CN111503416B - Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted - Google Patents

Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted Download PDF

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Publication number
CN111503416B
CN111503416B CN202010383051.2A CN202010383051A CN111503416B CN 111503416 B CN111503416 B CN 111503416B CN 202010383051 A CN202010383051 A CN 202010383051A CN 111503416 B CN111503416 B CN 111503416B
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CN
China
Prior art keywords
shaft
gear
dismounting
block
water pipe
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Expired - Fee Related
Application number
CN202010383051.2A
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Chinese (zh)
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CN111503416A (en
Inventor
郭江江
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Nanjing Lishui Hi Tech Industry Equity Investment Co Ltd
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Nanjing Lishui Hi Tech Industry Equity Investment Co Ltd
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Priority to CN202010383051.2A priority Critical patent/CN111503416B/en
Publication of CN111503416A publication Critical patent/CN111503416A/en
Application granted granted Critical
Publication of CN111503416B publication Critical patent/CN111503416B/en
Expired - Fee Related legal-status Critical Current
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L55/00Devices or appurtenances for use in, or in connection with, pipes or pipe systems
    • F16L55/10Means for stopping flow from or in pipes or hoses
    • F16L55/11Plugs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B27/00Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for
    • B25B27/14Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for for assembling objects other than by press fit or detaching same

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Gear Transmission (AREA)

Abstract

The invention discloses a water pipe dismounting device for preventing water from flowing disorderly when a water pipe is dismounted, which comprises a machine body, wherein a clamping cavity is arranged in the machine body, the clamping cavity is sleeved on a water pipe to be dismounted and a fixed water pipe which are connected together in a threaded manner, a dismounting cavity is arranged on the left side of the clamping cavity, and a dismounting mechanism is arranged in the dismounting cavity.

