Dust treatment equipment for resin anchor production workshop
By using a design that combines a steam generator and an auger with a condenser plate in the dust treatment equipment, the problems of low dust treatment efficiency and water waste are solved, achieving efficient dust removal and water conservation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-04-03
AI Technical Summary
Existing dust treatment equipment has a short contact time between dust and spray water, resulting in low dust treatment efficiency and serious waste of water resources.
Steam is generated by a steam generator and thoroughly mixed with dust gas through an auger. Combined with the design of a condenser plate and an activated carbon plate, efficient contact and separation of dust and steam are achieved. The steam moistens the dust and the intermittent vibration of the condenser plate prevents blockage, while the activated carbon plate further purifies the gas.
It improved dust capture efficiency, reduced dust content in the workshop, saved water resources, and ensured the continuous and efficient operation of the equipment.
Smart Images

Figure CN224071520U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of dust treatment equipment, specifically a dust treatment device for a resin anchor production workshop. Background Technology
[0002] A production and processing workshop is a place where a certain process or product is completed. It is the basic unit for organizing production within an enterprise. It integrates the personnel, materials and equipment required for product production or processing, which can improve the efficiency of workers and thus reduce product costs. However, some production and processing workshops generate dust during product production or processing. Therefore, in order to protect the workers inside the workshop, it is necessary to remove the dust inside the workshop through a special dust treatment device.
[0003] A Chinese patent (publication number: CN218794907U) discloses a dust treatment device for a production and processing workshop, comprising a water tank, a water pump installed on the side of the water tank, a support plate fixed parallel to the upper surface of the water tank on the side of the water pump, a spray box fixedly installed at the upper end of the support plate, an exhaust pipe fixedly installed on the upper surface of the spray box, and a sealing mechanism installed at the lower end of the exhaust pipe; a support column fixedly installed on the upper inner wall of the spray box, an activated carbon filter screen attached to the upper surface of the support column, a water pipe installed inside the spray box, and a nozzle connected to the lower surface of the water pipe inside the spray box; and a dust collection bin fixedly installed on the lower surface of the spray box.
[0004] The above-mentioned equipment works by spraying water from above and then spraying dusty gas from the side of the equipment. The water spray can then be used to purify the dusty gas. However, in the process of using the above-mentioned equipment, firstly, the dust is relatively small in volume compared to the sprayed water, so most of the water can only spray a portion of the dust, resulting in water waste. Secondly, the contact time between the dust and the water is too short when the dust is introduced, so some dust cannot be effectively treated.
[0005] To address this issue, we designed a dust treatment device for the resin anchor production workshop. Utility Model Content
[0006] The purpose of this invention is to provide a dust treatment device for a resin anchor production workshop to solve the problems mentioned in the background art.
[0007] To solve the above-mentioned technical problems, this utility model provides a dust treatment device for a resin anchor production workshop, including a purification treatment box. An installation cylinder is connected inside the purification treatment box, and an auger is rotatably connected inside the installation cylinder. The auger has multiple air outlets. An air inlet pipe is connected to one side of the installation cylinder, with one end extending to the outside of the purification treatment box. A steam generator is connected to one side of the purification treatment box, and an air outlet pipe is connected to the steam generator. The other end of the air outlet pipe is connected to a rotary joint, which is connected to one side of the purification treatment box. One end of the auger extends to the outside of the installation cylinder and is rotatably connected to the rotary joint. A drive assembly for driving the auger to rotate is connected to the purification treatment box, and an air outlet frame is connected to the top of the purification treatment box.
[0008] Furthermore, the drive assembly includes a first servo motor connected to the top of the purification treatment box, the drive end of the first servo motor and one end of the auger are respectively connected to a second synchronous pulley and a first synchronous pulley, and a synchronous belt is connected between the second synchronous pulley and the first synchronous pulley for transmission.
[0009] Furthermore, a condenser plate is slidably connected inside the purification treatment box, and the position of the condenser plate corresponds to the air outlet end of the mounting cylinder.
