CN216683354U - Auxiliary processing device for composite process of plastic-lined composite pipe - Google Patents
Auxiliary processing device for composite process of plastic-lined composite pipe Download PDFInfo
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- CN216683354U CN216683354U CN202122910144.9U CN202122910144U CN216683354U CN 216683354 U CN216683354 U CN 216683354U CN 202122910144 U CN202122910144 U CN 202122910144U CN 216683354 U CN216683354 U CN 216683354U
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- 239000002131 composite material Substances 0.000 title claims abstract description 54
- 238000000034 method Methods 0.000 title claims abstract description 31
- 229910000831 Steel Inorganic materials 0.000 claims abstract description 79
- 239000010959 steel Substances 0.000 claims abstract description 79
- 238000013329 compounding Methods 0.000 claims abstract description 15
- 150000001875 compounds Chemical class 0.000 claims 2
- 230000000694 effects Effects 0.000 abstract description 5
- 238000003754 machining Methods 0.000 description 7
- 229910001335 Galvanized steel Inorganic materials 0.000 description 4
- 239000008397 galvanized steel Substances 0.000 description 4
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 210000001503 joint Anatomy 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 125000003003 spiro group Chemical group 0.000 description 1
- 238000006467 substitution reaction Methods 0.000 description 1
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/50—Reuse, recycling or recovery technologies
- Y02W30/62—Plastics recycling; Rubber recycling
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Abstract
The utility model provides an auxiliary processing device for a composite process of a plastic-lined composite pipe, which belongs to the technical field of processing of the plastic-lined composite pipe and comprises two groups of first slide rails, a plurality of slide plates and a plurality of second slide rails, wherein the two groups of first slide rails are respectively used for being connected to the upper ends of two bases along the horizontal direction, the plurality of slide plates are all slidably connected to the two groups of first slide rails, the distance between the plurality of slide plates is adjustable, the second slide rails are arranged at the upper ends of the slide plates, a plurality of air cylinders are slidably connected to the plurality of second slide rails, the sliding positions of the air cylinders on the second slide rails are adjustable, and the positions of the air cylinders are adjusted by means of the first slide rails and the second slide rails so as to push and clamp steel pipes with different outer diameters and different lengths. The auxiliary processing device for the plastic-lined composite pipe compounding process, provided by the utility model, has the technical effects that the position of the cylinder in a horizontal plane two-dimensional space can be adjusted, steel pipes with different outer diameters and different lengths can be conveniently pushed and clamped, and the composite processing speed and the processing efficiency can be improved.
Description
Technical Field
The utility model belongs to the technical field of plastic-lined composite pipe processing, and particularly relates to an auxiliary processing device for a plastic-lined composite pipe compounding procedure.
Background
The compounding process of the plastic-lined composite pipe is a processing process of compounding a plastic pipe and a galvanized steel pipe together, and a steel-plastic composite pipe product is obtained after compounding. However, in the prior art, the arrangement distance of the cylinders on the base and the ejection position of the cylinders on the galvanized steel pipe cannot be adjusted, and if steel pipes with different outer diameters and different lengths need to be machined, the existing equipment is troublesome in composite machining, and the composite machining efficiency is affected.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an auxiliary processing device for a plastic-lined composite pipe compounding process, and aims to solve the technical problems that in the prior art, the position of a cylinder cannot be adjusted, the complex processing operation of steel pipes with different outer diameters and different lengths is troublesome, and the processing efficiency is reduced.
In order to realize the purpose, the utility model adopts the technical scheme that: the auxiliary processing device comprises two groups of first sliding rails, a plurality of sliding plates and a plurality of second sliding rails, wherein the two groups of first sliding rails are respectively connected to the upper ends of two bases along the horizontal direction, and the length direction of the first sliding rails is perpendicular to the telescopic direction of an air cylinder; the sliding plates are connected to the two groups of first sliding rails in a sliding mode, and the distance between the sliding plates can be adjusted; the second sliding rails are arranged at the upper ends of the sliding plates in a one-to-one correspondence mode respectively, the bottom ends of the cylinders are connected to the second sliding rails in a sliding mode respectively, the sliding direction of the cylinders is in the ejection direction of the cylinders, the sliding positions of the cylinders on the second sliding rails can be adjusted, and the cylinders are adjusted in position through the first sliding rails and the second sliding rails so as to eject steel pipes with different outer diameters and different lengths.
In a possible implementation manner, push rods for pushing the air cylinders to slide on the second slide rails are respectively arranged on the plurality of slide plates, and the pushing lengths of the push rods are adjustable.
