CN213277043U - PE pipeline connection scene simulator - Google Patents
PE pipeline connection scene simulator Download PDFInfo
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- CN213277043U CN213277043U CN202022595120.4U CN202022595120U CN213277043U CN 213277043 U CN213277043 U CN 213277043U CN 202022595120 U CN202022595120 U CN 202022595120U CN 213277043 U CN213277043 U CN 213277043U
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- transverse
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- rods
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- pipe connection
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Abstract
The utility model discloses a scene simulator is connected to PE pipeline, including bottom plate, vertical post, transverse bar and PE pipe fixed component, vertical post has two, and slidable connects on the bottom plate in order to adjust the horizontal interval between two vertical posts, and on two vertical posts respectively slidable connection transverse bar in order to adjust the upper and lower interval between two transverse bars, slide on two transverse bars and rotatable PE pipe fixed component is in order to adjust front-back interval and relative angle between two PE pipes. The horizontal distance between the two vertical columns is adjustable, so that the horizontal distance between the two transverse rods is adjustable; the transverse rod can be adjusted up and down along the vertical column, the front-back distance of the PE pipe fixing components on the transverse rod is adjustable, the PE pipe fixing components can rotate relative to the transverse rod, and the relative angle between the two PE pipe fixing components is adjustable. The device can realize the adjustment of horizontal spacing, vertical spacing, front-back spacing and relative angle between the PE pipes at the two ends, and can carry out all-dimensional adjustment on the PE pipes at the two ends for connection training, thereby ensuring the skill of the operator to be quickly improved.
Description
Technical Field
The utility model relates to a scene simulator is connected to PE pipeline.
Background
Because of the superior performance of the PE pipeline, the PE pipeline is more and more widely applied to urban underground pipe networks. In the process of electric melting connection of the PE pipeline, due to the influences of site landform, laying conditions and the like, the problems of elevation, horizontal distance, angle deviation and the like exist at two ends of the PE pipeline connection, the pipeline connection is difficult to achieve, and the requirement on the skill level of site operators is high.
At present, the PE pipeline connection operators are subjected to actual operation training, the PE pipeline connection operators are generally connected according to a drawing after drawing a simple pipeline connection drawing, the pipeline cannot be fixedly disposed in the actual operation process, and the daily skill training and skill improvement effects of the operators are not obvious.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a can simulate various possible circumstances of operation on-the-spot pipe connection for daily training is with the simulator that improves operation personnel's PE pipe connection technique.
The utility model provides a scene simulator is connected to PE pipeline, including bottom plate, vertical post, transverse bar and the fixed component of PE pipe, vertical post has two, and slidable connects on the bottom plate in order to adjust the horizontal interval between two vertical posts, but on two vertical posts respectively sliding connection transverse bar in order to adjust the upper and lower interval between two transverse bars, slide on two transverse bars and rotatable PE pipe fixed component is in order to adjust front-back interval and relative angle between two PE pipes.
In one embodiment of the above technical solution, the bottom plate is a rectangular plate, and an inverted T-shaped groove having a full length is formed in an upper side of the bottom plate along a center plane in a width direction, for connecting the vertical column.
In one embodiment of the above technical solution, the vertical column and the horizontal rod are both circular tubes or circular rods.
In one embodiment of the above technical solution, the lower end of the vertical column is vertically connected with a rectangular plate, and the bottom of the vertical column is pushed into the inverted T-shaped groove from one end thereof.
In one embodiment of the above technical solution, the vertical column is connected with a clamp-type hoop as a fastener to connect the horizontal rod, and one end of the horizontal rod is welded at the middle position of one clamping plate of the clamp-type hoop.
In an embodiment of the foregoing technical solution, the transverse rod is connected with a wafer-type hoop as a fastener to connect the PE tube fixing member, the PE tube fixing member includes two symmetrically arranged crank arm connecting rods and a circular ring at the outer end thereof, and the inner ends of the crank arm connecting rods of the two assemblies are respectively connected to two clamping plates of the wafer-type hoop.
In an embodiment of the above technical solution, a threaded hole is formed in the ring at the outer end of the crank arm connecting rod, and PE pipes with different outer diameters in the ring are fixed by connecting bolts in the threaded hole.
The horizontal space between the two vertical columns of the utility model can be adjusted, so that the horizontal space between the two transverse rods can be adjusted; the transverse rod can be adjusted up and down along the vertical column, the front-back distance of the PE pipe fixing components on the transverse rod is adjustable, and the PE pipe fixing components can rotate relative to the transverse rod, so that the relative angle between the two PE pipe fixing components is adjustable. Therefore, the regulation of the horizontal distance, the vertical distance, the front-back distance and the relative angle between the PE pipes at the two ends can be realized through the device, the PE pipes at the two ends can be regulated in all directions to carry out connection training, and the skills of operators are guaranteed to be promoted quickly.
Drawings
Fig. 1 is a schematic front view of an embodiment of the present invention.
Fig. 2 is a schematic top view of fig. 1.
Fig. 3 is a side view of fig. 1.
Detailed Description
As shown in fig. 1 to 3, the PE pipeline connection scene simulator disclosed in this embodiment includes a bottom plate 1, a vertical column 2, a horizontal rod 3, a hoop BG, a crank arm connecting rod 4, and a circular ring 5.
The bottom plate 1 is a rectangular plate, a through long sliding groove is formed in the center face of the width direction of the rectangular plate, and the cross section of the sliding groove is in an inverted T shape.