Description

Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted
Technical Field
The invention relates to the technical field of pipelines, in particular to a water pipe dismounting device for preventing water from flowing disorderly when a water pipe is dismounted.
Background
The water pipe is the key route among the water supply system, there is the water pipe in the place that needs the water, the water pipe that is everywhere always inevitable goes wrong, no matter be outside impact or inside pressure, all can cause the damage to the water pipe, need in time repair the water pipe that damages, thereby otherwise can let a large amount of water reveal and cause the waste, when dismantling the water pipe that damages, can close the valve at both ends, but still there is unable exhaust water between the valve, when dismantling the water pipe, these water can gush out and go out, not only can cause the waste, still can influence workman's operation.
Disclosure of Invention
Aiming at the technical defects, the invention provides the water pipe dismounting device for preventing the water from flowing disorderly when the water pipe is dismounted, and the defects can be overcome.
The invention relates to a water pipe dismounting device for preventing water from flowing disorderly when a water pipe is dismounted, which comprises a machine body, wherein a clamping cavity is arranged in the machine body, the clamping cavity is sleeved on a water pipe to be dismounted and a fixed water pipe which are connected together through threads, a dismounting cavity is arranged at the left side of the clamping cavity, a dismounting mechanism is arranged in the dismounting cavity, the dismounting mechanism comprises a U-shaped spline sleeve rotatably arranged in the dismounting cavity, a U-shaped spline block is arranged in the U-shaped spline sleeve through a spline, two dismounting spline sleeves which are symmetrical up and down are rotatably arranged in the U-shaped spline block, a cam is fixedly arranged on each dismounting spline sleeve, the cam can push a dismounting clamp sliding block which is slidably arranged in the U-shaped spline block up and down to slide, a dismounting clamping block is fixedly arranged on the inner side of each dismounting spline sleeve, and a dismounting spline shaft is arranged in each dismounting spline, the dismounting spline shaft is rotatably arranged in the U-shaped rotating block, the U-shaped rotating block is rotatably arranged at the right side of the dismounting cavity, a reset spring is arranged between the U-shaped rotating block and the U-shaped spline block, a dismounting gear is fixedly arranged on the dismounting spline shaft and is meshed with an inner gear ring fixedly arranged in the outer wall of the dismounting cavity, a blocking cavity is arranged at the rear of the middle part of the clamping cavity, a blocking mechanism is arranged in the blocking cavity and comprises a water blocking mounting block which is vertically and slidably arranged in the blocking cavity, a transmission gear is rotatably arranged in the water blocking mounting block and is vertically and respectively meshed with a dismounting water blocking gear and a fixed water blocking gear, the dismounting water blocking gear and the fixed water blocking gear are respectively and fixedly arranged on a dismounting threaded sleeve and a fixed threaded sleeve, and the dismounting threaded sleeve and the fixed threaded sleeve are both rotatably arranged in the water blocking mounting block, dismantle the thread bush with install respectively the screw thread in the fixed thread bush and dismantle threaded rod and fixed threaded rod, dismantle the threaded rod with fixed threaded rod installs respectively on dismantling stifled water piece and fixed stifled water piece, dismantle stifled water piece with the equal horizontal slidable mounting of fixed stifled water piece in the stifled water installation piece, block up the anterior horizontal slidable mounting in chamber and have bilateral symmetry's waterproof cover clamp splice, the waterproof cover clamp splice outside be provided with the thrust spring that the organism is connected, the side is provided with the guide arm around the waterproof cover clamp splice, slidable mounting has waterproof cover slider on the guide arm, waterproof cover slider with be provided with waterproof flexible jacket between the waterproof cover clamp splice, guide arm lower extreme fixed mounting is on driven slider, driven slider horizontal slidable mounting in the centre gripping chamber.
