CN112339280B - High density polyethylene pipe fitting tubular product splicing apparatus - Google Patents

High density polyethylene pipe fitting tubular product splicing apparatus Download PDF

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Publication number
CN112339280B
CN112339280B CN202011143176.4A CN202011143176A CN112339280B CN 112339280 B CN112339280 B CN 112339280B CN 202011143176 A CN202011143176 A CN 202011143176A CN 112339280 B CN112339280 B CN 112339280B
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China
Prior art keywords
density polyethylene
base
polyethylene pipe
sides
block
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Application number
CN202011143176.4A
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Chinese (zh)
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CN112339280A (en
Inventor
胡飞
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Hebei Huadun Pipeline Manufacturing Co Ltd
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Hebei Huadun Pipeline Manufacturing Co ltd
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Priority to CN202011143176.4A priority Critical patent/CN112339280B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C65/00Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor
    • B29C65/02Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor by heating, with or without pressure
    • B29C65/18Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor by heating, with or without pressure using heated tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C66/00General aspects of processes or apparatus for joining preformed parts
    • B29C66/50General aspects of joining tubular articles; General aspects of joining long products, i.e. bars or profiled elements; General aspects of joining single elements to tubular articles, hollow articles or bars; General aspects of joining several hollow-preforms to form hollow or tubular articles
    • B29C66/51Joining tubular articles, profiled elements or bars; Joining single elements to tubular articles, hollow articles or bars; Joining several hollow-preforms to form hollow or tubular articles
    • B29C66/52Joining tubular articles, bars or profiled elements
    • B29C66/522Joining tubular articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C66/00General aspects of processes or apparatus for joining preformed parts
    • B29C66/80General aspects of machine operations or constructions and parts thereof

Abstract

The invention relates to a splicing device, in particular to a high-density polyethylene pipe fitting and pipe splicing device. The technical problem to be solved by the invention is as follows: the high-density polyethylene pipe fitting and pipe splicing device can automatically and quickly splice pipes. The utility model provides a high density polyethylene pipe fitting tubular product splicing apparatus, including: a base; the frame is arranged on two sides of the base; the brackets are symmetrically arranged on the base; the driving assembly is arranged on the base; and the placing assembly is arranged on the rack. The high-density polyethylene pipe fitting fixing device is provided with the pushing assembly, so that the high-density polyethylene pipe fitting can be automatically fixed by the fixing frame, the fixing frame does not need to be manually controlled, and the burden of workers is reduced; the invention is provided with the limiting assembly, can limit the placing position of the high-density polyethylene pipe fittings, and prevents the splicing effect from being influenced by different placing positions of the high-density polyethylene pipe fittings.

Description

High density polyethylene pipe fitting tubular product splicing apparatus
Technical Field
The invention relates to a splicing device, in particular to a high-density polyethylene pipe fitting and pipe splicing device.
Background
The high-density polyethylene pipe is a novel pipe formed by winding high-density polyethylene and steel belts serving as raw materials through hot extrusion molding. The plastic pipe has the characteristics of good corrosion resistance, smooth inner wall, small flow resistance and the like of a common plastic pipe, has excellent characteristics of high rigidity, high strength, good toughness, light weight, strong impact resistance, difficult damage and the like, and is usually required to be spliced in common use.
Generally splice it to high density polyethylene pipe fitting adopts the manual work, and the connected mode generally adopts hot melt butt welding to connect or electric smelting bushing connection, during the concatenation, needs the staff to hold the hot melt stick and welds the interface, needs the staff to control high density polyethylene pipe fitting and rotates during the welding to weld a bit, consequently not only the operation degree of difficulty is great, need consume a large amount of manpowers and time moreover.
Therefore, a high-density polyethylene pipe fitting and pipe splicing device capable of automatically and rapidly splicing is needed to be designed.
