Clip-type flip loading device for high-frequency panel machines
By designing a clip-type flip loading device for the high-frequency panel splicing machine, automatic loading and splicing of panels are achieved, solving the problem of low production efficiency caused by manual loading and improving loading speed and production efficiency.
Patent Information
- Application Number
- CN202311345236.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-10-18
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2043-10-18
AI Technical Summary
Existing high-frequency panel machines require manual operation when loading, which causes operator fatigue and affects loading speed and production efficiency.
A clip-type flip loading device for a high-frequency panel splicing machine was designed, which included a flip loading beam, a pushing mechanism, a movable main clip guard and an auxiliary clip and pressing mechanism to achieve automatic loading and splicing of panels.
The automatic loading of high-frequency panel machines is realized, which improves the loading speed and production efficiency and reduces the labor intensity.
Smart Images

Figure CN117262677B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of high-frequency panel machines, and more particularly to a clip-type flip feeding device for a high-frequency panel machine. Background Art
[0002] The high-frequency paneling machine uses a high-frequency medium generator to achieve heating and a splicing platform with vertical and lateral pressure to achieve wood splicing. The high-frequency paneling machine is controlled by a PLC program. The user sets the high-frequency frequency and heating time according to the amount of glue applied to the strips. The high-frequency paneling machine can then achieve the splicing of the boards.
[0003] The existing high-frequency panelizing machine requires manual loading at the feeding end. The high-frequency panelizing machine then aligns the panels and splices them. Operators are very likely to become fatigued after carrying the panels for a long time, which affects the loading speed and thus the production efficiency of the panelizing machine. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide a clip-type flip feeding device for a high-frequency panel machine, which automatically feeds the high-frequency panel machine and improves the feeding speed and the production efficiency of the high-frequency panel machine.
[0005] In order to solve the above technical problems, the technical solutions adopted by the present invention are as follows.
[0006] The clip-type flip feeding device of the high-frequency panel splicing machine includes a feeding frame, a flip feeding beam for loading is provided on the feeding frame, a number of main clips for placing plates are provided on the flip feeding beam, and a flip feeding cylinder for driving the flip feeding beam to flip is provided at the side end of the feeding frame; a pushing mechanism for pushing the plates is provided below the flip feeding beam; a movable main clip guard grid is vertically provided on the feeding frame and is close to the flip feeding beam after flipping, and an upper pressure floating beam is provided above the movable main clip guard grid through a fixed bracket, and the two ends of the upper pressure floating beam are slidably provided on the fixed bracket, and an upper pressure clamping column for pressing the plates downward is provided at the bottom of the upper pressure floating beam; an auxiliary clip and pressing mechanism for conveying the spliced plates and placing partitions in the middle of the plates is provided behind the movable main clip guard grid.
[0007] To further optimize the technical solution, the pushing mechanism includes a pushing synchronization mechanism arranged on the loading frame and a pushing cylinder for driving the pushing synchronization mechanism. The front end of the pushing synchronization mechanism is provided with a pushing plate located between two adjacent main magazines, and the end of the telescopic rod of the pushing cylinder is connected to the outer end of the pushing synchronization mechanism.
[0008] To further optimize the technical solution, the back of the movable main magazine guard is hinged with an adjustable guard for adjusting the thickness of the plate through a number of connecting rods, a guard adjustment handwheel for adjusting the guard height is provided above the adjustable guard, a feed limit mechanism for limiting the plate is provided at the bottom of the adjustable guard, and a moving guide rail for connecting the pressing beam of the auxiliary magazine and pressing mechanism is provided on the back of the adjustable guard.
[0009] To further optimize the technical solution, a locking mechanism for fixing the height of the fence is provided at the side end of the fence adjustment hand wheel.
[0010] To further optimize the technical solution, a magazine guard position adjustment motor for the movable main magazine guard position is provided on the loading rack below the movable main magazine guard, and a magazine guard position adjustment handwheel for fine-tuning is provided on the magazine guard position adjustment motor.
