Anti-impact gun slag tap of tin material fuming furnace
By designing an anti-impact slag discharge port for a tin material fuming furnace and using components such as splicing support rods and anti-splash baffles, the problems of components being unable to be spliced and installed, and slag splashing were solved, achieving convenient installation and safety protection.
Patent Information
- Application Number
- CN202520064419.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-01-13
AI Technical Summary
The components of existing tin smelting equipment cannot be spliced and installed, which makes maintenance inconvenient, and the lack of slag splash protection makes it easy for slag fragments to be splashed into the external environment.
A slag discharge port with anti-impact cannon for a tin material fuming furnace was designed, including a first-stage slag discharge chute, a second-stage slag discharge chute, a connecting mechanism, a splash-proof mechanism, and splicing support rods. The components can be detached and installed through the cooperation of the splicing support rods and the limiting frame, and the splash-proof baffle prevents slag from splashing.
It enables convenient assembly and installation of components and effectively prevents slag splashing, improving the ease of equipment maintenance and safety, and preventing slag debris from polluting the environment.
Smart Images

Figure CN223954647U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to metal smelting technical field, concretely is tin material fuming furnace anti -shock cannon and puts out the slag mouth. BACKGROUND
[0002] Tin is a kind of slightly blue white luster low melting point transition metal element, tin is widely used in electronic, information, electrical apparatus, chemical industry, metallurgy, building material, machinery, food packaging etc.
[0003] Various equipment or material in life will use tin to process, in the process of smelting tin, fuming furnace is used to smelt, and slag outlet is also used to discharge slag generated when fuming furnace works, but the existing equipment cannot splice and install parts when using, and workers generally weld parts on the equipment when using, so that it is inconvenient for workers to maintain parts, and the equipment does not have the function of protecting splashed slag when using, so that slag debris is easily splashed to external environment when discharging, in order to solve the above technical problems, we design tin material fuming furnace anti -shock cannon and put out the slag mouth. UTILITARIAN CONTENT
[0004] The utility model provides a tin material fuming furnace anti -shock cannon and puts out the slag mouth, has the advantages that parts can be spliced and installed, and slag splashing can be prevented, solves the problem that parts cannot be spliced and installed, and workers generally weld parts on the equipment, which is inconvenient for the later maintenance of the equipment, and the equipment does not have the function of protecting splashed slag, so that slag debris is easily splashed to external environment.
[0005] To achieve the above object, the utility model provides the following technical scheme: a tin material fuming furnace anti -shock cannon and put out the slag mouth, including a section of slag flushing chute, the right side of the section of slag flushing chute is fixedly installed with two section of slag flushing chute, the right side of two section of slag flushing chute is provided with connecting mechanism, the right side of connecting mechanism is movably provided with slag outlet slot, the surface of the section of slag flushing chute is provided with splash-proof mechanism, the splash-proof mechanism includes positioning lug, the positioning lug is fixedly installed on the top of the section of slag flushing chute and two section of slag flushing chute respectively, the connecting mechanism includes splicing support, the splicing support is fixedly installed on the bottom of two section of slag flushing chute, the left side of the bottom of the section of slag flushing chute is fixedly installed with leakage-proof frame, the left side of the section of slag flushing chute is movably provided with connecting groove.
[0006] Preferably, the top of the section of slag flushing chute and two section of slag flushing chute are movably provided with splash-proof baffle, the front and rear sides of the section of slag flushing chute and two section of slag flushing chute are fixedly installed with installation plug-in box, the bottom of the splash-proof baffle is fixedly installed with installation plug-in plate.
[0007] Preferably, the two installation plug-in boxes are fixedly installed with pulling buckles on opposite sides through rotating shafts, and the two installation plug-in plates are fixedly installed with installation clamping blocks on opposite sides.
[0008] Preferably, the two-stage slag flushing chute is fixedly installed with splicing clamping shells on front and back sides, and the slag discharge port groove is fixedly installed with splicing plug-in plates on front and back sides.
