SUMMERY OF THE UTILITY MODEL
Therefore, the utility model discloses the technical problem that solve is: the utility model provides a parking equipment stand and end plate welding production line to solve stand and end plate butt joint inefficiency, welding upset process waste time and energy, technical problem that intensity of labour is big.
In order to solve the technical problem, the technical scheme of the utility model is that: a parking equipment stand and end plate welding production line comprises a welding rack, wherein material roller racks are arranged at two ends of the welding rack, a conveying rack is arranged on one side of the material roller racks, a first supporting seat and a second supporting seat which are arranged oppositely are arranged on the welding rack, a first rotating ring driven by a first power device is rotatably arranged on the first supporting seat, a second rotating ring is rotatably arranged on the second supporting seat, the first rotating ring and the second rotating ring are coaxially arranged, a roller wheel bracket is arranged between the first rotating ring and the second rotating ring and penetrates through the first rotating ring and the second rotating ring, the roller wheel brackets are fixedly connected with the first rotating ring and the second rotating ring, feeding rollers driven by the second power device are arranged on the welding rack, the material roller racks and the roller wheel bracket, and a positioning mechanism used for compressing a stand column is fixedly arranged on the roller wheel bracket, the positioning mechanism is opposite to the feeding roller, portal frames are arranged at two ends of the welding rack, and a plate conveying mechanism is vertically and slidably mounted on each portal frame.
As an improvement, panel conveying mechanism is including pushing away the workbin, the top fixed mounting who pushes away the workbin has panel to hold the case, panel holds the case and pushes away and be equipped with the blanking passageway with panel thickness looks adaptation between the workbin, blanking passageway intercommunication it holds the case to push away workbin and panel, it has the push pedal by first linear drive mechanism driven to push away workbin slidable mounting, the slip direction of push pedal with the blanking direction of blanking passageway is perpendicular.
As a further improvement, a material pushing plate driven by a second linear driving mechanism is slidably mounted in the plate accommodating box, and the sliding direction of the material pushing plate is perpendicular to the blanking direction of the blanking channel.
As a further improvement, the plate accommodating boxes on the portal frame are connected with the corresponding lifting driving mechanisms.
As a further improvement, be equipped with two piece at least parallel arrangement's delivery beam in the delivery frame, the swing arm is installed through the articulated shaft rotation to the head end of every delivery beam, the tip of swing arm rotates and installs the first sprocket of connecting third power device, the tail end of delivery beam rotates and installs the second sprocket, it has the conveying chain to encircle between first sprocket and the second sprocket, lie in the material roller frame delivery frame one side corresponds the swing arm position is equipped with the breach, the swing arm stretches into the breach just is located between two adjacent feed rolls, elevating system is connected in the swing arm.
As a further improvement, the hinged shafts of two adjacent conveying beams are connected through a transmission shaft.
As a further improvement, the portal frame is slidably mounted on the welding rack, and the sliding direction of the portal frame is consistent with the conveying direction of the longitudinal beam.
As a further improvement, a sliding block assembly of a sliding rail is arranged between the portal frame and the welding rack, a fixed seat is arranged on the welding rack, an adjusting screw rod is rotatably arranged on the fixed seat, and a nut matched with the adjusting screw rod is fixedly arranged on the portal frame.
As a further improvement, a shifting plate is fixedly mounted on the feeding roller and is coaxially arranged with the feeding roller, a plurality of shifting teeth are arranged on the shifting plate in an annular array mode, and the diameter of the root circle of each shifting tooth is larger than that of the feeding roller.
As a further improvement, the annular array on the shifting plate is provided with a plurality of material supporting extension sections which correspond to the shifting teeth one by one, the corresponding material supporting extension sections are abutted against the shifting teeth, and an included angle between the corresponding material supporting extension sections and the shifting teeth is smaller than or equal to 90 degrees.
After the technical scheme is adopted, the beneficial effects of the utility model are that:
the utility model provides a parking equipment stand and end plate welding production line carries to the feed roll on when the stand, compresses tightly through positioning mechanism, and the upper surface of end plate and side welding accomplish the back, and first rotating ring and second rotating ring drive stand upset 180 degrees will not have welded lower surface upset to the top to in the lower surface of welding end plate, needn't hoist and mount the transport again, thereby improved the welding efficiency of stand end plate, reduced operator's intensity of labour.
