Defrosting equipment for refrigeration engineering pipeline
By designing a sliding groove, a sliding block, and a gear driven by a servo motor, the warm air head rotates around the pipe, solving the high cost problem caused by the fixed position of the pipe defrosting in the existing technology, and achieving efficient and energy-saving defrosting effect in multiple places.
Patent Information
- Application Number
- CN202520454221.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-17
AI Technical Summary
Existing refrigeration engineering pipe defrosting equipment has a fixed location during defrosting, which means that only a section of pipe can be defrosted, increasing defrosting costs and equipment requirements.
A defrosting device comprising a sliding groove, a sliding block, a servo motor, gears, and a warm air head is designed. The servo motor drives the gears to rotate, and the warm air head rotates around the pipe. Combined with the movement of the sliding block, defrosting is achieved at multiple points on the pipe, avoiding heat accumulation and reducing equipment usage.
It achieves efficient defrosting at multiple points throughout the pipeline, reduces defrosting costs, improves convenience and stability, adapts to various pipeline sizes, and saves energy.
Smart Images

Figure CN223882623U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to defrosting equipment technical field, specifically for a defrosting equipment for refrigeration engineering pipeline. BACKGROUND
[0002] There are many kinds of mechanical equipment, and some parts of the mechanical equipment or the mechanical equipment itself can perform different forms of mechanical movement when the mechanical equipment is running. The mechanical equipment is composed of a driving device, a speed changing device, a transmission device, a working device, a braking device, a protection device, a lubricating system, a cooling system and the like.
[0003] In the prior art, the utility model discloses a defrosting equipment for refrigeration engineering pipeline, and the technical solution is that the sliding plate drives the fixed clamping jaw to limit the pipeline, the roller is arranged, the transmission of the pipeline becomes simple, the heater is controlled, the heating pipe can heat and defrost the pipeline, however, the position of the heating pipe is limited and cannot be moved during defrosting, so that defrosting can only be performed on a section of the pipeline, and if defrosting needs to be performed on other positions of the pipeline, additional equipment needs to be arranged, so that the cost of defrosting is increased. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a defrosting equipment for refrigeration engineering pipeline to solve the problems in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme.
[0006] A defrosting equipment for refrigeration engineering pipeline comprises a bottom plate, two sliding grooves arranged on the top of the bottom plate, a sliding block arranged in the sliding groove, a supporting plate arranged on the top of the sliding block, a defrosting ring arranged on the bottom plate, a rotating insertion groove arranged on the defrosting ring, an insertion block arranged in the rotating insertion groove, two installation plates arranged on one side of the defrosting ring, a servo motor arranged on one side of the installation plate, a connecting rod arranged on the other side of the installation plate, two gears arranged in the defrosting ring, and a warm air head arranged on one side of the gear.
[0007] Preferably, the sliding groove is internally provided with a lead screw, the sliding groove is provided with an installation groove on one side, the installation groove is internally fixed with a driving motor, the output end of the driving motor is fixed with one end of the lead screw, one side of the sliding block is provided with a threaded hole, and the sliding block is threadedly connected with the lead screw through the threaded hole.
[0008] Preferably, the inner walls of the sliding groove are respectively provided with stabilizing grooves, and the two sides of the sliding block are respectively fixed with stabilizing blocks, and the stabilizing blocks are slidably arranged in the stabilizing grooves.
[0009] Preferably, the top of the bottom plate is fixed with two placing plates, the top of the placing plate is rotationally connected with a pressing plate, the placing plate and one side of the pressing plate are respectively provided with a placing groove, the inner wall of the placing groove is fixed with a spring, one end of the spring is fixed with a clamping arc plate, and the material of the clamping arc plate is rubber material.
[0010] Preferably, the inside of the placing groove is provided with a limiting groove, the limiting groove is slidably provided with a limiting column, the top end of the limiting column is fixedly connected with the outer wall of the clamping arc plate, and the spring is wrapped around the outer wall of the limiting column.
