A fully automatic feeding device for a tempering furnace

The clamping and adapting mechanism is used to efficiently clamp and position glass of different sizes, and the cleaning mechanism is used to remove impurities, thus solving the problems of low efficiency and poor safety of existing devices and realizing efficient, accurate and safe automatic feeding of the tempering furnace's fully automatic feeding device.

CN120398396BActive Publication Date: 2025-09-19SHANXI XINHONGHUI TECH CO LTD
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Patent Information

Application Number
CN202510885635.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-09-19
Estimated Expiration
2045-06-30

AI Technical Summary

Technical Problem

The existing fully automatic feeding device of the tempering furnace is inefficient when processing glass of different sizes and specifications, and is prone to causing the glass to shift or be damaged, and cannot meet the requirements of efficient, precise and safe automation.

Method used

It adopts clamping mechanism and adapting mechanism, and clamps glass of different sizes through arc-shaped slide rails and clamping rods. The drive motor drives the transmission shaft and spur gear to realize intermittent feeding of glass. It is also equipped with a cleaning mechanism and suction fan to remove impurities on the glass.

Benefits of technology

It achieves efficient clamping and positioning of glass of different sizes, reduces manual intervention, improves production efficiency, prevents glass from being broken due to impurities during the tempering process, and enhances the practicality and safety of the device.

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Abstract

The present invention relates to a fully automatic feeding device for a tempering furnace and relates to the technical field of feeding devices, comprising a transmission platform, supporting legs are provided at the four corners of the bottom of the transmission platform, a feeding frame is provided on the side outer wall of the transmission platform, a dust-proof curtain is provided on the side of the feeding frame close to the transmission platform, a clamping mechanism is provided between the supporting legs and inside the feeding frame, and an adaptor is provided on the clamping mechanism; the present invention can solve the following existing problems: the present invention realizes clamping and positioning of glass of different sizes through the cooperation of an arc-shaped slide rail and a clamping rod; the present invention also drives the transmission shaft to rotate together through a driving motor, and when the transmission shaft rotates, the engagement of the spur gear and the rack can drive the spur gear to rotate, thereby intermittently placing the glass on the top of the transmission platform to realize loading; the present invention realizes more tightly clamping and positioning of thicker glass through the cooperation of the adaptor rod and the connecting rod.
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Description

Technical Field

[0001] The present invention relates to the technical field of feeding devices, and in particular to a fully automatic feeding device for a tempering furnace. Background Art

[0002] Glass tempering furnaces are core equipment for producing tempered glass, and the degree of automation of their feeder directly impacts production efficiency and product quality. Traditional tempering furnace feeding relies primarily on manual operation or semi-automated mechanical devices, resulting in low efficiency, inaccurate positioning, and poor safety. As the glass processing industry continues to demand more automation and product quality, the development of an efficient, precise, and safe fully automatic feeder for tempering furnaces has become an urgent need.

[0003] However, there are usually some problems in the daily use of ordinary tempering furnace automatic feeding devices. With the development of science and technology, technicians in related fields have also made a lot of optimizations on the automatic feeding devices of tempering furnaces. In order to make a more accurate comparison, for example, Chinese patent publication No. CN219752164U discloses a feeding device for a glass tempering furnace, which relates to the technical field of feeding devices. The following solution is proposed, including a slide rail bracket and a connecting mechanism arranged inside the slide rail bracket, the connecting mechanism including a connecting assembly and a lifting assembly; the connecting assembly includes a mounting platform, a telescopic sleeve, a loading bracket, a fixed bracket, a first electric push rod, a limit plate and a rubber plate; by providing the limit plate and the rubber plate, when the loading bracket is lifted or lowered, the loading bracket can slide between the telescopic sleeve and the slide rail bracket, and a certain limit effect is performed under the action of the telescopic sleeve, so that the loading bracket is lifted or lowered to a specified position, and then the limit plate and the rubber plate can slide between the fixed bracket under the telescopic action of the first electric push rod, thereby preventing the glass from being easily offset during the loading operation, causing it to fall off and cause the glass to break.

[0004] However, the feeding device of the above-mentioned glass tempering furnace still has some shortcomings in actual use:

[0005] 1. The feeding device of the above-mentioned glass tempering furnace is provided with a limit plate and a rubber plate so that the loading bracket can be raised and lowered. However, when loading the glass through the loading bracket, if only one piece of glass is loaded, the production efficiency of the glass tempering furnace will be greatly reduced; if multiple pieces of glass are loaded by stacking, the glass will fall from a high place, thereby causing damage to the glass.

[0006] 2. The feeding device of the glass tempering furnace slides with the fixed bracket through the telescopic effect of the first electric push rod to avoid the deviation of the glass during the feeding process. However, the glass has different sizes according to different uses. The fixed bracket can only prevent the deviation of a single glass, which greatly reduces the practicality of the device.

