Automatic feeding device for calcining kiln production and using method thereof
By designing the automatic feeding device for roasting kiln production, and using the cooperation of the flowering and splashing mechanism and the rotating mechanism, the problems of uneven addition of high-purity alumina are solved, and the uniform drop and tiling of materials are achieved, which improves the production efficiency and the service life of the kiln.
Patent Information
- Application Number
- CN202510389949.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-31
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2045-03-31
AI Technical Summary
When adding high-purity alumina, existing roasting kilns are mostly sprinklers, which leads to uneven dispersion of materials, causing difficulties in stacking and melting, affecting production, and easily splashing to the inner wall to form slag, affecting the service life of the kiln.
An automatic feeding device for roasting kiln production is designed, including a vertical kiln body, a lifting vibration mechanism, a rotating mechanism and a storage barrel. Through the cooperation of the flowering and sprinkling mechanism, the material is uniformly dropped and laid and tiled to avoid splashing.
The uniform addition of high-purity alumina is achieved, which avoids material dispersion and splashing, improves the falling efficiency and tiling uniformity of the material, and extends the service life of the roasting kiln.
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Figure CN119915085A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the field of automatic feeding devices, in particular to an automatic feeding device for roasting kiln production and a use method thereof. Background Art
[0002] In order to ensure safety and thermal insulation, the existing roasting kiln has a small feed port. When in use, high-purity alumina is added to the feed port manually or by a robot. However, due to the high internal temperature, it is inconvenient for both humans and robots to operate inside, so the high-purity alumina is mostly added by throwing. However, this will cause the high-purity alumina that falls into the kiln to be unevenly dispersed, causing the high-purity alumina to accumulate and become difficult to melt to form slag, affecting the production of artificial gems. Moreover, when throwing, some of the high-purity alumina is easily splashed to the surrounding inner walls, and then melted and attached to the inner walls to form slag, affecting the roasting kiln.
[0003] In the process of realizing the present invention, the inventors found that there are at least the following problems in the existing roasting kiln production and feeding process that have not been solved: 1. High-purity alumina is mostly added by sprinkling, which causes uneven dispersion of the high-purity alumina falling into the roasting kiln, resulting in accumulation of high-purity alumina, making it difficult to melt and forming slag; 2. When sprinkling, part of the high-purity alumina is easily splashed to the surrounding inner walls, and then melts and adheres to the inner walls to form slag, which affects the service life of the roasting kiln. Summary of the invention
[0004] The object of the present invention is to provide an automatic feeding device for roasting kiln production and a method of using the same, so as to solve the problems raised in the above background technology. To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an automatic feeding device for roasting kiln production, comprising a vertical kiln body, a lifting and vibrating mechanism located at the top of the vertical kiln body, a rotating mechanism connected to the lifting and vibrating mechanism, and a storage barrel connected to the bottom of the lifting and vibrating mechanism, wherein the outer diameter of the storage barrel is smaller than the inner diameter of the feeding port arranged at the top of the vertical kiln body, a plurality of first rectangular holes are arranged on the outer side of the bottom of the storage barrel, a plurality of first discharge holes are arranged on the bottom of the storage barrel, a one-way limiting component is connected to the top of the storage barrel, a plurality of fixing components are connected to the outside of the storage barrel, a plurality of limiting chutes are arranged on the bottom of the storage barrel, the trough body of the limiting chute is connected to a blooming and spreading mechanism, the blooming and spreading mechanism comprises a first storage body slidably connected to the trough body of the limiting chute, a first dislocation component located at the bottom of the first storage body, a second storage body located at the bottom of the first dislocation component, and a second dislocation component located at the bottom of the second storage body, the second storage body is connected to the second dislocation component through a buffer component, one side of the second storage body is connected to the first limiting component, and the first limiting component cooperates with the first dislocation component; The first material storage body is provided with first through holes on both sides, and the first material storage body is rotatably connected to the vertical rods on both sides of the top of the outer end; One side of the second dislocation component is rotationally connected to an arm rod, one side of the arm rod is rotationally connected to a cross plate, the top of the cross plate is connected to a rotating mechanism, and the cross plate cooperates with a fixed component.
[0005] Preferably, the lifting and vibration mechanism comprises a cylinder, a lifting cylinder connected to the driving end of the cylinder, and a plurality of connecting rods connected to the outside of the bottom of the lifting cylinder, and the bottom of the lifting cylinder is rotatably connected to the storage cylinder; The bottom of the connecting rod is connected to a fixing ring, the inner wall of the fixing ring is slidably connected to the outer wall of the storage barrel, the outer wall of the fixing ring is provided with a plurality of arc-shaped grooves, and the groove bodies of the arc-shaped grooves are matched with the vertical rods.
[0006] Preferably, hidden grooves are provided on both sides of the groove body of the limiting slide groove, and the groove body of the hidden groove is connected to the first dislocation component, including a first spring connected to the groove body of the hidden groove, a first slide rod connected to one side of the first spring, and a first dislocation plate connected to one side of the first slide rod, the first dislocation plate is provided with a third rectangular hole on the outer side, and a plurality of second through holes are provided on both sides of the first dislocation plate, the second through holes are staggered with the first through holes, and the first through holes correspond to the first blanking holes one by one; The inner end of the first material storage body is slidably connected to a rectangular limiting groove provided on one side of the limiting slide groove, an L-shaped baffle is fixed to the outer end of the first material storage body, and a second rectangular hole is provided on the outer side of the first material storage body, the second rectangular hole, the third rectangular hole and the hole body of the first rectangular hole correspond to each other, and the hole body of the third rectangular hole is larger than the hole bodies of the first rectangular hole and the second rectangular hole; The first limiting assembly includes a second spring connected to a groove body on the top side of the second storage body and a first limiting block connected to the top of the second spring, the first limiting block cooperates with the hole body of the third rectangular hole, the first limiting block cooperates with the groove body of the first limiting groove on the bottom side of the L-shaped baffle plate, and the L-shaped baffle plate cooperates with the first offset plate.
