A coil type heating reactor

By setting up a wire rope and a rubber scraper in the stainless steel coil of the reactor, the dirt is cleaned, and the problem of dirt residue in the existing reactor affecting heat conduction is solved, and the heating effect and energy efficiency are improved.

CN119701822BActive Publication Date: 2025-05-23YANTAI MOON PRESSURE VESSEL CO LTD
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Patent Information

Application Number
CN202510237400.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2025-05-23
Estimated Expiration
2045-03-03

AI Technical Summary

Technical Problem

The long-term circulation of hot water in the pipelines of the existing reactors results in internal dirt residue, which is difficult to clean, affecting heat conduction, resulting in poor heating effect of materials and large energy consumption.

Method used

A coil-type heating reactor is designed, using stainless steel coils and a wire rope and rubber scraper are installed inside them. By pulling the wire rope, the rubber scraper is driven to move and dirt on the inner wall of the coil.

Benefits of technology

It effectively solves the problem of dirt residue, improves the service life of the reactor, and improves the effect of material heating and energy utilization efficiency by improving heat conduction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of reactors, and discloses a coil-type heating reactor, comprising a tank body, a connection seat is fixedly assembled on the top of the tank body, a driving motor is installed on the top of the connection seat, a stirring rod is fixedly sleeved on the power output shaft of the driving motor, and a heating component is installed on the outer wall of the tank body; the heating component comprises a stainless steel coil, and a left water outlet pipe is penetrated through the inner cavity of the stainless steel coil. By arranging a steel wire rope and a rubber scraper in the stainless steel coil, the rubber scraper is driven to move by pulling the steel wire rope, and the movement of the rubber scraper can scrape the dirt on the inner wall of the stainless steel coil. Regular scraping will increase the service life of the reactor, thereby solving the problem that there will be residual dirt in the pipes on the existing reactor, which is not easy to clean. The long-term accumulation of dirt will affect the conduction of heat, resulting in poor heating effect of materials and consumption of a large amount of energy.
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Description

Technical Field

[0001] The invention relates to the technical field of reactors, in particular to a coil-type heating reactor. Background Art

[0002] Reactors are widely used in the fields of petroleum, chemical industry, rubber, pesticide, dye, medicine and food. They are pressure vessels used to complete processes such as vulcanization, nitration, hydrogenation, hydrocarbonization, polymerization and condensation.

[0003] The outer wall of the existing reactor is coiled with circles of pipes. Hot water will flow in the pipes, and the heat will be transferred to the tank body through the pipes, so that the material in the tank can be heated. However, the long-term circulation of hot water in the pipes will cause dirt to remain inside. This dirt is not easy to clean. The long-term accumulation of dirt will affect the conduction of heat, resulting in poor heating effect of the material and consumption of a lot of energy. Summary of the invention

[0004] The present invention provides a coil-type heating reaction kettle, which solves the problems raised by the above-mentioned background technology.

[0005] The present invention provides the following technical solution: a coil-type heating reactor, comprising a tank body, a connection seat is fixedly mounted on the top of the tank body, a driving motor is installed on the top of the connection seat, a stirring rod is fixedly sleeved on the power output shaft of the driving motor, and a heating component is installed on the outer wall of the tank body;

[0006] The heating component includes a stainless steel coil, the inner cavity of the stainless steel coil is penetrated by a left water outlet pipe, the right side of the left water outlet pipe is provided with a right water outlet pipe, the inner cavity of the stainless steel coil is provided with a steel wire rope, the outer edge of the steel wire rope is fixedly equipped with a rubber scraper, the head of the steel wire rope is fixedly equipped with a top drum, the inner wall of the top drum is fixedly equipped with a top connecting rod, the outer edge of the top connecting rod is movably connected with a top shell, the head of the stainless steel coil penetrates the top shell, the inner cavity of the top shell is penetrated by a top water inlet, the tail of the steel wire rope is fixedly equipped with a bottom drum, the inner wall of the bottom drum is fixedly equipped with a bottom connecting rod, the outer edge of the bottom connecting rod is movably connected with the bottom shell, the tail of the stainless steel coil penetrates the bottom shell, and the inner cavity of the bottom shell is penetrated by the bottom water inlet.

