CN220050508U - Pipeline fire receiving hopper - Google Patents

Pipeline fire receiving hopper Download PDF

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Publication number
CN220050508U
CN220050508U CN202320118235.5U CN202320118235U CN220050508U CN 220050508 U CN220050508 U CN 220050508U CN 202320118235 U CN202320118235 U CN 202320118235U CN 220050508 U CN220050508 U CN 220050508U
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China
Prior art keywords
base
sleeve
pipe
pipeline
welded
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CN202320118235.5U
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Chinese (zh)
Inventor
杨灿
张洪川
潘乐勋
李艺
杨镜明
龙文瀚
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China Construction Eighth Engineering Division Co Ltd
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China Construction Eighth Engineering Division Co Ltd
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Priority to CN202320118235.5U priority Critical patent/CN220050508U/en
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Abstract

The utility model relates to a pipeline fire receiving hopper, which comprises a base, a sleeve and a sleeve, wherein the base is used for clamping the lower part of a position to be welded of a pipeline to be welded and used for receiving sparks, the base comprises a groove filled with water, the sleeve is used for guiding welding sparks to the groove, and the sleeve is sleeved on the pipeline to be welded and can be detachably arranged on the base. The welding slag is directly received through the combination of the sleeve and the base, and the technical problem that a large-diameter opening fire receiving hopper is not easy to set in welding construction due to smaller spacing of pipelines in a pipe well in the prior art is solved. The device of the device can be used for containing water and rapidly cooling welding slag, so that the safety of the construction of the pipeline in the pipe well is improved, the device is detachably mounted, and the turnover capacity is increased.