[0007] Therefore, based on the above-stated viewpoint, there is still room for improvement in the existing fully automatic feeding device of the tempering furnace. Summary of the Invention

[0008] In order to solve the above problems, the present invention provides a fully automatic feeding device for a tempering furnace, comprising a transmission platform, support legs are provided at the four corners of the bottom of the transmission platform, a feeding frame is provided on the side outer wall of the transmission platform, a dust-proof curtain is provided on the side of the feeding frame close to the transmission platform, a clamping mechanism is provided between the support legs and inside the feeding frame, and an adapter mechanism is provided on the clamping mechanism.

[0009] Preferably, the clamping mechanism includes a transmission shaft rotatably arranged between the support legs, a support plate located in the feed frame is symmetrically sleeved on the transmission shaft, a rotating shaft is rotatably arranged on the side of the support plate away from the transmission shaft, and a strip plate is arranged on the side of the rotating shaft close to the center of the feed frame.

[0010] Preferably, the clamping mechanism also includes an arc-shaped slide rail symmetrically arranged on the side of the strip plate away from the support plate, a clamping rod is symmetrically slidably arranged in the arc-shaped slide rail, a clamping plate is provided on the side of the clamping rod away from the arc-shaped slide rail, a clamping block is symmetrically slidably arranged on the side of the clamping plate away from the clamping rod, a fixed plate is symmetrically arranged on the side of the clamping plate close to the clamping block, and a spring is provided between the fixed plate and the clamping block.

[0011] Preferably, the adaptation mechanism includes a step frame arranged on the top of the strip plate through a bracket, a slider is slidably arranged on the step frame, square plates are symmetrically arranged on both sides of the slider, a sliding ring is slidably arranged on the step frame and is located below the slider, a spring rod is symmetrically arranged on the top of the sliding ring and passes through the square plate, a plurality of rotating rings are rotatably arranged on the sliding ring, a sliding sleeve is slidably and rotatably sleeved on the clamping rod, a connecting rod connected to the clamping rod is arranged on the outer wall of the rotating ring, a connecting plate is symmetrically arranged on one side of the step frame close to the center of the feed frame, and a spring 2 is arranged between the connecting plate and the sliding ring.

[0012] Preferably, the adaptation mechanism also includes a T-shaped block arranged between the strip plates through a bracket, an adaptation rod is slidably arranged in the T-shaped block, a sliding groove is opened on the T-shaped block, a spring three is arranged between the top of the adaptation rod and the sliding groove, a steering wheel is rotatably arranged between the adaptation rod and the strip plates, the square plate and the adaptation rod are connected by a traction rope, and an intermittent feeding unit is arranged on the support leg and in the feed frame.

[0013] Preferably, the intermittent feeding unit includes an incomplete gear 1 mounted on the transmission shaft close to the support leg, a driving motor is provided on the side of the support leg away from the transmission shaft through the motor housing, and an incomplete gear 2 is mounted on the output shaft of the driving motor and meshes with the incomplete gear 1.

[0014] Preferably, the intermittent feeding unit further comprises a spur gear sleeved on the side of the rotating shaft away from the support plate, and the inner wall of the feed frame is provided with a rack matched with the spur gear.

[0015] Preferably, a placing mechanism is provided in the feed frame and below the strip plate, and the placing mechanism includes an L-shaped plate slidably provided in the feed frame and below the strip plate, a placing plate is provided above the L-shaped plate and between the adapter rod, and a spring four is provided between the placing plate and the L-shaped plate.

[0016] Preferably, a cleaning mechanism is provided on the side of the feed frame away from the transmission platform, and the cleaning mechanism includes an L-shaped pipe provided on the side of the feed frame away from the transmission platform, a filter plate is provided on the side of the L-shaped pipe close to the feed frame, a plurality of suction fans are provided in the L-shaped pipe, a collection frame is provided at the bottom of the L-shaped pipe, a cleaning cloth is provided on the top of the inner wall of the feed frame, and a cleaning block is provided at the bottom of the cleaning cloth.

[0017] Preferably, a pushing mechanism is provided at the top of the inner wall of the feed frame, and the pushing mechanism includes a rotating shaft rotatably arranged on the side wall of the feed frame, a push plate is sleeved on the rotating shaft, the transmission shaft and the push plate are connected by a belt transmission, a top plate is provided on the side of the push plate away from the dust curtain, and a spring five is provided between the top plate and the push plate.

[0018] In summary, this application includes at least one of the following beneficial technical effects:

[0019] 1. The present invention realizes the clamping and positioning of glass of different sizes through the cooperation of the arc-shaped slide rail and the clamping rod; the drive motor also drives the transmission shaft to rotate together, and when the transmission shaft rotates, the spur gear is engaged with the rack to drive the spur gear to rotate, thereby intermittently placing the glass on the top of the transmission platform to realize loading.