[0007] As a preferred technical solution of the present invention, the outer edge of the top of the bottom connecting rod is fixedly sleeved with a bottom bevel tooth, the outer edge of the bottom bevel tooth is meshed with a changing bevel tooth, the inner wall of the changing bevel tooth is fixedly sleeved with a fixed rod, the outer edge of the changing bevel tooth is meshed with a top bevel tooth, the outer edge of the fixed rod is movably connected with a fixed bracket, and the fixed bracket is fixedly assembled on the outer walls of the top shell and the bottom shell.

[0008] As a preferred technical solution of the present invention, the outer edge of the top of the top connecting rod is fixedly sleeved with connecting bevel gear 1, the outer edge of the connecting bevel gear 1 is fixedly sleeved with connecting bevel gear 2, the inner wall of the connecting bevel gear 2 is fixedly sleeved with a cross bar, the outer edge of the cross bar is slidably connected with a connecting sleeve, the outer edge of the connecting sleeve is slidably connected with a connecting column, the end of the connecting column away from the cross bar is fixedly sleeved with driving bevel gear 1, the outer edge of the driving bevel gear 1 is meshed with driving bevel gear 2, and the driving bevel gear 2 is fixedly sleeved on the stirring rod.

[0009] As a preferred technical solution of the present invention, a connecting ring is fixedly sleeved on the outer wall of the connecting sleeve, and a movable sleeve is movably sleeved on the outer edge of the connecting ring.

[0010] As a preferred technical solution of the present invention, the outer wall of the movable sleeve is fixedly equipped with a connecting piece, the inner wall of the connecting piece is threadedly connected to a movable screw, the outer edge of the movable screw is fixedly sleeved with a worm wheel, the outer edge of the worm wheel is meshed with a worm, the worm and the movable screw are both movably connected to a mounting bracket, and the mounting bracket is fixedly assembled on the top shell.

[0011] As a preferred technical solution of the present invention, a plurality of sliding strips are fixedly installed on the outer edge of the cross bar, a plurality of sliding grooves are opened on the inner wall of the connecting sleeve, the sliding strips are slidably connected to the sliding grooves, a plurality of internal connecting blocks are fixedly installed on the inner wall of the connecting sleeve, and the plurality of internal connecting blocks are evenly distributed on the connecting sleeve, and a plurality of external connecting blocks are fixedly installed on the outer edge of the connecting column, and the plurality of external connecting blocks are evenly distributed on the connecting column.

[0012] As a preferred technical solution of the present invention, the top of the top reel is fixedly equipped with a top toothed disc, the outer edge of the top toothed disc is meshed with a top gear, the inner wall of the top gear is fixedly equipped with a top reciprocating screw, the outer edge of the top reciprocating screw is threadedly connected to a top guide block, and the stainless steel coil passes through the top guide block.

[0013] As a preferred technical solution of the present invention, the inner wall of the top guide block is slidably connected with a top vertical rod, the top vertical rod is fixedly assembled on the top shell, and the top reciprocating screw is movably connected to the top shell.

[0014] As a preferred technical solution of the present invention, the top of the bottom reel is fixedly equipped with a bottom toothed disc, the outer edge of the bottom toothed disc is meshed with a bottom gear, the inner wall of the bottom gear is fixedly sleeved with a bottom reciprocating screw, the outer edge of the bottom reciprocating screw is threadedly connected to a bottom guide block, and the stainless steel coil passes through the bottom guide block.

[0015] As a preferred technical solution of the present invention, the inner wall of the bottom guide block is slidably connected with a bottom vertical rod, the bottom vertical rod is fixedly assembled on the bottom shell, and the bottom reciprocating screw is movably connected to the bottom shell.