[0010] Furthermore, an abutting cam is rotatably connected inside the purification treatment box, and a second servo motor that drives the abutting cam to rotate is connected to one side of the purification treatment box. When the abutting cam rotates, it can drive the condenser plate to rotate intermittently. A return spring is connected to one side of the condenser plate, and the other end of the return spring is connected inside the purification treatment box.
[0011] Furthermore, an activated carbon plate is detachably connected to the air outlet frame via screws.
[0012] Furthermore, a filter frame is connected inside the purification treatment box, and a water outlet pipe is connected to one side of the purification treatment box.
[0013] Furthermore, multiple air vents are arranged in a linear array with equal spacing along the axis of the auger.
[0014] Compared with the prior art, the beneficial effects of this utility model are:
[0015] 1. Steam is generated by a steam generator and distributed evenly within the installation cylinder through the auger's outlet, ensuring thorough mixing with the dust-laden gas. The auger's rotation extends the contact time between the dust and steam, allowing the dust to be fully moistened and agglomerated. Compared to traditional spray-type treatment methods, this improves dust capture efficiency and effectively reduces the dust content in the workshop.
[0016] 2. The condenser plate is located at the corresponding position of the gas outlet end of the mounting cylinder, which allows the steam in the mixture of steam and dust to condense into water droplets quickly upon contact with the cold air, causing the dust to settle with the water droplets, thus achieving efficient gas-solid separation. At the same time, the intermittent vibration of the condenser plate is achieved by the cooperation of the contact cam and the return spring, which can promptly shake off the dust and condensed water droplets attached to the surface, preventing them from accumulating and clogging, and continuously maintaining the condensation efficiency of the condenser plate. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the overall external structure of this utility model;
[0018] Figure 2 This is a cross-sectional view of the present invention;
[0019] Figure 3 This is a rear view of the present invention;
[0020] Figure 4 This utility model Figure 2 Enlarged view of point A in the middle.
[0021] In the diagram: 1. Purification treatment box; 2. Mounting cylinder; 3. Screw conveyor; 4. Air outlet; 5. Air inlet pipe; 6. Steam generator; 7. Rotary joint; 8. First servo motor; 9. First synchronous pulley; 10. Second synchronous pulley; 11. Synchronous belt; 12. Air outlet frame; 13. Condensation plate; 14. Abutting cam; 15. Second servo motor; 16. Return spring; 17. Filter frame; 18. Water outlet pipe; 19. Activated carbon plate. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figure 1-4This utility model provides a technical solution: a dust treatment device for a resin anchor production workshop, including a purification treatment box 1, an installation cylinder 2 connected inside the purification treatment box 1, an auger 3 rotatably connected inside the installation cylinder 2, multiple air outlets 4 on the auger 3, an air inlet pipe 5 connected to one side of the installation cylinder 2, one end of the air inlet pipe 5 extending to the outside of the purification treatment box 1, a steam generator 6 connected to one side of the purification treatment box 1, an air outlet pipe connected to the steam generator 6, a rotary joint 7 connected to the other end of the air outlet pipe, the rotary joint 7 connected to one side of the purification treatment box 1, one end of the auger 3 extending to the outside of the installation cylinder 2 and rotatably connected to the rotary joint 7, a drive assembly for driving the auger 3 to rotate connected to the purification treatment box 1, and an air outlet frame 12 connected to the top of the purification treatment box 1.
[0024] In practice, the high-temperature steam generated by the steam generator 6 enters the internal cavity of the auger 3 through the rotary joint 7 and is evenly discharged through the air outlet 4 on the surface of the auger 3, forming a steam environment inside the mounting cylinder 2. The dust-laden gas enters the mounting cylinder 2 through the air inlet pipe 5 and mixes thoroughly with the steam discharged from the auger 3. The auger 3 rotates under the action of the drive component, extending the contact time between the dust and the steam, so that the dust is moistened and agglomerated by the steam. The treated gas is discharged through the air outlet frame 12 at the top of the purification treatment box 1. In this setup, the steam diffuses in all directions through the air outlet 4, making more thorough contact with the smaller dust particles, reducing water waste. Furthermore, the rotation of the auger 3 causes the dust to spiral forward inside the mounting cylinder 2, extending the contact time with the steam and improving the dust purification effect.