[0007] Preferably, the buffer assembly includes a third spring connected to the grooves on both sides of the second storage body, a second slide rod connected to one side of the third spring, and an arc plate connected to one side of the second slide rod, and the arc plate cooperates with the L-shaped baffle; The second misalignment assembly includes a third sliding rod connected to both sides of the bottom of the arc plate, a fourth spring connected to one side of the third sliding rod and a second misalignment plate connected to one side of the fourth spring, the fourth spring is located in the groove body of the second misalignment plate, and the multiple third through holes arranged on both sides of the second misalignment plate are staggered with the fourth through holes arranged on both sides of the bottom of the second storage body. The top side of the second misalignment plate is connected to the second limiting assembly, the second limiting assembly includes a fifth spring connected to the groove body on the top side of the second misalignment plate and a second limiting block connected to the top of the fifth spring, the second limiting block cooperates with the groove body of the second limiting groove arranged on the bottom side of the second storage body.
[0008] Preferably, the one-way limiting assembly includes a ratchet connected to the outer wall of the top of the storage barrel and a pawl rotatably connected to one side of the bottom of the lifting cylinder, the pawl cooperates with the ratchet, one side of the top of the pawl is connected to a sixth spring, one end of the sixth spring is connected to a rotating column, and the top of the rotating column is rotatably connected to the lifting cylinder.
[0009] Preferably, a plurality of L-shaped plates are fixed to the outer side of the top of the storage barrel, one side of the L-shaped plate is connected to a fixing assembly, the fixing assembly includes a seventh spring connected to one side of the bottom of the L-shaped plate and a long rod connected to the bottom of the seventh spring, the top end of the long rod passes through the L-shaped plate and cooperates with the groove body of a plurality of fixing grooves arranged on the top of the lifting barrel, the bottom end of the long rod passes through the storage barrel and is connected to a lifting block, and the lifting block cooperates with one end of a cross plate.
[0010] Preferably, the rotating mechanism comprises a rotating shaft rotatably connected to the inner center of the lifting cylinder, the bottom end of the rotating shaft passes through the storage cylinder to connect the cross plate, the top of the rotating shaft is rotatably connected to the second bevel gear, and the top of the second bevel gear is connected to the first matching ring; The top of the rotating shaft is connected to the fifth bevel gear, the top of the rotating shaft is rotatably connected to the third bevel gear, the top of the rotating shaft is slidably connected to the lifting matching ring, the lifting matching ring is located between the third bevel gear and the second bevel gear, the bottom of the third bevel gear is connected to the second matching ring, the second matching ring and the first matching ring cooperate with the lifting matching ring, one side of the lifting matching ring is rotatably connected to the L-shaped rod, the outer end of the L-shaped rod is rotatably connected to the synchronous plate, the top of the synchronous plate is rotatably connected to the Y-shaped rod, the top of the Y-shaped rod is connected to the gravity block, one end of the Y-shaped rod is rotatably connected to the fixed shaft, one end of the fixed shaft is connected to the vertical plate arranged inside the lifting cylinder, one side of the fixed shaft is rotatably connected to the fourth bevel gear, the fourth bevel gear is meshed with the fifth bevel gear, one side of the fourth bevel gear is connected to the toggle rod on the outside, and the toggle rod cooperates with the Y-shaped rod; One side of the bottom of the vertical plate is connected to a rotating motor, a driving end of the rotating motor is connected to a first bevel gear, and the first bevel gear is meshed and connected with the third bevel gear and the second bevel gear.
[0011] Preferably, the method for using the automatic feeding device for roasting kiln production comprises the following steps: S1: When unloading is required, the cylinder drives the lifting cylinder and the storage cylinder to descend, so that the storage cylinder is close to the heating area of the vertical kiln body, and then the first bevel gear is driven to rotate by the rotating motor, thereby driving the third bevel gear and the second bevel gear to rotate. Since the second matching ring cooperates with the lifting matching ring, the third bevel gear, the rotating shaft and the fifth bevel gear can rotate in the same direction, and the cross plate is driven to rotate by the rotating shaft, so that the second storage body and the second offset plate are moved through the arm, so that the material passes through the third rectangular hole, the first rectangular hole and the second rectangular hole into the second storage body. The material body is pressed by the arc plate against the inner wall of the vertical kiln body to move the second dislocation plate, so that the third through hole corresponds to the fourth through hole one by one. At this time, the second limit block enters the second limit groove, and the first limit block enters the third rectangular hole, thereby driving the first dislocation plate to move, so that the first limit block enters the first limit groove. At this time, the second through hole corresponds to the first through hole one by one. At this time, the material can fall into the heating area of the vertical kiln body. When the second material storage body moves to the limit value, the cross plate pushes the lifting block to make the lifting block and the long rod descend, so that the long rod is separated from the fixed groove, and the limit of the material storage barrel is cancelled; S2: The material storage barrel rotates with the rotating shaft, thereby causing the vertical rod to rotate. Since the vertical rod cooperates with the arc-shaped groove of the fixed ring, the vertical rod can move back and forth, thereby causing the second material storage body, the second offset plate, the first offset plate and the first material storage body to move back and forth synchronously, which can accelerate the falling of the material and make the material more evenly spread, thereby avoiding the gap between the first through hole and the fourth through hole from being unable to spread the material; S3: The fourth bevel gear and the toggle rod are rotated through the fifth bevel gear, so that the toggle rod squeezes the Y-rod, and then the Y-rod rotates, so that the synchronous plate rotates, and then the L-rod descends, so that the first matching ring cooperates with the lifting matching ring, so that the rotating shaft is reversed, and the material is just laid flat. Due to the cooperation between the pawl and the ratchet, the storage barrel cannot be reversed, so that the cross plate is reversed, and then the second storage body and the second offset plate are contracted and moved through the arm rod, and at the same time, the first offset plate, the second offset plate and the long rod are reset through the first spring, the fourth spring and the seventh spring to prevent the material from continuing to fall.