[0016] The present invention has the following beneficial effects:

[0017] 1. The coil-type heating reactor is provided with a steel wire rope and a rubber scraper in a stainless steel coil. The steel wire rope is pulled to move the rubber scraper. At this time, the movement of the rubber scraper can scrape the dirt on the inner wall of the stainless steel coil. Regular scraping will increase the service life of the reactor, thereby solving the problem that dirt will remain in the pipes of the existing reactor. The dirt is not easy to clean. The long-term accumulation of dirt will affect the heat conduction, thereby resulting in poor material heating effect and a large amount of energy consumption.

[0018] 2. The coil-type heating reactor can separate the stainless steel coil into two sections by moving the rubber scraper between the left water outlet pipe and the right water outlet pipe. The section between the left water outlet pipe and the top drum can be filled with cold water, so that the material can be quickly cooled after the heating reaction. The section between the right water outlet pipe and the bottom drum can be filled with hot water, so that the material can be quickly heated after the cooling reaction, so that the stainless steel coil can be suitable for the processing reactions of different materials.

[0019] 3. The coil-type heating reactor moves the connecting sleeve onto the connecting column so that the inner connecting block on the connecting sleeve fits with the outer connecting block on the connecting column. When the connecting column rotates, it can drive the connecting sleeve, the cross bar, the second connecting bevel gear, the top connecting rod, the top bevel gear, the changing bevel gear, the bottom bevel gear and the bottom connecting rod to rotate. When the stainless steel coil is cleaned, it can be operated by the original power source of the reactor. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is a schematic diagram of the front three-dimensional structure of the present invention;

[0021] Figure 2 It is a schematic diagram of the cross-sectional structure of the present invention;

[0022] Figure 3 For the present invention Figure 2 A is an enlarged structural diagram;

[0023] Figure 4 For the present invention Figure 2 The enlarged structural diagram at B in FIG.

[0024] Figure 5 This is a schematic diagram of the top shell and stainless steel coil structure of the present invention;

[0025] Figure 6 This is a schematic diagram of the bottom shell and stainless steel coil structure of the present invention;

[0026] Figure 7 It is a schematic diagram of the structure of the steel wire rope and the rubber scraper of the present invention;

[0027] Figure 8 This is a structural schematic diagram of the driving motor of the present invention;

[0028] Fig. 9 This is a schematic diagram of the structure of the drive motor of the present invention;

[0029] Fig.10 It is a schematic diagram of the structure of the connecting sleeve and the connecting column of the present invention.

[0030] In the figure: 1. Tank body; 2. Connecting seat; 3. Driving motor; 4. Stirring rod; 5. Heating assembly;

[0031] 501, stainless steel coil; 502, left water outlet pipe; 503, right water outlet pipe; 504, wire rope; 505, rubber scraper; 506, bottom drum; 5061, bottom shell; 5062, bottom water inlet; 507, bottom gear plate; 508, bottom gear; 509, bottom reciprocating screw rod; 510, bottom guide block; 511, bottom vertical rod; 512, bottom connecting rod; 513, bottom bevel gear; 514, change direction bevel gear; 515, fixed rod; 516, fixed bracket; 517, top bevel gear; 518, top connecting rod; 519, top drum; 5191, top shell; 51 92. Top water inlet; 520. Top gear disc; 521. Top gear; 522. Top reciprocating screw; 523. Top guide block; 524. Top vertical rod; 525. Connecting bevel gear one; 526. Connecting bevel gear two; 527. Crossbar; 528. Connecting sleeve; 529. Slide bar; 530. Slide groove; 531. Connecting column; 532. Inner connecting block; 533. Outer connecting block; 534. Connecting ring; 535. Moving sleeve; 536. Connecting piece; 537. Moving screw; 538. Worm wheel; 539. Worm; 540. Driving bevel gear one; 541. Driving bevel gear two; 542. Mounting bracket. DETAILED DESCRIPTION

[0032] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0033] See also Figure 1 - Fig.10A coil-type heating reactor comprises a tank body 1, a connecting seat 2 is fixedly mounted on the top of the tank body 1, a driving motor 3 is mounted on the top of the connecting seat 2, a stirring rod 4 is fixedly sleeved on the power output shaft of the driving motor 3, and a heating component 5 is mounted on the outer wall of the tank body 1;