Disclosure of Invention
In order to overcome the defects that the operation difficulty is high and a large amount of manpower and time are consumed during manual welding, the technical problem is as follows: the high-density polyethylene pipe fitting and pipe splicing device can automatically and rapidly splice pipes.
The utility model provides a high density polyethylene pipe fitting tubular product splicing apparatus, including: a base; the rack is arranged on two sides of the base; the brackets are symmetrically arranged on the base; the driving component is arranged on the base; and the placing assembly is arranged on the rack.
Further, the driving assembly includes: the electric telescopic rods are arranged on two sides of the base; the first sliding rails are arranged on two sides of the base; the first sliding block is arranged between the first sliding rails in a sliding manner; the connecting rod is arranged between the first sliding block and the telescopic ends of the electric telescopic rods on the two sides; the first racks are slidably arranged on two sides of the base; the pushing plate is rotatably arranged between the first rack and the first sliding block; the rotating shafts are rotatably arranged on two sides of the base; the full gear is arranged on the rotating shaft and correspondingly meshed with the first rack; and the sector gear is arranged on the rotating shaft.
Further, the placement component comprises: the cross bar is arranged between the two sides of the rack; the at least two placing racks are arranged between the cross rods in a sliding manner; the fixing frame is rotatably arranged between the two adjacent placing frames; and the second rack is arranged between two adjacent placing racks and correspondingly meshed with the sector gear.
Further, still include and melt the subassembly, melt the subassembly and include: the mounting rack is mounted on the base; and the heating melter is rotatably arranged on the mounting frame.
Further, still including pushing the subassembly, pushing the subassembly including: the special-shaped plate is arranged on the bracket; the pushing rod is rotatably arranged on the fixed frame; the limiting block is arranged on the fixing frame and matched with the pushing rod; the strip-shaped block is arranged on the special-shaped plate in a sliding mode and is connected with the push rod in a rotating mode; and the right-angle rod is arranged on the strip-shaped block.
Further, still including the swing subassembly, the swing subassembly is including: the second sliding rails are arranged on two sides of the mounting rack; the second sliding block is arranged between the second sliding rails in a sliding manner; the first spring is arranged between the second sliding block and the second sliding rail; the special-shaped rods are arranged on two sides of the second sliding block and are matched with the bar-shaped blocks; and the pull rope is arranged between the second sliding block and the heating melter.
Further, still including rising the subassembly, rising the subassembly including: the inclined plate is arranged on the special-shaped plate and matched with the right-angle rod; the supporting rod is arranged on the special-shaped plate; the wedge block is arranged on the supporting rod and matched with the right-angle rod.
Further, still including spacing subassembly, spacing subassembly is including: the guide plate is arranged on the placing frame; the stop plate is arranged on the guide plate in a sliding way; the second spring is arranged between the blocking plate and the guide plate; the ladder-shaped block is arranged on the upper side of the base and is connected with the ladder-shaped block, and the ladder-shaped block is matched with the blocking plate.
The beneficial effects are that: 1. the high-density polyethylene pipe fitting fixing device is provided with the pushing assembly, so that the high-density polyethylene pipe fitting can be automatically fixed by the fixing frame, the fixing frame does not need to be manually controlled, and the burden of workers is reduced.
2. According to the invention, the strip-shaped block is matched with the special-shaped rod, so that a worker does not need to manually control the heating melter, and the labor is saved.
3. The invention is provided with the limiting assembly, can limit the placing position of the high-density polyethylene pipe fittings, and prevents the splicing effect from being influenced by different placing positions of the high-density polyethylene pipe fittings.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the driving assembly of the present invention.
Fig. 3 is a schematic perspective view of the placement module of the present invention.
FIG. 4 is a perspective view of a melting assembly of the present invention.
Fig. 5 is a perspective view of the pushing assembly of the present invention.
Fig. 6 is a schematic perspective view of the swing assembly of the present invention.
Fig. 7 is a schematic perspective view of the ascending assembly according to the present invention.
Fig. 8 is a schematic perspective view of the spacing assembly of the present invention.