[0012] Compared with the prior art, the present invention has the following beneficial effects: In the present invention, the storage barrel, the blooming and spreading mechanism, the rotating mechanism, the one-way limiting component and the fixed component are used in combination. The blooming and spreading mechanism can be expanded and contracted through the rotating mechanism. When the blooming and spreading mechanism expands and squeezes the inner wall of the vertical kiln body, the fixed component cancels the limitation on the storage barrel. The one-way limiting component can make the storage barrel rotate in only one direction, which is convenient for the contraction of the blooming and spreading mechanism.
[0013] In the present invention, by using a fixed ring and a vertical rod in combination, when the vertical rod and the material storage barrel rotate, the vertical rod can be moved back and forth, so that the second material storage body, the second offset plate, the first offset plate and the first material storage body can move back and forth synchronously, which can accelerate the falling of the material and make the material more evenly spread, avoiding the gap between the first through hole and the fourth through hole from being unable to spread the material. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the structure of the present invention with the shaft kiln body removed as a whole; Figure 3 A cross-sectional view of a portion of the device of the present invention; Figure 4 A cross-sectional view of the present invention as a whole; Figure 5 for Figure 4 Enlarged view of point A in the middle; Figure 6 A bottom view of a section of a device of the present invention Figure 1 ; Figure 7 It is a bottom view structural schematic diagram of part of the device of the present invention; Figure 8 It is a bottom-up fracture cross-sectional view of the present invention; Fig. 9 for Figure 8 Enlarged view of point B in the middle; Fig.10 for Figure 8 Enlarged view of point C in the middle; Fig.11 A bottom view of a section of a device of the present invention Figure 2 ; Fig.12 for Fig.11 Enlarged view of point D in the middle; Fig.13 The fracture cross-section of the present invention Figure 1 ; Fig.14 The fracture cross-section of the present invention Figure 2 .
[0015] In the figure: 1, vertical kiln body; 2, lifting and vibrating mechanism; 21, cylinder; 22, lifting cylinder; 221, fixing groove; 23, connecting rod; 24, fixing ring; 25, arc groove; 3, storage barrel; 31, limiting slide groove; 32, rectangular limiting groove; 33, first rectangular hole; 34, first discharge hole; 4, flowering and spreading mechanism; 41, cross plate; 42, arm; 43, second storage body; 431, second limiting groove; 44, buffer assembly; 441, third spring; 442, second slide bar; 443, arc plate; 45, second dislocation assembly; 451, third slide bar; 452, fourth spring; 453, second dislocation plate; 454, second limit assembly; 4541, fifth spring; 4542, second limit block; 46, first dislocation assembly; 461, first spring; 462, first slide bar; 463, first dislocation plate; 46 31. third rectangular hole; 47. first material storage body; 471. L-shaped baffle; 472. first limiting groove; 473. second rectangular hole; 48. first limiting assembly; 481. second spring; 482. first limiting block; 49. vertical rod; 5. one-way limiting assembly; 51. ratchet; 52. pawl; 53. sixth spring; 54. rotating column; 6. fixing assembly; 61. seventh spring; 62. long rod; 63. lifting Block; 7, rotating mechanism; 71, rotating motor; 72, first bevel gear; 73, rotating shaft; 74, second bevel gear; 75, first matching ring; 76, third bevel gear; 77, second matching ring; 78, lifting matching ring; 79, L-shaped rod; 710, synchronous plate; 711, Y-shaped rod; 712, gravity block; 713, fourth bevel gear; 714, toggle rod; 715, fifth bevel gear; 716, fixed shaft. DETAILED DESCRIPTION
[0016] 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 technical personnel in this field without creative work are within the scope of protection of the present invention.
[0017] See also Figures 1 to 14The present invention provides a technical solution: an automatic feeding device for roasting kiln production, including an automatic feeding device for roasting kiln production, including a vertical kiln body 1, a lifting and vibrating mechanism 2 located at the top of the vertical kiln body 1, a rotating mechanism 7 connected to the lifting and vibrating mechanism 2 and a storage barrel 3 connected to the bottom of the lifting and vibrating mechanism 2, the outer diameter of the storage barrel 3 is smaller than the inner diameter of the feed port set at the top of the vertical kiln body 1, a plurality of first rectangular holes 33 are arranged on the outer side of the bottom of the storage barrel 3, a plurality of first discharge holes 34 are arranged on the bottom of the storage barrel 3, a one-way limiting component 5 is connected to the top of the storage barrel 3, and a plurality of fixing components are connected to the outside of the storage barrel 3 6. A plurality of limiting chutes 31 are provided at the bottom of the storage barrel 3. The trough body of the limiting chute 31 is connected to the blooming and spreading mechanism 4. The blooming and spreading mechanism 4 includes a first storage body 47 slidably connected to the trough body of the limiting chute 31, a first dislocation component 46 located at the bottom of the first storage body 47, a second storage body 43 located at the bottom of the first dislocation component 46, and a second dislocation component 45 located at the bottom of the second storage body 43. The second storage body 43 is connected to the second dislocation component 45 through a buffer component 44. One side of the second storage body 43 is connected to the first limiting component 48, and the first limiting component 48 cooperates with the first dislocation component 46. It should be noted that the storage barrel 3 and the contracted blooming and spreading mechanism 4 can pass through the feed port set at the top of the vertical kiln body 1. The second storage body 43 is provided with a trough body for storing materials. When the materials are completely spread in the heating zone of the vertical kiln body 1, the materials in the second storage body 43 are just used up. The vertical kiln body 1 is a prior art and will not be described in detail here.