[0034] In the above structure, through the setting of the heating component 5, hot water will enter the stainless steel coil 501 on the heating component 5, and the hot water in the stainless steel coil 501 will be conducted to the tank body 1, so that the material in the tank body 1 can be heated, and then the driving motor 3 drives the stirring rod 4 to rotate to stir the material in the tank body 1, so that it is heated more evenly;

[0035] The heating assembly 5 includes a stainless steel coil 501, the inner cavity of the stainless steel coil 501 is penetrated by a left water outlet pipe 502, the right side of the left water outlet pipe 502 is provided with a right water outlet pipe 503, the inner cavity of the stainless steel coil 501 is provided with a steel wire rope 504, the outer edge of the steel wire rope 504 is fixedly equipped with a rubber scraper 505, the head of the steel wire rope 504 is fixedly equipped with a top drum 519, the inner wall of the top drum 519 is fixedly equipped with a top connecting rod 518, and the outer edge of the top connecting rod 518 is movably connected to the top shell The head of the stainless steel coil 501 passes through the top shell 5191, the inner cavity of the top shell 5191 passes through the top water inlet 5192, the tail of the steel wire rope 504 is fixedly equipped with a bottom drum 506, the inner wall of the bottom drum 506 is fixedly equipped with a bottom connecting rod 512, the outer edge of the bottom connecting rod 512 is movably connected with the bottom shell 5061, the tail of the stainless steel coil 501 passes through the bottom shell 5061, and the inner cavity of the bottom shell 5061 passes through the bottom water inlet 5062.

[0036] In the above structure, the rubber scraper 505 is arranged so that the rubber scraper 505 fits the inner wall of the stainless steel coil 501. When the rubber scraper 505 is located between the left water outlet pipe 502 and the right water outlet pipe 503, the left water outlet pipe 502 and the top shell 5191 can form a cavity for liquid to enter, and cold water can enter the cavity to cool the material in the tank body 1, and the right water outlet pipe 503 and the bottom shell 5061 can form a cavity for liquid to enter, and hot water can enter the cavity. The water heats the material in the tank body 1, and the bottom drum 506 rotates counterclockwise to pay out the wire rope 504, while the top drum 519 rotates clockwise to reel in the wire rope 504. At this time, the rubber scraper 505 moves in the stainless steel coil 501, and the dirt in the stainless steel coil 501 is cleaned by the movement of the rubber scraper 505. The dirt can be brought into the top shell 5191 or the bottom shell 5061, and then the dirt in the top shell 5191 and the bottom shell 5061 is cleaned.

[0037] In a preferred embodiment: the outer edge of the top of the bottom connecting rod 512 is fixedly sleeved with a bottom bevel gear 513, the outer edge of the bottom bevel gear 513 is meshed with a changing bevel gear 514, the inner wall of the changing bevel gear 514 is fixedly sleeved with a fixing rod 515, the outer edge of the changing bevel gear 514 is meshed with a top bevel gear 517, the outer edge of the fixing rod 515 is movably connected with a fixing bracket 516, and the fixing bracket 516 is fixedly assembled on the outer walls of the top shell 5191 and the bottom shell 5061.

[0038] In the above structure, the top connecting rod 518 rotates to drive the top bevel gear 517 to rotate clockwise. At this time, the top bevel gear 517 drives the changing bevel gear 514 to rotate counterclockwise, and the changing bevel gear 514 drives the bottom bevel gear 513 to rotate counterclockwise. Therefore, the top reel 519 and the bottom reel 506 can rotate in different directions, so that the top reel 519 and the bottom reel 506 can reel in and unreel the stainless steel coil 501 while rotating at the same time.