[0020] Second, the present invention cooperates with the adapter rod and the connecting rod so that the glass pushes the adapter rod to move upward by different distances according to the thickness of the glass, and the adapter rod moves on the arc-shaped slide rail at different distances, thereby enabling thicker glass to be clamped and positioned more firmly.

[0021] 3. The present invention ensures that the glass can continuously contact the adapter rod through the cooperation of the placement plate and the spring 4, thereby automatically loading multiple pieces of glass; and also prevents impurities on the glass from affecting the glass tempering process and causing the glass to burst during the tempering process through the cooperation of the cleaning cloth and the suction fan. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described below with reference to the accompanying drawings and examples.

[0023] Figure 1 It is a structural schematic diagram of the present invention.

[0024] Figure 2 It is a structural schematic diagram of the clamping mechanism of the present invention.

[0025] Figure 3 This invention Figure 2 A partial enlarged view of point A.

[0026] Figure 4 This is a schematic diagram of the structure of the adapter mechanism of the present invention Figure 1 .

[0027] Figure 5 This invention Figure 4 A partial enlarged view of point B.

[0028] Figure 6 This is a schematic diagram of the structure of the adapter mechanism of the present invention Figure 2 .

[0029] Figure 7 This invention Figure 6 A partial enlarged view of point C.

[0030] Figure 8 This is a schematic diagram of the structure of the adapter mechanism of the present invention Figure 3 .

[0031] Figure 9 It is a structural schematic diagram of the intermittent feeding unit of the present invention.

[0032] Figure 10 It is a structural schematic diagram of the placement mechanism of the present invention.

[0033] Figure 11 It is a structural schematic diagram of the cleaning mechanism of the present invention.

[0034] Figure 12 It is a structural schematic diagram of the pushing mechanism of the present invention.

[0035] In the figure, 1, transmission platform; 10, supporting leg; 11, feeding frame; 12, dust curtain; 2, clamping mechanism; 3, adapter mechanism; 20, transmission shaft; 21, supporting plate; 22, rotating shaft; 23, strip plate; 24, arc slide; 25, clamping rod; 26, clamping plate; 27, clamping block; 28, fixed plate; 29, spring 1; 30, step frame; 31, slider; 310, square plate; 32, sliding ring; 320, spring rod; 321, rotating ring; 322, sliding sleeve; 323, connecting rod; 324, connecting plate; 325, spring 2; 33, T-shaped block; 3 4. Adapter rod; 35. Slide groove; 36. Spring three; 37. Steering wheel; 38. Traction rope; 39. Intermittent feeding unit; 390. Incomplete gear one; 391. Drive motor; 392. Incomplete gear two; 393. Spur gear; 394. Rack; 4. Placement mechanism; 40. L-shaped plate; 41. Placement plate; 42. Spring four; 5. Cleaning mechanism; 50. L-shaped pipe; 51. Filter plate; 52. Suction fan; 53. Collection frame; 54. Cleaning cloth; 55. Cleaning block; 6. Pushing mechanism; 60. Rotating shaft; 61. Push plate; 62. Top plate; 63. Spring five. DETAILED DESCRIPTION

[0036] The following is combined with Figures 1 to 12 While embodiments of the invention have been described in detail, the invention can be implemented in many different ways as defined and covered by the claims.

[0037] The embodiment of the present application discloses a fully automatic feeding device for a tempering furnace, which explains that the present application is mainly used in the process of feeding the tempering furnace. In terms of technical effect, it can clamp glasses of different sizes and specifications during the process of fully automatically feeding the glass into the tempering furnace, thereby improving the practicality of the device; in particular, after the clamping and positioning of the glass is completed, the glass can be intermittently fed into the tempering furnace, thereby reducing manual intervention and improving the efficiency of the device; further, the present application can also clean the glass during the process of feeding the glass into the tempering furnace, preventing the glass from being broken due to impurities during the tempering process, thereby improving the success rate of glass tempering. Example 1:

[0038] Reference Figure 1As shown, a fully automatic feeding device for a tempering furnace includes a transmission platform 1, support legs 10, a feeding frame 11, a dust-proof curtain 12, a clamping mechanism 2 and an adaptor 3. Support legs 10 are provided at the four corners of the bottom of the transmission platform 1, and the transmission platform 1 is used to feed the glass into the tempering furnace; a feeding frame 11 is provided on the side outer wall of the transmission platform 1, and a dust-proof curtain 12 is provided on the side of the feeding frame 11 close to the transmission platform 1, and the dust-proof curtain 12 is used to prevent the external environment from contaminating the glass in the feeding frame 11; a clamping mechanism 2 is provided between the support legs 10 and in the feeding frame 11, and the clamping mechanism 2 is used to clamp and position glass of different sizes; an adaptor 3 is provided on the clamping mechanism 2, and the adaptor 3 can clamp and position thicker glass more tightly and intermittently place the glass on the top of the transmission platform 1, thereby improving the efficiency and practicality of the device.

