Plastic support serial connection machine
Technical Field
The invention relates to the technical field of heat preservation pipe production equipment, in particular to a plastic bracket serial connection machine.
Background
At present, in the process of processing a heat-insulating pipeline, an important link is to manufacture a heat-insulating layer, and polyurethane foaming operation is carried out between the pipeline and an outer protection pipe in the manufacture of the heat-insulating layer, so that a supporting block is required to be installed between the pipeline and the outer protection pipe before the foaming operation so as to form a heat-insulating layer filling cavity capable of being filled with polyurethane materials. The supporting block in the prior art is uniformly connected in series on the rigid belt by manpower, and then the steel belt is fixed on the outer wall of the pipeline, so that one end of the supporting block is supported on the outer wall of the pipeline, and the other end of the supporting block is supported on the inner wall of the outer protection pipe, so that a filling cavity of an insulating layer is formed between the pipeline and the outer protection pipe. The production method has the advantages of high labor intensity and low working efficiency.
Disclosure of Invention
The invention aims to provide a plastic bracket serial connection machine, which greatly reduces the labor intensity of workers and increases the working efficiency.
In order to achieve the above purpose, the invention provides a plastic bracket serial connection machine, which comprises a serial connection device positioned on a frame and a controller connected with the serial connection device, wherein the serial connection device comprises a steel belt conveying mechanism, a steel belt cutting mechanism and a bracket serial connection mechanism which are sequentially arranged, the steel belt conveying mechanism comprises a steel belt disc frame and a steel belt conveying box which are adjacently arranged, the bracket serial connection mechanism comprises a workbench positioned on the frame, one side of the workbench is provided with a baffle rod connected with a first power device, one side of the workbench, which is close to the baffle rod, is provided with uniformly distributed bracket fixing grooves, two sides of the bracket fixing grooves are provided with steel belt perforations positioned at the same level, the other side of the workbench is provided with a push plate assembly which is correspondingly arranged with the bracket fixing grooves, two ends of the top surface of the workbench are provided with steel belt fixing assemblies, punching assemblies positioned on the workbench are arranged between the steel belt fixing assemblies, and the punching assemblies are correspondingly arranged with the bracket fixing grooves.
Preferably, the push plate assembly comprises a second power device and a vertical push plate connected with a horizontal telescopic rod of the second power device, and the vertical push plate is positioned in the bracket fixing groove.
Preferably, the steel belt fixing assembly comprises a third power device positioned on the workbench and a pressure head connected with a lifting rod of the third power device, and the pressure head penetrates through the workbench to be connected with the steel belt perforation.
Preferably, the punching assembly comprises a fourth power device and a punch connected with a vertical telescopic rod of the fourth power device, the punch penetrates through the workbench to be located at the top of the support fixing groove, when the vertical telescopic rod is located in a retracted state, the horizontal height of the punch is higher than the height of the steel belt perforation, and when the vertical telescopic rod is located in an extended state, the horizontal height of the punch is lower than the height of the steel belt perforation.
Preferably, the steel belt tray frame comprises a supporting frame, a supporting shaft which is perpendicular to the supporting frame is arranged on the supporting frame, one end of the supporting shaft is connected with a first limiting frame, the other end of the supporting shaft is connected with a second limiting frame, the first limiting frame and the second limiting frame are cross frames which are perpendicular to the supporting shaft, and the first limiting frames and the second limiting frames are arranged in a staggered mode.
Preferably, the steel belt conveying box comprises a conveying channel, a driving wheel and a driven wheel which are oppositely arranged are arranged in the conveying channel, two ends of the driven wheel are connected with lifting blocks, the lifting blocks are positioned in adjusting holes on two sides of the steel belt conveying box, the lifting blocks are connected with adjusting screws, and one end of the driving wheel is connected with a fifth power device.
Preferably, the steel belt cutting mechanism comprises a cutting support, a sixth power device is arranged at the top of the cutting support, the tail end of a movable rod of the sixth power device is connected with a cutter, a base plate is arranged at the bottom of the cutting support, and a groove corresponding to the cutter is formed in the base plate.
Therefore, the plastic bracket serial connection machine adopting the structure greatly reduces the labor intensity of workers and increases the working efficiency.
The technical scheme of the invention is further described in detail through the drawings and the embodiments.