[0018] First through holes are provided on both sides of the first material storage body 47 , and both sides of the top of the outer end of the first material storage body 47 are rotatably connected to the vertical rods 49 .
[0019] One side of the second dislocation assembly 45 is rotatably connected to the arm 42, and one side of the arm 42 is rotatably connected to the cross plate 41. The top of the cross plate 41 is connected to the rotating mechanism 7, and the cross plate 41 cooperates with the fixed assembly 6. It should be noted that the rotation of the cross plate 41 can drive the arm 42 to rotate, so that the second storage body 43 and the second dislocation assembly 45 can be moved.
[0020] In this embodiment, Figures 1 to 14 As shown, the lifting and vibrating mechanism 2 includes a cylinder 21, a lifting cylinder 22 connected to the driving end of the cylinder 21, and a plurality of connecting rods 23 connected to the outside of the bottom of the lifting cylinder 22. The bottom of the lifting cylinder 22 is rotatably connected to the storage cylinder 3.
[0021] The bottom of the connecting rod 23 is connected to the fixing ring 24, the inner wall of the fixing ring 24 is slidably connected to the outer wall of the storage barrel 3, and the outer wall of the fixing ring 24 is provided with a plurality of arc grooves 25, and the groove body of the arc groove 25 cooperates with the vertical rod 49. It should be noted that: the lifting cylinder 22 is driven to rise and fall by the cylinder 21, so that the storage barrel 3 and the fixing ring 24 are synchronously lifted and lowered, so that the storage barrel 3 is close to the heating zone of the vertical kiln body 1, so as to prevent the material from splashing to the inner wall of the vertical kiln body 1, resulting in the formation of slag on the inner wall of the vertical kiln body 1.
[0022] In this embodiment, Figures 1 to 14 As shown, hidden grooves are provided on both sides of the groove body of the limiting slide groove 31, and the groove body of the hidden groove is connected to the first dislocation assembly 46, including a first spring 461 connected to the hidden groove groove body, a first slide bar 462 connected to one side of the first spring 461, and a first dislocation plate 463 connected to one side of the first slide bar 462. The first dislocation plate 463 is provided with a third rectangular hole 4631 on the outer side, and a plurality of second through holes are provided on both sides of the first dislocation plate 463. The second through holes are staggered with the first through holes, and the first through holes correspond to the first unloading holes 34 one by one. It should be noted that the elastic force of the first spring 461 can reset the first slide bar 462 and the first dislocation plate 463, so that the second through holes are staggered with the first through holes, and the first dislocation plate 463 seals the second storage body 43.
[0023] The inner end of the first storage body 47 is slidably connected with the rectangular limiting groove 32 provided on one side of the limiting slide groove 31, and an L-shaped baffle 471 is fixed to the outer end of the first storage body 47. The first storage body 47 is provided with a second rectangular hole 473 on the outer side, and the second rectangular hole 473, the third rectangular hole 4631 and the hole body of the first rectangular hole 33 correspond to each other, and the hole body of the third rectangular hole 4631 is larger than the hole body of the first rectangular hole 33 and the second rectangular hole 473. It should be noted that the rectangular limiting groove 32 can limit the moving range of the first storage body 47, and the second rectangular hole 473, the third rectangular hole 4631 and the hole body of the first rectangular hole 33 correspond to each other so that the material in the storage barrel 3 can fall into the second storage body 43.
[0024] The first limiting assembly 48 includes a second spring 481 connected to the groove body on the top side of the second storage body 43 and a first limiting block 482 connected to the top of the second spring 481, the first limiting block 482 cooperates with the hole body of the third rectangular hole 4631, the first limiting block 482 cooperates with the groove body of the first limiting groove 472 on the bottom side of the L-shaped baffle 471, and the L-shaped baffle 471 cooperates with the first offset plate 463. It should be noted that: the first limit block 482 is reset by the elastic force of the second spring 481, so that the first limit block 482 enters the third rectangular hole 4631. Since the first rectangular hole 33 and the second rectangular hole 473 are smaller than the third rectangular hole 4631, the first limit block 482 will not enter the first rectangular hole 33 and the second rectangular hole 473, so that the second storage body 43 can drive the first offset plate 463 to move. A first bevel is provided on the inner side of the top of the first limit block 482, so that the pressure on the first offset plate 463 decreases when the second storage body 43 moves, so that the second storage body 43 and the first offset plate 463 can move relative to each other.