Part names and serial numbers in the figure: 1_ base, 2_ frame, 3_ bracket, 4_ drive assembly, 41_ electric telescopic rod, 42_ first slide rail, 43_ first slide block, 44_ connecting rod, 45_ first rack, 46_ push plate, 47_ rotating shaft, 48_ full gear, 49_ sector gear, 5_ placing assembly, 51_ cross bar, 52_ placing frame, 53_ fixing frame, 54_ second rack, 6_ melting assembly, 61_ mounting frame, 62_ heating melter, 7_ push assembly, 71_ profile plate, 72_ push rod, 73_ limiting block, 74_ strip block, 75_ rod, 8_ swinging assembly, 81_ second slide rail, 82_ second slide block, 83_ first spring, 84_ profile rod, 85_ pull rope, 9_ lifting assembly, 91_ inclined plate, 92_ support rod, 93_ wedge block, 10_ limiting assembly, 101_ guide plate, 102_ blocking plate, 103_ second spring, 104_ ladder block.
Detailed Description
The technical scheme of the invention is further explained by combining the attached drawings.
Example 1
The utility model provides a high density polyethylene pipe fitting tubular product splicing apparatus, as shown in fig. 1-3, including base 1, frame 2, support 3, drive assembly 4 and place subassembly 5, both sides are connected with frame 2 around the upper portion of base 1, and the left part upside front and back symmetry of base 1 is equipped with support 3, is equipped with drive assembly 4 on the base 1, is equipped with on the frame 2 and places subassembly 5.
When needs splice the high density polyethylene pipe fitting, place the both sides of placing subassembly 5 with the high density polyethylene pipe fitting, then start drive assembly 4, drive assembly 4 just can drive and place subassembly 5 and operate, and then make both sides high density polyethylene pipe fitting be close to each other, and then alright splice the high density polyethylene pipe fitting, then take out the high density polyethylene pipe fitting that the concatenation was accomplished, control drive assembly 4 reverse function afterwards, and then make drive assembly 4 and place subassembly 5 and reset, then repeat above-mentioned operation, when all high density polyethylene pipe fittings all splice completion, it can to close drive assembly 4.
The driving assembly 4 comprises an electric telescopic rod 41, a first slide rail 42, a first slide block 43, a connecting rod 44, a first rack 45, a pushing plate 46, a rotating shaft 47, a full gear 48 and a sector gear 49, both sides all are equipped with electric telescopic handle 41 around the right part of base 1, both sides all are equipped with first slide rail 42 around base 1's the middle part, the slidingtype is equipped with first slider 43 between the first slide rail 42, be connected with connecting rod 44 between the flexible end of first slider 43 and both sides electric telescopic handle 41, the equal slidingtype in both sides is equipped with first rack 45 around base 1's the middle part, equal rotary type is connected with slurcam 46 between first rack 45 and the first slider 43 middle part, the equal rotary type in both sides is equipped with pivot 47 around base 1's the middle part, pivot 47's the equal key-type in middle part has full gear 48, full gear 48 and the meshing of first rack 45 of homonymy, the equal key-type of upside of pivot 47 has sector gear 49.
When needs splice the high density polyethylene pipe fitting, place the both sides of placing subassembly 5 with the high density polyethylene pipe fitting, then start electric telescopic handle 41, electric telescopic handle 41 just can drive first slider 43 through connecting rod 44 and move left, and then drive first rack 45 through catch plate 46 and move to the outside, and then make both sides all-gear 48 rotatory to opposite direction, and then drive pivot 47 and sector gear 49 and rotate, thereby it removes to drive to place subassembly 5, and then alright splice the high density polyethylene pipe fitting, then take out the high density polyethylene pipe fitting that the concatenation was accomplished, control electric telescopic handle 41 resets afterwards, and then make above-mentioned each part reset, then repeat above-mentioned operation, when all high density polyethylene pipe fittings all splice accomplish, it can to close electric telescopic handle 41.