[0039] During the specific implementation process, the operator places the glass into the feeding frame 11, and then clamps and positions the glass of different sizes through the adapter mechanism 3 and the clamping mechanism 2, and then intermittently places the glass on the top of the transmission platform 1, and then transmits the glass to the tempering furnace through the transmission platform 1, thereby improving the efficiency and practicality of the device.

[0040] Reference Figure 2 and Figure 3As shown, that is, the clamping mechanism 2 in the present application; specifically, the clamping mechanism 2 includes a transmission shaft 20, a support plate 21, a rotating shaft 22, a strip plate 23, an arc slide rail 24, a clamping rod 25, a clamping plate 26, a clamping block 27, a fixed plate 28 and a spring 29. A transmission shaft 20 is rotatably arranged between the support legs 10, and the transmission shaft 20 can rotate under the restriction of the support legs 10; a support plate 21 located in the feed frame 11 is symmetrically sleeved on the transmission shaft 20, and when the transmission shaft 20 rotates, it can drive the support plate 21 to rotate together; a rotating shaft 22 is rotatably arranged on the side of the support plate 21 away from the transmission shaft 20, and when the support plate 21 rotates, it can drive the rotating shaft 22 to rotate together, and the rotating shaft 22 can rotate under the restriction of the support plate 21; a strip plate 23 is provided on the side of the rotating shaft 22 close to the center of the feed frame 11, and the rotating shaft 22 rotates When the glass is rotated, the strip plate 23 can be driven to rotate together, and when the rotating shaft 22 rotates, the strip plate 23 can be driven to rotate together; the strip plate 23 is symmetrically provided with an arc-shaped slide rail 24 on the side away from the supporting plate 21, and a clamping rod 25 is symmetrically slidably provided in the arc-shaped slide rail 24, and the clamping rod 25 can slide under the restriction of the arc-shaped slide rail 24; a clamping plate 26 is provided on the side of the clamping rod 25 away from the arc-shaped slide rail 24, and when the clamping rod 25 moves, it can drive the clamping plate 26 to move together; a clamping block 27 is symmetrically slidably provided on the side of the clamping plate 26 away from the clamping rod 25, and the clamping block 27 is used to clamp the glass; a fixing plate 28 is symmetrically provided on the side of the clamping plate 26 close to the clamping block 27, and a spring 29 is provided between the fixing plate 28 and the clamping block 27, and the spring 29 can always provide the clamping block 27 with a thrust to move toward the center of the clamping plate 26.

[0041] In the specific implementation process, when the glass moves between the strip plates 23, the clamping rod 25 can slide under the restriction of the arc slide rail 24. When the clamping rod 25 moves, it can drive the clamping plate 26 to move together. When the clamping plate 26 moves, it can drive the clamping block 27 to move together, thereby adjusting the distance between the clamping block 27 and the center of the transmission platform 1, so that the clamping block 27 contacts the glass, and then the glass is clamped and positioned by the cooperation of the clamping block 27 and the spring 29, thereby achieving clamping and positioning of glasses of different sizes.

[0042] Reference Figure 4 and Figure 5When the cam 324 is in the unlock state, the cam 325 is locked and the lock 30 is unlocked, so the cam 325 is locked. When the cam 324 is in the unlock position, the locking cam 321 is locked and the locking cam 322 is locked, so the cam 321 can be locked directly to the user.

[0043] In the specific implementation process, when the square plate 310 moves, it can drive the slider 31 to move together. When the slider 31 slides under the restriction of the step frame 30, it can drive the spring rod 320 to move together. When the spring rod 320 moves, it can drive the sliding ring 32 to move along the step frame 30, thereby changing the relative height of the sliding ring 32 and the clamping rod 25. When the sliding ring 32 moves, it can drive the rotating ring 321 to move together. When the rotating ring 321 moves, it will also rotate under the restriction of the sliding ring 32. When the rotating ring 321 rotates, it can drive the connecting rod 323 to rotate together, thereby changing the inclination angle between the connecting rod 323 and the clamping rod 25, and then push the clamping rod 25 to move along the arc slide rail 24 away from the center of the strip plate 23.

