CN208366120U - A kind of tubular heat exchanger for dyestuff production - Google Patents
A kind of tubular heat exchanger for dyestuff production Download PDFInfo
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- CN208366120U CN208366120U CN201820660502.0U CN201820660502U CN208366120U CN 208366120 U CN208366120 U CN 208366120U CN 201820660502 U CN201820660502 U CN 201820660502U CN 208366120 U CN208366120 U CN 208366120U
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- heat exchanger
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Abstract
The utility model discloses a kind of tubular heat exchangers for dyestuff production, including heat exchanger body, heat exchanger body is internally provided with heat exchanger tube, water storage circle is slidably connected by sliding block and first sliding groove and second sliding slot, heat exchanger body lower surface two side ends are fixedly installed with lead screw motor, partition is by water storage circle inside division at water cavity and device chamber, water storage circle lower surface is connected with water pipe in water cavity position, partition side surface is uniformly fixedly installed with protrusion cylinder device is intracavitary, and protrusion cylinder internal activity engaging has top cylinder.Water is inputted into the water cavity of water storage circle by water pipe, spray head can be to heat exchange pipe surface spray water, water storage circle is driven to move in first sliding groove and second sliding slot by screw rod, it can exchange that heat pipe is comprehensive to be cleaned at this time, the utility model structure is simple, and heat pipe can be exchanged by, which being dismantled without heat exchanging device, is cleaned, and improves the effect of cleaning, cost is relatively low for cleaning, while extending the service life of heat exchanger.
Description
Technical field
The utility model relates to dye industry technical fields, more specifically, in particular to it is a kind of for dyestuff production
Tubular heat exchanger.
Background technique
Currently, tubular heat exchanger is all being widely used in chemical industry, metallurgy and various industries, in use, tubulation is changed
The tube side of hot device is easy to generation dirt and increases heat transmission resistance as dirt is got deeper, final influence tubular heat exchanger
Heat exchange efficiency.Therefore, staff needs constantly to remove the dirt in pipe in use.Interior dirt is managed currently, removing
There are two types of modes, and one is the cleanings of artificial mechanism formula, and this method is at low cost, easy to operate, but scaling effect is poor, time-consuming to take
Power;Another kind is periodic cleaning to be carried out using chemical reagent, but cleaning reagent has certain corrosivity more, is easy heat exchanging device and makes
At damage, and production cost is higher.
Utility model content
The purpose of this utility model is to provide a kind of tubular heat exchangers for dyestuff production, to overcome prior art institute
There are the problem of.
In order to achieve the above object, the technical solution adopted in the utility model is as follows:
A kind of tubular heat exchanger for dyestuff production, including heat exchanger body, the heat exchanger body are internally provided with
Heat exchanger tube, heat exchanger body inner wall left and right sides end vertically offer first sliding groove, front and back two inside heat exchanger body
Side vertically offers second sliding slot, is arranged with water storage circle, the water storage circle in heat exchange pipe external surface inside heat exchanger body
Outer surface is fixedly installed with sliding block at first sliding groove and second sliding slot position, water storage circle by sliding block and first sliding groove and
Second sliding slot is slidably connected, and the shoe surface at the first sliding groove offers threaded hole, the slider table at the second sliding slot
Face offers through-hole, and heat exchanger body lower surface two side ends are fixedly installed with lead screw motor, the output shaft of lead screw motor
It is fixedly welded with screw rod, the sliding block of the first sliding groove is cooperatively connected by threaded hole and screw rod, vertical in the second sliding slot
It is fixedly installed with straight-bar, the sliding block of the second sliding slot is slidably connected by through-hole and straight-bar, fixed peace inside the water storage circle
Equipped with partition, by water storage circle inside division at water cavity and device chamber, water storage circle lower surface is connected in water cavity position to be connected partition
It is connected to water pipe, the partition side surface is uniformly fixedly installed with protrusion cylinder device is intracavitary, and protrusion cylinder one end runs through water cavity, convex
The cylinder other end offers opening out, and protrusion cylinder internal activity engaging has top cylinder, and the top cylinder two side ends are open state, push up cylinder
One end is inserted in opening, and the water storage circle inner peripheral surface is equipped with closure by torsional spring living hinge in protrusion cylinder position
Plate.
Preferably, spray head is fixedly installed with close to closure plate side inside the top cylinder.
Preferably, the top cylinder outer surface is equipped with spring in protrusion cylinder internal sleeve.