[0025] In this embodiment, Figures 1 to 14 As shown, the buffer assembly 44 includes a third spring 441 connected to the grooves on both sides of the second storage body 43, a second slide bar 442 connected to one side of the third spring 441, and an arc plate 443 connected to one side of the second slide bar 442, and the arc plate 443 cooperates with the L-shaped baffle 471. It should be noted that: the second slide bar 442 and the arc plate 443 are reset by the elastic force of the third spring 441, and the elastic force of the third spring 441 enables the second storage body 43 to have a buffer space, and the outer surface of the arc plate 443 is rotatably connected to multiple rollers, which can reduce the friction between the arc plate 443 and the vertical kiln body 1, and avoid damage to the inner wall of the vertical kiln body 1.
[0026] The second dislocation component 45 includes a third slide bar 451 connected to both sides of the bottom of the arc plate 443, a fourth spring 452 connected to one side of the third slide bar 451 and a second dislocation plate 453 connected to one side of the fourth spring 452, the fourth spring 452 is located in the groove body of the second dislocation plate 453, and the multiple third through holes arranged on both sides of the second dislocation plate 453 are staggered with the fourth through holes arranged on both sides of the bottom of the second storage body 43. The top side of the second dislocation plate 453 is connected to the second limiting component 454, and the second limiting component 454 includes a fifth spring 4541 connected to the groove body on one side of the top of the second dislocation plate 453 and a second limiting block 4542 connected to the top of the fifth spring 4541, and the second limiting block 4542 cooperates with the groove body of the second limiting groove 431 arranged on one side of the bottom of the second storage body 43. It should be noted that: the second offset plate 453 is reset by the elastic force of the fourth spring 452, so that the third through hole and the fourth through hole are staggered, so that the second offset plate 453 seals the second storage body 43, and the second limit block 4542 is entered into the second limit groove 431 by the elastic force of the fifth spring 4541, so that the second offset plate 453 can drive the second storage body 43 to move, and the second limit block 4542 is provided with a second bevel on the inner side of the top of the second limit block 4542, so that when the second offset plate 453 moves, the second limit block 4542 is squeezed to shrink, so that the second offset plate 453 and the second storage body 43 can move relative to each other.
[0027] In this embodiment, Figures 1 to 14 As shown, the one-way limiting assembly 5 includes a ratchet 51 connected to the outer wall of the top of the storage barrel 3 and a pawl 52 rotatably connected to one side of the bottom of the lifting cylinder 22, the pawl 52 cooperates with the ratchet 51, one side of the top of the pawl 52 is connected to the sixth spring 53, one end of the sixth spring 53 is connected to the rotating column 54, and the top of the rotating column 54 is rotatably connected to the lifting cylinder 22. It should be noted that the storage barrel 3 can only rotate in one direction through the cooperation of the pawl 52 and the ratchet 51, and the pawl 52 can be reset by the elastic force of the sixth spring 53.
[0028] In this embodiment, Figures 1 to 14As shown, a plurality of L-shaped plates are fixed on the outside of the top of the storage barrel 3, and one side of the L-shaped plate is connected to the fixing assembly 6, and the fixing assembly 6 includes a seventh spring 61 connected to one side of the bottom of the L-shaped plate and a long rod 62 connected to the bottom of the seventh spring 61, and the top of the long rod 62 passes through the L-shaped plate and matches with the groove body of the plurality of fixed grooves 221 set on the top of the lifting barrel 22, and the bottom end of the long rod 62 passes through the storage barrel 3 and connects to the lifting block 63, and the lifting block 63 matches with one end of the cross plate 41. It should be noted that: the long rod 62 and the lifting block 63 are reset by the elastic force of the seventh spring 61, so that the long rod 62 enters the fixing groove 221, thereby limiting the rotation of the storage barrel 3, and a third bevel is provided on one side of the top of the lifting block 63, which can make the cross plate 41 squeeze the third bevel of the lifting block 63, so that the lifting block 63 descends.
[0029] In this embodiment, Figures 1 to 14 As shown, the rotating mechanism 7 includes a rotating shaft 73 rotatably connected to the inner center of the lifting cylinder 22, the bottom end of the rotating shaft 73 passes through the storage cylinder 3 and connects to the cross plate 41, the top of the rotating shaft 73 is rotatably connected to the second bevel gear 74, and the top of the second bevel gear 74 is connected to the first matching ring 75.
[0030] The top of the rotating shaft 73 is connected to the fifth bevel gear 715, the top of the rotating shaft 73 is rotatably connected to the third bevel gear 76, the top of the rotating shaft 73 is slidably connected to the lifting matching ring 78, the lifting matching ring 78 is located between the third bevel gear 76 and the second bevel gear 74, the bottom of the third bevel gear 76 is connected to the second matching ring 77, the second matching ring 77 and the first matching ring 75 cooperate with the lifting matching ring 78, one side of the lifting matching ring 78 is rotatably connected to the L-shaped rod 79, and the outer end of the L-shaped rod 79 is rotatably connected to the synchronous plate 7 10. The top of the synchronous plate 710 is rotatably connected to the Y-shaped rod 711, the top of the Y-shaped rod 711 is connected to the gravity block 712, one end of the Y-shaped rod 711 is rotatably connected to the fixed shaft 716, one end of the fixed shaft 716 is connected to the vertical plate set inside the lifting cylinder 22, one side of the fixed shaft 716 is rotatably connected to the fourth bevel gear 713, the fourth bevel gear 713 is meshed and connected with the fifth bevel gear 715, one side of the fourth bevel gear 713 is connected to the toggle rod 714 on the outside, and the toggle rod 714 cooperates with the Y-shaped rod 711. It should be noted that: a fixed plate is set inside the lifting cylinder 22, and a sliding groove is set on one side of the fixed plate, and the groove body of the sliding groove is slidably connected with the convex body fixed on one side of the L-shaped rod 79.