[0011] To further optimize the technical solution, the auxiliary magazine and pressing mechanism includes an auxiliary magazine and pressing mechanism frame arranged behind the movable main magazine guard through a movable block, and auxiliary magazines and slides are arranged on both sides of the rear of the auxiliary magazine and pressing mechanism frame, tilted downward, and the lower ends of the auxiliary magazine and slides are facing the movable main magazine guard. An auxiliary magazine lifting cylinder for adjusting the inclination angle of the auxiliary magazine and slide is provided on the auxiliary magazine and pressing mechanism frame, and a suction cup loading mechanism for placing the partition into the middle of the spliced plate is provided on the auxiliary magazine and pressing mechanism frame located above the lower end of the auxiliary magazine and slide.
[0012] To further optimize the technical solution, the suction cup loading mechanism includes a suction cup mounting bracket arranged above the auxiliary magazine and the lower end of the slide through an inverted L-shaped bracket, the suction cup mounting bracket is provided with a suction cup for adsorbing the partition, and the inverted L-shaped bracket is provided with a suction cup lifting cylinder for driving the suction cup mounting bracket to move up and down.
[0013] To further optimize the technical solution, a horizontal track is provided on the auxiliary magazine and pressing mechanism frame, a slider that moves along the horizontal track is provided on the top of the inverted L-shaped bracket, and a horizontal moving cylinder of the suction cup mechanism is provided on the auxiliary magazine and pressing mechanism frame for driving the suction cup mounting bracket to move forward and backward.
[0014] To further optimize the technical solution, a limiting bolt for limiting the moving position of the slider is provided on the auxiliary clip and pressing mechanism frame on the top of the suction cup feeding mechanism.
[0015] To further optimize the technical solution, a width adjustment plate for adjusting the width of the feeding partition is provided on the auxiliary clip and pressing mechanism frame at the bottom of the suction cup feeding mechanism.
[0016] Due to the adoption of the above technical solution, the technical progress achieved by the present invention is as follows.
[0017] The clip-type flipping and loading device of the high-frequency panel splicing machine provided by the present invention places the plate in the main clip on the flipping and loading beam, and after flipping, the plate is pushed by the push plate to splice the plate, thereby realizing automatic loading of the high-frequency panel splicing machine, eliminating the need for manual handling and loading, improving the loading speed of the high-frequency panel splicing machine, and thereby improving the production efficiency of the high-frequency panel splicing machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a structural schematic diagram of the present invention;
[0019] Figure 2 This is a schematic structural diagram of the magazine flipping and leaning against the fence of the present invention;
[0020] Figure 3 This is a schematic structural diagram of the movable magazine support grid of the present invention;
[0021] Figure 4 It is a structural schematic diagram of the auxiliary magazine and material pressing mechanism of the present invention;
[0022] Figure 5 It is a structural schematic diagram of the suction cup feeding mechanism of the present invention.
[0023] Among them: 11. Upper pressure floating beam, 12. Upper pressure clamping column, 13. Fixed bracket, 14. Auxiliary magazine and pressing mechanism, 141. Moving block, 142. Auxiliary magazine and pressing mechanism frame, 143. Floating pressing beam, 144. Auxiliary magazine and slide, 145. Auxiliary magazine lifting cylinder, 15. Flip feeding cylinder, 16. Flip feeding beam, 161. Main magazine, 162. Pushing cylinder, 163. Pushing synchronization mechanism, 17. Feeding frame, 18. Movable main magazine guard, 181. Guardrail adjustment handwheel, 182. Locking mechanism, 183. Press beam moving guide rail, 184. Adjustable guardrail, 185. Feed limit mechanism, 186. Clip guardrail position adjustment motor, 187. Clip guardrail fine-tuning handwheel, 19. Suction cup feeding mechanism, 191. Suction cup lifting cylinder, 192. Suction cup mounting bracket, 193. Suction cup, 194. Width adjustment plate, 195. Suction cup mechanism horizontal moving cylinder, 196. Horizontal track, 197. Slider, 198. Limit bolt. DETAILED DESCRIPTION
[0024] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0025] The high-frequency panel machine's clip-type flip loading device, combined with Figures 1 to 5As shown, it includes a loading frame 17, a flip loading beam 16, a pushing mechanism, an upward pressing floating beam 11, a movable main clip guard 18, and an auxiliary clip and pressing mechanism 14. The flip loading beam 16 is arranged on the loading frame 17, and the pushing mechanism is arranged on the loading frame 17 below the flip loading beam 16; the movable main clip guard 18 is arranged on the loading frame 17, immediately adjacent to the flip loading beam 16 after flipping, and the upward pressing floating beam 11 is arranged above the movable main clip guard 18; the auxiliary main clip and pressing mechanism 14 is arranged behind the movable main clip guard 18 and is used to transport the spliced sheets and place partitions between the sheets.