Place subassembly 5 including horizontal pole 51, rack 52, mount 53 and second rack 54, all be connected with horizontal pole 51 between the left and right sides of two front and back frames 2, sliding type is connected with four racks 52 between two horizontal poles 51, equal rotary type is connected with mount 53 between two racks 52 of front side and between two racks 52 of rear side, all welded between two racks 52 of front side downside and between two racks 52 of rear side downside has second rack 54, two second racks 54 around with two sector gear 49 meshing around respectively.
When needs splice the high density polyethylene pipe fitting, place the high density polyethylene pipe fitting on the rack 52 that both sides are close respectively, then control mount 53 is rotatory, it is fixed with the high density polyethylene pipe fitting to make mount 53, start electric telescopic handle 41 afterwards, can make both sides sector gear 49 rotate, and then make both sides second rack 54 move to the inboard, and then drive rack 52 and mount 53 move to the inboard, and then make both sides high density polyethylene pipe fitting be close to each other, and then alright splice the high density polyethylene pipe fitting, then take out the high density polyethylene pipe fitting that the concatenation was accomplished, control electric telescopic handle 41 resets afterwards, and then make above-mentioned each part reset, then repeat above-mentioned operation, when all high density polyethylene pipe fittings all splice accomplish, close electric telescopic handle 41 can.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 4, 5, 6, 7 and 8, the melting device 6 further comprises a melting assembly 6, wherein the melting assembly 6 comprises a mounting frame 61 and a heating melter 62, the mounting frame 61 is fixedly connected to the left side of the base 1 through bolts, and the heating melter 62 is rotatably arranged on the upper side of the mounting frame 61.
When both sides high density polyethylene pipe fitting is close to each other, steerable heating melter 62 heats and rotates, make both sides high density polyethylene pipe fitting can with the contact of heating melter 62, and then make both sides high density polyethylene pipe fitting junction melt, control heating melter 62 is rotatory to reset afterwards, both sides high density polyethylene pipe fitting continues to be close to each other, thereby make both sides high density polyethylene pipe fitting splice, and then need not that the staff is manual to splice high density polyethylene pipe fitting, and then reduce staff's burden, the work efficiency is improved, then take out the high density polyethylene pipe fitting that the concatenation was accomplished, repeat above-mentioned operation afterwards, when all high density polyethylene pipe fittings all splice accomplish, control heating melter 62 no longer heats can.
The novel rack is characterized by further comprising a pushing assembly 7, wherein the pushing assembly 7 comprises a special-shaped plate 71, a pushing rod 72, a limiting block 73, a strip-shaped block 74 and a right-angle rod 75, the special-shaped plate 71 is arranged on the upper side of the support 3, the pushing rod 72 is rotatably connected to the left side of the fixing frame 53, the limiting block 73 is welded to the left side of the fixing frame 53, the limiting block 73 is matched with the pushing rod 72, the strip-shaped block 74 is slidably arranged on the special-shaped plate 71, the strip-shaped block 74 is rotatably connected with the pushing rod 72, and the right-angle rod 75 is welded to the upper side of the strip-shaped block 74.
When the two side fixing frames 53 move inwards, the pushing rods 72, the limiting blocks 73, the strip-shaped blocks 74 and the right-angle rods 75 are driven to move together, thereby the strip-shaped block 74 is matched with the special-shaped plate 71, the push rod 72, the limit block 73, the strip-shaped block 74 and the right-angle rod 75 move rightwards together, thereby pushing the fixing frame 53 to rotate, so that the fixing frame 53 fixes the high-density polyethylene pipe, further, the high-density polyethylene pipe fitting is fixed without manually controlling the fixing frame 53, the burden of workers is reduced, after the welding of the high-density polyethylene pipe fitting is finished, the strip-shaped block 74 is controlled to move upwards, so that the strip-shaped block 74 is separated from the special-shaped plate 71, and then the fixing frame 53 can be controlled to rotate and reset, so that the spliced high-density polyethylene pipe fitting can be taken out, and then the fixing frame 53 resets to drive the push rod 72, the limiting block 73, the strip-shaped block 74 and the right-angle rod 75 to move and reset together.
