CN203495659U - Automatic loading device for oil filter pipe drilling - Google Patents
Automatic loading device for oil filter pipe drilling Download PDFInfo
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- CN203495659U CN203495659U CN201320656895.5U CN201320656895U CN203495659U CN 203495659 U CN203495659 U CN 203495659U CN 201320656895 U CN201320656895 U CN 201320656895U CN 203495659 U CN203495659 U CN 203495659U
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- screen pipe
- oil screen
- transfer device
- feeding mechanism
- stock shelf
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- 238000005553 drilling Methods 0.000 title claims abstract description 16
- 230000007246 mechanism Effects 0.000 claims abstract description 70
- 238000007789 sealing Methods 0.000 claims abstract description 32
- 239000000463 material Substances 0.000 claims description 37
- 238000010276 construction Methods 0.000 claims description 18
- 239000007788 liquid Substances 0.000 claims description 12
- 238000000034 method Methods 0.000 abstract description 7
- 230000008569 process Effects 0.000 abstract description 5
- 238000005096 rolling process Methods 0.000 description 9
- 230000009471 action Effects 0.000 description 3
- 230000000694 effects Effects 0.000 description 3
- 230000005484 gravity Effects 0.000 description 3
- 238000004519 manufacturing process Methods 0.000 description 2
- 230000008961 swelling Effects 0.000 description 2
- 238000009423 ventilation Methods 0.000 description 2
- 241000486406 Trachea Species 0.000 description 1
- 230000008901 benefit Effects 0.000 description 1
- 230000005540 biological transmission Effects 0.000 description 1
- 239000012809 cooling fluid Substances 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000006872 improvement Effects 0.000 description 1
- 238000007665 sagging Methods 0.000 description 1
- 239000007858 starting material Substances 0.000 description 1
- 210000003437 trachea Anatomy 0.000 description 1
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Abstract
The utility model provides an automatic loading device for oil filter pipe drilling. The automatic loading device comprises a loading frame, a feeding mechanism, a transfer mechanism, a rotating supporting table, a drilling mechanism, a storage frame and a sealing mechanism. By the adoption of the automatic loading device, an oil filter pipe can be automatically conveyed to the drilling mechanism, and the drilled oil filter pipe can be automatically conveyed to the storage frame for stand-by. The automatic loading device is high in loading efficiency, simple in structure, and convenient to use, and the loading process is safe and reliable.
Description
Technical field
The utility model relates to a kind of oil screen pipe production equipment, is specifically related to the boring automatic charging device of a kind of oil screen pipe.
Background technology
In the production process of oil screen pipe, comprise the operations such as boring, need to carry mobile oil screen pipe.Now employing is manually moved mostly, and because oil screen pipe volume is larger, weight is heavier, so the required labour of the method is larger, efficiency is lower, also has potential safety hazard simultaneously.
Utility model content
The purpose of this utility model is in order to overcome the shortcoming of prior art, provides a kind of oil screen pipe boring automatic charging device, and this device loading efficiency is high, and feeding process is safe and reliable, and simple in structure, easy to operate.
The utility model also provides a kind of method of using the boring automatic charging device of above-mentioned oil screen pipe.