[0031] The bottom side of the vertical plate is connected to a rotating motor 71, and the driving end of the rotating motor 71 is connected to the first bevel gear 72, and the first bevel gear 72 is meshed and connected with the third bevel gear 76 and the second bevel gear 74. It should be noted that: the first bevel gear 72 is driven to rotate by the rotating motor 71, thereby driving the third bevel gear 76 and the second bevel gear 74 to rotate. If the second matching ring 77 cooperates with the lifting matching ring 78, the third bevel gear 76, the lifting matching ring 78 and the rotating shaft 73 can be rotated synchronously. If the first matching ring 75 cooperates with the lifting matching ring 78, the second bevel gear 74, the lifting matching ring 78 and the rotating shaft 73 can be rotated synchronously, and the fifth bevel gear 715 is driven to rotate through the rotating shaft 73, thereby driving the fourth bevel gear 713 and The toggle rod 714 rotates. If the toggle rod 714 contacts the Y-shaped rod 711, the Y-shaped rod 711 can be rotated, and the gravity of the gravity block 712 makes the Y-shaped rod 711 always have a tendency to rotate, so that the lifting and lowering matching ring 78 is more conducive to matching with the second matching ring 77 or the first matching ring 75, thereby realizing the forward and reverse rotation of the rotating shaft 73. The second matching ring 77 and the first matching ring 75 are provided with a plurality of grooves on one side close to the lifting and lowering matching ring 78, and the lifting and lowering matching ring 78 is provided with a plurality of protrusions on the top and bottom, and the protrusions match with the groove body of the groove.
[0032] In this embodiment, Figures 1 to 14 As shown, the method for using the automatic feeding device for roasting kiln production includes the following steps: S1: When it is necessary to unload materials, the cylinder 21 drives the lifting cylinder 22 and the storage cylinder 3 to descend, so that the storage cylinder 3 is close to the heating zone of the vertical kiln body 1, and then the first bevel gear 72 is driven to rotate by the rotating motor 71, thereby driving the third bevel gear 76 and the second bevel gear 74 to rotate. Since the second matching ring 77 cooperates with the lifting matching ring 78, the third bevel gear 76, the rotating shaft 73 and the fifth bevel gear 715 can rotate in the same direction, and the cross plate 41 is driven to rotate by the rotating shaft 73, so that the second storage body 43 and the second offset plate 453 are moved through the arm 42, so that the material enters the second storage body through the third rectangular hole 4631, the first rectangular hole 33 and the second rectangular hole 473 The second dislocation plate 453 moves by squeezing the inner wall of the vertical kiln body 1 through the arc plate 443, so that the third through hole corresponds to the fourth through hole one by one. At this time, the second limit block 4542 enters the second limit groove 431, and the first limit block 482 enters the third rectangular hole 4631, thereby driving the first dislocation plate 463 to move, so that the first limit block 482 enters the first limit groove 472. At this time, the second through hole corresponds to the first through hole one by one. At this time, the material can fall into the heating area of the vertical kiln body 1. When the second material storage body 43 moves to the limit value, the cross plate 41 pushes the lifting block 63 to make the lifting block 63 and the long rod 62 descend, so that the long rod 62 is separated from the fixed groove 221, and the limit of the storage barrel 3 is cancelled; S2: The material storage barrel 3 rotates with the rotating shaft 73, thereby rotating the vertical rod 49. Since the vertical rod 49 cooperates with the arc-shaped groove 25 of the fixing ring 24, the vertical rod 49 can move back and forth, thereby making the second material storage body 43, the second offset plate 453, the first offset plate 463 and the first material storage body 47 move back and forth synchronously, which can accelerate the falling of the material and make the material more evenly spread, avoiding the gap between the first through hole and the fourth through hole from being unable to spread the material; S3: The fourth bevel gear 713 and the toggle rod 714 are rotated through the fifth bevel gear 715, so that the toggle rod 714 squeezes the Y-shaped rod 711, and then the Y-shaped rod 711 rotates, so that the synchronous plate 710 rotates, and then the L-shaped rod 79 descends, so that the first matching ring 75 cooperates with the lifting matching ring 78, so that the rotating shaft 73 is reversed, and the material is just laid flat. Due to the cooperation between the pawl 52 and the ratchet 51, the storage barrel 3 cannot be reversed, so that the cross plate 41 is reversed, and then the second storage body 43 and the second offset plate 453 are contracted and moved through the arm rod 42, and at the same time, the first spring 461, the fourth spring 452 and the seventh spring 61 are used to reset the first offset plate 463, the second offset plate 453 and the long rod 62 to prevent the material from continuing to fall.
[0033] The above shows and describes the basic principles, main features and advantages of the present invention. Technical personnel in this industry should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.