Advantageously, a fixing mechanism capable of clamping the fixed water pipe to fix the machine body to the fixed water pipe is arranged in the upper and lower walls of the right portion of the clamping cavity, the fixing mechanism comprises a transmission shaft and a driving shaft which are rotatably installed in the upper and lower walls of the clamping cavity, an upper fixed gear and a lower fixed gear which are vertically symmetrical are fixedly installed on the transmission shaft and the driving shaft respectively, an upper clamp rack and a lower clamp rack are respectively connected to the rear sides of the upper fixed gear and the lower fixed gear in a meshed mode, the upper clamp rack and the lower clamp rack are both installed in the machine body in a vertically sliding mode, and an upper fixed clamping block and a lower fixed clamping block are installed on the lower side of the upper clamp rack and the upper side of the lower clamp rack respectively.
Beneficially, a motor is arranged on the upper side of the machine body, a power shaft is connected to the left side of the motor, a power belt wheel is fixedly mounted on the power shaft, the power belt wheel is connected with a driven belt wheel through a driving belt, the driven belt wheel is fixedly mounted on the transmission shaft, a power bevel gear is fixedly mounted on the power shaft, a steering bevel gear is engaged and connected to the front side of the power bevel gear, the steering bevel gear is fixedly mounted on a transition shaft, the transition shaft is rotatably mounted in the machine body, a transition bevel gear is fixedly mounted on the transition shaft, a transmission bevel gear is engaged and connected to the lower side of the transition bevel gear, the transmission bevel gear is fixedly mounted on a steering shaft, the steering shaft is rotatably mounted in the machine body, a progressive bevel gear is fixedly mounted on the steering shaft, and a driven bevel gear is engaged, the driven bevel gear is fixedly installed on a connecting shaft, the connecting shaft is rotatably installed in the machine body, a driving bevel gear is fixedly installed on the connecting shaft, the right side of the driving bevel gear is connected with an output bevel gear in a meshed mode, the output bevel gear is fixedly installed on a driven shaft, and the driven shaft is rotatably installed on the lower portion of the machine body.
Advantageously, the dismounting mechanism further comprises a U-shaped outer gear ring fixedly mounted on the U-shaped spline sleeve, the upper side and the lower side of the U-shaped outer gear ring are respectively engaged with an upper dismounting gear and a lower dismounting gear, and the upper dismounting gear and the lower dismounting gear are respectively fixedly mounted on the power shaft and the driven shaft.
Beneficially, the blocking mechanism further comprises a blocking shaft rotatably mounted in the lower wall of the blocking cavity, a pressing gear is fixedly mounted on the blocking shaft and can be meshed with the lower side of the water blocking mounting block, a driven pulley is further fixedly mounted on the blocking shaft and is connected with a driving pulley and a linking bevel gear through a transmission belt, the linking bevel gear is fixedly mounted on the driving shaft, the driving pulley is fixedly mounted on the driven shaft, and a driving gear capable of being meshed with the transmission gear is fixedly mounted on the transmission shaft.
The beneficial effects are that: this equipment can be used to carry out the dismantlement of water pipe in the place of some people's inconvenient operation, use the junction that only needs to adorn two water-saving pipes with equipment, just can separate two water-saving pipes, so that dismantle, simultaneously when the water pipe separation, water blocking mechanism in the equipment can not flow too much in the water pipe yet, sheathe waterproof soft cover on the mouth of two sections water pipes rapidly, then fixed with the chock, can prevent more rivers from flowing, avoid whose waste.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic view illustrating a structure of a water pipe dismantling device for preventing a turbulent flow of water when dismantling a water pipe according to the present invention;
FIG. 2 is a schematic view of a partially enlarged mechanism "A" in FIG. 1;
FIG. 3 is a schematic sectional view taken along the direction "B-B" in FIG. 1;
FIG. 4 is a schematic sectional view of the structure of FIG. 1 taken along the direction of "C-C";
FIG. 5 is a schematic sectional view taken along the direction "D-D" in FIG. 1;
FIG. 6 is a schematic sectional view taken along the direction "E-E" in FIG. 1;