In a possible implementation manner, the auxiliary processing device for the plastic-lined composite pipe compounding process further comprises a controller electrically connected with the push rod, and the controller is suitable for adjusting and controlling the pushing length of the push rod so as to adjust the position of the cylinder.
In a possible implementation manner, the auxiliary processing device for the composite process of the plastic-lined composite pipe further comprises two groups of bearing components for bearing the plurality of steel pipes to a plurality of cylinders, wherein the two groups of bearing components respectively bear the left half part and the right half part of the steel pipes, and the bearing heights of the two groups of bearing components can be adjusted.
In a possible implementation manner, the bearing component comprises a moving vehicle, a lifting column arranged at the upper end of the moving vehicle, a third sliding rail arranged at the upper end of the lifting column, and a supporting plate connected to the upper end of the third sliding rail in a sliding manner, wherein the length direction of the third sliding rail is along the horizontal direction and the axial direction of the steel pipe perpendicular to the horizontal direction, the supporting plate is used for bearing the steel pipe, and the lifting height of the lifting column is controlled by the controller.
In a possible implementation mode, the upper end of the supporting plate can be detachably provided with a plurality of groups of arc-shaped brackets, and the arc-shaped brackets are used for supporting the steel pipe and are matched with the arc shape of the steel pipe in an arc shape.
In a possible implementation manner, the upper end of the supporting plate is provided with a plurality of grooves, connecting pieces are inserted into the grooves, the bracket is detachably connected to the upper ends of the connecting pieces, and the connecting pieces can be taken out of the grooves.
In a possible implementation mode, be provided with the electric rotary table who is used for adjusting steel pipe locating position in the recess, electric rotary table can be in the horizontal plane circumference rotation, the bracket is located electric rotary table's rotatory serving, rotatory back is in order to adjust steel pipe locating position or the contained angle between its axial and the cylinder ejection direction.
In a possible implementation mode, the cambered surface at the upper end of the arc-shaped bracket is stuck with a non-slip mat for preventing the steel pipe from slipping.
In a possible implementation mode, the bottom ends of the two bases are provided with a plurality of travelling wheels, at least one travelling wheel is provided with a brake, and the brake is used for locking the travelling wheels and braking the bases.
Adopt the produced beneficial effect of above-mentioned technical scheme to lie in:
compared with the prior art, the two groups of first slide rails of the auxiliary processing device for the plastic-lined composite pipe compounding procedure are respectively connected to the upper ends of the two bases along the horizontal direction, the plurality of slide plates are all connected to the two groups of first slide rails in a sliding way, the distance between the plurality of slide plates is adjustable, the second slide rails are arranged at the upper ends of the slide plates, the plurality of air cylinders are connected to the plurality of second slide rails in a sliding way, the sliding positions of the air cylinders on the second slide rails are adjustable, the positions of the air cylinders are adjusted by the aid of the first slide rails and the second slide rails, the steel pipes with different outer diameters and different lengths are oppositely clamped by pushing, the problem that the position of the cylinder in the prior art can not be adjusted is solved, the combined machining of steel pipes with different outer diameters and different lengths is troublesome in operation, the technical problem of reducing machining efficiency is solved, the position of the adjustable cylinder in a two-dimensional space of a horizontal plane is convenient to push and clamp the steel pipes with different outer diameters and different lengths, and the technical effects of improving the combined machining speed and the machining efficiency can be achieved.
Drawings
Fig. 1 is a schematic structural diagram of an auxiliary processing device for a plastic-lined composite pipe compounding process according to an embodiment of the present invention.
Fig. 2 is a front view of a left half structure of an auxiliary processing device for a plastic-lined composite pipe compounding process according to an embodiment of the present invention (in the figure, a hatched portion connected to a cylinder is a steel pipe).
Figure 3 is a front view of the left half (including the support assembly) of figure 2.
Figure 4 is a side view of the right half (support assembly) of figure 2 (steel tubes in circular shading).
Fig. 5 is a schematic structural view of a supporting plate of another embodiment in fig. 4.
Wherein: 1. a first slide rail; 2. a slide plate; 3. a second slide rail; 4. a base; 5. a cylinder; 6. a push rod; 7. a controller; 8. a holding assembly; 81. a mobile vehicle; 82. a lifting column; 83. a third slide rail; 84. a support plate; 85. an arc bracket; 86. a groove; 87. a connecting member; 88. an electric rotating table; 9. a cylinder cover plate; 10. a clamp head shaft; 11. a plastic sheath; 12. and (5) traveling wheels. .