Still including swing subassembly 8, swing subassembly 8 is including second slide rail 81, second slider 82, first spring 83, heterotypic pole 84 and stay cord 85, both sides all are equipped with second slide rail 81 around the mounting bracket 61, slidingtype is equipped with second slider 82 between the second slide rail 81, all be connected with first spring 83 around the second slider 82 between both sides and two second slide rails 81 around and, heterotypic pole 84 is all welded to both sides around the upper portion of second slider 82, heterotypic pole 84 and strip type piece 74 cooperation, be connected with stay cord 85 between second slider 82 and the heating melter 62.
When the bar-shaped block 74 moves inwards, the bar-shaped block 74 contacts the special-shaped rod 84, the special-shaped rod 84 moves rightwards, the second sliding block 82 moves rightwards, the first spring 83 is compressed, the pull rope 85 is further enabled not to pull the heating melter 62 any more, the heating melter 62 rotates due to gravity, high-density polyethylene pipes on two sides are further enabled to contact and melt the heating melter 62, when the bar-shaped block 74 moves inwards continuously, the first spring 83 rebounds to drive the second sliding block 82 and the special-shaped rod 84 to move, the heating melter 62 is further pulled through the pull rope 85, the heating melter 62 is enabled to be rotated up and is not contacted with the high-density polyethylene pipes any more, and therefore workers do not need to control the heating melter 62 manually, and manpower is saved.
Still including rising subassembly 9, rising subassembly 9 is including swash plate 91, bracing piece 92 and wedge 93, and the interior left side of heterotypic board 71 all has swash plate 91 through the bolt rigid coupling, and swash plate 91 and the cooperation of right angle pole 75, and the bracing piece 92 has all been welded on the outer left side of heterotypic board 71, and the upside welding of bracing piece 92 has wedge 93, and wedge 93 cooperates with right angle pole 75.
When the right-angle rod 75 moves inwards together, the right-angle rod 75 is in contact with the inclined plate 91, so that the right-angle rod 75 moves upwards, the strip-shaped block 74 is separated from the special-shaped plate 71, and when the right-angle rod 75 and the strip-shaped block 74 move outwards to reset, the right-angle rod 75 is in contact with the wedge block 93, and the strip-shaped block 74 is matched with the special-shaped plate 71 again.
Still including spacing subassembly 10, spacing subassembly 10 is including deflector 101, barrier plate 102, second spring 103 and trapezoidal piece 104, and the right side of two middle racks 52 all is connected with deflector 101, all is equipped with barrier plate 102 on the deflector 101 with slidingtype, is connected with second spring 103 between barrier plate 102 and the deflector 101, and the upside of base 1 is connected with trapezoidal piece 104, and trapezoidal piece 104 cooperates with barrier plate 102.
When placing high density polyethylene pipe spare, the one side that will splice with high density polyethylene pipe spare contacts with baffle 102, and then can guarantee that high density polyethylene pipe spare is spliced, when rack 52 moves to the inboard, can make baffle 102 move to the inboard and contact with trapezoidal piece 104, and then make baffle 102 move to the right, second spring 103 is compressed, and then make baffle 102 no longer contact with high density polyethylene pipe spare, and then make high density polyethylene pipe spare splice successfully, when rack 52 moves and resets, make baffle 102 move and reset, when baffle 102 moves to not contacting with trapezoidal piece 104, second spring 103 kick-backs and drives baffle 102 and reset.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.