Description

Pipeline fire receiving hopper
Technical Field
The utility model relates to the field of pipeline construction, in particular to a pipeline fire receiving hopper.
Background
In the pipeline construction process, there is welding operation often, and the electric spark that produces in the welding process has high temperature, drops on the personnel and can lead to scalding, drops on inflammable object and can have life and property loss, and when the construction under the condition that the pipeline is more in the pipe shaft construction, the minimum interval between the pipeline often is 10 cm to 20 cm, this less interval, be difficult for setting up the large diameter open-ended of system and fight by fire.
Disclosure of Invention
Aiming at the defects in the prior art, the utility model provides a pipeline fire-catching bucket, which solves the technical problem that the pipeline in the pipe well in the prior art is difficult to be provided with a large-diameter opening fire-catching bucket during welding construction due to smaller space.
The utility model relates to a pipeline fire receiving hopper, which comprises a base, a sleeve and a sleeve, wherein the base is used for clamping a pipeline to be welded below a position to be welded and used for receiving sparks, the base comprises a groove filled with water, the sleeve is used for guiding welding sparks to the groove, and the sleeve is sleeved on the pipeline to be welded and can be detachably arranged on the base.
The utility model further improves the pipeline fire-catching bucket, wherein at least three limit rods are vertically arranged on the base at intervals, and all the limit rods are blocked on the periphery of the sleeve in the state that the sleeve is arranged on the base.
The utility model relates to a pipeline fire-catching bucket, which is further improved in that the base comprises a fixing piece for clamping on a pipeline and an annular bottom plate provided with the groove, wherein the annular bottom plate is sleeved on the pipeline to be welded and is erected at the top end of the fixing piece.
The utility model further improves the pipeline fire-catching bucket in that the fixing piece is a binding belt or a clamp.
The utility model further improves the pipeline fire receiving hopper in that the inner side of the fixing piece is provided with an anti-skid block.
The utility model further improves the pipeline fire-catching hopper in that the annular bottom plate is divided into at least two parts along the circumferential direction, and the adjacent two parts are detachably butted.
The utility model further improves the pipeline fire-catching hopper in that the sleeve is divided into at least two parts along the circumferential direction, and the adjacent two parts are detachably butted.
The utility model further improves the pipeline fire receiving hopper, which also comprises a gap shielding ring sleeved on the pipeline to be welded, wherein the gap shielding ring is positioned inside the sleeve and is shielded above a gap between the base and the pipeline to be welded.
The utility model further improves the pipeline fire receiving hopper in that the base is provided with a water adding port communicated with the groove.
The utility model further improves the pipeline fire receiving hopper in that the base is provided with an observation window for observing the water level in the groove, and the observation window is made of heat-resistant transparent materials.
Compared with the prior art, the utility model has positive and obvious effects. The welding slag is directly received through the combination of the sleeve and the base, and the technical problem that a large-diameter opening fire receiving hopper is not easy to set in welding construction due to smaller spacing of pipelines in a pipe well in the prior art is solved. The device of the device can be used for containing water and rapidly cooling welding slag, so that the safety of the construction of the pipeline in the pipe well is improved, the device is detachably mounted, and the turnover capacity is increased.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for the description of the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some embodiments of the present utility model, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic view of the overall structure of the pipe fire-catching bucket of the present utility model.
Fig. 2 is a schematic view of a base structure of the pipe fire receiving hopper according to the present utility model.
Fig. 3 is a schematic structural view of a gap shielding ring of the pipe fire receiving hopper.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 and 2, the utility model provides a pipe 1 fire receiving hopper, which comprises a base, a sleeve 2 and a sleeve 2, wherein the base is used for clamping the pipe 1 to be welded below a position to be welded and used for receiving sparks, the base comprises a groove for containing water, the sleeve 2 is used for guiding welding sparks to the groove, and the sleeve 2 is sleeved on the pipe 1 to be welded and is detachably arranged on the base. In this embodiment, the sleeve 2 is cylindrical, the sleeve 2 is made of a steel plate with a certain thickness, and the upper end of the sleeve 2 is located at a position slightly lower than the welding seam of the pipeline 1, so that the electric spark sprayed by welding falls into the sleeve 2, and potential safety hazards caused by electric spark falling into a pipe well are avoided. The device is made of light materials, and when the temperature of welding slag is too high, the sleeve 2 and the base can be covered with a layer of flame-retardant and high-temperature-resistant material, such as asbestos, ceramic and the like.
Preferably, at least three limiting rods are vertically arranged on the base at intervals, and all limiting rods are blocked on the periphery of the sleeve 2 in the state that the sleeve 2 is mounted on the base. In this embodiment, the limiting rod includes two types, one of which is a single rod type, the other is a double rod type, which is blocked at the outer side of the sleeve 2, so that the sleeve 2 is not easy to shift during use, and further, the two limiting rods are arranged on the base at intervals.
Preferably, the base comprises a fixing piece 4 for clamping on a pipeline and an annular bottom plate 3 provided with the groove, wherein the annular bottom plate 3 is sleeved on the pipeline 1 to be welded and is erected on the top end of the fixing piece 4. In this embodiment, the inner ring of the annular bottom plate 3 is annular, the outer periphery of the annular bottom plate 3 is rectangular, and the width of the annular bottom plate and the diameter of the sleeve are smaller than the distance between adjacent pipes, so that the annular bottom plate 3 is conveniently mounted on the pipe to be welded. The edge of the annular bottom plate 3 is also provided with a plurality of reserved hole sites 7 for fixing the sleeve 2, so that the sleeve 2 with different diameters can be selected according to the actual requirements on site, and when the sleeve 2 with larger diameter is selected, the sleeve can be arranged on the reserved hole sites 7, and if the reserved hole sites 7 are not needed, the sleeve can be cut off.
Preferably, the fixing member 4 is a binding belt or a clip. When this mounting 4 is the ligature area, this ligature area quantity should be many, and this ligature area needs to have certain width, is equipped with the draw-in groove that supplies this ligature area card to go into on non-slipping spur 5 to guarantee difficult displacement between ligature area and the non-slipping spur 5.
Preferably, the inside of the fixing member 4 is provided with a non-slip block 5. The non-slip block 5 in this embodiment is arc rectangular block, the radian of this non-slip block 5 is unanimous with the outer surface radian of treating welded pipe 1, and the thickness of this non-slip block 5 is greater than the thickness of sleeve 2, and quantity is two, and two non-slip blocks 5 set up relatively, and this non-slip block 5 is made for rubber materials to guarantee that non-slip block 5 has certain elasticity and hardness, nonflammability.
Preferably, the annular bottom plate 3 is divided into at least two parts along the circumferential direction, and the adjacent two parts are detachably abutted. Groove units are arranged on each part of annular bottom plate 3, and all groove units on the annular bottom plate 3 are matched with the grooves in the cross section of the sleeve. The base comprises a first half side and a second half side, the first half side and the second half side are respectively provided with the groove, the first half side is provided with a plug-in component, and the second half side is provided with a socket component for the plug-in component to be plugged in. The butt joint edge of the first half side and the second half side is provided with two groups of first lug plates which are mutually butted, the two groups of first lug plates are mutually overlapped, the two groups of first lug plates are respectively provided with a corresponding connecting hole, and when the two groups of first lug plates are overlapped, the two connecting holes can be penetrated through the screw rod and fixed by utilizing the nuts. The inner diameter of the base should be slightly larger than the outer diameter of the pipe 1 to be welded.
Preferably, the sleeve is divided into at least two parts along the circumferential direction, and the adjacent two parts are detachably butted. The sleeve 2 comprises a first half cylinder and a second half cylinder, and the first half cylinder and the second half cylinder are respectively provided with a connecting lug plate for mutual butt joint. The two side edges of the first half cylinder and the second half cylinder are respectively extended with a second lug plate, a plurality of fixing holes are formed in the second lug plates along the length direction of the sleeve 2, and when the second lug plates are relatively overlapped, the butt joint installation of the first half cylinder and the second half cylinder can be realized through bolts penetrating through the fixing holes. The sleeve 2 corresponds to the annular bottom plate 3 and is matched with the groove.
Preferably, as shown in fig. 3, the welding device further comprises a gap shielding ring 12 for being sleeved on the pipe 1 to be welded, wherein the gap shielding ring 12 is positioned inside the sleeve 2 and is shielded above a gap between the base and the pipe 1 to be welded. The through hole is formed in the inner through length of the gap shielding ring 12, an iron wire for fixing the gap shielding ring 12 is arranged in the through hole in a penetrating manner, and two ends of the iron wire extend out of the through hole and are used for binding the gap shielding ring 12 on the pipeline 1 to be welded. The gap shielding ring 12 is horn-shaped, has a small upper part and a large lower part, and can enable the dropped welding slag to rapidly slide into the groove along the gap shielding ring 12 while shielding the gap between the annular bottom plate 3 and the pipeline 1. The angle of the electric spark at the sputtering position of the welding seam is influenced by the conditions such as wind speed, current, welding rod angle, welding speed and the like, so that the angle is unknown during sputtering, the gap shielding ring 12 prevents welding slag from falling out through a small gap between the annular bottom plate 3 and the pipeline 1, and further, the gap shielding ring 12 can be bound between the annular bottom plate 3 and the small gap between the annular bottom plate 1 by using iron wires to wear fireproof cloth or soft iron skin with a certain thickness.
Preferably, the base is provided with a water adding port 8 communicated with the groove, and the water adding port 8 is positioned at the edge of the base, so that water is conveniently added from the outer side to the inside of the groove, the water level in the groove is kept, and welding slag is ensured to fall into the base and fall into water to be extinguished in time. A plurality of air outlet holes 11 are further formed in the top of the side wall of the groove, when welding slag falls on the base to cool the welding slag, water content can be reduced, water vapor is timely discharged along with the air outlet holes 11, and excessive vapor is prevented from being discharged upwards to influence the sight of welding construction of constructors.
Preferably, the base is provided with an observation window 10 for observing the water level in the groove, and the observation window 10 is made of heat-resistant transparent materials. In this embodiment, the observation window 10 is made of transparent reinforced glass, so that the intensity is ensured, the water level in the groove of the base can be conveniently observed from the outside, and water can be timely added.
Preferably, a handle 9 is fixed to the outer side wall of the first half cylinder or the second half cylinder, and the handle 9 can facilitate the installation and placement of the sleeve 2.
The welding slag is directly received through the combination of the sleeve and the base, and the technical problem that a large-diameter opening fire receiving hopper is not easy to set in welding construction due to smaller spacing of pipelines in a pipe well in the prior art is solved. The device of the device can be used for containing water and rapidly cooling welding slag, so that the safety of the construction of the pipeline in the pipe well is improved, the device is detachably mounted, and the turnover capacity is increased.
None of the utility models are related to the same or are capable of being practiced in the prior art. The present utility model is not limited to the above-mentioned embodiments, but is not limited to the above-mentioned embodiments, and any simple modification, equivalent changes and modification made to the above-mentioned embodiments according to the technical matters of the present utility model can be made by those skilled in the art without departing from the scope of the present utility model.