For realizing above-mentioned utility model object, the utility model adopts following technical scheme:
The boring automatic charging device of oil screen pipe, described automatic charging device comprises:
Stock shelf, described stock shelf comprises spaced at least one first stock shelf, at least one second stock shelf and at least one the 3rd stock shelf side by side, described stock shelf has the first end face for described oil screen pipe placed side by side, one end of described the first end face is provided with the first limited block for stoping described oil screen pipe to roll, the top of described the first limited block has the first inclined-plane, and described the first end face has along near the direction of described the first limited block downward-sloping the first end face inclined-plane gradually;
Feeding mechanism, described feeding mechanism comprises that at least one is positioned at first feeding mechanism in described the first stock shelf and described second stock shelf the place ahead, be positioned at second feeding mechanism in described the second stock shelf and described the 3rd stock shelf the place ahead with at least one, described feeding mechanism comprises support, evenly be arranged on side by side the drive on described support, the driving member being connected with the described drive of part;
Transfer device, described transfer device comprises that at least one is positioned at the first transfer device of described the first feeding mechanism one side, be positioned at the second transfer device of described the second feeding mechanism one side with at least one, described transfer device comprises the supporting plate that is arranged on described transfer device top, one end of the end face of described supporting plate is provided with the second limited block, the top of described the second limited block has the second inclined-plane, and the end face of described supporting plate has the supporting plate inclined-plane identical with described the second inclined-plane incline direction; Described transfer device also comprises the first actuator being connected with described supporting plate bottom, the other end of described the first actuator is fixed on the first base of described transfer device, and the first guide being connected with described supporting plate bottom, described the first guide is socketed in the first connector being connected with the first base of described transfer device, can be in described the first connector upper and lower telescopic slide of described the first guide;
Rotation saddle, described rotation drag platform comprises that at least one is positioned at the first rotation drag platform of borehole drill construction one side, be positioned at the second rotation drag platform of described the second feeding mechanism opposite side with at least one, described rotation saddle comprises the fixed bin that is arranged on described rotation saddle top, described fixed bin is the box body of upper opening at least, in described fixed bin, be connected with the roller of placing perpendicular to described fixed bin bottom, the diameter of described roller is greater than the height of described fixed bin; Described rotation saddle also comprises the second actuator being connected with described rotation drag platform bottom, the other end of described the second actuator is fixed on the second base of described rotation drag platform, and the second guide being connected with described fixed bin bottom, described the second guide is socketed in the second connector being connected with the second base of described rotation drag platform, can be in described the second connector upper and lower telescopic slide of described the second guide;
Described borehole drill construction is between described the first rotation drag platform and described the first feeding mechanism, described borehole drill construction comprises drilling machine, be disposed on side by side successively folder platform and roller platform on described Drilling machines bench, described folder platform is provided with for holding the groove of described oil screen pipe, one side of described folder platform is provided with the securing member for fixing described oil screen pipe, and the position corresponding with the groove of described folder platform is provided with wellbore part;
Material stock frame, described material stock frame comprises at least one first material stock frame between described the first transfer device and described the second rotation drag platform, be positioned at the second material stock frame of described the second transfer device one side with at least one, described material stock frame has the second end face for described oil screen pipe placed side by side, one end of described the second end face is provided with projection, and the top of described projection is disposed with projection plane and the 3rd inclined-plane; And
Sealing mechanism, described sealing mechanism comprises sealing column, the push rod affixed with described sealing column one end, be arranged on the liquid collecting room on described sealing column cylinder, the seal groove that is enclosed construction around the periphery setting of described liquid collecting room, be embedded in the seal tube in described seal groove, the tracheae being communicated with described seal tube.
Further, the quantity of the drive being connected with described driving member of described the first feeding mechanism is 3, and the quantity of the drive not being connected with described driving member is 1; The quantity of the drive being connected with described driving member of described the second feeding mechanism is 1, and the quantity of the drive not being connected with described driving member is 3.
Further, described driving member is chain asynchronous machine.
Further, described actuator is cylinder, and described guide is lead, and described connector is joint pin, and the quantity of described lead is 2, and the quantity of described joint pin is 2.
Further, the quantity of described roller is 2.
Further, described securing member is screw.
Further, the position of described liquid collecting room is corresponding with the target borehole position of described oil screen pipe during boring.
The automatic charging device that adopts the utility model to provide can be sent to borehole drill construction place by oil screen pipe automatically, and can the oil screen pipe after boring be sent on material stock frame stand-by automatically, this automatic charging device loading efficiency is high, feeding process is safe and reliable, and simple in structure, easy to operate.