[0026] The flip loading beam 16 is set on the loading frame 17 through the rotating shafts at both ends. The side end of the loading frame 17 is provided with a flip loading cylinder 15. The end of the telescopic rod of the flip loading cylinder 15 is connected to the flip loading beam 16 to drive the flip loading beam 16 to flip. The flip loading beam 16 can be flipped 90 degrees along the rotating shaft, and after flipping, it is close to the movable main magazine guard 18.
[0027] Several main clips 161 are provided on the flip loading beam 16. The plate is placed between two adjacent main clips 161. The main clips 161 are fixed to the flip loading beam 16 by bolts. The position of the main clips can be adjusted according to the length of the plate to adapt to the feeding of plates of different lengths.
[0028] The pushing mechanism includes a pushing synchronization mechanism 163 and a pushing cylinder 162. The pushing synchronization mechanism 163 is arranged on the loading frame 17. A pushing plate is provided at the front end of the pushing synchronization mechanism. The pushing plate is located between two adjacent main clips 161 and is used to push the plate between the two main clips forward. There are multiple pushing cylinders 162. The end of the telescopic rod of the pushing cylinder 162 is connected to the outer end of the pushing synchronization mechanism 163, which is used to push the pushing synchronization mechanism back and forth, driving the pushing plate to push the plate forward.
[0029] A fixed bracket 13 is arranged above the movable main magazine guard 18, and the bottom end of the fixed bracket is arranged on the loading frame 17. Slide rails are respectively arranged on the two side ends of the fixed bracket 13. The upper pressure floating beam 11 is arranged below the fixed bracket 13. The two ends of the upper pressure floating beam 11 can move up and down in the slide rails. An upper pressure clamping column 12 is arranged at the bottom of the upper pressure floating beam 11. The upper pressure clamping column 12 passes through the movable main magazine guard 18 and is used to press down the plate placed in the main magazine 161.
[0030] An adjustable guardrail 184 is provided on the back of the movable main magazine guardrail 18, and the adjustable guardrail 184 is hinged by a number of connecting rods, and the other end of the connecting rod is hinged to the movable main magazine guardrail 18. A guard adjustment handwheel 181 is provided above the adjustable guardrail 184, which is used to adjust the guardrail height to adapt to the height of the plate. A locking mechanism 182 is provided at the side end of the guardrail adjustment handwheel 181, which is used to lock the guardrail adjustment handwheel to fix the height of the guardrail. A feed limiting mechanism 185 is provided at the bottom of the adjustable guardrail 184, which is used to limit the height of the plate, and the fed plate passes through the bottom of the feed limiting mechanism.
[0031] A magazine guard position adjustment motor 186 is provided on the loading frame below the movable main magazine guard 18, which is used to adjust the position of the movable main magazine guard 18 on the loading frame. A magazine guard position adjustment motor is provided with a magazine guard fine-tuning handwheel 187, which is used to fine-tune the position of the magazine guard. The position of the magazine guard is adjusted by the magazine guard position adjustment motor and the magazine guard fine-tuning handwheel so that the position of the movable main magazine guard corresponds to the position of the main magazine.
[0032] A pressing beam moving guide rail 183 is provided on the back of the movable main magazine against the grid 18 for connecting the auxiliary magazine and pressing mechanism 14.