Claims
1. An automatic feeding device for roasting kiln production, comprising a vertical kiln body (1), a lifting and vibrating mechanism (2) located at the top of the vertical kiln body (1), a rotating mechanism (7) connected to the lifting and vibrating mechanism (2), and a storage barrel (3) connected to the bottom of the lifting and vibrating mechanism (2), wherein the outer diameter of the storage barrel (3) is smaller than the inner diameter of a feed port provided at the top of the vertical kiln body (1), and characterized in that: The bottom of the material storage barrel (3) is provided with a plurality of first rectangular holes (33) on the outside, the bottom of the material storage barrel (3) is provided with a plurality of first material discharge holes (34), the top of the material storage barrel (3) is connected to a one-way limiting component (5), the outside of the material storage barrel (3) is connected to a plurality of fixing components (6), the bottom of the material storage barrel (3) is provided with a plurality of limiting slide grooves (31), the groove body of the limiting slide groove (31) is connected to a flowering and spreading mechanism (4), and the flowering and spreading mechanism (4) comprises a first A material storage body (47), a first dislocation component (46) located at the bottom of the first material storage body (47), a second material storage body (43) located at the bottom of the first dislocation component (46), and a second dislocation component (45) located at the bottom of the second material storage body (43), the second material storage body (43) and the second dislocation component (45) are connected via a buffer component (44), one side of the second material storage body (43) is connected to a first limiting component (48), and the first limiting component (48) cooperates with the first dislocation component (46); First through holes are provided on both sides of the first material storage body (47), and the first material storage body (47) is rotatably connected to vertical rods (49) on both sides of the top of the outer end; One side of the second offset component (45) is rotatably connected to the arm rod (42), one side of the arm rod (42) is rotatably connected to the cross plate (41), the top of the cross plate (41) is connected to the rotating mechanism (7), and the cross plate (41) cooperates with the fixed component (6).
2. The automatic feeding device for roasting kiln production according to claim 1, characterized in that: The lifting and vibrating mechanism (2) comprises a cylinder (21), a lifting cylinder (22) connected to the driving end of the cylinder (21), and a plurality of connecting rods (23) connected to the outside of the bottom of the lifting cylinder (22); the bottom of the lifting cylinder (22) is rotatably connected to the storage cylinder (3); The bottom of the connecting rod (23) is connected to a fixing ring (24), the inner wall of the fixing ring (24) is slidably connected to the outer wall of the storage barrel (3), the outer wall of the fixing ring (24) is provided with a plurality of arc-shaped grooves (25), and the groove bodies of the arc-shaped grooves (25) are matched with the vertical rod (49).
3. The automatic feeding device for roasting kiln production according to claim 1 is characterized in that: Hidden grooves are provided on both sides of the groove body of the limiting sliding groove (31); the groove body of the hidden groove is connected to a first dislocation assembly (46) including a first spring (461) connected to the groove body of the hidden groove, a first slide bar (462) connected to one side of the first spring (461), and a first dislocation plate (463) connected to one side of the first slide bar (462); a third rectangular hole (4631) is provided on the outer side of the first dislocation plate (463); a plurality of second through holes are provided on both sides of the first dislocation plate (463); the second through holes are staggered with the first through holes, and the first through holes correspond one to one with the first feeding holes (34); The inner end of the first material storage body (47) is slidably connected to a rectangular limiting groove (32) provided on one side of the limiting slide groove (31); an L-shaped baffle (471) is fixed to the outer end of the first material storage body (47); a second rectangular hole (473) is provided on the outer side of the first material storage body (47); the second rectangular hole (473), the third rectangular hole (4631) and the first rectangular hole (33) correspond to each other, and the hole body of the third rectangular hole (4631) is larger than the hole bodies of the first rectangular hole (33) and the second rectangular hole (473); The first limiting assembly (48) comprises a second spring (481) connected to a groove body on one side of the top of the second material storage body (43) and a first limiting block (482) connected to the top of the second spring (481); the first limiting block (482) cooperates with the hole body of the third rectangular hole (4631); the first limiting block (482) cooperates with the groove body of the first limiting groove (472) on one side of the bottom of the L-shaped baffle plate (471); and the L-shaped baffle plate (471) cooperates with the first offset plate (463).
4. The automatic feeding device for roasting kiln production according to claim 3 is characterized in that: The buffer assembly (44) comprises a third spring (441) connected to the grooves on both sides of the second material storage body (43), a second slide rod (442) connected to one side of the third spring (441), and an arc plate (443) connected to one side of the second slide rod (442), wherein the arc plate (443) cooperates with the L-shaped baffle (471); The second dislocation assembly (45) comprises a third slide bar (451) connected to both sides of the bottom of the arc plate (443), a fourth spring (452) connected to one side of the third slide bar (451) and a second dislocation plate (453) connected to one side of the fourth spring (452); the fourth spring (452) is located in a groove body of the second dislocation plate (453); a plurality of third through holes arranged on both sides of the second dislocation plate (453) are staggered with fourth through holes arranged on both sides of the bottom of the second material storage body (43); a second limiting assembly (454) is connected to one side of the top of the second dislocation plate (453); the second limiting assembly (454) comprises a fifth spring (4541) connected to the groove body on one side of the top of the second dislocation plate (453) and a second limiting block (4542) connected to the top of the fifth spring (4541); the second limiting block (4542) cooperates with the groove body of the second limiting groove (431) arranged on one side of the bottom of the second material storage body (43).
5. The automatic feeding device for roasting kiln production according to claim 2, characterized in that: The one-way limiting assembly (5) comprises a ratchet (51) connected to the top outer wall of the storage barrel (3) and a pawl (52) rotatably connected to one side of the bottom of the lifting barrel (22), the pawl (52) cooperates with the ratchet (51), one side of the top of the pawl (52) is connected to a sixth spring (53), one end of the sixth spring (53) is connected to a rotating column (54), and the top of the rotating column (54) is rotatably connected to the lifting barrel (22).