[0039] In a preferred embodiment: the outer edge of the top of the top connecting rod 518 is fixedly sleeved with a connecting bevel gear 1 525, the outer edge of the connecting bevel gear 1 525 is fixedly sleeved with a connecting bevel gear 2 526, the inner wall of the connecting bevel gear 2 526 is fixedly sleeved with a cross bar 527, the outer edge of the cross bar 527 is slidably connected with a connecting sleeve 528, the outer edge of the connecting sleeve 528 is slidably connected with a connecting column 531, the end of the connecting column 531 away from the cross bar 527 is fixedly sleeved with a driving bevel gear 1 540, the outer edge of the driving bevel gear 1 540 is meshed with a driving bevel gear 2 541, and the driving bevel gear 2 541 is fixedly sleeved on the stirring rod 4.

[0040] In the above structure, the driving motor 3 is driven to rotate the stirring rod 4, the stirring rod 4 rotates and drives the driving bevel gear 2 541 to rotate, the driving bevel gear 2 541 rotates and drives the driving bevel gear 1 540 to rotate, and the driving bevel gear 1 540 drives the connecting column 531 to rotate when rotating, and the rotation of the connecting column 531 can rotate the connecting sleeve 528, and the rotation of the connecting sleeve 528 drives the cross bar 527 to rotate, and the rotation of the cross bar 527 drives the connecting bevel gear 2 526 to rotate, and the rotation of the connecting bevel gear 2 526 drives the connecting bevel gear 1 525 to rotate, so that the top connecting rod 518 installed on the connecting bevel gear 1 525 can rotate.

[0041] In a preferred embodiment, a connecting ring 534 is fixedly sleeved on the outer wall of the connecting sleeve 528 , and a movable sleeve 535 is movably sleeved on the outer edge of the connecting ring 534 .

[0042] In the above structure, by sleeve-mounting the movable sleeve 535 on the connecting sleeve 528, the connecting sleeve 528 can be driven to move by moving the movable sleeve 535, so that the inner connecting block 532 on the connecting sleeve 528 will not contact the outer connecting block 533 on the connecting column 531. At this time, the cross bar 527 will not rotate, thereby reducing the wear between the parts.

[0043] In a preferred embodiment: the outer wall of the movable sleeve 535 is fixedly equipped with a connecting piece 536, the inner wall of the connecting piece 536 is threadedly connected to a movable screw rod 537, the outer edge of the movable screw rod 537 is fixedly sleeved with a worm wheel 538, the outer edge of the worm wheel 538 is meshed with a worm 539, the worm 539 and the movable screw rod 537 are both movably connected to the mounting bracket 542, and the mounting bracket 542 is fixedly assembled on the top shell 5191.

[0044] In the above structure, the worm wheel 538 is driven to rotate by rotating the worm 539, and the rotation of the worm wheel 538 drives the movable screw 537 to rotate. The rotation of the movable screw 537 can drive the movable sleeve 535 to move. The movement of the movable sleeve 535 drives the connecting sleeve 528 to move, so that the connecting sleeve 528 can be detached from the connecting column 531. The self-locking characteristics of the worm wheel 538 and the worm 539 are utilized, so that the vibration force generated by the driving motor 3 during operation will not cause the movable screw 537 to rotate, thereby improving the stability of the movable sleeve 535.

[0045] In a preferred embodiment: the outer edge of the cross bar 527 is fixedly equipped with a plurality of slide bars 529, the inner wall of the connecting sleeve 528 is provided with a plurality of slide grooves 530, the slide bars 529 are slidably connected to the slide grooves 530, the inner wall of the connecting sleeve 528 is fixedly equipped with a plurality of inner connecting blocks 532, and the plurality of inner connecting blocks 532 are evenly distributed on the connecting sleeve 528, and the outer edge of the connecting column 531 is fixedly equipped with a plurality of outer connecting blocks 533, and the plurality of outer connecting blocks 533 are evenly distributed on the connecting column 531.