FIG. 7 is a schematic sectional view of the structure of FIG. 6 taken along the direction "F-F";
fig. 8 is a schematic view of a partially enlarged mechanism "G" in fig. 6.
Detailed Description
All of the features disclosed in this specification, or all of the steps in any method or process so disclosed, may be combined in any combination, except combinations of features and/or steps that are mutually exclusive.
The invention will now be described in detail with reference to fig. 1-8, for the sake of convenience, the orientations described hereinafter being defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The invention relates to a water pipe dismounting device for preventing water from flowing disorderly when a water pipe is dismounted, which comprises a machine body 10, wherein a clamping cavity 11 is arranged in the machine body 10, the clamping cavity 11 is sleeved on a water pipe 77 to be dismounted and a fixed water pipe 78 which are connected together through threads, a dismounting cavity 12 is arranged at the left side of the clamping cavity 11, a dismounting mechanism capable of clamping and unscrewing the water pipe 77 to be dismounted is arranged in the dismounting cavity 12, the dismounting mechanism comprises a U-shaped spline sleeve 20 rotatably arranged in the dismounting cavity 12, a U-shaped spline block 21 is arranged on a spline in the U-shaped spline sleeve 20, two dismounting spline sleeves 22 which are vertically symmetrical are rotatably arranged in the U-shaped spline block 21, a cam 23 is fixedly arranged on each dismounting spline sleeve 22, the cam 23 can push a dismounting clamp sliding block 24 which is vertically slidably arranged in the U-shaped spline block 21 to slide, a dismounting clamp block 25 is fixedly arranged on the inner side of the dismounting clamp sliding block 24, the dismounting spline shaft 26 is mounted on the spline in the dismounting spline housing 22, the dismounting spline shaft 26 is rotatably mounted in a U-shaped rotating block 27, the U-shaped rotating block 27 is rotatably mounted on the right side of the dismounting cavity 12, a reset spring 28 is arranged between the U-shaped rotating block 27 and the U-shaped spline block 21, a dismounting gear 29 is fixedly mounted on the dismounting spline shaft 26, the dismounting gear 29 is meshed with an inner gear ring 30 fixedly mounted on the outer wall of the dismounting cavity 12, a blocking cavity 15 is arranged behind the middle of the clamping cavity 11, a blocking mechanism capable of blocking the water outlet of the water pipe 77 to be dismounted and the water outlet of the fixed water pipe 78 after the water pipe 77 to be dismounted is arranged in the blocking cavity 15, the blocking mechanism comprises a water blocking mounting block 56 which is vertically and slidably mounted in the blocking cavity 15, and a transmission gear 57 is rotatably mounted in the water blocking mounting block 56, the transmission gear 57 is vertically meshed with a detachable water blocking gear 58 and a fixed water blocking gear 62 respectively, the detachable water blocking gear 58 and the fixed water blocking gear 62 are fixedly installed on a detachable threaded sleeve 59 and a fixed threaded sleeve 63 respectively, the detachable threaded sleeve 59 and the fixed threaded sleeve 63 are rotatably installed in the water blocking installation block 56 respectively, a detachable threaded rod 60 and a fixed threaded rod 64 are respectively installed in the detachable threaded sleeve 59 and the fixed threaded sleeve 63 in a threaded manner, the detachable threaded rod 60 and the fixed threaded rod 64 are respectively installed on a detachable water blocking block 61 and a fixed water blocking block 65, the detachable water blocking block 61 and the fixed water blocking block 65 are respectively installed in the water blocking installation block 56 in a left-right sliding manner, bilaterally symmetrical waterproof sleeve clamping blocks 67 are installed on the front portion of the blocking cavity 15 in a left-right sliding manner, and a thrust spring 79 connected with the engine body 10 is arranged on the outer side of the waterproof sleeve clamping block 67, the front side and the rear side of the waterproof jacket clamp block 67 are provided with guide rods 68, a waterproof jacket slide block 70 is arranged on the guide rods 68 in a sliding manner, a waterproof soft jacket 71 is arranged between the waterproof jacket slide block 70 and the waterproof jacket clamp block 67, the lower end of the guide rod 68 is fixedly arranged on a driven slide block 69, and the driven slide block 69 is arranged in the clamping cavity 11 in a left-right sliding manner.