Claims (3)

1. The utility model provides a high density polyethylene pipe fitting tubular product splicing apparatus which characterized by, including:
a base (1);
the rack (2) is arranged on two sides of the base (1);
the bracket (3) is symmetrically arranged on the base (1);
the driving component (4) is arranged on the base (1);
the placing component (5) is arranged on the rack (2);
the drive assembly (4) comprises:
the electric telescopic rods (41) are arranged on two sides of the base (1);
the first sliding rails (42) are arranged on two sides of the base (1);
a first slide block (43) which is slidably mounted between the first slide rails (42);
the connecting rod (44) is arranged between the first sliding block (43) and the telescopic ends of the electric telescopic rods (41) at the two sides;
the first racks (45) are arranged on two sides of the base (1) in a sliding manner;
the pushing plate (46) is rotatably arranged between the first rack (45) and the first sliding block (43);
the rotating shafts (47) are rotatably arranged on two sides of the base (1);
the full gear (48) is arranged on the rotating shaft (47), and the full gear (48) is correspondingly meshed with the first rack (45);
a sector gear (49) mounted on the rotating shaft (47);
the placing component (5) comprises:
a cross bar (51) installed between both sides of the frame (2);
the placing racks (52), at least two placing racks (52) are arranged between the cross rods (51) in a sliding mode;
the fixed frame (53) is rotatably arranged between the two adjacent placing frames (52);
the second rack (54) is arranged between two adjacent placing racks (52), and the second rack (54) is correspondingly meshed with the sector gear (49);
still include melting subassembly (6), melt subassembly (6) including:
a mounting frame (61) mounted on the base (1);
the heating melter (62) is rotatably arranged on the mounting frame (61);
still including pushing away subassembly (7), pushing away subassembly (7) including:
the special-shaped plate (71) is arranged on the bracket (3);
the push rod (72) is rotatably arranged on the fixed frame (53);
the limiting block (73) is arranged on the fixed frame (53), and the limiting block (73) is matched with the pushing rod (72);
the strip-shaped block (74) is arranged on the special-shaped plate (71) in a sliding mode, and the strip-shaped block (74) is connected with the push rod (72) in a rotating mode;
a right-angle rod (75) mounted on the bar-shaped block (74);
still including swing subassembly (8), swing subassembly (8) including:
the second sliding rails (81) are arranged on two sides of the mounting rack (61);
a second sliding block (82) which is slidably arranged between the second sliding rails (81);
a first spring (83) mounted between the second slider (82) and the second slide rail (81);
the special-shaped rods (84) are arranged on two sides of the second sliding block (82), and the special-shaped rods (84) are matched with the strip-shaped block (74);
and a pull rope (85) installed between the second slider (82) and the heating melter (62).
2. The high density polyethylene pipe splicing device according to claim 1, further comprising a lifting member (9), wherein the lifting member (9) comprises:
the inclined plate (91) is arranged on the special-shaped plate (71), and the inclined plate (91) is matched with the right-angle rod (75);
a support rod (92) mounted on the special-shaped plate (71);
the wedge block (93) is arranged on the support rod (92), and the wedge block (93) is matched with the right-angle rod (75).
3. The high-density polyethylene pipe fitting and tubing splicing device according to claim 2, further comprising a limiting component (10), wherein the limiting component (10) comprises:
a guide plate (101) mounted on the placing frame (52);
a blocking plate (102) slidably mounted on the guide plate (101);
a second spring (103) installed between the stopper plate (102) and the guide plate (101);
the ladder-shaped block (104) is arranged on the upper side of the base (1) and connected with the ladder-shaped block (104), and the ladder-shaped block (104) is matched with the blocking plate (102).
CN202011143176.4A 2020-10-23 2020-10-23 High density polyethylene pipe fitting tubular product splicing apparatus Active CN112339280B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011143176.4A CN112339280B (en) 2020-10-23 2020-10-23 High density polyethylene pipe fitting tubular product splicing apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011143176.4A CN112339280B (en) 2020-10-23 2020-10-23 High density polyethylene pipe fitting tubular product splicing apparatus

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CN112339280A CN112339280A (en) 2021-02-09
CN112339280B true CN112339280B (en) 2022-09-02

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