Drawings
FIG. 1 is a schematic view of an embodiment of a plastic stent tandem machine of the present invention;
FIG. 2 is a schematic view of an embodiment of a conveyor path for a steel belt conveyor in a plastic rack tandem according to the present invention;
FIG. 3 is a schematic view of an embodiment of a lifting block of a steel belt conveyor box in a plastic rack tandem according to the present invention;
Fig. 4 is a schematic view of an embodiment of the steel strip cutting mechanism in the plastic rack serial machine of the present invention.
Reference numerals
1. A frame; 2, a controller, 3, a steel belt tray frame, 31, a supporting frame, 32, a supporting shaft, 33, a first limiting frame, 34, a second limiting frame, 4, a steel belt conveying box, 5, a conveying channel, 6, a driving wheel, 7, a driven wheel, 8, a fifth power device, 9, a lifting block, 10, an adjusting hole, 11, an adjusting screw, 12, a cutting support, 13, a sixth power device, 14, a cutter, 15, a backing plate, 16, a groove, 17, a workbench, 18, a first power device, 19, a baffle rod, 20, a support fixing groove, 21, a vertical pushing plate, 22, a third power device, 23, a pressure head, 24 and a fourth power device.
Detailed Description
Embodiments of the present invention will be further described with reference to the accompanying drawings.
Fig. 1 is a schematic view of an embodiment of a plastic stand serial machine according to the present invention, fig. 2 is a schematic view of an embodiment of a steel belt conveyor box conveyor channel in a plastic stand serial machine according to the present invention, fig. 3 is a schematic view of an embodiment of a steel belt conveyor box lifting block in a plastic stand serial machine according to the present invention, fig. 4 is a schematic view of an embodiment of a steel belt cutting mechanism in a plastic stand serial machine according to the present invention, and as shown, a plastic stand serial machine comprises a serial device on a stand 1 and a controller 2 connected with the serial device, wherein the serial device comprises a steel belt conveyor mechanism, a steel belt cutting mechanism and a stand serial mechanism which are sequentially arranged. The steel belt conveying mechanism comprises a steel belt disc frame 3 and a steel belt conveying box 4 which are adjacently arranged, wherein the steel belt disc frame 3 is used for disc a steel belt roll, and the steel belt conveying box 4 is used for conveying the steel belt to the steel belt cutting mechanism and the bracket serial mechanism. The steel tape reel frame 3 comprises a supporting frame 31, a supporting shaft 32 which is perpendicular to the supporting frame 31 is arranged on the supporting frame 31, one end of the supporting shaft 32 is connected with a first limiting frame 33, the other end of the supporting shaft 32 is connected with a second limiting frame 34, the first limiting frame 33 and the second limiting frame 34 are cross frames which are perpendicular to the supporting shaft 32, the first limiting frame 33 and the second limiting frame 34 are arranged in a staggered mode, and the first limiting frame 33 and the second limiting frame 34 can ensure the stability of the steel tape roll on the supporting shaft 32.
The steel belt conveying box 4 comprises a conveying channel 5, a driving wheel 6 and a driven wheel 7 which are oppositely arranged are arranged in the conveying channel 5, one end of the driving wheel 6 is connected with a fifth power device 8, two ends of the driven wheel 7 are connected with lifting blocks 9, the lifting blocks 9 are located in adjusting holes 10 on two sides of the steel belt conveying box 4, the lifting blocks 9 are connected with adjusting screws 11, and the adjusting screws 11 can drive the lifting blocks 9 to lift so as to adjust the distance between the driven wheel 7 and the driving wheel 6, so that the steel belt conveying box is suitable for conveying steel belts with different thicknesses. The fifth power device 8 drives the driving wheel 6 to rotate, so that the steel belt between the driving wheel 6 and the driven wheel 7 moves towards the direction of the steel belt cutting mechanism and the bracket serial mechanism.
The steel belt cutting mechanism comprises a cutting support 12, a sixth power device 13 is arranged at the top of the cutting support 12, the tail end of a movable rod of the sixth power device 13 is connected with a cutter 14, a base plate 15 is arranged at the bottom of the cutting support 12, and a groove 16 which is arranged corresponding to the cutter 14 is formed in the base plate 15. The sixth power device 13 is used for driving the cutter 14 to move towards the bottom surface of the groove 16 so as to cut off the steel belt.