The base plate 1 may be bolted to the work platform or to the underside.
The vertical column 2 and the transverse rod 3 are both round pipes or round rods.
The vertical columns 2 are two, rectangular steel plates are welded at the lower ends of the two vertical columns respectively, the two vertical columns are installed in the bottom plate by being pushed into the bottom plate from one end of the sliding groove, and the two vertical columns can flexibly slide along the sliding groove.
The two vertical columns 2 are respectively connected with a hoop BG which comprises two clamping plates, the middle section of each clamping plate is an arc-shaped section which protrudes outwards, and a transverse rod 3 is perpendicularly welded at the middle position of the outer wall of the arc-shaped section of one clamping plate. Two staple bolts BG centre gripping a vertical column 3 respectively, and the staple bolt welding has the grip block syntropy parallel arrangement of horizontal pole 3, passes through bolted connection between the two grip blocks of staple bolt.
The two transverse rods 3 are respectively connected with the hoop BG of the same type as the vertical column, and each transverse rod is connected with two hoops.
Crank arm connecting rod 4 includes staple bolt linkage segment, outer bending section and ring linkage segment, and ring 5 welds at the ring linkage segment end of crank arm connecting rod. The crank arm connecting rod 4 and the circular ring 5 form a PE pipe fixing component.
Every transverse bar 3 connects two crank arm connecting rods 4, and two crank arm connecting rods are symmetrical to be arranged, and the staple bolt linkage segment is welded and fixed with the homonymy grip block of two staple bolts on the transverse bar 3, passes through bolted connection between the two grip blocks of staple bolt. The circular ring at the outer end of the two crank arm connecting rods connected with each transverse rod is used for fixing the PE pipe at one end.
In order to fix the PE pipes with different outer diameters by the circular ring 5, a plurality of radial threaded holes are formed in the circular ring, and the bolts are arranged.
The use principle of the device is as follows: the arrangement of the sliding chute on the bottom plate can adjust the horizontal distance between the two vertical columns, and the horizontal rods are connected with the hoops on the vertical columns into a whole, so that the horizontal distance between the two horizontal rods can be adjusted; the hoop of the vertical column is adjusted up and down, so that the up-down distance between the two transverse rods can be adjusted; the front-back distance between the two PE pipe fixing components can be adjusted by adjusting the positions of the hoops on the transverse rods in the front-back direction, and the relative angles of the two PE pipe fixing components can be adjusted by rotating the hoops on the transverse rods along the transverse rods. Therefore, the device can realize the adjustment of the horizontal distance, the vertical distance, the front-back distance and the relative angle between the PE pipes at the two ends, and can carry out all-dimensional adjustment on the PE pipes at the two ends for training, thereby ensuring the skill of the operator to be quickly improved.
Claims (7)
1. The utility model provides a PE pipe connection scene simulator which characterized in that: the PE pipe fixing component comprises a bottom plate, two vertical columns, two transverse rods and two PE pipe fixing components, wherein the two vertical columns are connected to the bottom plate in a sliding mode to adjust the horizontal distance between the two vertical columns, the two vertical columns are respectively connected with the transverse rods in a sliding mode to adjust the upper and lower distances between the two transverse rods, and the two transverse rods slide and can rotate to adjust the front and back distances and the relative angle between the two PE pipes.
2. The PE pipe connection scenario simulator of claim 1, wherein: the bottom plate is a rectangular plate, and a full-length inverted T-shaped groove is formed in the center face of the upper side of the bottom plate in the width direction and used for being connected with the vertical column.
3. The PE pipe connection scenario simulator of claim 1, wherein: the vertical column and the transverse rod are both round tubes or round rods.
4. The PE pipe connection scenario simulator of claim 2, wherein: the lower end of the vertical column is vertically connected with a rectangular plate, and the bottom of the vertical column is pushed into the inverted T-shaped groove from one end of the inverted T-shaped groove.
5. The PE pipe connection scenario simulator of claim 3, wherein: the vertical column is connected with a clamp type hoop serving as a fastener to be connected with the transverse rod, and one end of the transverse rod is welded in the middle of one clamping plate of the clamp type hoop.
6. The PE pipe connection scenario simulator of claim 3, wherein: the transverse rod is connected with a wafer type hoop as a fastener to be connected with the PE pipe fixing component, the PE pipe fixing component comprises two symmetrically arranged crank arm connecting rods and a circular ring at the outer end of each crank arm connecting rod, and the inner ends of the crank arm connecting rods of the two components are respectively connected to two clamping plates of the wafer type hoop.
7. The PE pipe connection scenario simulator of claim 6, wherein: threaded holes are formed in the circular ring at the outer end of the crank arm connecting rod, and PE pipes with different outer diameters in the circular ring are fixed through connecting bolts in the threaded holes.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022595120.4U CN213277043U (en) | 2020-11-11 | 2020-11-11 | PE pipeline connection scene simulator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022595120.4U CN213277043U (en) | 2020-11-11 | 2020-11-11 | PE pipeline connection scene simulator |
Publications (1)
Publication Number | Publication Date |
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CN213277043U true CN213277043U (en) | 2021-05-25 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022595120.4U Active CN213277043U (en) | 2020-11-11 | 2020-11-11 | PE pipeline connection scene simulator |
Country Status (1)
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CN (1) | CN213277043U (en) |
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2020
- 2020-11-11 CN CN202022595120.4U patent/CN213277043U/en active Active
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