[0009] Preferably, the right side of the splicing clamping shell is provided with a guide groove, and the opposite sides of the two splicing plug-in plates are fixedly installed with guide sliding blocks.
[0010] Preferably, the right side of the bottom of the two-stage slag flushing chute is fixedly installed with a connecting clamping frame, the bottom of the slag discharge port groove is fixedly installed with a splicing clamping plate, and the bottom of the slag discharge port groove is fixedly installed with a limiting frame.
[0011] Preferably, the right side of the top of the two-stage slag flushing chute is fixedly installed with a rotating clamping frame through a rotating shaft, and the top of the slag discharge port groove is fixedly installed with a splicing clamping block.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The utility model discloses a one-stage slag flushing chute, a two-stage slag flushing chute, an installation plug-in box, a pulling buckle, a splash-proof baffle, an installation plug-in plate, an installation clamping block, a splicing support rod, a splicing clamping shell, a limiting frame and a splicing plug-in plate cooperate, and can splice and install parts, when using, the user can drive the splicing clamping shell to move through the two-stage slag flushing chute, make the splicing plug-in plate can be inserted into the splicing clamping shell, and simultaneously, the splicing support rod is also inserted into the limiting frame, then the user again splices and installs parts by clamping the rotating clamping frame on the splicing clamping block, and the user can also splice and install parts by inserting the installation plug-in plate into the installation plug-in box through the splash-proof baffle, so that the splash-proof baffle can prevent the slag from splashing. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is the structure of the utility model Figure One ;
[0015] Figure 2 It is the structure of the utility model Figure Two ;
[0016] Figure 3 It is the splash-proof mechanism of the partial structure of the utility model and the exploded perspective view;
[0017] Figure 4 It is the connecting mechanism of the partial structure of the utility model and the exploded perspective view from below.
[0018] In the figure: 1, a section of slag flushing chute; 2, two sections of slag flushing chute; 3, slag discharge port groove; 4, splash-proof mechanism; 5, connecting mechanism; 6, leakage-proof frame; 7, connecting groove; 8, installation plug box; 9, pull buckle; 10, positioning protrusion; 11, splash-proof baffle; 12, installation plug plate; 13, installation clamping block; 14, splicing support rod; 15, connecting clamping frame; 16, splicing clamping shell; 17, rotating clamping frame; 18, splicing clamping block; 19, splicing clamping plate; 20, limiting frame; 21, splicing plug plate. DETAILED DESCRIPTION
[0019] Please refer to Figures 1-4 , the tin material fumigation furnace anti-cannon slag discharge port, including a section of slag flushing chute 1, the right side of the first section of slag flushing chute 1 is fixedly installed with two sections of slag flushing chute 2, the right side of the second section of slag flushing chute 2 is provided with connecting mechanism 5, the right side of the connecting mechanism 5 is movably provided with slag discharge port groove 3, the surface of the first section of slag flushing chute 1 is provided with splash-proof mechanism 4, the splash-proof mechanism 4 includes positioning protrusion 10, the positioning protrusion 10 is respectively fixedly installed on the top of the first section of slag flushing chute 1 and the second section of slag flushing chute 2, the connecting mechanism 5 includes splicing support rod 14, the splicing support rod 14 is fixedly installed on the bottom of the second section of slag flushing chute 2, the left side of the bottom of the first section of slag flushing chute 1 is fixedly installed with leakage-proof frame 6, the left side of the first section of slag flushing chute 1 is movably provided with connecting groove 7, through the cooperation of the splicing support rod 14 and the limiting frame 20, the slag discharge port groove 3 can be positioned and treated, and the slag discharge port groove 3 can also be supported, so as to increase the stability of the connection between the second section of slag flushing chute 2 and the slag discharge port groove 3, through the setting of the positioning protrusion 10, the splash-proof baffle 11 can be positioned and treated, so as to install the splash-proof baffle 11 on the first section of slag flushing chute 1 and the second section of slag flushing chute 2.
