CN210504243U - Automatic sizing and turning conveying platform - Google Patents

Automatic sizing and turning conveying platform Download PDF

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Publication number
CN210504243U
CN210504243U CN201921086048.3U CN201921086048U CN210504243U CN 210504243 U CN210504243 U CN 210504243U CN 201921086048 U CN201921086048 U CN 201921086048U CN 210504243 U CN210504243 U CN 210504243U
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wheel carrier
traveling wheel
chain
driving
chain wheel
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CN201921086048.3U
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Chinese (zh)
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赵鑫伟
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Henan Yongyi Tongfeng Intelligent Technology Co ltd
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Henan Yongyi Tongfeng Intelligent Technology Co ltd
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Abstract

The utility model relates to an automatic scale, stirring conveying platform, including a plurality of chassis, walking wheel carrier, actuating mechanism, a plurality of feed roll, power unit, a plurality of scale mechanism, a plurality of stirring mechanism, the displacement of walking wheel carrier is not less than the width between two scale mechanisms. The utility model has the advantages of it is following and effect: when the reinforcing steel bars are placed on the plurality of feeding rollers, the sizing mechanism at a proper position is selected, the sizing plate is driven by the lifting cylinder to ascend and then the end part of the reinforcing steel bar is abutted, and the driving mechanism is matched to drive the traveling wheel carrier to move for a distance, so that the reinforcing steel bars are precisely sized; after the reinforcing bar is sheared, a plurality of stirring mechanisms on any one side of the rotatable walking wheel carrier can drive the rotating shaft to rotate through the driving air cylinder, so that the stirring arm on the rotating shaft upwards lifts the reinforcing bar, and then the reinforcing bar slides to the side face of the walking wheel carrier in the rotation process of the stirring arm to realize blanking.