[0011] Preferably, one side of the pressing plate is fixed with a female buckle, and one side of the placing plate is fixed with a male buckle.
[0012] Preferably, the top of the bottom plate is fixed with a collecting frame, the collecting frame is located directly below the defrosting ring, and the bottom of the bottom plate is fixed with a plurality of universal wheels.
[0013] Preferably, the inner wall of the defrosting ring is provided with a gear slot, and the gear is engaged with the gear slot of the defrosting ring.
[0014] Compared with the prior art, the utility model has the advantages that: through the mortgage of the spring to the clamping arc plate, the pipeline can be extruded and fixed, the clamping arc plate is made of rubber material and can be combined with the pipeline and increase the friction, so that the pipeline is prevented from shaking randomly, the flexibility is increased through the extrusion and fixation of the spring, and the pipeline of various sizes can be adapted, when fixed, heat is generated through the warm air head, the pipeline can be defrosted, when defrosting, the gear is rotated through the rotation of the output end of the servo motor, the plug is inserted in the rotating slot, the gear can be rotated along the inner wall of the defrosting ring, the two warm air heads can be rotated around the pipeline to defrost, the frost layer on the pipeline can be removed more cleanly, the sliding block can be moved through the rotation of the output end of the driving motor and the rotation of the screw rod, the defrosting ring can reciprocate along the pipeline, the heat of the warm air head is prevented from accumulating at one position of the pipeline, the defrosting equipment and energy are prevented from being used too much through the defrosting mode, the cost is saved, the pipeline can be defrosted at multiple positions, the defrosting position is prevented from being fixed, and the convenience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a three-dimensional structure schematic view of the utility model;
[0016] Figure 2 It is a three-dimensional structure schematic view of the utility model;
[0017] Figure 3The utility model discloses a three-dimensional structure schematic diagram of defrosting ring place in the utility model.
[0018] Figure 4 The utility model discloses a three-dimensional structure schematic diagram of pressing plate place in the utility model.
[0019] Figure 5 The utility model discloses a three-dimensional structure schematic diagram of pressing plate place in the utility model. Figure 2 The utility model discloses a three-dimensional structure schematic diagram of pressing plate place in the utility model.
[0020] In the figure: 1, bottom plate, 2, sliding groove, 3, sliding block, 4, support plate, 5, defrosting ring, 6, rotating slot, 7, plug block, 8, mounting plate, 9, servo motor, 10, connecting rod, 11, gear, 12, warm air head, 13, screw rod, 14, mounting groove, 15, drive motor, 16, stabilizing groove, 17, stabilizing block, 18, placing plate, 19, pressing plate, 20, placing groove, 21, spring, 22, clamping arc plate, 23, limiting groove, 24, limiting column, 25, sub hasp, 26, female hasp, 27, collection frame, 28, universal wheel. Specific embodiments
[0021] It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in combination with the embodiments.
[0022] In order to enable the persons skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the present application.
[0023] Embodiment one: please refer to Figures 1-5This utility model provides a technical solution: a defrosting device for refrigeration engineering pipelines, comprising: a base plate 1; two sliding grooves 2, evenly distributed on the top of the base plate 1; a sliding block 3, disposed within the sliding groove 2; a support plate 4, disposed on the top of the sliding block 3; a defrosting ring 5, disposed on the base plate 1; a rotating slot 6, disposed on the defrosting ring 5; a plug 7, disposed within the rotating slot 6; two mounting plates 8, evenly distributed on one side of the defrosting ring 5; a servo motor 9, disposed on one side of the mounting plate 8; a connecting rod 10, disposed on the other side of the mounting plate 8; two gears 11, evenly distributed within the defrosting ring 5, with a warm air head 12 disposed on one side of each gear 11; a lead screw 13 disposed inside the sliding groove 2; a mounting groove 14 disposed on one side of the sliding groove 2; a drive motor 15 fixed inside the mounting groove 14; the output end of the drive motor 15 fixed to one end of the lead screw 13; and a threaded hole disposed on one side of the sliding block 3, through which the sliding block 3 is threadedly connected to the lead screw 13.