[0044] Reference Figure 6 and Figure 7 and Figure 8As shown, that is, the adapting mechanism 3 in the present application; specifically, the adapting mechanism 3 also includes a T-shaped block 33, an adapting rod 34, a sliding groove 35, a spring 36, a steering wheel 37, a traction rope 38 and an intermittent feeding unit 39. A T-shaped block 33 is provided between the strip plates 23 through a bracket, and when the strip plates 23 rotate, the T-shaped block 33 can be driven to rotate together; an adapting rod 34 is provided for sliding inside the T-shaped block 33, and the adapting rod 34 can slide under the restriction of the T-shaped block 33; a sliding groove 35 is provided on the T-shaped block 33, and a spring is provided between the top of the adapting rod 34 and the sliding groove 35 Three 36, spring three 36 can always provide downward thrust for the adapter rod 34; a steering wheel 37 is rotatably provided between the adapter rod 34 and the strip plate 23, and the square plate 310 and the adapter rod 34 are connected by a traction rope 38, and the traction rope 38 passes around the steering wheel 37. When the adapter rod 34 moves, the square plate 310 can be driven to move by the traction rope 38; an intermittent feeding unit 39 is provided on the support leg 10 and in the feed frame 11. The intermittent feeding unit 39 is used to intermittently feed the glass fixed between the strip plates 23 to the top of the transmission platform 1 to prevent the glass from stacking.

[0045] During the specific implementation process, when the glass moves upward, it contacts the adapter rod 34 and drives the adapter rod 34 to slide upward under the restriction of the T-shaped block 33. When the adapter rod 34 moves, it drives the square plate 310 to move through the traction rope 38. According to the different thicknesses of the glass, the distance that the glass pushes the adapter rod 34 to move upward is also different, so that the moving distance of the adapter rod 34 on the arc slide rail 24 is also different, thereby enabling thicker glass to be clamped and positioned more tightly; then the glass fixed between the strip plates 23 is intermittently fed to the top of the transmission platform 1 through the intermittent feeding unit 39 to prevent the glass from stacking.

[0046] Reference Figure 9As shown, the intermittent feeding unit 39 in the present application; specifically, the intermittent feeding unit 39 includes an incomplete gear 1 390, a drive motor 391, an incomplete gear 2 392, a spur gear 393 and a rack 394, an incomplete gear 1 390 is sleeved on the side of the transmission shaft 20 close to the support leg 10, a drive motor 391 is provided on the side of the support leg 10 away from the transmission shaft 20 through the motor housing, and the output shaft of the drive motor 391 passes through the support leg 10 and extends outward, an incomplete gear 2 392 meshing with the incomplete gear 1 390 is sleeved on the output shaft of the drive motor 391, and the drive motor When 391 rotates, it can drive the incomplete gear 2 392 to rotate together. When the incomplete gear 2 392 rotates, it can drive the incomplete gear 1 390 to rotate together. When the incomplete gear 1 390 rotates, it can drive the transmission shaft 20 to rotate together. A spur gear 393 is sleeved on the side of the rotating shaft 22 away from the support plate 21, and a rack 394 is provided on the inner wall of the feed frame 11 to cooperate with the spur gear 393. When the rotating shaft 22 rotates, it can drive the spur gear 393 to rotate together. When the spur gear 393 is engaged with the rack 394, it can drive the spur gear 393 to rotate. When the spur gear 393 rotates, it can drive the rotating shaft 22 to rotate together.

[0047] During the specific implementation process, when the driving motor 391 rotates, it can drive the incomplete gear 2 392 to rotate together. When the incomplete gear 2 392 rotates, it can drive the incomplete gear 1 390 to rotate together. When the incomplete gear 1 390 rotates, it can drive the transmission shaft 20 to rotate together. When the transmission shaft 20 rotates, it can drive the support plate 21 to rotate together. When the support plate 21 rotates, it can rotate with the rotating shaft 22. When the rotating shaft 22 rotates, it can drive the spur gear 393 to rotate together. When the spur gear 393 is engaged with the rack 394, it can drive the spur gear 393 to rotate. When the spur gear 393 rotates, it can drive the rotating shaft 22 to rotate together. When the rotating shaft 22 rotates, it can drive the strip plate 23 to rotate together. When the strip plate 23 rotates, it can drive the clamped glass to rotate together, thereby intermittently placing the glass on the top of the transmission platform 1 to achieve loading. Example 2:

[0048] Reference Figure 10As shown, on the basis of Example 1, in order to ensure that the glass can continuously contact the adapter rod 34, and thus can automatically load multiple pieces of glass, in a specific embodiment of this scheme, a placing mechanism 4 is provided in the feed frame 11 and below the strip plate 23; specifically, the placing mechanism 4 includes an L-shaped plate 40, a placing plate 41 and a spring four 42, an L-shaped plate 40 is slidingly provided in the feed frame 11 and below the strip plate 23, a placing plate 41 is provided above the L-shaped plate 40 and between the adapter rod 34, and by pulling the L-shaped plate 40, the placing plate 41 can be driven to slide under the restriction of the feed frame 11, and the placing plate 41 is used to place the glass plate; a spring four 42 is provided between the placing plate 41 and the L-shaped plate 40, and the spring four 42 can always provide an upward thrust for the placing plate 41.