Description

Automatic sizing and turning conveying platform
Technical Field
The utility model relates to a reinforcing bar processing equipment technical field, in particular to automatic scale, stirring conveying platform.
Background
At present, a steel bar shearing production line is equipment for shearing steel bars into a certain size according to design size requirements, and the equipment comprises a fixed length, a material turning and conveying platform and a shearing machine.
At present, application number is 200810153843X, Chinese patent that application date is 2008 12 month 9 discloses a removal scale upender of bar shearing production line, including removing the frame, the rail wheel frame, can reciprocating motion's drive unit, remove the frame and include two frames that are parallel to each other, be provided with a plurality of running rollers and scale stirring board between two frames, there is rail wheel at the both ends of removing the frame to support, the rail wheel articulates on the rail wheel frame, the rail wheel frame is fixed on the bed frame, drive unit connects and removes the frame and makes its reciprocating motion on the rail wheel. The movable frame of the movable fixed-length material turning mechanism of the bar shearing production line can move, so that the reinforcing steel bars with any length can be sheared and positioned. But the fixed length of the movable fixed length material turning mechanism on the bar material shearing production line is not accurate, the consistency of products is influenced, and the material turning structure occupies a large space.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an automatic scale, stirring conveying platform have the effect of accurate scale, the stirring of being convenient for.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides an automatic scale, stirring conveying platform, includes a plurality of chassis that are range distribution, the walking wheel carrier that slides and set up on a plurality of chassis, set up between chassis and walking wheel carrier and be used for driving the actuating mechanism that the walking wheel carrier removed, a plurality of feed rollers that rotate to connect on the walking wheel carrier and arrange along the length direction of walking wheel carrier, the power unit of setting between walking wheel carrier and a plurality of feeding roller, a plurality of going up and down set up the scale mechanism of walking wheel carrier middle part and arranging along the length direction of walking wheel carrier, a plurality of turn-down mechanisms that set up respectively and walk wheel carrier both sides and be used for the unloading, the migration distance of walking wheel carrier is not less than the width between two scale mechanisms.
The utility model discloses a further set up to: the chassis is provided with a track, and a plurality of rollers which are respectively connected with the tracks of the chassis in a rolling way are arranged on two sides of the walking wheel frame; the driving mechanism comprises a driving motor arranged on one of the bottom frames, a worm gear lead screw speed reducer arranged on the bottom frame and linked with the driving motor, and a connecting seat arranged at one end of a lead screw of the worm gear lead screw speed reducer and fixed at the bottom of the walking wheel frame; and a screw rod of the worm gear screw rod speed reducer extends along the length direction of the walking wheel frame.
The utility model discloses a further set up to: the two sides of the walking wheel carrier are provided with a plurality of groups of sliding rails extending along the vertical direction, and the sizing mechanism comprises a sizing plate and a lifting cylinder, wherein the two sides of the sizing plate are arranged on the sliding rails in a sliding mode, and the lifting cylinder is arranged between the walking wheel carrier and the sizing plate.
The utility model discloses a further set up to: the material turning mechanism comprises a rotating shaft which is rotatably connected to the side face of the traveling wheel frame and extends along the length direction of the traveling wheel frame, a plurality of material turning arms which are arranged on the rotating shaft and perpendicular to the extending direction of the rotating shaft along the direction, and a driving assembly for driving the rotating shaft to rotate.
The utility model discloses a further set up to: the driving assembly comprises two driving cylinders, one driving cylinder is hinged to the walking wheel frame, the other driving cylinder is hinged to the material turning arm located at one end of the rotating shaft, and the other driving cylinder is hinged to the walking wheel frame, and the other driving cylinder is hinged to the material turning arm located at the other end of the rotating shaft.