6. The automatic feeding device for roasting kiln production according to claim 2, characterized in that: A plurality of L-shaped plates are fixed on the outer side of the top of the material storage barrel (3); one side of the L-shaped plate is connected to a fixing assembly (6); the fixing assembly (6) comprises a seventh spring (61) connected to one side of the bottom of the L-shaped plate and a long rod (62) connected to the bottom of the seventh spring (61); the top end of the long rod (62) passes through the L-shaped plate and cooperates with the groove body of a plurality of fixing grooves (221) provided on the top of the lifting barrel (22); the bottom end of the long rod (62) passes through the material storage barrel (3) and is connected to a lifting block (63); the lifting block (63) cooperates with one end of the cross plate (41).
7. The automatic feeding device for roasting kiln production according to claim 2, characterized in that: The rotating mechanism (7) comprises a rotating shaft (73) rotatably connected to the inner center of the lifting cylinder (22); the bottom end of the rotating shaft (73) passes through the material storage cylinder (3) and is connected to the cross plate (41); the top of the rotating shaft (73) is rotatably connected to the second bevel gear (74); the top of the second bevel gear (74) is connected to the first matching ring (75); The top of the rotating shaft (73) is connected to the fifth bevel gear (715), the top of the rotating shaft (73) is rotatably connected to the third bevel gear (76), the top of the rotating shaft (73) is slidably connected to a lifting matching ring (78), the lifting matching ring (78) is located between the third bevel gear (76) and the second bevel gear (74), the bottom of the third bevel gear (76) is connected to the second matching ring (77), the second matching ring (77) and the first matching ring (75) cooperate with the lifting matching ring (78), one side of the lifting matching ring (78) is rotatably connected to an L-shaped rod (79), and the outer end of the L-shaped rod (79) is rotatably connected to a synchronous plate ( 710), the top of the synchronization plate (710) is rotatably connected to the Y-shaped rod (711), the top of the Y-shaped rod (711) is connected to the gravity block (712), one end of the Y-shaped rod (711) is rotatably connected to the fixed shaft (716), one end of the fixed shaft (716) is connected to the vertical plate provided inside the lifting cylinder (22), one side of the fixed shaft (716) is rotatably connected to the fourth bevel gear (713), the fourth bevel gear (713) is meshedly connected with the fifth bevel gear (715), one side of the fourth bevel gear (713) is connected to the toggle rod (714) on the outside, and the toggle rod (714) cooperates with the Y-shaped rod (711); One side of the bottom of the vertical plate is connected to a rotating motor (71), a driving end of the rotating motor (71) is connected to a first bevel gear (72), and the first bevel gear (72) is meshingly connected with a third bevel gear (76) and a second bevel gear (74).
8. A method for using an automatic feeding device for roasting kiln production, using the automatic feeding device for roasting kiln production as claimed in any one of claims 1 to 7, characterized in that: The steps include: S1: When material is to be unloaded, the cylinder (21) drives the lifting cylinder (22) and the material storage cylinder (3) to descend, so that the material storage cylinder (3) is close to the heating zone of the vertical kiln body (1), and then the first bevel gear (72) is driven to rotate by the rotating motor (71), thereby driving the third bevel gear (76) and the second bevel gear (74) to rotate. Since the second matching ring (77) is matched with the lifting matching ring (78), the third bevel gear (76), the rotating shaft (73) and the fifth bevel gear (715) can rotate in the same direction, and the cross plate (41) is driven to rotate by the rotating shaft (73), thereby moving the second material storage body (43) and the second offset plate (453) through the arm (42), so that the material passes through the third rectangular hole (4631), the first rectangular hole (33) and the second rectangular hole (473) into the second The material storage body (43) squeezes the inner wall of the vertical kiln body (1) through the arc plate (443) to move the second offset plate (453), so that the third through hole corresponds to the fourth through hole one by one. At this time, the second limit block (4542) enters the second limit groove (431), and at the same time, the first limit block (482) enters the third rectangular hole (4631), thereby driving the first offset plate (463) to move, so that the first limit block (482) enters the first limit groove (472). At this time, the second through hole corresponds to the first through hole one by one. At this time, the material can fall into the heating area of the vertical kiln body (1). When the second material storage body (43) moves to the limit value, the cross plate (41) pushes the lifting block (63) to make the lifting block (63) and the long rod (62) descend, so that the long rod (62) is separated from the fixed groove (221), and the limit of the material storage barrel (3) is cancelled; S2: The material storage barrel (3) rotates along with the rotating shaft (73), thereby causing the vertical rod (49) to rotate. Since the vertical rod (49) cooperates with the arc-shaped groove (25) of the fixing ring (24), the vertical rod (49) can move back and forth, thereby causing the second material storage body (43), the second offset plate (453), the first offset plate (463) and the first material storage body (47) to move back and forth synchronously, thereby accelerating the falling of the material and making the material more evenly spread, thereby avoiding the situation where the gap between the first through hole and the fourth through hole cannot be spread. S3: The fourth bevel gear (713) and the toggle rod (714) are rotated through the fifth bevel gear (715), so that the toggle rod (714) squeezes the Y-shaped rod (711), thereby rotating the Y-shaped rod (711), thereby rotating the synchronous plate (710), and then the L-shaped rod (79) is lowered, so that the first matching ring (75) and the lifting matching ring (78) are matched, so that the rotating shaft (73) is reversed. At this time, the material is just flattened. Due to the matching of the pawl (52) and the ratchet (51), the storage barrel (3) cannot be reversed, so that the cross plate (41) is reversed, and then the second storage body (43) and the second offset plate (453) are retracted and moved through the arm rod (42). At the same time, the first offset plate (463), the second offset plate (453) and the long rod (62) are reset through the first spring (461), the fourth spring (452) and the seventh spring (61), so as to prevent the material from continuing to fall.
Citation Information
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