[0046] In the above structure, through the setting of the slide bar 529, the slide bar 529 plays a role of limiting the connecting sleeve 528, and the connecting sleeve 528 can only slide on the slide bar 529. When the connecting sleeve 528 rotates, it can drive the slide bar 529 to rotate clockwise and counterclockwise. By using the inner connecting block 532 and the outer connecting block 533 in coordination, the inner connecting block 532 is inserted into the gap between the two outer connecting blocks 533. At this time, the connecting column 531 can drive the connecting sleeve 528 when rotating. When the inner connecting block 532 is not in contact with the outer connecting block 533, the connecting column 531 will not drive the connecting sleeve 528 to rotate when rotating, thereby playing the role of cutting off and connecting power.

[0047] In a preferred embodiment: the top of the top reel 519 is fixedly equipped with a top toothed disc 520, the outer edge of the top toothed disc 520 is meshed with a top gear 521, the inner wall of the top gear 521 is fixedly equipped with a top reciprocating screw rod 522, the outer edge of the top reciprocating screw rod 522 is threadedly connected to a top guide block 523, and the stainless steel coil 501 passes through the top guide block 523.

[0048] In the above structure, the top gear disc 520 is driven to rotate by the rotation of the top reel 519, and the rotation of the top gear disc 520 can drive the top gear 521 to rotate, so that the top gear 521 can drive the top guide block 523 to move back and forth up and down when rotating, so that the top guide block 523 can guide the stainless steel coil 501, so that the stainless steel coil 501 can be neatly wound on the top reel 519.

[0049] In a preferred embodiment: the inner wall of the top guide block 523 is slidably connected with a top vertical rod 524 , the top vertical rod 524 is fixedly assembled on the top shell 5191 , and the top reciprocating screw rod 522 is movably connected to the top shell 5191 .

[0050] In the above structure, through the coordinated use of the top vertical rod 524 and the top guide block 523, the top vertical rod 524 plays a role of limiting the top guide block 523, so that the top reciprocating screw 522 will not drive the top guide block 523 to rotate when it rotates, so that the top guide block 523 can only move up and down, thereby improving the rationality of the device.

[0051] In a preferred embodiment: the top of the bottom reel 506 is fixedly equipped with a bottom toothed disc 507, the outer edge of the bottom toothed disc 507 is meshed with a bottom gear 508, the inner wall of the bottom gear 508 is fixedly sleeved with a bottom reciprocating screw rod 509, the outer edge of the bottom reciprocating screw rod 509 is threadedly connected to a bottom guide block 510, and the stainless steel coil 501 passes through the bottom guide block 510.

[0052] In the above structure, the bottom gear disc 507 is driven to rotate by the rotation of the bottom reel 506, and the rotation of the bottom gear disc 507 can drive the bottom gear 508 to rotate, so that the bottom reciprocating screw rod 509 can drive the bottom guide block 510 to move back and forth up and down during rotation, so that the bottom guide block 510 can guide the stainless steel coil 501, so that the stainless steel coil 501 can be neatly wound on the bottom reel 506.

[0053] In a preferred embodiment, the inner wall of the bottom guide block 510 is slidably connected with a bottom vertical rod 511 , the bottom vertical rod 511 is fixedly assembled on the bottom shell 5061 , and the bottom reciprocating screw rod 509 is movably connected to the bottom shell 5061 .

[0054] In the above structure, through the coordinated use of the bottom guide block 510 and the bottom vertical rod 511, the bottom vertical rod 511 plays a role of limiting the bottom guide block 510, so that the bottom reciprocating screw 509 will not drive the bottom guide block 510 to rotate when it rotates, so that the bottom guide block 510 can only move up and down, thereby improving the rationality of the device.