Accompanying drawing explanation
Fig. 1 is the structural representation of the boring automatic charging device of oil screen pipe of the present utility model;
Fig. 2 is the structural representation of stock shelf of the present utility model;
Fig. 3 is the structural representation of feeding mechanism of the present utility model;
Fig. 4 is the structural representation of transfer device of the present utility model;
Fig. 5 is the structural representation of rotation saddle of the present utility model;
Fig. 6 is the structural representation of borehole drill construction of the present utility model;
Fig. 7 is the structural representation of material stock frame of the present utility model;
Fig. 8 is the structural representation of material loading preparatory stage of the present utility model;
Fig. 9 is the structural representation that transfer device of the present utility model holds up first oil screen pipe;
Figure 10 is that first oil screen pipe of the present utility model drops on the structural representation on the first inclined-plane of stock shelf;
Figure 11 is the structural representation that first oil screen pipe of the present utility model drives to borehole drill construction place;
Figure 12 is the structural representation that feeding mechanism is returned in the first oil screen pipe transmission after boring of the present utility model;
Figure 13 is that transfer device of the present utility model holds up first oil screen pipe after boring and the not structural representation of second oil screen pipe of boring on stock shelf simultaneously;
Figure 14 is that transfer device of the present utility model holds up first oil screen pipe after boring and not another structural representation of second oil screen pipe of boring on stock shelf simultaneously;
Figure 15 is the structural representation of sealing mechanism of the present utility model.
Wherein, 1 stock shelf, 11 first end face inclined-planes, 12 first limited blocks, 13 first inclined-planes, 2 feeding mechanisms, 21 supports, 22 driving wheels, 23 driven pulleys, 24 chain asynchronous machines, 3 transfer devices, 31 supporting plates, 311 supporting plate inclined-planes, 312 second limited blocks, 313 second inclined-planes, 32 first leads, 33 first joint pins, 34 first bases, 35 first cylinders, 4 rotation drag platforms, 41 second bases, 42 second joint pins, 43 second leads, 44 fixed bins, 45 rollers, 46 second cylinders, 5 borehole drill constructions, 51 drilling machines, 52 folder platforms, 53 screws, 54 roller platforms, 6 material stock framves, 61 second end faces, 62 projections, 621 projection planes, 622 the 3rd inclined-planes, 7 sealing mechanisms, 71 sealing column, 72 push rods, 73 liquid collecting room, 74 seal grooves, 75 tracheaes.
The specific embodiment
In order to make the purpose of this utility model, technical scheme and advantage clearer, below in conjunction with drawings and Examples, the utility model is further elaborated.Should be appreciated that specific embodiment described herein is only in order to explain the utility model, and be not used in restriction the utility model.
As shown in Figure 1, the boring automatic charging device of oil screen pipe that the utility model provides comprises stock shelf 1, feeding mechanism 2, transfer device 3, rotation drag platform 4, borehole drill construction 5, material stock frame 6 and sealing mechanism 15 (not shown)s.For convenience's sake, from the from left to right shown in figure, be designated as successively: the first rotation saddle, the first stock shelf, the first feeding mechanism, the first transfer device, the first material stock frame, the second stock shelf, the second rotation saddle, the second feeding mechanism, the second transfer device, the 3rd stock shelf and the second material stock frame.
Stock shelf 1 is for placing the oil screen pipe 8 for the treatment of material loading, stock shelf 1 comprises spaced the first stock shelf, the second stock shelf and the 3rd stock shelf side by side, by adjusting the distance between each stock shelf 1, can adapt to the oil screen pipe 8 of placing different length, as required, also can use more stock shelfs 1.As shown in Figure 2, stock shelf 1 has the first end face for oil screen pipe 8 placed side by side, one end of the first end face is provided with the first limited block 12 for stoping oil screen pipe 8 to roll, the top of the first limited block 12 has the first inclined-plane 13, the first end face has along near the direction of the first limited block 12 downward-sloping the first end face inclined-plane 11 gradually, because the first end face inclined-plane 11 has certain gradient, thereby oil screen pipe 8 can be under the effect of gravity rolls from the direction of trend the first limited block 12, and stop at the first limited block 12 places.
