an oil cylinder is connected between the upper end of the supporting rod and the outer end of the connecting rod. The outer flange can be driven to rotate to be parallel to the inner flange by means of the outward extension of the oil cylinder, and the shaft hole of the outer flange is sleeved on the outer end of the output shaft. When the power mechanism works, the inner flange and the outer flange are not moved, and only the shaft sleeve on the output shaft of the power mechanism rotates along with the output shaft of the power mechanism. When the belt coil is full, the oil cylinder drives the outer flange to rotate around the vertical shaft through the connecting rod and the bracket, so that the outer flange is separated from the output shaft of the power mechanism. And then, unloading the disc-shaped steel belt. It can be seen that the discharged steel strip disk contains no steel disks. Because the unloaded disc-shaped steel band does not contain a reel, only one reel is needed, the required reels are few, and the equipment investment can be greatly reduced. And because the upper edges of the inner flange and the outer flange are respectively provided with L-shaped openings which correspond to each other, a cantilever is arranged between each L-shaped opening and the sliding seat. One end of the cantilever is fixed on the sliding seat, and the other end of the cantilever extends to the L-shaped opening. Two pin are erect the form and connect on closing on the cantilever one end of L shape opening department for two pin are nearer apart from the axle sleeve, thereby have guaranteed that the steel band is vertical with the vertical intervally of axle sleeve, make can not produce the friction between the medial surface of steel band both sides and inside and outside flange, and background art compares in advance, has avoided the scotch of steel band, has improved the quality of product. In addition, the adjacent surfaces of the inner flange and the outer flange are circumferentially and uniformly provided with the rollers which are arranged in the radial direction. The adjacent surfaces of the inner flange and the outer flange at the two ends of the rolling shaft are respectively provided with a shaft seat, and the two ends of the rolling shaft can extend into the corresponding shaft seats in a rotating manner. Therefore, when the wound steel strip turns, the steel strip only can be in contact with the rolling shaft and cannot be in contact with the inner side surfaces of the inner flange and the outer flange, so that the steel strip is further prevented from being scratched, and the product quality is improved.

Drawings

FIG. 1 is a perspective view of a steel strip winding device according to the present invention.

Detailed Description

As shown in FIG. 1, the steel belt winding device of the invention comprises a machine base, a belt disc and a wire arranging mechanism; a power mechanism is arranged in the machine base 6, and an output shaft 19 of the power mechanism extends out.

The reel contains an inner flange 21 and an outer flange 20. Two fixing rods 22 are respectively arranged between the two vertical sides of the machine base and the inner flange 21, the inner flange 21 is fixed on the side wall of the opposite side of the machine base 6 by the fixing rods 22, and the outer end of the output shaft 19 of the power mechanism movably penetrates out of the inner flange 21. One side of the output shaft 19 is provided with a base 16, a vertical shaft 171 is arranged on the base 16, and the lower end of the vertical shaft 171 is fixed on the base 16. The vertical shaft 171 is sleeved with a bushing 17 and the bushing is rotatably matched with the bushing. The outer side of the shaft sleeve 17 is provided with a bracket which comprises two L-shaped rods, the two L-shaped rods are parallel, the bent parts of the two L-shaped rods are connected together through a vertical rod 14, the outer ends of the transverse parts 15 of the two L-shaped rods are welded on the same side of the shaft sleeve 17, and the vertical parts 18 of the two L-shaped rods are respectively fixed on the outer side surfaces of the upper part and the lower part of the central hole of the outer flange. The outer side of the vertical rod 14 is provided with a connecting rod 13, the connecting rod 13 is parallel to the vertical part 18 of the L-shaped rod, the inner end of the connecting rod 13 is connected with the vertical rod 14, and the rear side of the outer end of the connecting rod is provided with a supporting rod 11. The supporting rod 11 is vertically arranged, the lower end of the supporting rod is fixed on the base 16, and an oil cylinder 12 is connected between the upper end of the supporting rod and the outer end of the connecting rod 13. The piston rod of the cylinder 12 extends outwards to drive the outer flange 20 to rotate to be parallel to the inner flange 21, so that the shaft hole of the outer flange 20 is sleeved on the outer end of the output shaft 19.

The power mechanism comprises a motor and a speed reducer, an output shaft of the motor is connected with an input shaft of the speed reducer, and the output shaft of the speed reducer is used as the output shaft of the power mechanism and is matched with shaft holes in the centers of the inner flange 21 and the outer flange 20.

The winding displacement mechanism comprises a bottom plate 2. The bottom plate 2 is rectangular plate, and the riser 3 has all been welded to its one pair of short edge, is fixed with slide 1 on the bottom plate 2 between two risers 3, and processing has two horizontal holes on the slide 1. The axial direction of the horizontal hole is parallel to the length direction of the bottom plate 2, sliding rods 5 are installed in the horizontal hole, and two ends of each sliding rod 5 extend out of two ends of the corresponding horizontal hole and are respectively fixed on the corresponding vertical plates 3. When the device works, the bottom plate 2 is fixed on the workbench.

The upper edges of the inner flange 21 and the outer flange 20 are respectively provided with L-shaped gaps 9 which correspond to each other. A cantilever 4 is arranged between the sliding seat 1 and the belt reel. The cantilever 4 is a rectangular plate, the plate surface of the cantilever is vertical to the plate surfaces of the inner flange 21 and the outer flange 20, the plate surface of the cantilever is horizontally arranged, one end of the cantilever is connected to the upper surface of the sliding seat 1, and the other end of the cantilever extends to the L-shaped notch 9. The end of the cantilever 4 extending to the L-shaped notch 9 is provided with two stop levers 7 which are vertically connected with the cantilever 4. The distance between the two stop levers 7 is matched with the width of the processed steel strip.

In order to avoid the damage caused by friction between the steel belt and the inner and outer flanges when the steel belt turns in the winding process. Four rollers 10 which are arranged radially are uniformly distributed on the adjacent surfaces of the inner flange 21 and the outer flange 20 in the circumferential direction. Axle seats 8 are fixed on the adjacent surfaces of the inner flange 21 and the outer flange 20 at the two ends of the roller 10, and the two ends of the roller 10 can extend into the corresponding axle seats 8 in a rotatable manner.

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