[0055] Working principle: when in use, the stirring rod 4 is driven to rotate by the driving motor 3. The driving bevel gear 2 541 on the stirring rod 4 drives the driving bevel gear 1 540 to rotate when rotating. The connecting column 531 rotates following the driving bevel gear 1 540. The connecting bevel gear 2 526 on the connecting column 531 drives the connecting bevel gear 1 525 to rotate. At this time, the top connecting rod 518 and the top bevel gear 517 on the connecting bevel gear 1 525 also rotate. The top bevel gear 517 rotates to drive the changing bevel gear 514 and the bottom bevel gear 513 to rotate. The bottom bevel gear 517 rotates to drive the changing bevel gear 514 and the bottom bevel gear 513 to rotate. The bottom connecting rod 512 on the top connecting rod 13 also rotates, and the top reel 519 on the top connecting rod 518 rotates in the opposite direction to the bottom reel 506 on the bottom connecting rod 512. At this time, the top reel 519 reels the stainless steel coil 501, and the bottom reel 506 reels the stainless steel coil 501. At this time, the rubber scraper 505 on the stainless steel coil 501 moves from the head to the tail of the stainless steel coil 501, and the rubber scraper 505 scrapes the dirt in the stainless steel coil 501. Then the driving motor 3 is reversed to make the rubber scraper 505 move. The rubber scraper 505 moves from the tail end of the stainless steel coil 501 to the head end to clean the dirt in the stainless steel coil 501. When the material needs to be cooled, the rubber scraper 505 is moved between the left water outlet pipe 502 and the right water outlet pipe 503, and the cold water pipe can be connected to the top water inlet 5192. At this time, the cold water enters the top shell 5191 through the top water inlet 5192, and then enters the stainless steel coil 501 and is discharged through the left water outlet pipe 502. At this time, the cold water in the section between the left water outlet pipe 502 and the top shell 5191 can be The material in the tank body 1 is cooled down. When the material is heated, when the rubber scraper 505 is located between the left water outlet pipe 502 and the right water outlet pipe 503, the hot water pipe is connected to the bottom water inlet 5062. At this time, the hot water enters the bottom shell 5061 through the bottom water inlet 5062, and then enters the stainless steel coil 501 and is discharged through the right water outlet pipe 503. At this time, the hot water in the section between the right water outlet pipe 503 and the bottom shell 5061 can heat the material in the tank body 1, making the use of the stainless steel coil 501 more flexible.

[0056] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0057] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A coil-type heating reactor, comprising a tank body (1), characterized in that: A connecting seat (2) is fixedly mounted on the top of the tank body (1), a driving motor (3) is mounted on the top of the connecting seat (2), a stirring rod (4) is fixedly sleeved on the power output shaft of the driving motor (3), and a heating component (5) is mounted on the outer wall of the tank body (1); The heating component (5) comprises a stainless steel coil (501), the inner cavity of the stainless steel coil (501) is penetrated by a left water outlet pipe (502), the right side of the left water outlet pipe (502) is provided with a right water outlet pipe (503), the inner cavity of the stainless steel coil (501) is provided with a steel wire rope (504), the outer edge of the steel wire rope (504) is fixedly equipped with a rubber scraper (505), the head of the steel wire rope (504) is fixedly equipped with a top drum (519), the inner wall of the top drum (519) is fixedly equipped with a top connecting rod (518), and the outer edge of the top connecting rod (518) is movably connected to a top The stainless steel coil (501) has a head portion penetrating through the top shell (5191), the inner cavity of the top shell (5191) is penetrated by a top water inlet (5192), the tail of the steel wire rope (504) is fixedly equipped with a bottom drum (506), the inner wall of the bottom drum (506) is fixedly equipped with a bottom connecting rod (512), the outer edge of the bottom connecting rod (512) is movably connected to the bottom shell (5061), the tail of the stainless steel coil (501) penetrates through the bottom shell (5061), and the inner cavity of the bottom shell (5061) is penetrated by a bottom water inlet (5062).

2. A coil-type heating reactor according to claim 1, characterized in that: The outer edge of the top of the bottom connecting rod (512) is fixedly sleeved with a bottom bevel gear (513), the outer edge of the bottom bevel gear (513) is meshed with a direction-changing bevel gear (514), the inner wall of the direction-changing bevel gear (514) is fixedly sleeved with a fixing rod (515), the outer edge of the direction-changing bevel gear (514) is meshed with a top bevel gear (517), the outer edge of the fixing rod (515) is movably connected with a fixing bracket (516), and the fixing bracket (516) is fixedly assembled on the outer walls of the top shell (5191) and the bottom shell (5061).