Because the two ends of the welding rack are respectively provided with the plate conveying mechanisms which correspond to the positions of the two ends of the stand column, and the corresponding plate conveying mechanisms are respectively internally provided with the plurality of end plates, after the stand column reaches the designated position, the plate conveying mechanisms can correspondingly butt the end plates with the stand column, and then the welding is realized, so that the labor intensity of an operator is reduced, and the processing efficiency of the stand column is improved.
Owing to set up the swing arm of being connected with elevating system, the swing arm stretches into the breach and is located between two adjacent feed rolls, when needs shift the stand to the material roller frame or shift to the transport frame from the material roller frame from the transport frame, elevating system lifting swing arm, the stand can reach the processing position of feed roll by the conveying chain through the swing arm, then elevating system drives the swing arm whereabouts, place the stand on the feed roll, or lift the stand on the feed roll through the swing arm, leave the feed roll, carry away from the feed roll by the conveying chain, material loading and unloading efficiency have not only been improved, but also avoided the stand to drag the line on the feed roll, can not rub and damage the feed roll.
Owing to set up and dial the board, dial the board on the annular array be provided with a plurality of and dial the tooth, dial the diameter of the root circle of tooth and be greater than the diameter of feed roll, can make the end plate that is located the stand tip before arriving the feed roll and dial the tooth and hold up, cross the feed roll and continue down stream transport to the purpose that the welding has the stand that the end plate sectional area is bigger than the stand sectional area and has carried up stream down stream on the feed roll has been realized.
Because the portal frame passes through slide rail sliding block set spare slidable mounting on the welding frame, rethread rotation adjustment lead screw drives the portal frame and removes to can satisfy the end plate butt joint of different length stands.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It should be apparent that the drawings in the following description are merely exemplary, and that other embodiments can be derived from the drawings provided by those of ordinary skill in the art without inventive effort.
The structure, ratio, size and the like shown in the present specification are only used for matching with the content disclosed in the specification, so as to be known and read by people familiar with the technology, and are not used for limiting the limit conditions which can be implemented by the present invention, so that the present invention has no technical essential significance, and any structure modification, ratio relationship change or size adjustment should still fall within the range which can be covered by the technical content disclosed by the present invention without affecting the efficacy and the achievable purpose of the present invention.
FIG. 1 is a schematic view of the relative positions of a column and an end plate of a parking apparatus;
fig. 2 is a schematic structural diagram of an embodiment of the present invention;
fig. 3 is a schematic view of the structural arrangement of the roller bracket in the embodiment of the present invention;
fig. 4 is a schematic structural view of the portal frame and the plate conveying mechanism in the embodiment of the present invention;
fig. 5 is a schematic perspective view of the material roller frame and the conveying frame in the embodiment of the present invention;
fig. 6 is a state diagram of the swing arm in the embodiment of the present invention;
FIG. 7 is a diagram illustrating the swing arm falling state in the embodiment of the present invention;
FIG. 8 is a schematic structural view of a feed roller in an embodiment of the present invention;
FIG. 9 is a diagram illustrating the feeding roller conveying column according to an embodiment of the present invention;
in the figure: 100. column 200, end plate;
1. a welding rack, 2, a feeding roller, 3, a portal frame, 4, a plate conveying mechanism, 401, a material pushing box, 402, a plate accommodating box, 403, a blanking channel, 404, a first linear driving device, 405, a push plate, 406, a positioning pin, 407, a plate outlet, 408, a second linear driving device, 409, a material pushing plate, 5, a lifting driving mechanism, 6, a first supporting seat, 7, a second supporting seat, 8, a fixed seat, 9, a sliding block assembly, 10, an adjusting screw rod, 11, a nut, 12, a material roller rack, 1201, a notch, 13, a conveying rack, 1301, a conveying beam, 14, a roller bracket, 15, a swing arm, 16, a first chain wheel, 17, a second chain wheel, 18, a conveying chain, 19, a lifting mechanism, 20, a connecting lug, 21, a motor, 22, a first driving chain wheel, 23, a second driving chain wheel, 24, a first driving chain, 25 and a third driving chain wheel, 26. the material supporting device comprises a fourth transmission chain wheel, 27, a second transmission chain, 28, a transmission shaft, 29, a first rotating ring, 30, a second rotating ring, 31, a first motor, 32, a gear, 33, an outer gear ring, 34, a second power device, 35, a cylinder, 36, a positioning block, 3601, a positioning groove, 37, a shifting plate, 3701, shifting teeth, 3702 and a material supporting extension section.