The utility model discloses a further set up to: the number of the feeding rollers is two, one end of each feeding roller protrudes out of one side of the traveling wheel frame, one end of each feeding roller protruding out of the traveling wheel frame is provided with a first chain wheel and a second chain wheel, and the power mechanism is provided with two feeding rollers which are used for respectively controlling the two ends of the traveling wheel frame in the length direction to rotate in the same number; the power mechanism comprises a power motor arranged on the traveling wheel frame, a third chain wheel arranged on an output shaft of the power motor, a fourth chain wheel arranged on an output shaft of the power motor, a third chain linked between the third chain wheel and a first chain wheel close to one feeding roller, and a fourth chain linked between the fourth chain wheel and a second chain wheel close to the other feeding roller.
The utility model discloses a further set up to: and a shield for covering the first chain wheel, the second chain wheel, the first chain and the second chain is arranged on one side of the traveling wheel carrier.
To sum up, the utility model discloses following beneficial effect has: when the reinforcing steel bars are placed on the plurality of feeding rollers, the sizing mechanism at a proper position is selected, the sizing plate is driven by the lifting cylinder to ascend and then the end part of the reinforcing steel bar is abutted, and the driving mechanism is matched to drive the traveling wheel carrier to move for a distance, so that the reinforcing steel bars are precisely sized; after the reinforcing bar is sheared, a plurality of stirring mechanisms on any one side of the rotatable walking wheel carrier can drive the rotating shaft to rotate through the driving air cylinder, so that the stirring arm on the rotating shaft upwards lifts the reinforcing bar, and then the reinforcing bar slides to the side face of the walking wheel carrier in the rotation process of the stirring arm to realize blanking.
Drawings
Fig. 1 is a schematic structural view of the present invention, in which a part of a shield is removed to facilitate the display of a power mechanism;
FIG. 2 is an enlarged view of a portion of FIG. 1 at A;
fig. 3 is a schematic structural diagram of a driving mechanism in the present invention;
FIG. 4 is an enlarged view of a portion of FIG. 1 at B;
fig. 5 is a schematic structural diagram of the material turning mechanism of the present invention;
fig. 6 is a partial enlarged view at C in fig. 1.
Reference numerals: 1. a chassis; 11. a track; 12. a fixing plate; 2. a traveling wheel carrier; 21. a roller; 22. a slide rail; 23. A shield; 3. a drive mechanism; 31. a drive motor; 32. a worm gear lead screw speed reducer; 33. a connecting seat; 4. a feed roller; 41. A first sprocket; 42. a second sprocket; 5. a power mechanism; 51. a power motor; 52. a third sprocket; 53. a fourth sprocket; 54. a third chain; 55. a fourth chain; 6. a sizing mechanism; 61. a sizing plate; 62. a lifting cylinder; 7. a material turning mechanism; 71. a rotating shaft; 72. a material turning arm; 73. a drive assembly; 731. a driving cylinder; 81. a first chain; 82. and a second chain.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example 1: an automatic sizing and turning conveying platform is shown in figure 1 and comprises a plurality of under frames 1 which are arranged and distributed, a plurality of traveling wheel frames 2 which are arranged on the under frames 1 in a sliding mode, a driving mechanism 3 which is arranged between the under frames 1 and the traveling wheel frames 2 and used for driving the traveling wheel frames 2 to move, a plurality of feeding rollers 4 which are connected to the traveling wheel frames 2 in a rotating mode and arranged along the length direction of the traveling wheel frames 2, a power mechanism 5 which is arranged between the traveling wheel frames 2 and a plurality of feeding rollers, a plurality of sizing mechanisms 6 which are arranged in the middle of the traveling wheel frames 2 in a lifting mode and arranged along the length direction of the traveling wheel frames 2, and a plurality of turning mechanisms 7 which are arranged on two sides of the traveling wheel frames 2 respectively and used for blanking.
As shown in fig. 1 to 3, a track 11 is fixedly arranged on the base frame 1, and a plurality of rollers 21 which are respectively connected to the tracks 11 of the base frame 1 in a rolling manner are rotatably connected to both sides of the traveling wheel frame 2; a fixed plate 12 is fixed on one underframe 1 close to one end of the walking wheel carrier 2, and the driving mechanism 3 comprises a driving motor 31 fixedly arranged on the fixed plate 12, a worm screw speed reducer 32 fixedly arranged on the fixed plate 12 and linked with the driving motor 31, and a connecting seat 33 rotatably connected to one end of a screw rod of the worm screw speed reducer 32 through a bearing and fixed at the bottom of the walking wheel carrier 2; the worm gear-screw reducer 32 has a screw extending in the longitudinal direction of the traveling wheel carrier 2. Meanwhile, under the driving of the driving mechanism 3, the moving distance of the walking wheel frame 2 is not less than the width between the two sizing mechanisms 6.