As shown in Figure 1, in the place ahead of the first stock shelf and the second stock shelf, be provided with the first feeding mechanism, in the place ahead of the second stock shelf and the 3rd stock shelf, be provided with the second feeding mechanism.As shown in Figure 3, feeding mechanism 2 comprises support 21, evenly be arranged on side by side the drive on support 21, the driving member being connected with part drive, in the present embodiment, described driving member is chain asynchronous machine 24, oil screen pipe 8 can move left and right on the drive of transfer device 2, in the present embodiment, in the first feeding mechanism, there are 3 driving wheels 22 to be connected with chain asynchronous machine 24, have 1 driven pulley 23 not to be connected with chain asynchronous machine 24; In the second feeding mechanism, there is 1 driving wheel 22 to be connected with chain asynchronous machine 24, there are 3 driven pulleys 23 not to be connected with chain asynchronous machine 24.
As shown in Figure 1, on right side shown in the figure of the first feeding mechanism, be provided with the first transfer device, on right side shown in the figure of the second feeding mechanism, be provided with the second transfer device, transfer device 3 is for being positioned over oil screen pipe 8 on stock shelf 1 and being transferred to the drive of feeding mechanism 2.As shown in Figure 4, transfer device 3 comprises the supporting plate 31 that is arranged on transfer device 3 tops, one end of the end face of supporting plate 31 is provided with the second limited block 312, the top of the second limited block 312 has the second inclined-plane 313, the end face of supporting plate 31 has the supporting plate inclined-plane 311 identical with the second inclined-plane 313 incline directions, oil screen pipe 8 can be automatically scrolled to the second limited block 312 places on supporting plate inclined-plane 311, oil screen pipe 8 also can be on the second inclined-plane 313 automatic rolling, transfer device 3 also comprises the first actuator being connected with supporting plate 31 bottoms, the first base 34 of the other end of the first actuator and transfer device 3 is affixed, and the first guide being connected with supporting plate 31 bottoms, the first guide is socketed in the first connector being connected with the first base 34 of transfer device 3, can be in the first connector upper and lower telescopic slide of the first guide, in the present embodiment, the first actuator is the first cylinder 35, the first guide is the first lead 32, the first connector is the first joint pin 33, the quantity of the first lead 32 and the first joint pin 33 is 2, supporting plate 31 can be moved up and down more stably.
As shown in Figure 1, in left side shown in the figure of borehole drill construction 5, be provided with the first rotation drag platform, in left side shown in the figure of the second feeding mechanism, be provided with the second rotation drag platform.As shown in Figure 5, rotation saddle 4 comprises the fixed bin 44 that is arranged on rotation saddle 4 tops, fixed bin 44 is box bodys of upper opening at least, in fixed bin 44, be connected with the roller 45 of placing perpendicular to the bottom of fixed bin 44, the diameter of roller 45 is greater than the height of fixed bin 44, in the present embodiment, the quantity of roller 45 is 2, oil screen pipe 8 can be between roller 45 Free-rolling, rotation saddle 4 also comprises the second actuator being connected with the bottom of rotation drag platform 4, the other end of the second actuator is affixed with the second base 41 of rotation drag platform 4, and the second guide being connected with the bottom of fixed bin 44, the second guide is socketed in the second connector being connected with the second base 41 that rotates drag platform 4, can be in the second connector upper and lower telescopic slide of the second guide, in the present embodiment, the second actuator is the second cylinder 46, the second guide is the second lead 43, the second connector is the second joint pin 42, the quantity of the second lead 43 and the second joint pin 42 is 2, fixed bin 44 can be moved up and down more stably.
As shown in Figure 1, borehole drill construction 5 is arranged between the first rotation drag platform and the first feeding mechanism.As shown in Figure 6, borehole drill construction 5 comprises drilling machine 51, be disposed on side by side successively folder platform 52 and roller platform 54 on drilling machine 5 workbench, folder platform 52 is provided with for holding the groove of oil screen pipe 8, one side of folder platform 52 is provided with for the fixing securing member of oil screen pipe 8, the position corresponding with the groove of folder platform 52 is provided with wellbore part, in the present embodiment, securing member is screw 53, when oil screen pipe 8 is holed, roller platform 54 can prevent the part oil screen pipe 8 sagging distortion because Action of Gravity Field causes between the first rotation drag platform and folder platform 52, .
