Copper pipe processing annealing cooling device
Technical Field
The utility model relates to a copper pipe processing technology field specifically is a copper pipe processing annealing cooling device.
Background
The copper pipe annealing is a heat treatment method of heating the copper pipe to the temperature of phase change or partial phase change, and slowly cooling after heat preservation. The purpose of annealing is to eliminate the defects of the structure, improve the structure, homogenize the components, refine grains, improve the mechanical property of copper and reduce the residual stress; meanwhile, the hardness can be reduced, the plasticity and the toughness are improved, and the cutting processability is improved.
When the existing copper pipe annealing cooling device is used, harmful gas generated during annealing is not thoroughly treated, the harmful gas enters the interior of an operator to influence health, the cooling efficiency is low, and the cooling time is long.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a copper pipe processing annealing cooling device to the current copper pipe annealing cooling device who proposes in solving above-mentioned background art when using, does not handle thoroughly to the harmful gas that produces when annealing, and harmful gas gets into that the inside influence of operating personnel is healthy, and copper pipe cooling efficiency is low, the long problem of cool time.
In order to achieve the above object, the utility model provides a following technical scheme: a copper pipe processing annealing cooling device comprises a support and a control box, wherein a cooling box is fixed on the upper side of the support, a cooling mechanism is arranged on the lower side of the cooling box, meanwhile, the upper side of the cooling box is communicated with a waste gas treatment device through a first air inlet pipe, and conveying rollers are rotatably connected to the front inner wall and the rear inner wall of the cooling box;
exhaust treatment device includes exhaust treatment case, exhaust gas transport room, gas vent, rose box, active carbon filter screen, active carbon box, air inlet, first exhaust fan and second exhaust fan, exhaust treatment incasement portion is provided with exhaust gas transport room, rose box and active carbon box, and the rear side of exhaust treatment case is provided with the rose box, and the rear side of rose box is provided with the active carbon box simultaneously, the gas vent has been seted up on the transport room rear side inner wall, the rose box rear side has been seted up the air inlet, and rose box sliding connection has the active carbon filter screen, the active carbon box rear side runs through there is first exhaust fan, the second exhaust fan sets up inside first air intake pipe.
Preferably, the right side of the cooling box is provided with a feeding hole, and the left side of the cooling box is provided with a discharging hole.
Preferably, cooling body includes refrigeration case, second intake pipe, third air discharge fan, gas-supply pipe, shower nozzle and water-cooled tube, all inlay in the shell around refrigeration case and the cooling box has the water-cooled tube, and the refrigeration case upside is linked together through second intake pipe and gas-supply pipe, and the gas-supply pipe upside runs through there is the shower nozzle simultaneously, be provided with the third air discharge fan in the second intake pipe, the refrigeration case downside runs through there is the fan.
Preferably, the active carbon filter screen is provided with two layers, and the grid density of the front side active carbon filter screen is greater than that of the rear side active carbon filter screen.
Preferably, a water inlet is formed in the left side of the water-cooling pipe, and a water outlet is formed in the right side of the water-cooling pipe.
Preferably, the control box is fixed to the front side of the cooling box.
Compared with the prior art, the beneficial effects of the utility model are that: the annealing and cooling device for processing the copper pipe,
(1) the waste gas treatment device is arranged, an activated carbon filter screen in the waste gas treatment device adsorbs large-particle impurities and partial harmful gas, the treated gas enters the activated carbon box and is treated again, the harmful gas discharged from the waste gas treatment device is ensured to be treated thoroughly, the health of operators is ensured, and the environmental quality is improved;
(2) be provided with the water-cooled tube, the water-cooled tube in the refrigeration case can refrigerate the natural wind that gets into the shower nozzle to the shower nozzle equidistance distributes at the conveying roller downside, and the copper pipe of being convenient for evenly refrigerates, and the water-cooled tube in the cooling box shell can cool off the copper pipe simultaneously, shortens whole cooling time, improves cooling efficiency.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic diagram of the distribution structure of the water cooling tubes on the cooling box of the present invention;
FIG. 3 is a right side view of the structure of the present invention;
fig. 4 is a schematic structural view of the waste gas treatment device of the present invention.