Detailed Description
The present invention is described in terms of specific embodiments, and other advantages and benefits of the present invention will become apparent to those skilled in the art from the following disclosure. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
In the present specification, the terms "front", "rear", "left", "right", "inner", "outer" and "middle" are used for convenience of description, and are not intended to limit the scope of the present invention, and changes or adjustments of the relative relationship thereof may be made without substantial technical changes.
As shown in fig. 2 and 3, a welding production line for a column and an end plate of a parking device includes a welding frame 1, a material roller frame 12 is arranged at each of two ends of the welding frame 1, a conveying frame 13 is arranged on one side of each material roller frame 12, the conveying direction of each material roller frame 12 is perpendicular to the conveying direction of the conveying frame 13, a first supporting seat 6 and a second supporting seat 7 which are arranged oppositely are arranged on the welding frame 1, a first rotating ring 29 driven by a first power device is rotatably arranged on the first supporting seat 6 through a bearing, the first power device includes a first motor 31 fixedly arranged on the first supporting seat 6, an outer gear ring 33 is arranged on the outer surface of the first rotating ring 29, and a gear 32 meshed with the outer gear ring 33 is arranged on a power output shaft of the first motor 31. A second rotating ring 30 is rotatably arranged on the second supporting seat 7 through a bearing, the first rotating ring 29 and the second rotating ring 30 are coaxially arranged, a roller bracket 14 is arranged between the first rotating ring 29 and the second rotating ring 30, the roller bracket 14 penetrates through the first rotating ring 29 and the second rotating ring 30, the roller bracket 14 is fixedly connected with the first rotating ring 29 and the second rotating ring 30, under the action of the first power device, the first rotating ring 29 rotates and drives the second rotating ring 30 to synchronously rotate, feeding rollers 2 driven by the second power device 34 are arranged on the welding rack 1, the material roller rack 12 and the roller bracket 14, a plurality of feeding rollers 2 are arranged in parallel, each feeding roller 2 is installed on the corresponding welding rack 1, the material roller rack 12 and the roller bracket 14 through a bearing seat, the second power device 34 comprises a second motor, and the second motor is connected with the feeding rollers 2 through chain transmission. The positioning mechanism for compressing the stand column is fixedly arranged on the roller bracket 14, the positioning mechanism is opposite to the position of the feed roller 2, when the stand column is conveyed to the feed roller 2, the stand column is compressed by the positioning mechanism, the positioning mechanism comprises a positioning block 36 driven by an air cylinder 35, the cylinder body of the air cylinder 35 is fixedly arranged on the roller bracket 14, the piston rod of the air cylinder 35 is connected with the positioning block 36, one side, facing the feed roller 2, of the positioning block 36 is provided with a positioning groove 3601 matched with the shape of the stand column, the stand column can be compressed on the roller bracket 14, so that the end plate is prevented from being offset when being in butt joint with the stand column, meanwhile, the accuracy of the position of the 180-degree turnover rear end plate is also ensured, the positioning mechanism is provided with two groups and is respectively close to the first supporting seat 6 and the second supporting seat 7, two-point positioning is realized, and the stand column is positioned on the roller bracket 14 more stably. After the welding of the upper surface and the side of the end plate is completed, the first rotating ring 29 and the second rotating ring 30 rotate and simultaneously drive the roller bracket 14 to integrally turn over, so that the stand column turns over 180 degrees along with the stand column, the lower surface which is not welded is turned over to the upper side, the lower surface of the end plate is welded conveniently, the lower surface of the end plate does not need to be hoisted and carried again, the welding efficiency of the stand column end plate is improved, and the labor intensity of an operator is reduced.
Both ends of welding frame 1 all are equipped with portal frame 3, portal frame 3 is located between corresponding welding frame 1 and material roller frame 12, vertical slidable mounting has panel conveying mechanism 4 on the portal frame 3, panel conveying mechanism 4 is used for carrying a plurality of end plates to the relevant position one by one as required, panel conveying mechanism 4 that is located on the portal frame 3 connects lift actuating mechanism 5, when the stand need carry to the butt joint region or the stand is accomplished and is docked the back and need down the downstream output, need rise panel conveying mechanism 4 that is located on the portal frame 3, be used for dodging the transfer passage of stand.
In the butt joint position of the end plate of the welding frame 1, a welding device needs to be placed, or manual welding is used, or welding robot welding is used, and a person skilled in the art needs to set the butt joint position according to needs.