3. The coil-type heating reactor according to claim 1, characterized in that: The outer edge of the top of the top connecting rod (518) is fixedly sleeved with a connecting bevel gear 1 (525), the outer edge of the connecting bevel gear 1 (525) is fixedly sleeved with a connecting bevel gear 2 (526), ​​the inner wall of the connecting bevel gear 2 (526) is fixedly sleeved with a cross bar (527), the outer edge of the cross bar (527) is slidably connected with a connecting sleeve (528), the outer edge of the connecting sleeve (528) is slidably connected with a connecting column (531), one end of the connecting column (531) away from the cross bar (527) is fixedly sleeved with a driving bevel gear 1 (540), the outer edge of the driving bevel gear 1 (540) is meshed with a driving bevel gear 2 (541), and the driving bevel gear 2 (541) is fixedly sleeved on the stirring rod (4).

4. A coil-type heating reactor according to claim 3, characterized in that: A connecting ring (534) is fixedly sleeved on the outer wall of the connecting sleeve (528), and a movable sleeve (535) is movably sleeved on the outer edge of the connecting ring (534).

5. The coil-type heating reactor according to claim 4, characterized in that: The outer wall of the movable sleeve (535) is fixedly equipped with a connecting piece (536), the inner wall of the connecting piece (536) is threadedly connected with a movable screw rod (537), the outer edge of the movable screw rod (537) is fixedly sleeved with a worm wheel (538), the outer edge of the worm wheel (538) is meshed with a worm (539), the worm (539) and the movable screw rod (537) are both movably connected to a mounting bracket (542), and the mounting bracket (542) is fixedly assembled on the top shell (5191).

6. The coil-type heating reactor according to claim 3, characterized in that: The outer edge of the cross bar (527) is fixedly equipped with a plurality of slide bars (529); the inner wall of the connecting sleeve (528) is provided with a plurality of slide grooves (530); the slide bars (529) are slidably connected to the slide grooves (530); the inner wall of the connecting sleeve (528) is fixedly equipped with a plurality of inner connecting blocks (532); the plurality of inner connecting blocks (532) are evenly distributed on the connecting sleeve (528); the outer edge of the connecting column (531) is fixedly equipped with a plurality of outer connecting blocks (533); the plurality of outer connecting blocks (533) are evenly distributed on the connecting column (531).

7. The coil-type heating reactor according to claim 1, characterized in that: A top toothed disc (520) is fixedly mounted on the top of the top reel (519); a top gear (521) is meshed on the outer edge of the top toothed disc (520); a top reciprocating screw rod (522) is fixedly mounted on the inner wall of the top gear (521); a top guide block (523) is threadedly connected to the outer edge of the top reciprocating screw rod (522); and the stainless steel coil (501) passes through the top guide block (523).

8. The coil-type heating reactor according to claim 7, characterized in that: The inner wall of the top guide block (523) is slidably connected to a top vertical rod (524), the top vertical rod (524) is fixedly assembled on the top shell (5191), and the top reciprocating screw rod (522) is movably connected to the top shell (5191).

9. The coil-type heating reactor according to claim 1, characterized in that: A bottom toothed disc (507) is fixedly mounted on the top of the bottom reel (506); a bottom gear (508) is meshed on the outer edge of the bottom toothed disc (507); a bottom reciprocating screw rod (509) is fixedly sleeved on the inner wall of the bottom gear (508); a bottom guide block (510) is threadedly connected to the outer edge of the bottom reciprocating screw rod (509); and the stainless steel coil (501) passes through the bottom guide block (510).

10. The coil-type heating reactor according to claim 9, characterized in that: The inner wall of the bottom guide block (510) is slidably connected to a bottom vertical rod (511), the bottom vertical rod (511) is fixedly assembled on the bottom shell (5061), and the bottom reciprocating screw rod (509) is movably connected to the bottom shell (5061).

Citation Information

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