As shown in Figure 1, between the first transfer device and the second rotation drag platform, be provided with the first material stock frame, on right side shown in the figure of the second transfer device, be provided with the second material stock frame, material stock frame 6 is for placing the oil screen pipe 8 after boring.As shown in Figure 7, one end that material stock frame 6 has for the second end face 61, the second end faces 61 of oil screen pipe 8 placed side by side is provided with projection 62, and the top of projection 62 is disposed with projection plane 621 and the 3rd inclined-plane 622.
As shown in figure 15, sealing mechanism 7 comprises sealing column 71, the push rod 72 affixed with sealing column 71 one end, be arranged on the liquid collecting room 73 on sealing column 71 cylinders, the seal groove 74 arranging around liquid collecting room's 73 peripheries, be embedded in the seal (not shown) in seal groove 74, the ventilation part being communicated with seal.In the present embodiment, seal is seal tube, and ventilation part is tracheae 75, the pit of liquid collecting room 73 for digging out on sealing column 71 cylinders, be used for collecting cooling fluid, tracheae 75 is communicated with seal tube by the inside of sealing column 71, and seal groove 74 is to be shaped as circular or oval-shaped enclosed construction.During use, tracheae 75 is connected with compressed air source unit (not shown), then, the push rod 72 that operator arrests sealing mechanism 7 inserts sealing mechanism 7 in oil screen pipe 8, and make the target borehole position of the position alignment oil screen pipe 8 of the liquid collecting room 73 in sealing column 71, opening compressed air source unit makes compressed air pass into seal tube via tracheae 75, seal tube is greatly swelling state because pressurized radially becomes, and then fill up the gap between sealing column 71 and oil screen pipe 8 inwalls, play the effect of sealing.
Below in conjunction with accompanying drawing, describe the manner of execution of the boring automatic charging device of oil screen pipe of the present utility model in detail.
As shown in Figure 8, the oil screen pipe 8 for the treatment of material loading is placed side by side on the first end face of the first stock shelf, the second stock shelf and the 3rd stock shelf, under Action of Gravity Field, oil screen pipe 8 can be automatically scrolled to along the first end face inclined-plane 11 of stock shelf 1 the first limited block 12 places of stock shelf 1 to right side shown in figure, for convenience, from dextrad shown in figure, part on the left side and be not designated as first oil screen pipe and second oil screen pipe.Now, the height of the first transfer device and the second transfer device is all lower than the height of the first stock shelf, the second stock shelf and the 3rd stock shelf, and first oil screen pipe be just positioned at the first transfer device and the second transfer device supporting plate inclined-plane 311 directly over.
As shown in Figure 9, while starting material loading, the move upward supporting plate 31 of mobilization mechanism 3 of the first cylinder 35 of the first transfer device and the second transfer device moves upward, and hold up first oil screen pipe being positioned at directly over supporting plate inclined-plane 311, when the supporting plate inclined-plane 311 of the first transfer device and the second transfer device is during higher than the first limited block 12 of the first stock shelf, the second stock shelf and the 3rd stock shelf, the first oil screen pipe being held up is along supporting plate inclined-plane 311 automatic rollings, until be rolled into the second limited block 312 places on supporting plate 31.Now, the first oil screen pipe being held up be just positioned at the first stock shelf, the second stock shelf and the 3rd stock shelf the first limited block 12 the first inclined-plane 13 directly over.