[0049] During the specific implementation process, the placement plate 41 is moved out of the feed frame 11 by pulling the L-shaped plate 40, and then the glass is placed on the top of the placement plate 41, and then the L-shaped plate 40 is pushed to push the glass into the feed frame 11. Under the action of the spring four 42, the placement plate 41 makes the glass contact with the adapter rod 34 and pushes the adapter rod 34 to move upward. When the top glass is moved to the top of the transmission platform 1, the adjacent glass continues to move upward and contact with the adapter rod 34, thereby ensuring that the glass can continuously contact with the adapter rod 34, and then multiple pieces of glass can be automatically loaded. Example 3:

[0050] Reference Figure 11 As shown, on the basis of Example 1 and Example 2, in order to prevent impurities on the glass from affecting the glass tempering process and causing the glass to burst during the tempering process, in a specific embodiment of this scheme, a cleaning mechanism 5 is provided on the side of the feed frame 11 away from the transmission platform 1; specifically, the cleaning mechanism 5 includes an L-shaped pipe 50, a filter plate 51, an air suction fan 52, a collection frame 53, a cleaning cloth 54 and a cleaning block 55. The L-shaped pipe 50 is provided on the side of the feed frame 11 away from the transmission platform 1, and the L-shaped pipe 50 is provided on the side close to the feed frame 11. A filter plate 51 is provided, and a plurality of suction fans 52 are provided in the L-shaped pipe 50. The suction fans 52 can suck impurities in the feed frame 11 into the L-shaped pipe 50; a collecting frame 53 is provided at the bottom of the L-shaped pipe 50, and impurities will enter the collecting frame 53 when being sucked into the L-shaped pipe 50; a cleaning cloth 54 is provided at the top of the inner wall of the feed frame 11, and the cleaning cloth 54 is used to clean the glass; a cleaning block 55 is provided at the bottom of the cleaning cloth 54, and the cleaning block 55 is used to make the cleaning cloth 54 always vertical and assist the cleaning cloth 54 to clean the glass.

[0051] During the specific implementation process, when the spur gear 393 drives the strip plate 23 to rotate, it can drive the glass to rotate together. During the rotation of the glass, impurities on the glass are removed by the cleaning cloth 54 and the cleaning block 55, and then the impurities in the feed frame 11 can be sucked into the L-shaped pipe 50 through the suction fan 52. When the impurities are sucked into the L-shaped pipe 50, they will enter the collection frame 53, preventing the impurities on the glass from affecting the glass tempering process, thereby causing the glass to explode during the tempering process.

[0052] Reference Figure 12 As shown, in order to ensure that the glass moves smoothly to the top of the transmission platform 1, in the specific embodiment of the present scheme, a pushing mechanism 6 is provided on the top of the inner wall of the feed frame 11; specifically, the pushing mechanism 6 includes a rotating shaft 60, a push plate 61, a top plate 62 and a spring five 63. The side wall of the feed frame 11 is rotatably provided with a rotating shaft 60, and the rotating shaft 60 extends outward through the feed frame 11. A push plate 61 is sleeved on the rotating shaft 60, and the push plate 61 can rotate under the restriction of the rotating shaft 60. The glass can be pushed to the top of the transmission platform 1 through the push plate 61; the transmission shaft 20 and the push plate 61 are connected by a belt drive, and when the transmission shaft 20 rotates, it can drive the rotating shaft 60 to rotate; a top plate 62 is provided on the side of the push plate 61 away from the dust curtain 12, and a spring five 63 is provided between the top plate 62 and the push plate 61.

[0053] During the specific implementation process, a section of the glass is placed on the top of the transmission platform 1 through the cooperation of the transmission shaft 20 and the spur gear 393. During this process, when the transmission shaft 20 rotates, it can drive the rotating shaft 60 to rotate together. When the rotating shaft 60 rotates, it can drive the push plate 61 to rotate together to prevent the push plate 61 from hindering the rotation of the glass. When the glass is placed on the top of the transmission platform 1, the push plate 61 is reset under the action of the spring 5 63 to push the glass to completely contact the top of the transmission platform 1, and then the glass is sent into the tempering furnace through the transmission platform 1.

[0054] During operation: In the first step, the operator moves the placement plate 41 out of the feed frame 11 by pulling the L-shaped plate 40, then places the glass on the top of the placement plate 41, and then pushes the L-shaped plate 40 to push the glass into the feed frame 11. Under the action of the spring four 42, the placement plate 41 makes the glass contact with the adapter rod 34 and pushes the adapter rod 34 to move upward. When the top glass is moved to the top of the transmission platform 1, the adjacent glass continues to move upward and contact with the adapter rod 34, thereby ensuring that the glass can continuously contact with the adapter rod 34, and then multiple pieces of glass can be automatically loaded.