Advantageously, a fixing mechanism capable of clamping the fixed water pipe 78 to fix the machine body 10 to the fixed water pipe 78 is arranged in the upper and lower walls of the right portion of the clamping chamber 11, the fixing mechanism comprises a transmission shaft 50 and a driving shaft 47 rotatably mounted in the upper and lower walls of the clamping chamber 11, an upper fixed gear 51 and a lower fixed gear 73 which are vertically symmetrical are fixedly mounted on the transmission shaft 50 and the driving shaft 47 respectively, an upper clamp rack 52 and a lower clamp rack 74 are respectively connected to the rear sides of the upper fixed gear 51 and the lower fixed gear 73 in a meshing manner, the upper clamp rack 52 and the lower clamp rack 74 are both mounted in the machine body 10 in a vertically sliding manner, and an upper fixed clamp block 53 and a lower fixed clamp block 75 are respectively mounted on the lower side of the upper clamp rack 52 and the upper side of the lower clamp rack 74.
Beneficially, the upper side of the machine body 10 is provided with a motor 16, the left side of the motor 16 is connected with a power shaft 17, the power shaft 17 is fixedly provided with a power belt pulley 48, the power belt pulley 48 is connected with a driven belt pulley 76 through a driving belt 49, the driven belt pulley 76 is fixedly arranged on the transmission shaft 50, the power shaft 17 is fixedly provided with a power bevel gear 31, the front side of the power bevel gear 31 is in meshing connection with a steering bevel gear 32, the steering bevel gear 32 is fixedly arranged on a transition shaft 33, the transition shaft 33 is rotatably arranged in the machine body 10, the transition shaft 33 is fixedly provided with a transition bevel gear 34, the lower side of the transition bevel gear 34 is in meshing connection with a transmission bevel gear 35, the transmission bevel gear 35 is fixedly arranged on a steering shaft 36, the steering shaft 36 is rotatably arranged in the machine body 10, and the steering shaft 36 is, the rear side of the progressive bevel gear 37 is engaged and connected with a driven bevel gear 38, the driven bevel gear 38 is fixedly installed on an engagement shaft 39, the engagement shaft 39 is rotatably installed in the machine body 10, a driving bevel gear 40 is fixedly installed on the engagement shaft 39, the right side of the driving bevel gear 40 is engaged and connected with an output bevel gear 41, the output bevel gear 41 is fixedly installed on a driven shaft 42, and the driven shaft 42 is rotatably installed at the lower part of the machine body 10.
Advantageously, the dismounting mechanism further comprises a U-shaped external gear ring 19 fixedly mounted on the U-shaped spline sleeve 20, the upper side and the lower side of the U-shaped external gear ring 19 are respectively engaged with an upper dismounting gear 18 and a lower dismounting gear 72, and the upper dismounting gear 18 and the lower dismounting gear 72 are respectively fixedly mounted on the power shaft 17 and the driven shaft 42.
Advantageously, the plugging mechanism further comprises a plugging shaft 54 rotatably mounted in the lower wall of the plugging chamber 15, a pressing gear 55 is fixedly mounted on the plugging shaft 54, the pressing gear 55 can be engaged with the lower side of the water plugging mounting block 56, a driven pulley 46 is further fixedly mounted on the plugging shaft 54, the driven pulley 46 is connected with a driving pulley 43 and an engaging bevel gear 45 through a transmission belt 44, the engaging bevel gear 45 is fixedly mounted on the driving shaft 47, the driving pulley 43 is fixedly mounted on the driven shaft 42, and a driving gear 66 capable of being engaged with the transmission gear 57 is fixedly mounted on the transmission shaft 50.
In an initial state, the transmission gear 57 is meshed with the driving gear 66, the water blocking mounting block 56 is positioned at the foremost end, the waterproof sleeve sliding block 70 is positioned at the foremost end, the detachable water blocking block 61 and the fixed water blocking block 65 are positioned in the water blocking mounting block 56, the thrust spring 79 is in a stretching state, and the reset spring 28 is in a normal state; at the start of operation, the motor 16 is started to rotate the power shaft 17, so that the transition shaft 33 is rotated by the meshing transmission of the power bevel gear 31 and the steering bevel gear 32, so that the steering shaft 36 is rotated by the meshing transmission of the transition bevel gear 34 and the