As shown in figure 10, the supporting plate 31 that the first cylinder 35 of the first transfer device and the second transfer device moves downward mobilization mechanism 3 moves downward, when the second limited block 312 of the supporting plate 31 of the first transfer device and the second transfer device drops to the below of first oil filter, meanwhile first oil screen pipe drops on the first stock shelf, on the first inclined-plane 13 of the second stock shelf and the 3rd stock shelf and can be along the first stock shelf, the first inclined-plane 13 automatic rollings of the second stock shelf and the 3rd stock shelf, until be rolled on the drive of the first feeding mechanism and the second feeding mechanism, simultaneously, when the supporting plate 31 of the first transfer device and the second transfer device continues to drop to initial position, second oil screen pipe is just along the first end face inclined-plane 11 of the first stock shelf, the second stock shelf and the 3rd stock shelf to the automatic rolling of right side shown in figure, until be rolled into the first limited block 12 places of the first stock shelf, the second stock shelf and the 3rd stock shelf, now second oil filter be positioned at the first transfer device and the second transfer device supporting plate inclined-plane 311 directly over.
As shown in figure 11, under the drive of the chain asynchronous machine 24 of the first feeding mechanism and the second feeding mechanism, first oil screen pipe is moved into the workbench place of drilling machine 51 through the groove on the folder platform 52 of drilling machine mechanism 5.When one end of first oil screen pipe is dropped on the roller 45 of the first rotation saddle, move upward fixed bin 44 and the roller 45 of driven rotary saddle 4 of the second cylinder 46 of the first rotation saddle and the second rotation saddle moves upward and holds up first oil screen pipe, makes it depart from the drive of feeding mechanism 2.Now, first oil screen pipe of part between the first rotation saddle and the folder platform 52 of drilling machine mechanism 5 drops on roller platform 54, rotate first oil screen pipe and make target borehole position alignment wellbore part, then tighten in the groove of folder platform 52 that screw 53 is fixed on first oil screen pipe drilling machine mechanism 5, then, the push rod 72 that operator arrests sealing mechanism 7 inserts sealing mechanism 7 in first oil screen pipe, and by the liquid collecting room in sealing column 71 73 bore position that aims at the mark, compressed air is passed into seal tube via tracheae 75, seal tube pressurized and radially become and be greatly swelling state, and then fill up the gap between sealing column 71 and first oil screen pipe inwall, play the effect of sealing.Now, can hole to first oil screen pipe.As required, by unclamping screw 53, rotate first oil screen pipe and make target borehole position alignment wellbore part, then tighten screw 53 first oil screen pipe fixed, can carry out remaining drilling operation.
As shown in figure 12, after boring, close compressed air source unit, take out sealing mechanism 7, unclamp after screw 53, fixed bin 44 and roller 45 that the second cylinder 46 of the first rotation saddle and the second rotation saddle moves downward driven rotary saddle 4 move downward, first oil screen pipe fallen on the drive of feeding mechanism 2, under the drive of the chain asynchronous machine 24 of feeding mechanism 2, first oil screen pipe moved to the direction away from borehole drill construction 5, and finally drop on the first transfer device and the second transfer device the second limited block 312 the second inclined-plane 313 directly over.
As shown in figure 13, the move upward supporting plate 31 of mobilization mechanism 3 of the first cylinder 35 of the first transfer device and the second transfer device moves upward, and hold up be simultaneously positioned at the first transfer device and the second transfer device supporting plate inclined-plane 311 directly over second oil screen pipe, and hold up the second limited block 312 that is positioned at the first transfer device and the second transfer device the second inclined-plane 313 directly over first oil screen pipe.When the height of the first transfer device and the second transfer device height lower than the first material stock frame and the second material stock frame, and during lower than the height of the second stock shelf and the 3rd stock shelf, first oil screen pipe is along the second inclined-plane 313 automatic rollings of the second limited block 312 of the first transfer device and the second transfer device, until be rolled into projection 62 places of the second end face 61 of the first material stock frame and the second material stock frame, this projection 62 has played position-limiting action; Now, second oil screen pipe is still positioned at the first limited block 12 places of the second stock shelf and the 3rd stock shelf.