[0055] Step 2: When the glass moves upward, it contacts the adapter rod 34 and drives the adapter rod 34 to slide upward under the restriction of the T-shaped block 33. When the adapter rod 34 moves, it drives the square plate 310 to move through the traction rope 38. According to the different thicknesses of the glass, the distance that the glass pushes the adapter rod 34 upward is also different, so that the moving distance of the adapter rod 34 on the arc-shaped slide rail 24 is also different, thereby enabling a thicker glass to be clamped and positioned more firmly. When the square plate 310 moves, it can drive the slider 31 to move together. When the slider 31 slides under the restriction of the step frame 30, it can drive The spring rod 320 moves together, and when the spring rod 320 moves, it can drive the sliding ring 32 to move along the step frame 30, thereby changing the relative height of the sliding ring 32 and the clamping rod 25. When the sliding ring 32 moves, it can drive the rotating ring 321 to move together. When the rotating ring 321 moves, it will also rotate under the restriction of the sliding ring 32. When the rotating ring 321 rotates, it can drive the connecting rod 323 to rotate together, thereby changing the inclination angle between the connecting rod 323 and the clamping rod 25, and then pushing the clamping rod 25 to move along the arc-shaped slide rail 24 away from the center of the strip plate 23.

[0056] Step 3: When the clamping rod 25 slides under the restriction of the arc-shaped slide rail 24, the clamping rod 25 can drive the clamping plate 26 to move together when it moves, and the clamping plate 26 can drive the clamping block 27 to move together when it moves, so that the clamping block 27 contacts the glass, and then the glass is clamped and positioned through the cooperation of the clamping block 27 and the spring 29, thereby achieving clamping and positioning of glasses of different sizes.

[0057] Step 4: The operator then starts the drive motor 391. When the drive motor 391 rotates, it can drive the incomplete gear 2 392 to rotate together. When the incomplete gear 2 392 rotates, it can drive the incomplete gear 1 390 to rotate together. When the incomplete gear 1 390 rotates, it can drive the transmission shaft 20 to rotate together. When the transmission shaft 20 rotates, it can drive the support plate 21 to rotate together. When the support plate 21 rotates, it can rotate with the rotating shaft 22. When the rotating shaft 22 rotates, it can drive the spur gear 393 to rotate together. When the spur gear 393 is engaged with the rack 394, it can drive the spur gear 393 to rotate. When the spur gear 393 rotates, it can drive the rotating shaft 22 to rotate together. When the rotating shaft 22 rotates, it can drive the strip plate 23 to rotate together. When the strip plate 23 rotates, it can drive the clamped glass to rotate together, thereby placing the glass intermittently on the top of the transmission platform 1 to achieve loading.

[0058] Step 5: When the spur gear 393 drives the strip plate 23 to rotate, it can drive the glass to rotate together. During the rotation of the glass, impurities on the glass are removed by the cleaning cloth 54 and the cleaning block 55. Then, the impurities in the feed frame 11 can be sucked into the L-shaped pipe 50 through the suction fan 52. When the impurities are sucked into the L-shaped pipe 50, they will enter the collection frame 53 to prevent the impurities on the glass from affecting the glass tempering process, thereby causing the glass to burst during the tempering process.

[0059] Step 6: Through the cooperation of the transmission shaft 20 and the spur gear 393, a section of the glass is placed on the top of the transmission platform 1. During this process, when the transmission shaft 20 rotates, it can drive the rotating shaft 60 to rotate together. When the rotating shaft 60 rotates, it can drive the push plate 61 to rotate together to prevent the push plate 61 from hindering the rotation of the glass. When the glass is placed on the top of the transmission platform 1, the push plate 61 is reset under the action of the spring 5 63 to push the glass to completely contact the top of the transmission platform 1, and then the glass is sent into the tempering furnace through the transmission platform 1.

[0060] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0061] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A fully automatic feeding device for a tempering furnace, comprising a transmission platform (1), wherein the four corners of the bottom of the transmission platform (1) are provided with support legs (10), characterized in that: A feed frame (11) is provided on the side outer wall of the transmission platform (1), a dust curtain (12) is provided on the side of the feed frame (11) close to the transmission platform (1), a clamping mechanism (2) is provided between the support legs (10) and inside the feed frame (11), and an adapting mechanism (3) is provided on the clamping mechanism (2); The clamping mechanism (2) includes a transmission shaft (20) rotatably arranged between the support legs (10), a support plate (21) located in the feed frame (11) is symmetrically sleeved on the transmission shaft (20), a rotation shaft (22) is rotatably arranged on the side of the support plate (21) away from the transmission shaft (20), and a strip plate (23) is arranged on the side of the rotation shaft (22) close to the center of the feed frame (11); The clamping mechanism (2) further comprises an arc-shaped slide rail (24) symmetrically arranged on the side of the strip plate (23) away from the support plate (21), a clamping rod (25) is symmetrically slidably arranged in the arc-shaped slide rail (24), a clamping plate (26) is provided on the side of the clamping rod (25) away from the arc-shaped slide rail (24), a clamping block (27) is symmetrically slidably provided on the side of the clamping plate (26) away from the clamping rod (25), a fixing plate (28) is symmetrically arranged on the side of the clamping plate (26) close to the clamping block (27), and a spring (29) is provided between the fixing plate (28) and the clamping block (27).