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the following description of the present invention with reference to the specific embodiments is provided for clarity and completeness.
Referring to fig. 1 to 5, an auxiliary processing device for a plastic-lined composite pipe composite process according to the present invention will now be described. The auxiliary processing device for the plastic-lined composite pipe compounding procedure comprises two groups of first slide rails 1, a plurality of slide plates 2 and a plurality of second slide rails 3, wherein the two groups of first slide rails 1 are respectively connected to the upper ends of two bases 4 along the horizontal direction, and the length direction of the first slide rails 1 is vertical to the telescopic direction of an air cylinder 5; the sliding plates 2 are connected to the two groups of first sliding rails 1 in a sliding mode, and the distance between the sliding plates 2 is adjustable; a plurality of second slide rails 3 respectively one-to-one set up in a plurality of slides 2 upper ends, and sliding connection is on a plurality of second slide rails 3 respectively in the bottom of a plurality of cylinders 5, and cylinder 5 slip direction is on its ejection direction, and the sliding position of cylinder 5 on second slide rail 3 is adjustable, and cylinder 5 is with the help of first slide rail 1 and the 3 adjusting position of second slide rail to different external diameters of ejection butt clamp and different length steel pipes.
Compared with the prior art, the auxiliary processing device for the composite process of the plastic-lined composite pipe, provided by the utility model, has the advantages that two groups of first slide rails 1 of the auxiliary processing device for the composite process of the plastic-lined composite pipe are respectively used for being connected to the upper ends of two bases 4 along the horizontal direction, a plurality of slide plates 2 are all slidably connected to the two groups of first slide rails 1, the distance between the slide plates 2 is adjustable, second slide rails 3 are arranged at the upper ends of the slide plates 2, a plurality of air cylinders 5 are slidably connected to the second slide rails 3, the sliding positions of the air cylinders 5 on the second slide rails 3 are adjustable, the air cylinders 5 are adjusted by means of the first slide rails 1 and the second slide rails 3 to push and clamp steel pipes with different outer diameters and different lengths, the technical problems that the positions of the air cylinders 5 in the prior art can not be adjusted, the composite processing operation of the steel pipes with different outer diameters and different lengths is troublesome and the processing efficiency is reduced are solved, and the position of the air cylinders 5 in a two-dimensional space in the horizontal plane can be adjusted, the steel pipes with different outer diameters and different lengths are conveniently pushed and clamped, and the technical effects of composite processing speed and processing efficiency can be improved.
The steel pipe is a galvanized steel pipe, a hot galvanized steel pipe or a galvanized pipe body, and the steel pipe and the plastic pipe are mutually matched and compounded to form the plastic-lined steel pipe.
In the prior art, two groups of cylinders are arranged on one steel pipe, and the cylinder 5 is pushed and stretched along the axial direction of the steel pipe, so that the steel pipe is fixed, and the later-stage composite machining process is convenient to perform. The position of a cylinder 5 in the prior art is fixed on a base 4, the position is not easy to adjust, the cylinder is generally used for processing 4-inch pipes, when the diameter or the length of a steel pipe to be processed is different, the pushing and clamping of the equipment on the steel pipe are inconvenient to use, and through the utility model, the existing problems can be solved, the composite operation on the steel pipes with different outer diameters and different lengths is realized, the operation is convenient and flexible during adjustment, and the composite processing efficiency can be improved.
It is specific, both ends at first slide rail 1 and second slide rail 3 all are equipped with the stopper, the stopper is used for restricting the slip scope, prevent slide 2 and the slippage of cylinder 5, guarantee gliding stability, first slide rail 1 and the perpendicular setting of second slide rail 3, the cylinder 5 of being convenient for is adjusting the position in the two-dimensional space of horizontal plane, thereby can satisfy the ejection clamp tight to the different length steel pipes of different external diameters, slide 2 slides on first slide rail 1 and removes through manual lapse slide 2, and cylinder 5 slides on second slide rail 3, also can pass cylinder 5 through the manual work, slide between them also can be adjusted through electronic ejection, can reduce artifical ejection labour like this, and the distance of lapse is controllable.
Specifically, all the spiro union has the jackscrew on slide 2 and cylinder 5, through revolving the jackscrew soon, can make the jackscrew support and lean on first slide rail 1 and second slide rail 3 to the slip of slide 2 and cylinder 5 has been restricted, has played fixed effect. When sliding is needed again, the sliding plate 2 and the air cylinder 5 can be released by reversely screwing the jackscrew.