Compared with the prior art, the advantages of the utility model are:
Water is inputted into the water cavity of water storage circle by water pipe, the pressure for pushing up cylinder at this time by water can be stretched from protrusion cylinder
Out, top cylinder can knock over closure plate, and spray head can be led to heat exchange pipe surface spray water by starting lead screw motor at this time
Crossing screw rod drives water storage circle to move in first sliding groove and second sliding slot, can exchange that heat pipe is comprehensive to be cleaned at this time, this
Utility model structure is simple, and heat pipe can be exchanged by, which being dismantled without heat exchanging device, is cleaned, and the range cleaned is larger, mentions
The high effect of cleaning, cost is relatively low for cleaning, while improving the service life of heat exchanger.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment
Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only
It is some embodiments of the utility model, for those of ordinary skill in the art, in the premise not made the creative labor
Under, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is the cross-sectional view of the tubular heat exchanger described in the utility model for dyestuff production;
Fig. 2 is structure enlargement diagram at A in Fig. 1;
Fig. 3 is the water storage loop knot composition of the tubular heat exchanger described in the utility model for dyestuff production.
Description of symbols: 1 heat exchanger body, 2 heat exchanger tubes, 3 first sliding grooves, 4 second sliding slots, 5 water storage circles, 6 sliding blocks, 7
Threaded hole, 8 through-holes, 9 straight-bars, 10 screw rods, 11 lead screw motors, 12 partitions, 13 water pipes, 14 protrusion cylinders, 15 top cylinders, 16 springs, 17
Spray head, 18 closure plates.
Specific embodiment
The preferred embodiment of the utility model is described in detail with reference to the accompanying drawing, so that the advantages of the utility model
It can be easier to be readily appreciated by one skilled in the art with feature, to make the protection scope of the utility model apparent clear
Define.
Refering to fig. 1, shown in Fig. 2 and Fig. 3, the utility model provides a kind of tubular heat exchanger for dyestuff production, including
Heat exchanger body 1, heat exchanger body 1 are internally provided with heat exchanger tube 2, and end vertically opens up at left and right sides of 1 inner wall of heat exchanger body
Have a first sliding groove 3,1 inside front and rear sides end of heat exchanger body vertically offers second sliding slot 4, inside heat exchanger body 1
2 outer surface of heat exchanger tube is arranged with water storage circle 5, and 5 outer surface of water storage circle is fixed at 4 position of first sliding groove 3 and second sliding slot
Sliding block 6 is installed, water storage circle 5 is slidably connected by sliding block 6 with first sliding groove 3 and second sliding slot 4, the sliding block 6 at first sliding groove 3
Surface offers threaded hole 7, and 6 surface of sliding block at second sliding slot 4 offers through-hole 8, and 1 lower surface two side ends of heat exchanger body are equal
It is fixedly installed with lead screw motor 11, the output shaft of lead screw motor 11 is fixedly welded with screw rod 10, and the sliding block 6 of first sliding groove 3 passes through
Threaded hole 7 and screw rod 10 are cooperatively connected, and straight-bar 9 is vertically fixedly installed in second sliding slot 4, and the sliding block 6 of second sliding slot 4 passes through logical
Hole 8 is slidably connected with straight-bar 9, partition 12 is fixedly installed with inside water storage circle 5, partition 12 is by 5 inside division of water storage circle at water cavity
With device chamber, 5 lower surface of water storage circle is connected with water pipe 13 in water cavity position, and 12 side surface of partition is intracavitary uniformly solid in device
Equipped with protrusion cylinder 14, protrusion 14 one end of cylinder runs through water cavity for Dingan County, and protrusion 14 other end of cylinder offers opening, protrudes inside cylinder 14
It is movably fastened top cylinder 15, top 15 two side ends of cylinder are open state, and top 15 one end of cylinder is inserted in opening, 5 inner ring of water storage circle
Surface is equipped with closure plate 18 by torsional spring living hinge in protrusion 14 position of cylinder, and closure plate 18 can prevent dyestuff from entering top
In cylinder 15, it can be avoided spray head 17 and blocked by dyestuff, cylinder 15 inside in top is fixedly installed with spray head 17 close to 18 side of closure plate, pushes up
15 outer surfaces of cylinder are equipped with spring 16 in protrusion 14 internal sleeve of cylinder.