[0020] Please refer to Figure 1 , Figure 2 and Figure 3 , the top of the first section of slag flushing chute 1 and the second section of slag flushing chute 2 are movably installed with splash-proof baffle 11, the front and back sides of the first section of slag flushing chute 1 and the second section of slag flushing chute 2 are fixedly installed with installation plug box 8, the bottom of the splash-proof baffle 11 is fixedly installed with installation plug plate 12.
[0021] Please refer to Figure 1 , Figure 2 and Figure 3 , the opposite sides of the two installation plug boxes 8 are fixedly installed with pull buckle 9 through the rotating shaft, the opposite sides of the two installation plug plates 12 are fixedly installed with installation clamping block 13, the number of the positioning protrusions 10 is several, through the cooperation of the pull buckle 9 and the installation clamping block 13, the splash-proof baffle 11 can be limited in position, so as to prevent the splash-proof baffle 11 from falling off from the first section of slag flushing chute 1 and the second section of slag flushing chute 2 at will.
[0022] Please refer to Figure 1 , Figure 2 andFigure 4 The front and back sides of the two-stage slag flushing chute 2 are fixedly installed with splicing clamping shells 16, and the front and back sides of the slag discharging chute 3 are fixedly installed with splicing plug plates 21, so that the two-stage slag flushing chute 2 and the slag discharging chute 3 are spliced through the cooperation of the splicing clamping shells 16 and the splicing plug plates 21, and leakage of the slag is prevented.
[0023] Please refer to Figure 1 , Figure 2 and Figure 4 , the right side of the splicing clamping shell 16 is provided with a guide groove, and the opposite sides of the two splicing plug plates 21 are fixedly installed with guide sliding blocks.
[0024] Please refer to Figure 1 , Figure 2 and Figure 4 , the right side of the bottom of the two-stage slag flushing chute 2 is fixedly installed with a connecting clamping frame 15, the bottom of the slag discharging chute 3 is fixedly installed with a splicing clamping plate 19, and the bottom of the slag discharging chute 3 is fixedly installed with a limiting frame 20.
[0025] Please refer to Figure 1 , Figure 2 and Figure 4 , the right side of the top of the two-stage slag flushing chute 2 is fixedly installed with a rotating clamping frame 17 through a rotating shaft, the top of the slag discharging chute 3 is fixedly installed with a splicing clamping block 18, and the rotating clamping frame 17 and the splicing clamping block 18 are cooperated to limit the slag discharging chute 3 in cooperation with the splicing supporting rod 14.
[0026] In use, the user first inserts the mounting plug 12 into the mounting plug box 8 through the splash-proof baffle 11, and the positioning protrusion 10 is also inserted into the splash-proof baffle 11, after the splash-proof baffle 11 is installed, the user then clamps the pulling buckle 9 into the mounting clamping block 13, so that the pulling buckle 9 can cooperate with the mounting clamping block 13 to limit and fix the mounting plug 12, so as to prevent the splash-proof baffle 11 from falling off, so that it can prevent the slag from splashing when discharging the slag, and the user then splices and connects the slag discharge slot 3 through the connecting mechanism 5, so that the device can discharge the slag through the slag discharge slot 3, when connecting the slag discharge slot 3, the user first aligns the splicing support rod 14 with the limiting frame 20, then the user moves the splicing clamping shell 16 through the second stage of the flushing slag chute 2, so that the splicing plug 21 can be inserted into the splicing clamping shell 16, and the splicing support rod 14 is also inserted into the limiting frame 20, so as to splice and install the second stage of the flushing slag chute 2 and the slag discharge slot 3, and the user then rotates the rotating clamping frame 17, so that the rotating clamping frame 17 can be clamped on the splicing clamping block 18, so as to increase the stability of the splicing between the second stage of the flushing slag chute 2 and the slag discharge slot 3, then when the smoke furnace discharges the slag, the flushing cooling water will be discharged into the first stage of the flushing slag chute 1 and the second stage of the flushing slag chute 2 through the slag discharge slot 3, so that the first stage of the flushing slag chute 1 can buffer the slag, then the slag flows into the second stage of the flushing slag chute 2 through the first stage of the flushing slag chute 1, so that the device can ensure the stability of the slag flow, so as to prevent the slag from being blocked, and avoid the phenomenon of slag accumulation and flushing of the device.