As shown in fig. 4, the plate conveying mechanism 4 includes a material pushing box 401, a plate accommodating box 402 is fixedly mounted above the material pushing box 401, the plate accommodating box 402 is used for accommodating an end plate, a material dropping channel 403 adapted to the thickness of the plate is disposed between the plate accommodating box 402 and the material pushing box 401, the material dropping channel 403 communicates the material pushing box 401 and the plate accommodating box 402, a push plate 405 driven by a first linear driving mechanism is slidably mounted in the material pushing box 401, a positioning hole is typically disposed on the end plate, as shown in fig. 3, a positioning pin 406 adapted to the positioning hole is disposed on the push plate 405, (the positioning pin 406 may be replaced by a magnet embedded in the push plate 405, the end plate is attracted to push, welded in place and then withdrawn from the push plate 405), when pushing, the positioning pin 406 is inserted into the positioning hole to avoid the end plate from falling off during pushing, to ensure that the end plate is pushed in place accurately, the sliding direction of the push plate 405 is perpendicular to the material dropping channel 403, a plate outlet 407 is formed in one side, facing the welding rack 1, of the material pushing box 401, the shape of the plate outlet 407 is matched with that of the end plate, the position of the push plate 405 corresponds to that of the plate outlet 407, when the end plate falls into the material pushing box 401, the first linear driving device 404 drives the push plate 405 to translate, and pushes the end plate out of the plate outlet 407 of the material pushing box 401 to a corresponding position of the upright column, the first linear driving device 404 is usually an air cylinder or a hydraulic cylinder, and the push plate 405 is mounted on a piston rod of the air cylinder or the hydraulic cylinder.
The plate accommodating box 402 is a box body with the periphery blocked, the top of the plate accommodating box 402 is open so as to be convenient for placing end plates, the bottom of the plate accommodating box 402 is fixed on the material pushing box 401, the blanking channel 403 is positioned at one end of the bottom of the plate accommodating box 402 close to the welding rack 1, a material pushing plate 409 driven by a second linear driving mechanism is arranged in the plate accommodating box 402 in a sliding manner, the sliding direction of the material pushing plate 409 is perpendicular to the blanking direction of the blanking channel 403, a plurality of end plates which are arranged together are generally vertically placed in the plate accommodating box 402, the material pushing plate 409 abuts against the end plates under the action of the second linear driving device 408, the end plates are tightly pressed in the plate accommodating box 402, when the end plates need to be arranged in the material pushing box 401, the second linear driving device 408 drives the material pushing plate 409 to retract, the end plates above the blanking channel 403 fall into the material pushing box 401 under the action of gravity, at the moment, the second linear driving device 408 drives the material pushing plate 409 again, the remaining end plates are compressed within the sheet receiving box 402, and so forth. The second linear drive 408 is typically a pneumatic or hydraulic cylinder with the stripper plate 409 mounted on the piston rod of the cylinder.
The lifting driving mechanism 5 is preferably an air cylinder, the cylinder body of the air cylinder is fixed on the portal frame 3, the plate accommodating box 402 is connected with the piston rod of the air cylinder, so that the lifting driving mechanism 5 drives the plate conveying mechanism 4 to integrally move up and down, and the plate accommodating box 402 on the portal frame 3 is internally provided with an end part for plugging two ends of the upright column.
As shown in fig. 4, a portal frame 3 is slidably mounted on a welding rack 1, the sliding direction of the portal frame 3 is consistent with the conveying direction of the columns, a sliding rail and sliding block assembly 9 is arranged between the portal frame 3 and the welding rack 1, a sliding rail is usually mounted on the welding rack 1, a sliding block is mounted on the portal frame 3, a fixing seat 8 is arranged on the welding rack 1, an adjusting screw rod 10 is rotatably mounted on the fixing seat 8, a nut 11 matched with the adjusting screw rod 10 is fixedly mounted on the portal frame 3, the portal frame 3 is driven to move by rotating the adjusting screw rod 10, and therefore end plate butt joint of columns with different lengths can be met.