[0025] See Figure 1-4 The drive assembly includes a first servo motor 8 connected to the top of the purification treatment box 1. The drive end of the first servo motor 8 and one end of the auger 3 are respectively connected to a second synchronous pulley 10 and a first synchronous pulley 9. A synchronous belt 11 is connected between the second synchronous pulley 10 and the first synchronous pulley 9.
[0026] In practice, the first servo motor 8 starts, driving the second synchronous pulley 10 to rotate, which in turn drives the first synchronous pulley 9 to rotate via the synchronous belt 11, thereby driving the auger 3 to rotate.
[0027] See Figure 1-4 A condenser plate 13 is slidably connected inside the purification treatment box 1, and the position of the condenser plate 13 corresponds to the air outlet end of the mounting cylinder 2.
[0028] In practice, the mixture of steam and dust discharged from the outlet of the installation cylinder 2 comes into contact with the condenser plate 13 during the flow process. The steam condenses into water droplets upon contact with the condenser, and the dust settles down with the gravity of the water droplets. The separated gas continues to be discharged upward.
[0029] See Figure 1-4Inside the purification treatment box 1, there is a rotating contact cam 14. A second servo motor 15 is connected to one side of the purification treatment box 1 to drive the contact cam 14 to rotate. When the contact cam 14 rotates, it can drive the condenser plate 13 to drive intermittently. A return spring 16 is connected to one side of the condenser plate 13, and the other end of the return spring 16 is connected inside the purification treatment box 1.
[0030] In practice, the second servo motor 15 drives the abutment cam 14 to rotate, intermittently pushing the condenser plate 13 to slide back and forth. The reset spring 16 resets it, realizing the intermittent vibration of the condenser plate 13. In this setting, the vibration causes the dust and condensed water droplets attached to the surface of the condenser plate 13 to fall off, avoiding accumulation and blockage, and maintaining condensation efficiency.
[0031] See Figure 1-4 An activated carbon plate 19 is detachably connected to the air outlet frame 12 via screws.
[0032] In practice, when the treated gas passes through the outlet frame 12, the activated carbon plate 19 adsorbs the residual fine dust particles and odor substances, further purifying the emitted gas.
[0033] See Figure 1-4 A filter frame 17 is connected inside the purification treatment box 1, and a water outlet pipe 18 is connected to one side of the purification treatment box 1.
[0034] In practice, the wastewater and dust particles formed by the mixture of steam and dust settle to the bottom of the purification treatment box 1, the filter frame 17 intercepts solid dust, and the filtrate is discharged through the water outlet pipe 18.
[0035] See Figure 1-4 Multiple air outlets 4 are arranged in a linear array with equal spacing along the axis of the screw conveyor 3.
[0036] In practice, the vent holes 4 are linearly distributed at equal intervals along the axis of the auger 3 to ensure that steam is evenly discharged from different positions of the auger 3, forming a stable steam environment inside the installation cylinder 2.
[0037] Working principle: Steam generator 6 starts working, generating high-temperature steam. The steam enters the cavity inside the auger 3 through the connected outlet pipe and rotary joint 7. Because multiple outlet holes 4 are linearly arrayed and evenly spaced along the axis of the auger 3, steam can be evenly discharged from the surface of the auger 3, forming a steam environment inside the mounting cylinder 2. Dust-laden gas enters the mounting cylinder 2 from outside the purification chamber 1 through the inlet pipe 5. At this time, the first servo motor 8 connected to the top of the purification chamber 1 starts, and its drive end drives the second synchronous wheel 10 to rotate. The second synchronous wheel 10 drives the first synchronous wheel 9 to rotate through the synchronous belt 11, thereby driving the auger 3 to rotate. During the rotation of the auger 3, the dust-laden gas and steam are fully mixed, and as the auger 3 rotates, the dust spirals forward inside the mounting cylinder 2, prolonging the contact time with the steam, allowing the dust to be fully moistened and agglomerated by the steam.