[0033] The auxiliary magazine and pressing mechanism 14 includes an auxiliary magazine and pressing mechanism frame 142 and a floating pressing beam 143. A moving block 141 is provided on the auxiliary magazine and pressing mechanism frame 142. The moving block 141 is slidably set on the pressing beam moving guide rail 183 on the back of the movable main magazine guard 18. The floating pressure beam 143 is arranged below the auxiliary clip and pressing mechanism frame 142, and is used to transport the spliced plates. Auxiliary clips and slides 144 are respectively inclined on both sides of the rear of the auxiliary clip and pressing mechanism frame 142. The bottom ends of the auxiliary clips and slides 144 face the movable main clip guard 18. The floating pressure beam 143 is located above the auxiliary clip and slide. The auxiliary clip and slide 144 are provided with an auxiliary clip lifting cylinder 145 for adjusting the inclination angle of the auxiliary clip and slide 144. When the partition is not needed, the inclination angle of the auxiliary clip and slide 144 is lowered, and the partition will not slide from the auxiliary clip and slide 144. When the partition needs to be placed, the inclination angle of the auxiliary clip and slide 144 is increased, and the partition slides from the auxiliary clip and slide 144 to the movable main clip guard 18.
[0034] A suction cup loading mechanism 19 is provided on the auxiliary clip and pressing mechanism frame 142 above the bottom end of the auxiliary clip and slide 144, which is used to place the partition in the middle of the two groups of spliced plates to separate the two groups of plates, which will neither cause the two groups of plates to be spliced together nor cause waste of resources of the high-frequency splicing machine.
[0035] The suction cup feeding mechanism 19 includes an inverted L-shaped bracket and a suction cup mounting bracket 192. The suction cup mounting bracket 192 is arranged on the auxiliary magazine and pressing mechanism frame 142 above the lower end of the auxiliary magazine and the slide 144 through the inverted L-shaped bracket. A suction cup 193 is provided on the suction cup mounting bracket 192 for adsorbing the partition. A suction cup lifting cylinder 191 is provided on the inverted L-shaped bracket for driving the suction cup mounting bracket to move up and down.
[0036] A horizontal track 196 is provided on the auxiliary magazine and pressing mechanism frame 142, and a slider 197 that moves along the horizontal track is provided on the top of the inverted L-shaped bracket. A horizontal moving cylinder 195 of a suction cup mechanism is provided on the auxiliary magazine and pressing mechanism frame 142 to drive the suction cup mounting bracket to move back and forth.
[0037] A limiting bolt 198 is provided on the auxiliary clip and pressing mechanism frame 142 at the top of the suction cup feeding mechanism 19, which is used to limit the moving position of the slider 197 and then limit the position of the suction cup so that the suction cup is located above the partition.
[0038] A width adjustment piece 194 is provided on the auxiliary clip and pressing mechanism frame 142 at the bottom of the suction cup feeding mechanism 19, which is adjusted according to the width of the feed partition so that the suction cup feeding mechanism can only absorb one plate at a time.
[0039] When loading, place the plates to be spliced between the main clips on the flip loading beam. After placement, start the flip loading cylinder to flip the flip loading beam up, and push the material forward with the pushing cylinder to push the spliced plates toward the auxiliary clip and pressing mechanism. After one group of plates is pushed, the partition slides through the auxiliary clip machine for loading. The suction cup loading mechanism absorbs the partition and places the partition next to the spliced plates. The pushing cylinder continues to push the plates forward, and the plates with glue on the edges are spliced together. The two groups of plates are separated by a partition without glue. After splicing, they enter the high-frequency panelizing machine for panel bonding.