The support serial mechanism comprises a workbench 17 positioned on the frame 1, one side of the workbench 17 is provided with a baffle rod 19 connected with a first power device 18, one side surface of the workbench 17, which is close to the baffle rod 19, is provided with support fixing grooves 20 which are uniformly distributed, the first power device 18 can drive the baffle rod 19 to lift, so that the baffle rod 19 can rise to the position of the support fixing groove 20 to play a limiting role on a support in the support fixing groove 20, and the support is prevented from falling from the support fixing groove 20. The two sides of the bracket fixing groove 20 are provided with steel strip perforations at the same horizontal height, the steel strip perforations are used as moving channels of the steel strips, so that the steel strips are arranged on the brackets in a penetrating manner, and the brackets in the bracket fixing grooves 20 are connected in series.
The other side of workstation 17 is equipped with the push pedal subassembly that corresponds the setting with support fixed slot 20, and the push pedal subassembly includes second power device and the vertical push pedal 21 that is connected with the horizontal telescopic link of second power device, and vertical push pedal 21 is located support fixed slot 20, and vertical push pedal 21 is used for ejecting the support that will process out support fixed slot 20, makes things convenient for operating personnel to take out the support and take out the plastic support string and connect. The steel belt fixing components are arranged at two ends of the top surface of the workbench 17, each steel belt fixing component comprises a third power device 22 and a pressure head 23, the third power device 22 is arranged on the workbench 17, the pressure heads 23 are connected with lifting rods of the third power devices 22, the pressure heads 23 penetrate through the workbench 17 and are connected with steel belt perforation holes, and the third power devices 22 drive the pressure heads 23 to move downwards to press and fix the steel belt, so that the steel belt is prevented from moving.
Be equipped with the subassembly that punches that is located on workstation 17 between the steel band fixed subassembly, punch the subassembly and set up corresponding with support fixed slot 20, punch the subassembly and be used for punching to the steel band, make the steel sheet that beats from the steel band vertically connect on the rigid strip, the steel sheet is with the even restriction of support interval on the steel band, prevents that the support from taking place to remove on the rigid strip. The punching assembly comprises a fourth power device 24 and a punch connected with a vertical telescopic rod of the fourth power device 24, wherein the punch penetrates through the workbench 17 and is positioned at the top of the bracket fixing groove 20, when the vertical telescopic rod is in a retracted state, the horizontal height of the punch is higher than the height of the steel belt punching hole, and when the vertical telescopic rod is in an extended state, the horizontal height of the punch is lower than the height of the steel belt punching hole.
When in use, a bracket is put into the bracket fixing groove 20, and the controller 2 controls the first power device 18 to act, so that the first power device 18 drives the stop lever 19 to rise to block the bracket in the bracket fixing groove 20. The controller 2 controls the fifth power device 8 to act, so that the fifth power device 8 drives the driving wheel 6 to rotate, and then the steel belt moves towards the direction of the steel belt cutting mechanism and the support serial mechanism, so that the steel belt can move along the steel belt perforation in the workbench 17, and simultaneously, the steel belt connects the supports in the support fixing grooves 20 in series. After the steel strip moves to a proper position, the controller 2 controls the third power device 22 to act, so that the third power device 22 drives the pressure head 23 to move downwards to press and fix the steel strip in the steel strip perforation. The controller 2 controls the fourth power device 24 to act, so that the fourth power device 24 drives the punch to punch the steel belt, the steel sheet punched from the steel belt is vertically connected to the steel belt, the steel sheet limits the brackets on the steel belt at uniform intervals, and the brackets are prevented from moving on the steel belt. The controller 2 controls the sixth power device 13 to act, so that the sixth power device 13 drives the cutter 14 to cut off the steel belt. The controller 2 controls the second power device to act, so that the second power device drives the push plate to move towards the direction of the bracket, and the bracket which is connected in series is pushed out of the bracket fixing groove 20, so that the bracket can be taken out conveniently by workers. The controller 2 controls the first power device 18, the second power device, the third power device 22, the fourth power device 24, the fifth power device 8 and the sixth power device 13 to return to the original states so as to prepare for the serial operation of the next wheel bracket.
Therefore, the plastic bracket serial connection machine adopting the structure greatly reduces the labor intensity of workers and increases the working efficiency.
It should be noted that the above-mentioned embodiments are merely for illustrating the technical solution of the present invention and not for limiting the same, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solution of the present invention may be modified or substituted by the same, and the modified or substituted technical solution may not deviate from the spirit and scope of the technical solution of the present invention.