[0024] Heat is generated by the heater head 12 to defrost the pipe. During defrosting, the output of the servo motor 9 drives the gear 11 to rotate, and the insert 7 is inserted into the rotating slot 6, so that the gear 11 can rotate along the inner wall of the defrosting ring 5. The rotation of the two gears 11 allows the two heater heads 12 to rotate around the pipe to defrost, so that the frost layer on the pipe can be removed more cleanly. The output of the drive motor 15 drives the lead screw 13 to rotate, so that the sliding block 3 can move. Therefore, the defrosting ring 5 can reciprocate along the pipe, preventing the heat of the heater head 12 from accumulating in one place on the pipe. This defrosting method can avoid using too much defrosting equipment and energy, thus saving costs. It can defrost multiple parts of the entire pipe, avoiding the fixed defrosting position, thus improving convenience.
[0025] Example 2: Figures 1-5 As shown, the defrosting device for refrigeration engineering pipelines disclosed in Embodiment 2 of this utility model has a structure that is basically the same as that in Embodiment 1. The difference is that stabilizing grooves 16 are respectively opened on both sides of the inner wall of the sliding groove 2, and stabilizing blocks 17 are respectively fixed on both sides of the sliding block 3. The stabilizing blocks 17 and the stabilizing grooves 16 are slidably arranged. Two placement plates 18 are fixed on the top of the bottom plate 1. A pressing plate 19 is rotatably connected to the top of the placement plate 18. Placement grooves 20 are respectively opened on one side of the placement plate 18 and the pressing plate 19. A spring 21 is fixed on the inner wall of the placement groove 20. A clamping arc plate 22 is fixed at one end of the spring 21. The clamping arc plate 22 is made of rubber. A limiting groove 23 is opened inside the placement groove 20. A limiting post 24 is slidably arranged inside the limiting groove 23. The top end of the limiting post 24 is fixedly connected to the outer wall of the clamping arc plate 22. The spring 21 is wrapped around the outer wall of the limiting post 24.
[0026] The stabilizing groove 16 and stabilizing block 17 make the sliding block 3 more stable during movement, which in turn makes the defrosting ring 5 more stable, thus improving the stability of defrosting and making the defrosting more comprehensive. The clamping arc plate 22 is pressed by the spring 21, which can squeeze and fix the pipe. The clamping arc plate 22 is made of rubber, which can fit the pipe and increase friction, thus preventing the pipe from shaking. The compression fixation by the spring 21 can increase flexibility and adapt to pipes of various sizes. The limiting groove 23 and limiting post 24 can prevent the spring 21 from tilting during compression, thus making the clamping more firm and stable.
[0027] Example 3: Figures 1-5 As shown, the defrosting device for refrigeration engineering pipelines disclosed in Embodiment 3 of this utility model has a structure that is basically the same as that in Embodiment 2. The difference is that a male hook and loop fastener 25 is fixed on one side of the pressing plate 19, a female hook and loop fastener 26 is fixed on one side of the placement plate 18, a collection frame 27 is fixed on the top of the base plate 1, the collection frame 27 is located directly below the defrosting ring 5, a number of universal wheels 28 are fixed on the bottom of the base plate 1, and a toothed groove is opened on the inner wall of the defrosting ring 5, with the gear 11 meshing with the toothed groove of the defrosting ring 5.
[0028] The use of the male hook and female hook and female hook together increases the stability between the placement plate 18 and the pressing plate 19, thereby making the clamping and fixing effect better. The collection box 27 can collect the water droplets generated during defrosting, preventing them from spreading and causing the ground to become slippery. The casters 28 can be moved easily, which is conducive to adjusting the position.