As shown in fig. 1 and 4, a plurality of sets of slide rails 22 extending in the vertical direction are provided on both sides of the traveling wheel carriage 2, and the sizing mechanism 6 includes a sizing plate 61 provided on the slide rails 22 in a sliding manner on both sides, and a lifting cylinder 62 provided between the traveling wheel carriage 2 and the sizing plate 61.
As shown in fig. 1 and 5, the material turning mechanism 7 on each side of the traveling wheel frame 2 extends along the length direction of the traveling wheel frame 2, and the material returning mechanism includes a rotating shaft 71 rotatably connected to the side surface of the traveling wheel frame 2 through a bearing and extending along the length direction of the traveling wheel frame 2, a plurality of material turning arms 72 fixedly arranged on the rotating shaft 71 and extending along a direction perpendicular to the extending direction of the rotating shaft 71, and a driving assembly 73 for driving the rotating shaft 71 to rotate. The driving assembly 73 comprises two driving cylinders 731, one driving cylinder 731 has one end hinged to the traveling wheel carrier 2 and the other end hinged to the stirring arm 72 at one end of the rotating shaft 71, and the other driving cylinder 731 has one end hinged to the traveling wheel carrier 2 and the other end hinged to the stirring arm 72 at the other end of the rotating shaft 71. Meanwhile, the material turning arms 72 in the material turning mechanisms 7 on both sides of the traveling wheel carrier 2 are crossed with each other, so that the interference of the rotating tracks of the material turning arms 72 in the material turning mechanisms 7 on both sides is avoided.
As shown in fig. 1 and 6, the number of the feeding rollers 4 is two, one end of each feeding roller 4 protrudes from one side of the traveling wheel frame 2, one end of each feeding roller 4 protruding from the traveling wheel frame 2 is fixedly provided with a first chain wheel 41 and a second chain wheel 42, and the power mechanism 5 is provided with two feeding rollers 4 which are used for respectively controlling the same number of the two ends of the traveling wheel frame 2 in the length direction to rotate; the power mechanism 5 includes a power motor 51 fixedly provided on the traveling wheel frame 2, a third sprocket 52 fixedly provided on an output shaft of the power motor 51, a fourth sprocket 53 fixedly provided on an output shaft of the power motor 51, a third chain 54 interlocked between the third sprocket 52 and the first sprocket 41 of one of the feed rollers 4 close to the third sprocket 53, and a fourth chain 55 interlocked between the fourth sprocket 53 and the second sprocket 42 of the other of the feed rollers 4 close to the fourth sprocket 53, and among the plurality of feed rollers 4 controlled by the one set of power mechanisms 5, the first sprocket 41 of one feed roller 4 is interlocked with the first sprocket 41 of the feed roller 4 adjacent to one end by a first chain 81, and the second sprocket 42 of the feed roller 4 is interlocked with the second sprocket 42 of the feed roller 4 adjacent to the other end by a second chain 82.
As shown in fig. 1 and 6, a cover 23 for covering the first sprocket 41, the second sprocket 42, the first chain 81, and the second chain 82 is fixed to one side of the traveling wheel frame 2.
The implementation principle is as follows: when the reinforcing steel bars are placed on the plurality of feeding rollers 4, the sizing mechanism 6 at a proper position is selected, the lifting cylinder 62 drives the sizing plate 61 to ascend and then the end of the reinforcing steel bars are abutted, and the driving mechanism 3 is matched to drive the traveling wheel carrier 2 to move for a distance, so that the reinforcing steel bars are precisely sized; after the reinforcing steel bars are sheared, the plurality of material overturning mechanisms 7 on any side of the rotatable walking wheel carrier 2 can drive the rotating shaft 71 to rotate through the driving air cylinder 731, so that the material overturning arms 72 on the rotating shaft 71 upwards lift the reinforcing steel bars, and then the reinforcing steel bars slide to the side face of the walking wheel carrier 2 in the rotating process of the material overturning arms 72 to realize blanking.
The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications to the present embodiment without inventive contribution as required after reading the present specification, but all of them are protected by patent laws within the scope of the claims of the present invention.