Working principle: inputting water into the water cavity of water storage circle 5 by water pipe 13, and pushing up cylinder 15 at this time can by the pressure of water
It is stretched out from protrusion cylinder 14, top cylinder 15 can knock over closure plate 18, and spray head 17 can be sprayed to 2 surface of heat exchanger tube at this time
Water drives water storage circle 5 to move in first sliding groove 3 and second sliding slot 4, at this time by starting lead screw motor 11 by screw rod 10
It can exchange that heat pipe 2 is comprehensive to be cleaned.
Although being described in conjunction with the accompanying the embodiments of the present invention, patent owner can want in appended right
Various deformations or amendments are made within the scope of asking, as long as the claim for being no more than the utility model is described to protect model
It encloses, should all be within the protection scope of the utility model.
Claims (3)
1. a kind of tubular heat exchanger for dyestuff production, including heat exchanger body, the heat exchanger body, which is internally provided with, to be changed
Heat pipe, it is characterised in that: end vertically offers first sliding groove at left and right sides of the heat exchanger body inner wall, in heat exchanger body
Portion front and rear sides end vertically offers second sliding slot, is arranged with water storage circle, institute in heat exchange pipe external surface inside heat exchanger body
It states water storage circle outer surface and is fixedly installed with sliding block at first sliding groove and second sliding slot position, water storage circle passes through sliding block and the
One sliding slot and second sliding slot are slidably connected, and the shoe surface at the first sliding groove offers threaded hole, at the second sliding slot
Shoe surface offer through-hole, heat exchanger body lower surface two side ends are fixedly installed with lead screw motor, lead screw motor
Output shaft be fixedly welded with screw rod, the sliding block of the first sliding groove is cooperatively connected by threaded hole and screw rod, and described second is sliding
Straight-bar is vertically fixedly installed in slot, the sliding block of the second sliding slot is slidably connected by through-hole and straight-bar, in the water storage circle
Portion is fixedly installed with partition, and partition is by water storage circle inside division at water cavity and device chamber, and water storage circle lower surface is in water cavity position
It sets connection and is connected with water pipe, the partition side surface is uniformly fixedly installed with protrusion cylinder, the perforation of protrusion cylinder one end device is intracavitary
In water cavity, protrudes the cylinder other end and offer opening, protrusion cylinder internal activity engaging has top cylinder, and the top cylinder two side ends are opening
State, top cylinder one end are inserted in opening, and the water storage circle inner peripheral surface is movably hinged by torsional spring in protrusion cylinder position pacifies
Equipped with closure plate.
2. the tubular heat exchanger according to claim 1 for dyestuff production, it is characterised in that: close inside the top cylinder
Closure plate side is fixedly installed with spray head.
3. the tubular heat exchanger according to claim 1 for dyestuff production, it is characterised in that: the top cylinder outer surface exists
It protrudes cylinder internal sleeve and is equipped with spring.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820660502.0U CN208366120U (en) | 2018-05-04 | 2018-05-04 | A kind of tubular heat exchanger for dyestuff production |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820660502.0U CN208366120U (en) | 2018-05-04 | 2018-05-04 | A kind of tubular heat exchanger for dyestuff production |
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CN208366120U true CN208366120U (en) | 2019-01-11 |
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CN201820660502.0U Active CN208366120U (en) | 2018-05-04 | 2018-05-04 | A kind of tubular heat exchanger for dyestuff production |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110514049A (en) * | 2019-08-30 | 2019-11-29 | 徐磊 | A kind of sticky hook cap of the cooling water of dyehouse production technology scrapes the waste-heat recovery device of dirt |
CN112944970A (en) * | 2021-03-18 | 2021-06-11 | 泉州市成裕机械设备有限公司 | Oil-water-gas three-phase combined cooler for bulldozer in wet land |
-
2018
- 2018-05-04 CN CN201820660502.0U patent/CN208366120U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110514049A (en) * | 2019-08-30 | 2019-11-29 | 徐磊 | A kind of sticky hook cap of the cooling water of dyehouse production technology scrapes the waste-heat recovery device of dirt |
CN110514049B (en) * | 2019-08-30 | 2021-07-13 | 海盐鸳鸯丝绸印染股份有限公司 | Waste heat recovery device for scraping scale of cooling water viscous hook cap in dyeing room production process |
CN112944970A (en) * | 2021-03-18 | 2021-06-11 | 泉州市成裕机械设备有限公司 | Oil-water-gas three-phase combined cooler for bulldozer in wet land |
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