driving bevel gear 35, so that the engaging shaft 39 is rotated by the meshing transmission of the progressive bevel gear 37 and the driven bevel gear 38, so that the driven shaft 42 is rotated by the meshing transmission of the driving bevel gear 40 and the output bevel gear 41, so that the power shaft 17 rotates the driving shaft 50 by the belt transmission of the power pulley 48 and the driven pulley 76, so that the upper fixed clamp block 53 is slid by the meshing transmission of the upper fixed gear 51 and the upper clamp rack 52, the driven shaft 42 rotates the driving shaft 47 and the blocking shaft 54 by the belt transmission of the driving pulley 43 and the engaging bevel gear 45 and the driven pulley 46, so that the lower fixed clamp 75 is slid by the meshing transmission of the lower fixed gear 73 and the lower clamp, the upper fixing clamp block 53 and the lower fixing clamp block 75 slide to clamp the fixing water pipe 78, so that the machine body 10 is fixed on the fixing water pipe 78, meanwhile, the power shaft 17 and the driven shaft 42 drive the U-shaped spline sleeve 20 to rotate through the meshing transmission of the upper dismounting gear 18 and the U-shaped outer toothed ring 19 and the meshing transmission of the lower dismounting gear 72 and the U-shaped outer toothed ring 19 respectively, so that the U-shaped spline block 21 is driven to rotate through the spline connection with the U-shaped spline block 21, so that the dismounting spline shaft 26 is driven to rotate around the water pipe 77 to be dismounted, so that the U-shaped rotating block 27 is driven to rotate around the water pipe 77 to be dismounted, so that the dismounting spline shaft 26 is driven to rotate through the meshing transmission of the dismounting gear 29 and the inner toothed ring 30, so that the dismounting spline sleeve 22 is driven to rotate through the spline connection with the dismounting spline sleeve 22, so that the cam 23 is driven to rotate, so that the dismounting clamp slider 24 intermittently slides to, the water pipe 77 to be disassembled rotates and moves leftwards, the disassembling spline shaft 26 moves leftwards with the water pipe 77 to be disassembled for a certain distance and then is loosened, the water pipe 77 to be disassembled slides rightwards to reset under the action of the reset spring 28, then the water pipe 77 to be disassembled is clamped again, when the water pipe 77 to be disassembled slides leftwards away from the fixed water pipe 78, the waterproof sleeve sliding block 70 slides downwards to drive the waterproof soft sleeve 71 to open, the two waterproof soft sleeves 71 are respectively coated on the opening of the water pipe 77 to be disassembled and the opening of the fixed water pipe 78, when the waterproof sleeve sliding block 70 slides downwards to the lowest end, the two waterproof sleeve clamping blocks 67 slide leftwards and rightwards under the action of the thrust spring 79, then the blocking shaft 54 drives the water blocking mounting block 56 to slide downwards through the meshing transmission of the pressing gear 55 and the water blocking mounting block 56, so that the transmission gear 57 is meshed with the driving gear 66, so that the transmission shaft 50 drives the transmission gear 57 to rotate through the meshing transmission of the driving gear 66 and the transmission gear The sleeve 63 rotates to drive the dismounting threaded rod 60 to slide leftwards, and the fixed threaded rod 64 to slide rightwards, so that the dismounting water plugging block 61 and the fixed water plugging block 65 are respectively sleeved on the water pipe 77 to be dismounted and the fixed water pipe 78 to seal the openings.
The beneficial effects are that: this equipment can be used to carry out the dismantlement of water pipe in the place of some people's inconvenient operation, use the junction that only needs to adorn two water-saving pipes with equipment, just can separate two water-saving pipes, so that dismantle, simultaneously when the water pipe separation, water blocking mechanism in the equipment can not flow too much in the water pipe yet, sheathe waterproof soft cover on the mouth of two sections water pipes rapidly, then fixed with the chock, can prevent more rivers from flowing, avoid whose waste.
The above description is only an embodiment of the invention, but the scope of the invention is not limited thereto, and any changes or substitutions that are not thought of through the inventive work should be included in the scope of the invention. Therefore, the protection scope of the invention should be subject to the protection scope defined by the claims.