Claims (7)

1. The utility model provides an automatic scale, stirring conveying platform which characterized in that: the automatic blanking device comprises a plurality of chassis (1) which are arranged and distributed, a traveling wheel carrier (2) which is arranged on the chassis (1) in a sliding manner, a driving mechanism (3) which is arranged between the chassis (1) and the traveling wheel carrier (2) and is used for driving the traveling wheel carrier (2) to move, a plurality of feeding rollers (4) which are connected to the traveling wheel carrier (2) in a rotating manner and are arranged along the length direction of the traveling wheel carrier (2), a power mechanism (5) which is arranged between the traveling wheel carrier (2) and a plurality of feeding rollers, a plurality of sizing mechanisms (6) which are arranged in the middle of the traveling wheel carrier (2) in a lifting manner and are arranged along the length direction of the traveling wheel carrier (2), and a plurality of turning mechanisms (7) which are respectively arranged on two sides of the traveling wheel carrier (2) and are used for blanking, wherein the moving distance of the traveling wheel carrier (2).
2. The automated sizing, upending and delivery platform of claim 1 further comprising: a track (11) is arranged on the underframe (1), and a plurality of rollers (21) which are respectively connected with the tracks (11) of the underframe (1) in a rolling way are arranged on two sides of the walking wheel carrier (2); the driving mechanism (3) comprises a driving motor (31) arranged on one of the bottom frames (1), a worm gear lead screw speed reducer (32) arranged on the bottom frame (1) and linked with the driving motor (31), and a connecting seat (33) arranged at one end of a lead screw of the worm gear lead screw speed reducer (32) and fixed at the bottom of the walking wheel carrier (2); the screw rod of the worm screw speed reducer (32) extends along the length direction of the walking wheel carrier (2).
3. The automated sizing, upending and delivery platform of claim 1 further comprising: the length-fixing mechanism is characterized in that a plurality of groups of sliding rails (22) extending along the vertical direction are arranged on two sides of the traveling wheel frame (2), and the length-fixing mechanism (6) comprises length-fixing plates (61) arranged on the sliding rails (22) in a sliding mode on two sides and a lifting cylinder (62) arranged between the traveling wheel frame (2) and the length-fixing plates (61).
4. The automated sizing, upending and delivery platform of claim 1 further comprising: the material turning mechanism (7) comprises a rotating shaft (71) which is rotatably connected to the side surface of the traveling wheel carrier (2) and extends along the length direction of the traveling wheel carrier (2), a plurality of material turning arms (72) which are arranged on the rotating shaft (71) and are perpendicular to the extending direction of the rotating shaft (71) along the direction, and a driving assembly (73) for driving the rotating shaft (71) to rotate.
5. The automated sizing, upending and delivery platform of claim 4 wherein: the driving assembly (73) comprises two driving cylinders (731), one driving cylinder (731) is hinged to the walking wheel frame (2) at one end and hinged to the material turning arm (72) located at one end of the rotating shaft (71) at the other end, and the other driving cylinder (731) is hinged to the walking wheel frame (2) at one end and hinged to the material turning arm (72) located at the other end of the rotating shaft (71) at the other end.
6. The automated sizing, upending and delivery platform of claim 1 further comprising: the number of the feeding rollers (4) is two, one end of each feeding roller (4) protrudes out of one side of the traveling wheel carrier (2), one end, protruding out of the traveling wheel carrier (2), of each feeding roller (4) is provided with a first chain wheel (41) and a second chain wheel (42), and the power mechanism (5) is provided with two feeding rollers (4) which are used for respectively controlling the two ends of the traveling wheel carrier (2) in the length direction to rotate in the same number; the power mechanism (5) comprises a power motor (51) arranged on the traveling wheel frame (2), a third chain wheel (52) arranged on an output shaft of the power motor (51), a fourth chain wheel (53) arranged on an output shaft of the power motor (51), a third chain (54) linked between the third chain wheel (52) and a first chain wheel (41) of one feeding roller (4) close to the third chain wheel, and a fourth chain (55) linked between the fourth chain wheel (53) and a second chain wheel (42) of the other feeding roller (4) close to the fourth chain wheel (53), wherein in the plurality of feeding rollers (4) controlled by one group of power mechanism (5), the first chain wheel (41) of one feeding roller (4) is linked with the first chain wheel (41) of the feeding roller (4) adjacent to one end through a first chain (81), and the second chain wheel (42) of the feeding roller (4) is linked with the second chain wheel (42) of the feeding roller (4) adjacent to the other end through a second chain wheel (42) (82) And (4) linkage.
7. The automated sizing, upending and delivery platform of claim 6 wherein: and a shield (23) for covering the first chain wheel (41), the second chain wheel (42), the first chain (81) and the second chain (82) is arranged on one side of the traveling wheel carrier (2).
CN201921086048.3U 2019-07-11 2019-07-11 Automatic sizing and turning conveying platform Active CN210504243U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921086048.3U CN210504243U (en) 2019-07-11 2019-07-11 Automatic sizing and turning conveying platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921086048.3U CN210504243U (en) 2019-07-11 2019-07-11 Automatic sizing and turning conveying platform

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CN210504243U true CN210504243U (en) 2020-05-12

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112030381A (en) * 2020-09-10 2020-12-04 浙江凌志智能科技有限公司 Seam raking mechanism and seam raking machine with same
CN113021055A (en) * 2021-05-28 2021-06-25 沈阳机床股份有限公司 Multifunctional auxiliary material rack and control method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112030381A (en) * 2020-09-10 2020-12-04 浙江凌志智能科技有限公司 Seam raking mechanism and seam raking machine with same
CN113021055A (en) * 2021-05-28 2021-06-25 沈阳机床股份有限公司 Multifunctional auxiliary material rack and control method thereof

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