[0038] The mixture of steam and dust discharged from the outlet of the mounting cylinder 2 comes into contact with the corresponding condenser plate 13 during its flow. The steam condenses into water droplets upon cooling, and the dust settles with the water droplets under gravity. At this time, the second servo motor 15 drives the contact cam 14 to rotate. The contact cam 14 intermittently pushes the condenser plate 13 to slide back and forth, while the return spring 16 ensures that the condenser plate 13 can return to its original position, achieving intermittent vibration of the condenser plate 13. This vibration causes the dust and condensed water droplets adhering to the surface of the condenser plate 13 to fall off, preventing accumulation and blockage, and maintaining the efficiency of condensation separation.
[0039] Wastewater and dust particles that settle to the bottom of the purification treatment box 1 are intercepted by the filter frame 17. Solid dust remains inside the filter frame 17, while the filtrate is discharged through the outlet pipe 18. After condensation and separation, the gas continues to move upward. When it passes through the outlet frame 12, the detachably connected activated carbon plate 19 inside the outlet frame 12 adsorbs the remaining fine dust particles and odor substances, further purifying the gas.
Claims
1. A dust treatment apparatus for a resin anchor production plant, comprising a purification treatment tank (1), characterized in that, The installation cylinder (2) is connected in the purification treatment box (1), the auger (3) is rotatably connected in the installation cylinder (2), a plurality of gas outlet holes (4) are formed in the auger (3), one side of the installation cylinder (2) is connected with the air inlet pipe (5), one end of the air inlet pipe (5) extends to the outside of the purification treatment box (1), one side of the purification treatment box (1) is connected with the steam generator (6), the steam generator (6) is connected with the air outlet pipe, the other end of the air outlet pipe is connected with the rotary joint (7), the rotary joint (7) is connected on one side of the purification treatment box (1), one end of the auger (3) extends to the outside of the installation cylinder (2) and is rotatably connected on the rotary joint (7), the purification treatment box (1) is connected with the drive assembly for driving the auger (3) to rotate, and the top of the purification treatment box (1) is connected with the air outlet frame (12).
2. A dust handling apparatus for a resin anchor production plant according to claim 1, characterized in that: The drive assembly comprises a first servo motor (8) connected to the top of the purification treatment box (1), a second synchronous pulley (10) and a first synchronous pulley (9) are respectively connected to the driving end of the first servo motor (8) and one end of the auger (3), and a synchronous belt (11) is transmissionally connected between the second synchronous pulley (10) and the first synchronous pulley (9).
3. A dust handling apparatus for a resin anchor manufacturing plant as claimed in claim 1, characterized in that: The condensation plate (13) is slidably connected in the purification treatment box (1), and the position of the condensation plate (13) corresponds to the air outlet end of the installation cylinder (2).
4. A dust handling apparatus for a resin anchor production plant according to claim 3, characterized in that: The abutting cam (14) is rotatably connected in the purification treatment box (1), one side of the purification treatment box (1) is connected with the second servo motor (15) for driving the abutting cam (14) to rotate, wherein, When the abutting cam (14) rotates, the condensation plate (13) can be driven to intermittently transmit, One side of the condensation plate (13) is connected with the return spring (16), and the other end of the return spring (16) is connected in the purification treatment box (1).
5. A dust handling apparatus for a resin anchor manufacturing plant as claimed in claim 1, characterized in that: The activated carbon plate (19) is detachably connected in the air outlet frame (12) by screws.
6. A dust handling apparatus for a resin anchor manufacturing plant as claimed in claim 1, characterized in that: The filter frame (17) is connected in the purification treatment box (1), and the water outlet pipe (18) is connected on one side of the purification treatment box (1).
7. A dust handling apparatus for a resin anchor manufacturing plant as claimed in claim 1, characterized in that: The plurality of gas outlet holes (4) are linearly arrayed and equally spaced along the axis direction of the auger (3).
Citation Information
Patent Citations
A dust treatment device for production and processing workshops
CN218794907U