2. The fully automatic feeding device for a tempering furnace according to claim 1, characterized in that: The adapting mechanism (3) includes a step frame (30) arranged on the top of the strip plate (23) through a bracket, a slider (31) is slidably arranged on the step frame (30), square plates (310) are symmetrically arranged on both sides of the slider (31), a sliding ring (32) is slidably arranged on the step frame (30) and is located below the slider (31), a spring rod (320) penetrating the square plate (310) is symmetrically arranged on the top of the sliding ring (32), a plurality of rotating rings (321) are rotatably arranged on the sliding ring (32), a sliding sleeve (322) is slidably and rotatably sleeved on the clamping rod (25), and a connecting rod (323) connected to the clamping rod (25) is arranged on the outer wall of the rotating ring (321), a connecting plate (324) is symmetrically arranged on one side of the step frame (30) close to the center of the feed frame (11), and a spring 2 (325) is arranged between the connecting plate (324) and the sliding ring (32).

3. The fully automatic feeding device for a tempering furnace according to claim 2, characterized in that: The adapting mechanism (3) further comprises a T-shaped block (33) arranged between the strip plates (23) via a bracket, an adapting rod (34) being slidably arranged in the T-shaped block (33), a sliding groove (35) being provided on the T-shaped block (33), a spring (36) being provided between the top of the adapting rod (34) and the sliding groove (35), a steering wheel (37) being rotatably provided between the adapting rod (34) and the strip plates (23), the square plate (310) and the adapting rod (34) being connected via a traction rope (38), and an intermittent feeding unit (39) being provided on the support leg (10) and in the feed frame (11).

4. The fully automatic feeding device for a tempering furnace according to claim 3, characterized in that: The intermittent feeding unit (39) includes an incomplete gear 1 (390) sleeved on a side of the transmission shaft (20) close to the support leg (10), a driving motor (391) is provided on a side of the support leg (10) away from the transmission shaft (20) through a motor housing, and an incomplete gear 2 (392) meshing with the incomplete gear 1 (390) is sleeved on an output shaft of the driving motor (391).

5. The fully automatic feeding device for a tempering furnace according to claim 4, characterized in that: The intermittent feeding unit (39) further comprises a spur gear (393) sleeved on a side of the rotating shaft (22) away from the support plate (21), and a rack (394) cooperating with the spur gear (393) is provided on the inner wall of the feeding frame (11).

6. The fully automatic feeding device for a tempering furnace according to claim 3, characterized in that: A placement mechanism (4) is provided in the feed frame (11) and below the strip plate (23). The placement mechanism (4) includes an L-shaped plate (40) slidably provided in the feed frame (11) and below the strip plate (23). A placement plate (41) is provided above the L-shaped plate (40) and between the adapter rod (34). A spring (42) is provided between the placement plate (41) and the L-shaped plate (40).

7. The fully automatic feeding device for a tempering furnace according to claim 1, characterized in that: A cleaning mechanism (5) is provided on the side of the feed frame (11) away from the transmission platform (1), and the cleaning mechanism (5) comprises an L-shaped pipe (50) provided on the side of the feed frame (11) away from the transmission platform (1), a filter plate (51) is provided on the side of the L-shaped pipe (50) close to the feed frame (11), a plurality of suction fans (52) are provided in the L-shaped pipe (50), a collecting frame (53) is provided at the bottom of the L-shaped pipe (50), a cleaning cloth (54) is provided on the top of the inner wall of the feed frame (11), and a cleaning block (55) is provided at the bottom of the cleaning cloth (54).

8. The fully automatic feeding device for a tempering furnace according to claim 1, characterized in that: A pushing mechanism (6) is provided at the top of the inner wall of the feed frame (11), and the pushing mechanism (6) includes a rotating shaft (60) rotatably provided on the side wall of the feed frame (11), a push plate (61) is sleeved on the rotating shaft (60), the transmission shaft (20) and the push plate (61) are connected by a belt transmission, a top plate (62) is provided on the side of the push plate (61) away from the dust curtain (12), and a spring (63) is provided between the top plate (62) and the push plate (61).

Citation Information

Patent Citations

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