The bottom end of the cylinder 5 and the bottom end of the sliding plate 2 are both provided with sliding blocks, the sliding blocks are connected to the first sliding rail 1 and the second sliding rail 3 in a sliding mode, and when the sliding blocks are seen in fig. 2 and 3, the sliding blocks are different in style and can both slide, and the style of the sliding blocks is not limited in the embodiment.
In order to make the cylinder 5 automatically slide on the second slide rail 3, in some embodiments, please refer to fig. 1 to 5, push rods 6 for pushing the cylinder 5 to slide on the second slide rail 3 are respectively disposed on the plurality of slide plates 2, and the pushing length of the push rods 6 is adjustable. The push rod 6 pushes the cylinder 5 to slide, the push length of the push rod 6 is larger than that of the second slide rail 3, the adjustment of the cylinder 5 at different positions can be met, in addition, the push rod 6 can be arranged on the first slide rail 1, and the function of automatically pushing the slide plate 2 to slide can be realized.
Specifically, the air cylinder 5 is connected with an air pump and other components, and reference can be made to the prior art. Above-mentioned push rod 6 is common electric putter or electric telescopic handle among the prior art, can realize the ejector pad and freely stretch out and draw back, and flexible length is steerable and adjust, is convenient for improve the moving position's of cylinder 5 accuracy.
In order to realize the automatic control and adjustment of the push rod 6, in some embodiments, referring to fig. 1 to 5, the auxiliary processing device for the plastic-lined composite pipe compounding process further includes a controller 7 electrically connected to the push rod 6, and the controller 7 is adapted to adjust and control the pushing length of the push rod 6 to adjust the position of the air cylinder 5. The controller 7 is flexible and convenient to control and operate, the position of the air cylinder 5 is easy to adjust, and the adjusted position is accurate.
Specifically, the controller 7 can adopt a control panel or a controller which is common in the prior art, a control button is arranged on the controller, a control circuit and the like are arranged inside the controller, the control on the push rod 6 can be realized, the operation is simple, and the adjustment is flexible.
In order to prevent the steel pipes from slipping or falling during the composite processing operation of the steel pipes, in some embodiments, referring to fig. 1 to 5, the auxiliary processing device for the plastic-lined composite pipe composite process further includes two sets of supporting members 8 for supporting the steel pipes to the cylinders 5, wherein the two sets of supporting members 8 respectively support the left half portion and the right half portion of the steel pipes, and the supporting height is adjustable. Can prop up the steel pipe with the take the altitude through bearing subassembly 8, until placing the steel pipe on the ejection end of cylinder 5, also realized simultaneously not using artifical transport steel pipe to cylinder 5 department, alleviate artifical intensity of labour's effect, but through bearing subassembly 8 automatic rising, be convenient for with the not co-altitude of steel pipe bearing to match cylinder 5's position. In addition, the supporting component 8 can also move on the ground, and the movement is flexible.
In order to further embody the specific structure of the supporting assembly 8, in some embodiments, please refer to fig. 1 to 5, the supporting assembly 8 includes a moving vehicle 81, a lifting column 82 disposed at an upper end of the moving vehicle 81, a third sliding rail 83 disposed at an upper end of the lifting column 82, and a supporting plate 84 slidably connected to an upper end of the third sliding rail 83, a length direction of the third sliding rail 83 is along a horizontal direction and perpendicular to an axial direction of the steel pipe, the supporting plate 84 is used for supporting the steel pipe, and a lifting height of the lifting column 82 is controlled by the controller 7. The controller 7 can control the lifting height of the lifting column 82, thereby controlling the supporting height of the steel pipe. And the steel pipe supporting device can move at any position on the ground by combining the moving vehicle 81, so that the position of the steel pipe support in a three-dimensional space can be adjusted, the adjustment is convenient, and the movement is flexible.
Specifically, the two ends of the third slide rail 83 are also provided with a limiting block, which can limit the sliding range of the supporting plate 84, thereby preventing slipping.
Based on the function that above-mentioned bearing subassembly 8 can be realized for can adjust wantonly and remove the bearing height or the position of steel pipe, be convenient for to the butt joint or the cooperation of the steel pipe realization in different positions, not equidirectional and cylinder 5 be connected.