[0027] In summary: the tin material smoke furnace anti-blasting slag discharge port, through the cooperation of the first stage of the flushing slag chute 1, the second stage of the flushing slag chute 2, the connecting groove 3, the splash-proof mechanism 4, the connecting mechanism 5, the leakage-proof frame 6, the slag discharge slot 7, the mounting plug box 8, the pulling buckle 9 and the positioning protrusion 10, solves the problem that most of the parts cannot be spliced and installed, usually the parts are directly welded on the device, which is inconvenient for the later maintenance of the device, and also does not have the function of protecting the splashing slag, which is easy to have the problem of splashing slag debris to the external environment.
Claims
1. A slag discharge port for an anti-impact fire in a tin material fuming furnace, comprising a slag discharge chute (1), characterized in that: A second-stage slag chute (2) is fixedly installed on the right side of the first-stage slag chute (1). A connecting mechanism (5) is provided on the right side of the second-stage slag chute (2). A slag discharge slot (3) is movably provided on the right side of the connecting mechanism (5). A splash-proof mechanism (4) is provided on the surface of the first-stage slag chute (1). The splash-proof mechanism (4) includes a positioning protrusion (10). The positioning protrusion (10) is fixedly installed on the top of the first-stage slag chute (1) and the second-stage slag chute (2). The connecting mechanism (5) includes a splicing support rod (14). The splicing support rod (14) is fixedly installed on the bottom of the second-stage slag chute (2). A leak-proof frame (6) is fixedly installed on the left side of the bottom of the first-stage slag chute (1). A connecting slot (7) is movably provided on the left side of the first-stage slag chute (1).
2. The anti-impact slag discharge port of the tin material fuming furnace according to claim 1, characterized in that: The top of the first-stage slag flushing chute (1) and the second-stage slag flushing chute (2) are movably equipped with anti-splash baffles (11), and the front and rear sides of the first-stage slag flushing chute (1) and the second-stage slag flushing chute (2) are fixedly equipped with mounting boxes (8), and the bottom of the anti-splash baffles (11) is fixedly equipped with mounting plates (12).
3. The anti-impact slag discharge port of the tin material fuming furnace according to claim 2, characterized in that: The two mounting boxes (8) are fixedly mounted with pull buckles (9) on opposite sides via a pivot, and the two mounting plates (12) are fixedly mounted with mounting blocks (13) on opposite sides. The number of positioning protrusions (10) is several.
4. The anti-impact slag discharge port of the tin material fuming furnace according to claim 1, characterized in that: The front and rear sides of the two-stage slag flushing chute (2) are fixedly equipped with splicing clips (16), and the front and rear sides of the slag discharge chute (3) are fixedly equipped with splicing inserts (21).
5. The anti-impact slag discharge port of the tin material fuming furnace according to claim 4, characterized in that: The right side of the splicing housing (16) is provided with a guide groove, and guide sliders are fixedly installed on opposite sides of the two splicing inserts (21).
6. The anti-impact slag discharge port of the tin material fuming furnace according to claim 1, characterized in that: A connecting frame (15) is fixedly installed on the right side of the bottom of the two-stage slag flushing chute (2), a splicing plate (19) is fixedly installed on the bottom of the slag discharge chute (3), and a limit frame (20) is fixedly installed on the bottom of the slag discharge chute (3).
7. The anti-impact slag discharge port of the tin material fuming furnace according to claim 1, characterized in that: A rotating frame (17) is fixedly installed on the right side of the top of the two-stage slag flushing chute (2) via a rotating shaft, and a splicing block (18) is fixedly installed on the top of the slag discharge chute (3).