Claims
1. The clip-type flip loading device of the high-frequency panel machine is characterized by: The invention comprises a feeding frame (17), a feeding frame (17) is provided with a flip feeding beam (16) for feeding, a plurality of main clips (161) for placing plates are provided on the flip feeding beam (16), a flip feeding cylinder (15) for driving the flip feeding beam (16) to flip is provided at the side end of the feeding frame (17); a pushing mechanism for pushing the plates is provided below the flip feeding beam (16); a flip feeding cylinder (15) is provided vertically on the feeding frame (17) and is connected to the flip feeding beam after flipping. The beam (16) is adjacent to a movable main magazine grid (18), and an upper pressure floating beam (11) is provided above the movable main magazine grid (18) through a fixed bracket (13). Both ends of the upper pressure floating beam (11) are slidably provided on the fixed bracket, and an upper pressure pressing column (12) for pressing down the plate is provided at the bottom of the upper pressure floating beam (11); an auxiliary magazine and pressing mechanism (14) for conveying the spliced plate and placing a partition in the middle of the plate is provided behind the movable main magazine grid (18); The back of the movable main magazine guard (18) is hinged with an adjustable guard (184) for adjusting the thickness of the plate through a plurality of connecting rods, a guard adjustment hand wheel (181) for adjusting the height of the guard is provided above the adjustable guard (184), a feed limiting mechanism (185) for limiting the position of the plate is provided at the bottom of the adjustable guard (184), the fed plate passes under the feed limiting mechanism (185), and a pressing beam movable guide rail (183) for connecting to the auxiliary magazine and pressing mechanism (14) is provided on the back of the adjustable guard (184); The auxiliary clip and pressing mechanism (14) includes an auxiliary clip and pressing mechanism frame (142) arranged behind the movable main clip grid (18) through a moving block (141), auxiliary clips and slideways (144) are respectively arranged on both sides of the rear of the auxiliary clip and pressing mechanism frame (142) in an inclined downward direction, the lower end of the auxiliary clip and slideway (144) faces the movable main clip grid (18), an auxiliary clip lifting cylinder (145) for adjusting the inclination angle of the auxiliary clip and slideway (144) is provided on the auxiliary clip and pressing mechanism frame (142), and a suction cup loading mechanism (19) for placing a partition into the middle of the spliced plate is provided on the auxiliary clip and pressing mechanism frame (142) located above the lower end of the auxiliary clip and slideway (144); The suction cup feeding mechanism (19) includes a suction cup mounting bracket (192) arranged above the lower end of the auxiliary magazine and the slideway (144) through an inverted L-shaped bracket, a suction cup (193) for adsorbing the partition is arranged on the suction cup mounting bracket (192), and a suction cup lifting cylinder (191) for driving the suction cup mounting bracket (192) to move up and down is arranged on the inverted L-shaped bracket.
2. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: The pushing mechanism comprises a pushing synchronization mechanism (163) arranged on a feeding frame (17) and a pushing cylinder (162) for driving the pushing synchronization mechanism (163). A pushing plate located between two adjacent main magazines (161) is provided at the front end of the pushing synchronization mechanism (163). The end of the telescopic rod of the pushing cylinder is connected to the outer end of the pushing synchronization mechanism.
3. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: A locking mechanism (182) for fixing the height of the fence is provided at the side end of the fence adjustment hand wheel (181).
4. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: A magazine grid position adjustment motor (186) for adjusting the position of the movable main magazine grid is provided on the loading rack (17) below the movable main magazine grid (18), and a magazine grid fine-tuning hand wheel (187) for fine-tuning the magazine grid position adjustment motor (186) is provided.
5. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: The auxiliary magazine and press mechanism frame (142) is provided with a horizontal track (196), the top of the inverted L-shaped bracket is provided with a slider (197) that moves along the horizontal track, and the auxiliary magazine and press mechanism frame (142) is provided with a sucker mechanism horizontal moving cylinder (195) for driving the sucker mounting bracket to move forward and backward.
6. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: A limiting bolt (198) for limiting the moving position of the slider (197) is provided on the auxiliary clip and pressing mechanism frame (142) on the top of the suction cup feeding mechanism (19).
7. The clip-type flip loading device of the high-frequency panel machine according to claim 1 is characterized in that: A width adjustment piece (194) for adjusting the width of the feeding partition is provided on the auxiliary clip and pressing mechanism frame (142) at the bottom of the suction cup feeding mechanism (19).
Citation Information
Patent Citations
Board jointing machine
CN104647486A
Turnover type material receiving box mechanism of lead frame equipment
CN219216785U
Clip type turnover feeding device of high-frequency board splicing machine
CN220827006U