Because the outer circle of the steel pipe is circular or arc-shaped, in order to make the supporting plate 84 better contact or cling to the steel pipe and prevent the steel pipe from moving in the supporting process, in some embodiments, please refer to fig. 1 to 5, a plurality of groups of arc-shaped brackets 85 are detachably disposed at the upper end of the supporting plate 84, and the arc-shaped brackets 85 are used for supporting the steel pipe and the arc shape of the brackets is matched with the arc shape of the steel pipe. Through using arc bracket 85 bearing steel pipe, then can the lower half of bearing steel pipe, arc bracket 85 can hug closely on the steel pipe outer wall, and bearing stability is high. After the steel pipes with different outer diameters are placed on the arc-shaped brackets 85, the steel pipes are connected to the supporting plate 84 by selecting and using the arc-shaped brackets 85 with different specifications.
In order to realize the detachable connection between the supporting plate 84 and the arc bracket 85, and facilitate the replacement of the arc bracket 85 with different specifications or sizes, in some embodiments, referring to fig. 1 to 5, a plurality of grooves 86 are formed at the upper end of the supporting plate 84, a connecting member 87 is inserted into the grooves 86, the supporting plate is detachably connected to the upper end of the connecting member 87, and the connecting member 87 can be taken out from the grooves 86. The detachable connection of the arc-shaped bracket 85 and the supporting plate 84 is realized by inserting the connecting piece 87 into the groove 86, and the connection mode is simple and convenient, and is convenient to detach and replace.
Specifically, the connecting member 87 is a plug member that can be inserted into the groove 86, and when the plug member is connected, it serves to fix the supporting plate 84 in the horizontal direction.
In order to facilitate the assembly of the steel tube to the cylinder 5, in some embodiments, please refer to fig. 1 to 5, an electric rotating table 88 for adjusting the placing position of the steel tube is disposed in the groove 86, the electric rotating table 88 can rotate circumferentially in a horizontal plane, and the bracket is disposed on a rotating end of the electric rotating table 88, and rotates to adjust the placing position of the steel tube or an included angle between an axial direction thereof and a pushing direction of the cylinder 5. When the steel pipe needs to be rotated in the horizontal plane or the assembly of the steel pipe needs to be rotated, the rotation can be realized by operating the electric rotating platform 88, the rotated angle can be adjusted and controlled, the electric rotating platform 88 is electrically connected with the controller 7, and the rotation can be realized by operating and controlling the controller 7.
Specifically, the electric rotating table 88 is a product of the prior art, and is inserted into the groove 86, and the upper end of the electric rotating table is exposed out of the groove 86 and protrudes out of the supporting plate 84.
In order to prevent the steel pipe from slipping off the arc bracket 85 during the supporting process, in some embodiments, referring to fig. 1 to 5, a non-slip mat for preventing the steel pipe from slipping off is adhered to the arc surface of the upper end of the arc bracket 85. The non-slip mat is detachably connected to the arc bracket 85, and when the wear is serious or the friction force is reduced, the proper non-slip mat can be replaced.
In order to solve the technical problem that the base 4 in the prior art cannot move, in some embodiments, please refer to fig. 1 to 5, a plurality of walking wheels 12 are respectively disposed at the bottom ends of the two bases 4, and a brake is disposed on at least one walking wheel 12 and used for locking the walking wheels 12 and braking the base 4. Through setting up a plurality of walking wheels 12, realize base 4's removal, be convenient for carry out the ejection and press from both sides tightly the steel pipe in different positions, when base 4's rigidity back moreover, accessible stopper will walk 12 brakeings of wheel, and this operating mode is simple nimble, and it is convenient to remove.
Specifically, the traveling wheels 12 are in the form of rollers and the like in the prior art, and can roll on the ground, so that the function of moving the base 4 is realized.
In as shown in fig. 1, a cylinder cover plate 9 is arranged at the upper end of a cylinder 5, a clamp head shaft 10 is arranged at the ejection end of the cylinder 5, a plastic sheath 11 is arranged at the end part of the clamp head shaft 10, the plastic sheath 11 is used for abutting against the end part of a steel pipe, and the two cylinders 5 act simultaneously to realize ejection and butt-clamping of the steel pipe, so as to facilitate composite processing.
Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art may still make modifications to the technical solutions described in the foregoing embodiments, or may substitute some technical features of the embodiments; and such modifications or substitutions do not depart from the spirit and scope of the corresponding technical solutions of the embodiments of the present invention.