Claims (10)

1. The utility model provides a pipeline is fought of receiving fire, its characterized in that, including being used for the clamp to wait to weld the base that is used for accepting the spark in waiting to weld the position below of pipeline, the base is including holding the recess of water, still including being used for with welding spark drainage extremely the sleeve of recess, the sleeve cover is established wait to weld on the pipeline and demountable installation in on the base.
2. The pipe fire receiving bucket of claim 1, wherein at least three limit bars are vertically spaced on the base, and all limit bars are blocked on the periphery of the sleeve in a state that the sleeve is mounted on the base.
3. The pipe fire receiving bucket of claim 1, wherein the base comprises a fixing part for clamping on a pipe and an annular bottom plate provided with the groove, and the annular bottom plate is sleeved on the pipe to be welded and is erected on the top end of the fixing part.
4. A pipe primer as claimed in claim 3 wherein the securing means is a binding or clip.
5. The pipe fire receiving bucket of claim 4, wherein the inside of the fixing member is provided with an anti-slip block.
6. A pipe fire receiving bucket according to claim 3, wherein the annular base plate is divided into at least two parts in the circumferential direction, and adjacent parts are detachably butted.
7. A pipe primer as claimed in claim 1 wherein the sleeve is divided circumferentially into at least two parts and adjacent parts are detachably abutted.
8. The pipe fire receiving bucket of claim 1, further comprising a gap shielding ring for sleeving on the pipe to be welded, the gap shielding ring being located inside the sleeve and shielding over a gap between the base and the pipe to be welded.
9. The pipe fire receiving bucket of claim 1, wherein the base is provided with a water inlet communicated to the groove.
10. The pipe fire receiver of claim 1, wherein the base is provided with an observation window for observing the water level in the groove, and the observation window is made of heat-resistant transparent materials.
CN202320118235.5U 2023-02-06 2023-02-06 Pipeline fire receiving hopper Active CN220050508U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320118235.5U CN220050508U (en) 2023-02-06 2023-02-06 Pipeline fire receiving hopper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320118235.5U CN220050508U (en) 2023-02-06 2023-02-06 Pipeline fire receiving hopper

Publications (1)

Publication Number Publication Date
CN220050508U true CN220050508U (en) 2023-11-21

Family

ID=88753601

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320118235.5U Active CN220050508U (en) 2023-02-06 2023-02-06 Pipeline fire receiving hopper

Country Status (1)

Country Link
CN (1) CN220050508U (en)

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