[0029] The utility model discloses a pipeline defrosting device, which comprises a pipeline, a defrosting ring, a servo motor, a gear, a warm air head, a sliding block, a slide groove, a slide block, a spring, a clamping arc plate and a placing groove.
[0030] It should be understood by those of ordinary skill in the art that the above discussion of any of the embodiments is merely exemplary; under the thought of the utility model, the technical features in the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the utility model as described above, which are not provided in details for the sake of simplicity.
[0031] The utility model is intended to cover all such alternatives, modifications and variations falling within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. A defrosting apparatus for a refrigeration engineering pipeline, characterized in that, Include: The bottom plate (1); Slide groove (2), open with two, are distributed in the top of the bottom plate (1); The sliding block (3) is arranged in the sliding groove (2); Support plate (4), arranged on the top of the sliding block (3); Defrosting ring (5), arranged on the bottom plate (1); Rotary slot (6) is arranged on the defrosting ring (5); Insert block (7), arranged in the rotary slot (6); Mounting plate (8), arranged with two, are distributed on one side of the defrosting ring (5); Servo motor (9), arranged on one side of the mounting plate (8); Connecting rod (10), arranged on the other side of the mounting plate (8); Gear (11), arranged with two, are distributed in the defrosting ring (5), and one side of the gear (11) is provided with a warm air head (12).
2. A defrosting apparatus for a refrigeration engineering pipeline according to claim 1, characterized in that The inside of the sliding groove (2) is provided with a lead screw (13), one side of the sliding groove (2) is provided with a mounting groove (14), the inside of the mounting groove (14) is fixedly provided with a driving motor (15), the output end of the driving motor (15) is fixed with one end of the lead screw (13), one side of the sliding block (3) is provided with a threaded hole, the sliding block (3) is connected with the lead screw (13) through the threaded hole.
3. A defrosting apparatus for a refrigeration engineering conduit according to claim 2, characterized in that The inner wall of the sliding groove (2) is provided with a stabilizing groove (16) on both sides, the sliding block (3) is fixedly provided with a stabilizing block (17) on both sides, and the stabilizing block (17) is slidably arranged in the stabilizing groove (16).
4. A defrosting apparatus for a refrigeration engineering conduit according to claim 3, characterized in that The top of the bottom plate (1) is fixedly provided with two placing plates (18), the top of the placing plate (18) is rotatably connected with a pressing plate (19), one side of the placing plate (18) and the pressing plate (19) is respectively provided with a placing groove (20), the inner wall of the placing groove (20) is fixedly provided with a spring (21), one end of the spring (21) is fixedly provided with a clamping arc plate (22), and the material of the clamping arc plate (22) is rubber material.
5. A defrosting apparatus for a refrigeration engineering conduit according to claim 4, characterized in that The inside of the placing groove (20) is provided with a limiting groove (23), the inside of the limiting groove (23) is slidably provided with a limiting column (24), the top end of the limiting column (24) is fixedly connected with the outer wall of the clamping arc plate (22), and the spring (21) surrounds the outer wall of the limiting column (24).
6. A defrosting apparatus for a refrigeration engineering conduit according to claim 4, characterized in that One side of the pressing plate (19) is fixedly provided with a sub hasp (25), one side of the placing plate (18) is fixedly provided with a female hasp (26).
7. A defrosting apparatus for refrigeration engineering piping according to claim 1, characterized in that, The top of the bottom plate (1) is fixedly provided with a collecting frame (27), the collecting frame (27) is located directly below the defrosting ring (5), and the bottom of the bottom plate (1) is fixedly provided with a plurality of universal wheels (28).
8. A defrosting apparatus for refrigeration engineering piping according to claim 1, characterized in that, The inner wall of the defrosting ring (5) is provided with a gear slot, and the gear (11) is engaged with the gear slot of the defrosting ring (5).
Citation Information
Patent Citations
Defrosting equipment for refrigeration engineering pipeline
CN217083050U