As shown in figure 14, the first cylinder 35 of the first transfer device and the second transfer device continue to move upward supporting plate 31 of mobilization mechanism 3 moves upward, when the second inclined-plane 313 of the second limited block 312 of the first transfer device and the second transfer device is during higher than the projection 62 of the first material stock frame and the second material stock frame, first oil screen pipe is just along the second inclined-plane 313 automatic rollings of the second limited block 312 of the first transfer device and the second transfer device, until be rolled in the projection plane 621 of the first material stock frame and the second material stock frame, and and then along the 3rd inclined-plane 622 of the first material stock frame and the second material stock frame, be automatically scrolled on the second end face 61 of the first material stock frame and the second material stock frame, projection plane 621 is set, can slow down first oil screen pipe speed that automatic rolling gets off from the second inclined-plane 313 of the second limited block 312 of the first transfer device and the second transfer device, first oil screen pipe can be rolled on the second end face 61 of the first material stock frame and the second material stock frame more stably, now just completed the boring of first oil screen pipe and feeding process, when the supporting plate inclined-plane 311 of the first transfer device and the second transfer device is during higher than the first limited block 12 of the second stock shelf and the 3rd stock shelf, second oil screen pipe is just along supporting plate inclined-plane 311 automatic rollings of the first transfer device and the second transfer device, until be rolled into the second limited block 312 places of the first transfer device and the second transfer device, then the first cylinder 35 of the first transfer device and the second transfer device drives supporting plate 31 to move downward, and next the boring of second oil screen pipe and feeding process will repeat the manner of execution shown in Figure 10 to Figure 14.
The above embodiment has only expressed embodiment of the present utility model, and it describes comparatively concrete and detailed, but can not therefore be interpreted as the restriction to the utility model the scope of the claims.It should be pointed out that for the person of ordinary skill of the art, without departing from the concept of the premise utility, can also make some distortion and improvement, these all belong to protection domain of the present utility model.Therefore, the protection domain of the utility model patent should be as the criterion with claims.
Claims (7)
1. the boring automatic charging device of oil screen pipe, is characterized in that, described automatic charging device comprises:
Stock shelf, described stock shelf comprises spaced at least one first stock shelf, at least one second stock shelf and at least one the 3rd stock shelf side by side, described stock shelf has the first end face for described oil screen pipe placed side by side, one end of described the first end face is provided with the first limited block for stoping described oil screen pipe to roll, the top of described the first limited block has the first inclined-plane, and described the first end face has along near the direction of described the first limited block downward-sloping the first end face inclined-plane gradually;
Feeding mechanism, described feeding mechanism comprises that at least one is positioned at first feeding mechanism in described the first stock shelf and described second stock shelf the place ahead, be positioned at second feeding mechanism in described the second stock shelf and described the 3rd stock shelf the place ahead with at least one, described feeding mechanism comprises support, evenly be arranged on side by side the drive on described support, the driving member being connected with the described drive of part;
Transfer device, described transfer device comprises that at least one is positioned at the first transfer device of described the first feeding mechanism one side, be positioned at the second transfer device of described the second feeding mechanism one side with at least one, described transfer device comprises the supporting plate that is arranged on described transfer device top, one end of the end face of described supporting plate is provided with the second limited block, the top of described the second limited block has the second inclined-plane, and the end face of described supporting plate has the supporting plate inclined-plane identical with described the second inclined-plane incline direction; Described transfer device also comprises the first actuator being connected with described supporting plate bottom, the other end of described the first actuator is fixed on the first base of described transfer device, and the first guide being connected with described supporting plate bottom, described the first guide is socketed in the first connector being connected with the first base of described transfer device, can be in described the first connector upper and lower telescopic slide of described the first guide;