As shown in fig. 5 and 6, at least two parallel conveying beams 1301 are arranged on the conveying frame 13, a swing arm 15 is rotatably mounted at the head end of each conveying beam 1301 through a hinge shaft, a first chain wheel 16 connected with a third power device is rotatably mounted at the end of the swing arm 15, a second chain wheel 17 is rotatably mounted at the tail end of each conveying beam 1301, a conveying chain 18 is wound between the first chain wheel 16 and the second chain wheel 17, a notch 1201 is arranged on one side of the conveying frame 13 on the material roller frame 12 corresponding to the position of the swing arm 15, the swing arm 15 extends into the notch 1201 and is positioned between two adjacent feeding rollers 2 and can swing up and down without interference, the swing arm 15 is connected with a lifting mechanism 19, as shown in fig. 7 and 8, when an upright post needs to be transferred from the conveying frame 13 to the material roller frame 12 or from the material roller frame 12 to the conveying frame 13, the lifting mechanism 19 lifts the swing arm 15, the upright post can reach the processing position of the feeding roller 2 through the conveying chain 18 through the swing arm 15, then elevating system 19 drives swing arm 15 whereabouts, places the stand on feed roll 2, perhaps lifts the stand on the feed roll 2 through swing arm 15, leaves feed roll 2, carries away from feed roll 2 by conveying chain 18, has avoided the stand to drag the line on feed roll 2, can not rub and harm feed roll 2.
As shown in fig. 6 and 7, the lifting mechanism 19 includes an air cylinder, a cylinder body of the air cylinder is hinged and installed at a fixed position, the fixed position may be on the foundation, the conveying frame 13, or the material roller frame 12, and a person skilled in the art can select the position according to needs, but not limited to this, a connecting lug 20 is hinged and installed on the swing arm 15, a piston rod of the air cylinder is hinged and connected with the connecting lug 20, and the connecting lug 20 is a connecting member commonly used in pneumatic elements, belongs to a standard member, and the person skilled in the art can select the position according to needs. Of course, other structures such as a hydraulic cylinder or a telescopic link can be selected for the lifting mechanism 19, and those skilled in the art can select and use the lifting mechanism according to needs, and the details are not described herein.
The articulated shafts of two adjacent delivery beams 1301 are connected through a transmission shaft 28, and the transmission shaft 28 is a rigid shaft, so that the articulated shafts on the delivery beams 1301 rotate synchronously.
The third power device comprises an electric motor 21 in transmission connection with a transmission shaft 28, the electric motor 21 is usually fixedly installed on the conveyor frame 13, the electric motor 21 and the transmission shaft 28 can be in chain transmission connection or belt transmission connection or gear transmission connection, etc., the transmission shaft 28 is in transmission connection with the first chain wheel 16, the transmission shaft 28 is usually in chain transmission connection with the first chain wheel 16, specifically, the electric motor 21 is installed with a first transmission chain wheel 22, the transmission shaft 28 is installed with a second transmission chain wheel 23 and a third transmission chain wheel 25, the second transmission chain wheel 23 and the third transmission chain wheel 25 are both fixedly installed at one end of the transmission shaft 28, or the second transmission chain wheel 23 and the third transmission chain wheel 25 can be integrated into a double-row chain wheel, the first chain wheel 16 is fixedly connected with a fourth transmission chain wheel 26, and a first transmission chain 24 is arranged between the first transmission chain wheel 22 and the second transmission chain wheel 23, and a second transmission chain 27 is arranged between the third transmission chain wheel 25 and the fourth transmission chain wheel 26, so that the power transmission of the first chain wheel 16 can be ensured, the swing arm 15 can swing freely without influencing the power transmission, the structure is ingenious, and the use is flexible and reliable.
Because the articulated shaft is rigidly connected through the transmission shaft 28, the conveying chain 18 only needs one group of motors 21 for transmission, thereby simplifying the structure, ensuring the synchronization of the conveying chain 18, reducing the use of power and reducing the cost.
As shown in fig. 8 and 9, a dial plate 37 is fixedly mounted on the feed roller 2, the dial plate 37 and the feed roller 2 are coaxially arranged, a plurality of dial teeth 3701 are arranged on the dial plate 37 in an annular array, the dial teeth 3701 protrude out of the outer peripheral surface of the dial plate 37, the diameter of the root circle of the dial teeth 3701 is larger than that of the feed roller 2, the end plate at the end part of the stand column can be supported by the dial teeth 3701 before reaching the feed roller 2 and is continuously conveyed downstream beyond the feed roller 2, the aim of conveying the stand column with a plate material section area larger than the stand column section area on the feed roller 2 in a welding mode is achieved, the number of the dial teeth 3701 is set according to the diameter of the dial plate 37 and the rotating speed of the feed roller 2, and the setting is not limited herein.