Claims (5)

1. The utility model provides a prevent water pipe dismantling equipment of water sinuous flow when dismantling the water pipe, includes the organism, its characterized in that: a clamping cavity is arranged in the machine body, the clamping cavity is sleeved on a water pipe to be disassembled and a fixed water pipe which are connected together through threads, a disassembling cavity is arranged on the left side of the clamping cavity, and a disassembling mechanism is arranged in the disassembling cavity;
the disassembling mechanism comprises a U-shaped spline sleeve rotatably arranged in the disassembling cavity, a U-shaped spline block is arranged on a spline in the U-shaped spline sleeve, two detachable spline sleeves which are symmetrical up and down are rotatably arranged in the U-shaped spline block, a cam is fixedly arranged on the detachable spline sleeves, the cam can push a dismounting clamp sliding block which is arranged in the U-shaped spline block in a vertical sliding mode to slide, the inner side of the disassembly fixture slide block is fixedly provided with a disassembly clamping block, a disassembly spline shaft is arranged on a spline in the disassembly spline housing, the dismounting spline shaft is rotatably arranged in the U-shaped rotating block, the U-shaped rotating block is rotatably arranged on the right side of the dismounting cavity, a reset spring is arranged between the U-shaped rotating block and the U-shaped spline block, a dismounting gear is fixedly mounted on the dismounting spline shaft, and the dismounting gear is meshed with an inner gear ring fixedly mounted in the outer wall of the dismounting cavity;
a blocking cavity is arranged at the rear of the middle part of the clamping cavity, a blocking mechanism is arranged in the blocking cavity and comprises a water blocking mounting block which is arranged in the blocking cavity in a vertical sliding mode, a transmission gear is rotatably mounted in the water blocking mounting block and is vertically meshed with a dismounting water blocking gear and a fixed water blocking gear respectively, the dismounting water blocking gear and the fixed water blocking gear are fixedly mounted on a dismounting threaded sleeve and a fixed threaded sleeve respectively, the dismounting threaded sleeve and the fixed threaded sleeve are rotatably mounted in the water blocking mounting block respectively, a dismounting threaded rod and a fixed threaded rod are respectively and threadedly mounted in the dismounting threaded sleeve and the fixed threaded sleeve respectively, the dismounting threaded rod and the fixed threaded rod are respectively mounted on the dismounting water blocking block and the fixed water blocking block, and the dismounting water blocking block and the fixed water blocking block are respectively and horizontally slidably mounted in the water blocking mounting block, the utility model discloses a waterproof jacket clamp piece, including the waterproof jacket clamp piece, block up the anterior horizontal slidable mounting in chamber and have bilateral symmetry's waterproof jacket clamp piece, the waterproof jacket clamp piece outside be provided with the thrust spring that the organism is connected, the side is provided with the guide arm around the waterproof jacket clamp piece, slidable mounting has waterproof jacket slider on the guide arm, waterproof jacket slider with be provided with waterproof flexible cover between the waterproof jacket clamp piece, guide arm lower extreme fixed mounting is on driven slider, driven slider horizontal slidable mounting in the centre gripping chamber.
2. A water pipe dismantling device as claimed in claim 1, wherein: the machine body is fixed on the fixed water pipe by clamping the fixed water pipe through a fixing mechanism arranged in the upper wall and the lower wall of the right part of the clamping cavity, the fixing mechanism comprises a transmission shaft and a driving shaft which are rotatably arranged in the upper wall and the lower wall of the clamping cavity, an upper fixed gear and a lower fixed gear which are symmetrical up and down are respectively and fixedly arranged on the transmission shaft and the driving shaft, an upper clamp rack and a lower clamp rack are respectively connected to the rear sides of the upper fixed gear and the lower fixed gear in a meshed mode, the upper clamp rack and the lower clamp rack are both arranged in the machine body in a vertically sliding mode, and an upper fixing clamping block and a lower fixing clamping block are respectively arranged on the lower side of the upper clamp rack and the upper side of the.
3. A water pipe dismantling device for preventing water from flowing around when dismantling a water pipe as set forth in claim 2, wherein: the upper side of the machine body is provided with a motor, the left side of the motor is connected with a power shaft, the power shaft is fixedly provided with a power belt pulley, the power belt pulley is connected with a driven belt pulley through a driving belt, the driven belt pulley is fixedly arranged on the transmission shaft, the power shaft is fixedly provided with a power bevel gear, the front side of the power bevel gear is engaged and connected with a steering bevel gear, the steering bevel gear is fixedly arranged on a transition shaft, the transition shaft is rotatably arranged in the machine body, the transition shaft is fixedly provided with a transition bevel gear, the lower side of the transition bevel gear is engaged and connected with a transmission bevel gear, the transmission bevel gear is fixedly arranged on a steering shaft, the steering shaft is rotatably arranged in the machine body, the steering shaft is fixedly provided with a progressive bevel gear, the rear side of the progressive bevel gear is engaged and connected with a driven bevel gear, the connecting shaft is rotatably arranged in the machine body, a driving bevel gear is fixedly arranged on the connecting shaft, an output bevel gear is connected to the right side of the driving bevel gear in a meshed mode, the output bevel gear is fixedly arranged on a driven shaft, and the driven shaft is rotatably arranged on the lower portion of the machine body.
4. A water pipe dismantling device as claimed in claim 3, wherein the water pipe dismantling device comprises: the dismounting mechanism further comprises a U-shaped outer gear ring fixedly mounted on the U-shaped spline sleeve, the upper side and the lower side of the U-shaped outer gear ring are respectively meshed with the upper dismounting gear and the lower dismounting gear, and the upper dismounting gear and the lower dismounting gear are respectively and fixedly mounted on the power shaft and the driven shaft.
5. A water pipe dismantling device for preventing water turbulence in dismantling a water pipe as set forth in claim 4, wherein: the blocking mechanism further comprises a blocking shaft which is rotatably installed in the lower wall of the blocking cavity, a pressing gear is fixedly installed on the blocking shaft and can be meshed with the lower side of the water blocking installation block, a driven belt wheel is fixedly installed on the blocking shaft and is connected with a driving belt wheel and a linking bevel gear through a transmission belt, the linking bevel gear is fixedly installed on the driving shaft, the driving belt wheel is fixedly installed on the driven shaft, and a driving gear which can be meshed with the transmission gear is fixedly installed on the transmission shaft.
CN202010383051.2A 2020-05-08 2020-05-08 Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted Expired - Fee Related CN111503416B (en)

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CN202010383051.2A CN111503416B (en) 2020-05-08 2020-05-08 Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted

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CN202010383051.2A CN111503416B (en) 2020-05-08 2020-05-08 Water pipe dismounting device for preventing water from flowing disorderly when water pipe is dismounted

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CN111503416B true CN111503416B (en) 2021-05-25

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