Claims (10)
1. The compound process auxiliary processing device of compound pipe is moulded to lining, its characterized in that includes:
the two groups of first sliding rails are respectively connected to the upper ends of the two bases along the horizontal direction, and the length direction of the first sliding rails is perpendicular to the telescopic direction of the air cylinder;
the sliding plates are connected to the two groups of first sliding rails in a sliding mode, and the distance between the sliding plates can be adjusted; and
the sliding plate comprises a sliding plate body, a plurality of second sliding rails, a plurality of air cylinders and a plurality of pushing rods, wherein the sliding plate body is provided with a plurality of sliding plates, the sliding plates are arranged at the upper ends of the sliding plates in a one-to-one correspondence mode, the bottoms of the air cylinders are connected to the second sliding rails in a sliding mode respectively, the sliding direction of the air cylinders is in the pushing direction of the air cylinders, the sliding positions of the air cylinders on the second sliding rails can be adjusted, and the air cylinders are used for adjusting the positions of the first sliding rails and the second sliding rails to push and oppositely clamp steel pipes with different outer diameters and different lengths.
2. The auxiliary processing device for the composite process of the plastic-lined composite pipe as recited in claim 1, wherein a plurality of the sliding plates are respectively provided with a push rod for pushing the cylinder to slide on the second slide rail, and the pushing length of the push rod is adjustable.
3. The auxiliary processing device for the lining plastic composite pipe compounding procedure according to claim 2, further comprising a controller electrically connected to the push rod, wherein the controller is adapted to adjust and control the pushing length of the push rod so as to adjust the position of the cylinder.
4. The auxiliary processing device for the composite process of the plastic-lined composite pipe as claimed in claim 3, further comprising two sets of supporting members for supporting the plurality of steel pipes onto the plurality of cylinders, wherein the two sets of supporting members respectively support the left half part and the right half part of the steel pipe and the supporting height is adjustable.
5. The auxiliary processing device for the plastic-lined composite pipe compounding process according to claim 4, wherein the supporting component comprises a moving vehicle, a lifting column arranged at an upper end of the moving vehicle, a third slide rail arranged at an upper end of the lifting column, and a supporting plate slidably connected to an upper end of the third slide rail, the third slide rail is arranged along a horizontal direction and perpendicular to an axial direction of the steel pipe, the supporting plate is used for supporting the steel pipe, and a lifting height of the lifting column is controlled by the controller.
6. The auxiliary processing device for the composite process of the plastic-lined composite pipe as recited in claim 5, wherein a plurality of groups of arc-shaped brackets are detachably arranged at the upper end of the supporting plate, the arc-shaped brackets are used for supporting the steel pipe, and the arc shape of the arc-shaped brackets is matched with the arc shape of the steel pipe.
7. An auxiliary processing device for a plastic-lined composite pipe compounding process as claimed in claim 6, wherein the supporting plate is provided at an upper end thereof with a plurality of grooves, connecting members are inserted into the grooves, the bracket is detachably connected to an upper end of the connecting member, and the connecting member can be taken out of the grooves.
8. The auxiliary processing device for the composite process of the plastic-lined composite pipe as recited in claim 7, wherein an electric rotating table for adjusting the position of the steel pipe is disposed in the groove, the electric rotating table can rotate circumferentially in a horizontal plane, the bracket is disposed on a rotating end of the electric rotating table, and the bracket is rotated to adjust the position of the steel pipe or an included angle between an axial direction of the steel pipe and a pushing direction of the cylinder.
9. The auxiliary processing device for the composite process of the plastic-lined composite pipe as claimed in claim 6, wherein the arc-shaped surface of the upper end of the arc-shaped bracket is adhered with a non-slip mat for preventing the steel pipe from slipping.
10. The auxiliary processing device for the composite process of the plastic-lined composite pipe as recited in claim 1, wherein a plurality of travelling wheels are respectively arranged at the bottom ends of the two bases, and a brake is arranged on at least one travelling wheel and used for locking the travelling wheels and braking the bases.
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CN202122910144.9U CN216683354U (en) | 2021-11-25 | 2021-11-25 | Auxiliary processing device for composite process of plastic-lined composite pipe |
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CN202122910144.9U CN216683354U (en) | 2021-11-25 | 2021-11-25 | Auxiliary processing device for composite process of plastic-lined composite pipe |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
PE01 | Entry into force of the registration of the contract for pledge of patent right |
Denomination of utility model: Auxiliary processing device for composite process of lined plastic composite pipes Effective date of registration: 20231222 Granted publication date: 20220607 Pledgee: Cangzhou Bank Co.,Ltd. Tangshan high tech sub branch Pledgor: TANGSHAN JINGHUA STEEL PIPE CO.,LTD. Registration number: Y2023980073660 |
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