Rotation saddle, described rotation drag platform comprises that at least one is positioned at the first rotation drag platform of borehole drill construction one side, be positioned at the second rotation drag platform of described the second feeding mechanism opposite side with at least one, described rotation saddle comprises the fixed bin that is arranged on described rotation saddle top, described fixed bin is the box body of upper opening at least, in described fixed bin, be connected with the roller of placing perpendicular to described fixed bin bottom, the diameter of described roller is greater than the height of described fixed bin; Described rotation saddle also comprises the second actuator being connected with described rotation drag platform bottom, the other end of described the second actuator is fixed on the second base of described rotation drag platform, and the second guide being connected with described fixed bin bottom, described the second guide is socketed in the second connector being connected with the second base of described rotation drag platform, can be in described the second connector upper and lower telescopic slide of described the second guide;
Described borehole drill construction is between described the first rotation drag platform and described the first feeding mechanism, described borehole drill construction comprises drilling machine, be disposed on side by side successively folder platform and roller platform on described Drilling machines bench, described folder platform is provided with for holding the groove of described oil screen pipe, one side of described folder platform is provided with the securing member for fixing described oil screen pipe, and the position corresponding with the groove of described folder platform is provided with wellbore part;
Material stock frame, described material stock frame comprises at least one first material stock frame between described the first transfer device and described the second rotation drag platform, be positioned at the second material stock frame of described the second transfer device one side with at least one, described material stock frame has the second end face for described oil screen pipe placed side by side, one end of described the second end face is provided with projection, and the top of described projection is disposed with projection plane and the 3rd inclined-plane; And
Sealing mechanism, described sealing mechanism comprises sealing column, the push rod affixed with described sealing column one end, be arranged on the liquid collecting room on described sealing column cylinder, the seal groove that is enclosed construction around the periphery setting of described liquid collecting room, be embedded in the seal tube in described seal groove, the tracheae being communicated with described seal tube.
2. the boring automatic charging device of oil screen pipe according to claim 1, is characterized in that, the quantity of the drive being connected with described driving member of described the first feeding mechanism is 3, and the quantity of the drive not being connected with described driving member is 1; The quantity of the drive being connected with described driving member of described the second feeding mechanism is 1, and the quantity of the drive not being connected with described driving member is 3.
3. the boring automatic charging device of oil screen pipe according to claim 2, is characterized in that, described driving member is chain asynchronous machine.
4. the boring automatic charging device of oil screen pipe according to claim 1, is characterized in that, described actuator is cylinder, described guide is lead, described connector is joint pin, and the quantity of described lead is 2, and the quantity of described joint pin is 2.
5. the boring automatic charging device of oil screen pipe according to claim 1, is characterized in that, the quantity of described roller is 2.
6. the boring automatic charging device of oil screen pipe according to claim 1, is characterized in that, described securing member is screw.
7. the boring automatic charging device of oil screen pipe according to claim 1, is characterized in that, during boring, the position of described liquid collecting room is corresponding with the target borehole position of described oil screen pipe.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201320656895.5U CN203495659U (en) | 2013-10-18 | 2013-10-18 | Automatic loading device for oil filter pipe drilling |
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Application Number | Priority Date | Filing Date | Title |
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CN201320656895.5U CN203495659U (en) | 2013-10-18 | 2013-10-18 | Automatic loading device for oil filter pipe drilling |
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CN201320656895.5U Expired - Lifetime CN203495659U (en) | 2013-10-18 | 2013-10-18 | Automatic loading device for oil filter pipe drilling |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103522114A (en) * | 2013-10-18 | 2014-01-22 | 太仓优尼泰克精密机械有限公司 | Automatic loading device for petroleum filter pipe drilling and application method thereof |
CN105171288A (en) * | 2015-09-30 | 2015-12-23 | 昆山宝锦激光拼焊有限公司 | Feeding device |
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2013
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103522114A (en) * | 2013-10-18 | 2014-01-22 | 太仓优尼泰克精密机械有限公司 | Automatic loading device for petroleum filter pipe drilling and application method thereof |
CN103522114B (en) * | 2013-10-18 | 2017-03-15 | 太仓优尼泰克精密机械有限公司 | A kind of boring automatic charging device of petroleum filter pipe and its using method |
CN105171288A (en) * | 2015-09-30 | 2015-12-23 | 昆山宝锦激光拼焊有限公司 | Feeding device |
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