In the figure: 1. pillar, 2, cooling box, 3, cooling body, 4, first air-supply line, 5, exhaust-gas treatment device, 6, exhaust-gas treatment box, 7, exhaust-gas conveying chamber, 8, exhaust port, 9, filter box, 10, active carbon filter screen, 11, active carbon box, 12, air inlet, 13, first exhaust fan, 14, second exhaust fan, 15, refrigeration box, 16, second air inlet pipe, 17, third exhaust fan, 18, air inlet fan, 19, air-supply pipe, 20, shower nozzle, 21, water-cooling pipe, 22, conveying roller, 23, control box.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a copper pipe processing annealing cooling device is disclosed, as shown in figure 1 and figure 2, a cooling box 2 is fixed on the upper side of a support column 1, a cooling mechanism 3 is arranged on the lower side of the cooling box 2, meanwhile, the upper side of the cooling box 2 is communicated with a waste gas treatment device 5 through a first air inlet pipe 4, the cooling mechanism 3 comprises a refrigeration box 15, a second air inlet pipe 16, a third exhaust fan 17, an air inlet fan 18, an air conveying pipe 19, a spray head 20 and a water cooling pipe 21, the water cooling pipes 21 are embedded in the front shell and the rear shell of the refrigeration box 15 and the cooling box 2, the upper side of the refrigeration box 15 is communicated with the air conveying pipe 19 through the second air inlet pipe 16, the spray head 20 penetrates through the upper side of the air conveying pipe 19, the third exhaust fan 17 is arranged in the second air inlet pipe 16, a water inlet is arranged on the left side of the water cooling pipe 21, a water outlet is arranged on the right side of the water cooling pipe 21, the lower side of the, finally, the water-cooled tube 21 in the shell of the cooling box 2 can cool the pipeline at the same time, the whole cooling speed is accelerated, the cooling efficiency is improved, and the front inner wall and the rear inner wall of the cooling box 2 are rotatably connected with conveying rollers 22; the feed inlet has been seted up on 2 right sides of cooler bin, and the 2 left sides of cooler bin are provided with the discharge gate, and the setting of feed inlet, discharge gate on the cooler bin 2 is convenient for inside the pipeline business turn over cooler bin 2.
As shown in fig. 1, 3 and 4, the exhaust gas treatment device 5 includes an exhaust gas treatment box 6, an exhaust gas conveying chamber 7, an exhaust port 8, a filter box 9, an activated carbon filter screen 10, an activated carbon box 11, an air inlet 12, a first exhaust fan 13 and a second exhaust fan 14, the exhaust gas treatment box 6 is internally provided with the exhaust gas conveying chamber 7, the filter box 9 and the activated carbon box 11, the rear side of the exhaust gas treatment box 6 is provided with the filter box 9, the rear side of the filter box 9 is provided with the activated carbon box 11, the inner wall of the rear side of the conveying chamber 7 is provided with the exhaust port 8, the rear side of the filter box 9 is provided with the air inlet 12, the filter box 9 is connected with the activated carbon filter screen 10 in a sliding manner, the activated carbon filter screen 10 is provided with two layers, the mesh density of the activated carbon filter screen 10 at the front side is greater than that of the activated carbon filter screen 10 at the rear side, the two layers of the, and can handle partial harmful gas, the waste gas after the processing gets into activated carbon box 11, and the activated carbon package in activated carbon box 11 is handled once more, guarantees air quality, and activated carbon box 11 rear side has run through first exhaust fan 13, and second exhaust fan 14 sets up inside first air-supply line 4, and control box 23 is fixed in cooling box 2 front side, and control box 23 electric connection has first exhaust fan 13, second exhaust fan 14, third exhaust fan 17, air inlet fan 18 and conveying roller 22.
The working principle is as follows: when the copper pipe processing annealing cooling device is used, an external power supply is connected, circulating cooling water enters the water cooling pipe 21 through the left side of the water cooling pipe 21 and is finally discharged through the right side of the water cooling pipe 21, the conveying roller 22 is started under the action of the control box 23, the copper pipe enters the cooling box 2 under the action of the conveying roller 22, the first exhaust fan 13, the second exhaust fan 14, the third exhaust fan 17 and the air inlet fan 18 are started, natural wind enters the cooling box 15 under the action of the air inlet fan 18, the water cooling pipe 21 in the cooling box 15 refrigerates the natural wind, the natural wind refrigerated under the action of the third exhaust fan 17 enters the second air inlet pipe 16, the natural wind enters the air conveying pipe 19 through the second air inlet pipe 16 and finally enters the spray head 20 through the air conveying pipe 19, so that the spray head 20 can carry out cooling treatment on the copper pipe in the cooling box 2, the water cooling pipe 21 in the cooling box 2 can carry out auxiliary cooling treatment on the copper pipe, harmful gas generated during cooling enters the waste gas conveying chamber 7 under the action of the second exhaust fan 14, waste gas enters the filter box 9 through the exhaust port 8 at the rear side of the waste gas conveying chamber 7, the activated carbon filter screen 10 in the filter box 9 adsorbs impurities and part of the harmful gas, finally the waste gas enters the activated carbon box 11 through the air inlet 12, and the activated carbon bag in the activated carbon box 11 finally treats the waste gas, so that the harmful gas in the waste gas can be treated more thoroughly, the environmental pollution is reduced, the activated carbon filter screen 10 is manually pulled, the activated carbon filter screen 10 is separated from the filter box 9, and the activated carbon filter screen 10 can be replaced.
The terms "central," "longitudinal," "lateral," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientation or positional relationship indicated in the drawings for ease of description, but are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are not to be considered limiting of the scope of the invention.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.