Annular array is provided with a plurality of and dials material extension 3702 of tooth 3701 one-to-one on dialling board 37, the layer board extension is straight setting, it is corresponding with the chord length of dialling board 37, corresponding material extension 3702 and dialling tooth 3701 and offset, specifically speaking, the tip of material extension 3702 and the tooth root of dialling tooth 3701 offset and lean on, material extension 3702 can bear the end plate of stand tip, guide the end plate to the tooth root of dialling tooth 3701 gradually, play the effect of guide end plate, cross feed roll 2 after, under the effect of material extension 3702, the end plate is put down gradually, make the stand contact with the surface of feed roll 2 gradually, the collision of stand and feed roll 2 has been avoided, feed roll 2 has effectively been protected.
An included angle between the corresponding material supporting extension section 3702 and the shifting tooth 3701 is smaller than or equal to 90 degrees, so that when the shifting tooth 3701 pushes the upright column, enough force can be provided for pushing the upright column, and the shifting tooth 3701 is prevented from slipping or the shifting tooth 3701 is prevented from being separated from the end face of the end plate.
Bilateral symmetry is provided with two on the feed roll 2 and dials board 37, and two on same feed roll 2 dial the distance between the board 37 and be greater than the width in stand cross-section usually, and be less than the width of end plate for the stand can be carried smoothly on feed roll 2 and can hold up before the end plate reachs feed roll 2, has guaranteed not interfering the smooth transport of stand, can make the end plate cross feed roll 2 again.
When the device is used, the screw rod 10 is rotationally adjusted according to the length of the stand column, the position of the portal frame 3 is adjusted to be matched with the length of the stand column, the lifting mechanism 19 lifts the swing arm 15, the stand column can reach the processing position of the feed roll 2 through the swing arm 15 by the conveying chain 18, then the lifting mechanism 19 drives the swing arm 15 to fall down, the stand column is placed on the feed roll 2 of the material roll rack 12 to complete stand column feeding, the lifting driving mechanism 5 is started to lift the plate conveying mechanism 4 on the portal frame 3, the stand column is input from one end of the portal frame 3, the stand column is conveyed to the roller bracket 14 of the welding rack 1 under the action of the feed roll 2, when the end plate reaches the feed roll 2, the material supporting extension section 3702 can support the end plate at the end part of the stand column, the end plate is guided to reach the root part of the shifting teeth 3701 of the shifting plate 37, the shifting teeth 3701 push the end plate to cross the feed roll 2 along with the rotation of the feed roll 2, the continuous conveying of the upright column on the feeding roller 2 is realized, the upright column is stopped after the upright column is conveyed to a proper position, at the moment, under the action of the lifting driving mechanism 5, the plate conveying mechanism 4 on the portal frame 3 moves downwards, when the material pushing box 401 moves downwards to the position that the plate outlet 407 is aligned with the end of the upright column, the end plate is pushed by the push plate 405 on the end of the upright column to be butted, the upright column is clamped and positioned by the push plate 405 on the two ends, then the upright column is pressed and clamped by the positioning mechanism, welding is carried out by a worker or a robot, after the welding is finished on the upper surface and the side surface, the first rotating ring 29 and the second rotating ring 30 rotate, the roller bracket 14 is driven to integrally turn over at the same time, the upright column is turned over by 180 degrees along with the upright column, the lower surface without welding is turned over to the upper part, the lower surface of the end plate is continuously welded, the roller bracket 14 is reset after the integral welding is finished, the lifting driving mechanism 5 lifts the plate conveying mechanism 4 on the portal frame 3, and conveying the welded stand column to the position of a downstream material roller frame 12, lifting the swing arm 15 by a downstream lifting mechanism 19, lifting the stand column by the swing arm 15 to leave the feeding roller 2, and carrying away the stand column from the feeding roller 2 by a conveying chain 18 to finish the unloading of the stand column.
To sum up, the embodiment of the utility model provides a parking equipment stand and end plate welding production line, needn't rely on the manual work to fix a position stand and end plate, the degree of automation of stand with the end plate butt joint has been improved, when material loading and unloading, it is reliable and stable, feed roll 2 has been protected not worn and torn, and, the upper surface of end plate and side welding accomplish the back, first rotating ring 29 and second rotating ring 30 rotate, drive the whole upset of running roller support 14 simultaneously, make stand 180 degrees of upset thereupon, will not have welded lower surface upset to the top, the upset is efficient, the stand all can carry on feed roll 2 around the welding, the hoist and mount has been reduced, time saving and labor saving, the machining efficiency of stand is greatly improved.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.