CN217454243U - Auxiliary positioning mechanism for four-side planing and milling machine - Google Patents

Auxiliary positioning mechanism for four-side planing and milling machine Download PDF

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CN217454243U
CN217454243U CN202220076546.5U CN202220076546U CN217454243U CN 217454243 U CN217454243 U CN 217454243U CN 202220076546 U CN202220076546 U CN 202220076546U CN 217454243 U CN217454243 U CN 217454243U
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plate
wood
sides
stick
rotating
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叶利顺
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Abstract

The utility model discloses an auxiliary positioning mechanism for a four-sided planer, which comprises a main body frame, wherein the main body frame comprises a support plate and a bottom plate, the two ends of the main body frame are respectively provided with a wood inlet end and a wood outlet end, one side of the wood inlet end is provided with a wood inlet guide plate, the main body frame is sequentially fixed with a centering clamping mechanism, a first conveying mechanism, a left centering correcting mechanism, a right centering correcting mechanism, a wood pressing mechanism, a second conveying mechanism and a third conveying mechanism from one side of the wood inlet end to one side of the wood outlet end, a press plate is arranged between the first conveying mechanism and the second conveying mechanism, the middle part of the press plate is provided with a backing plate for wood rods to pass through, the left centering correcting mechanism and the right centering correcting mechanism comprise rotating rods symmetrically arranged at the two sides of the backing plate and press rollers rotatably arranged on the rotating rods, the utility model symmetrically arranges two groups of meshed rotating gear wheels at the bottom of the press plate, and the press rollers are arranged on the rotating gears through the rotating rods to form an eccentric structure, therefore, the two sides of the wood stick can be clamped and loosened simultaneously, the straightness of the wood stick is guaranteed, and the planing and milling precision of the wood stick is improved.

Description

Auxiliary positioning mechanism for four-side planing and milling machine
Technical Field
The utility model relates to a dig and mill the machine, specifically be a four sides dig mill machine auxiliary positioning mechanism.
Background
The woodworking planing and milling machine mainly comprises a double-sided planing and milling machine, a four-sided planing and milling machine and the like, wherein the double-sided planing and milling machine comprises an upper planing cutter shaft, a lower planing cutter shaft, a feeding compression roller and a feeding compression device, wherein the upper planing cutter shaft and the lower planing cutter shaft are horizontally arranged; the four-side milling machine is provided with an upper and a lower planing cutter shafts which are horizontally arranged, a feeding press roller pair and a feeding pressing device, and is also provided with a vertical cutter shaft which is vertically arranged so as to finish fine planing of four sides of the raw wood.
The existing four-side milling machine has the following defects: 1. the long wooden stick of the material has the bending deformation phenomenon, and has the phenomenon of large difference of milling thickness when extending into a four-side milling machine for four-side milling; 2. when different batches of wood sticks are replaced for planing and milling, due to the fact that the diameters of the wood sticks are different, the entering ends of the wood sticks of the four-face planing and milling machine are clamped by a single side, after the wood sticks are clamped and the planing and milling height positions of the wood sticks are adjusted, the axis positions of the wood sticks are not easy to judge, and planing and milling precision of all faces of the wood sticks is affected.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a four sides are planed and are milled machine auxiliary positioning mechanism to solve above-mentioned technical problem.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a four sides are planer and are milled machine auxiliary positioning mechanism, includes the main part frame, the main part frame including set up in the backup pad of both sides, set up and the reinforcing plate between two backup pads and be fixed in the bottom plate on reinforcing plate top, the both ends of main part frame are equipped with into wooden end respectively and go out the wooden end, it is equipped with into wooden baffle to advance wooden end one side, the main part frame by advance wooden end one side to be fixed with centering clamping mechanism, first transport mechanism in proper order to going out wooden end one side, control centering correctional agency, compress wood mechanism, second transport mechanism and third transport mechanism, be equipped with the clamp plate between first transport mechanism and the second transport mechanism, the clamp plate middle part is equipped with the backing plate that supplies the stick to pass through, control centering correctional agency including the symmetry set up in the bull stick and the rotation of the both sides of backing plate set up the compression roller on the bull stick.
Preferably, the pressing plate is provided with an arc-shaped groove for the rotating rod to rotate towards one side far away from or close to the base plate.
Preferably, the left and right centering and correcting mechanism comprises a rotating gear which is connected to the bottom of the pressing plate in a rotating mode through a pin shaft, the rotating gear is provided with two groups and symmetrically arranged on two sides of the base plate, so that the rotating rod is inserted into the bottom of the rotating gear, the rotating gear rotates to drive the rotating rod to rotate in the arc-shaped groove, the left and right centering and correcting mechanism further comprises telescopic cylinders, the telescopic cylinders are fixedly arranged on outer walls of two sides of the pressing plate, a connecting plate is fixed to the output end of each telescopic cylinder, and the connecting plate penetrates through the connecting plate through the pin shaft, is inserted into the rotating gear and is fixedly connected with the rotating gear.
Preferably, the rotating gears on the two sides are meshed and connected with each other.
Preferably, the compression rollers are arranged in an inverted circular truncated cone shape, and the wood stick can be pressed tightly on the base plate when the two compression rollers clamp the wood stick.
Preferably, one side of the second conveying mechanism close to the first conveying mechanism is fixed with a side plate, a rotating plate is arranged on the side plate in a rotating mode, one end, far away from the side plate, of the rotating plate is provided with a pressing wheel used for pressing a wood stick in a rotating mode, an extending plate is arranged at the top of the side plate, a third air cylinder is fixed to the top of the extending plate, and the output end of the third air cylinder is connected with the rotating plate.
Compared with the prior art, the beneficial effects of the utility model are that:
set up the compression roller in through the main part frame, and the compression roller is fixed in through the bull stick and changes gear eccentric position, change gear revolve through telescopic cylinder drive, can drive the compression roller that is located the both sides of stick and press from both sides tightly simultaneously or loosen the stick, avoid the unilateral to press from both sides tight stick preferentially and lead to the stick crooked, make fine the quilt of stick transfer process correct, let the stick be in the straight line state and carry out the plane of four sides side and mill to obtain high-quality finished product stick.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art that other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural view of the whole of the present embodiment;
FIG. 2 is a schematic view showing the overall structure of the centering, clamping and fastening in the present embodiment;
FIG. 3 is a schematic structural view showing a driving gear, a transmission gear and a universal joint in a highlighted manner in the embodiment;
FIG. 4 is an exploded view of the salient transfer gear of this embodiment;
FIG. 5 is a schematic view showing a first adjustment mechanism according to the present embodiment;
FIG. 6 is an exploded view of the highlighted shaft of the present embodiment;
FIG. 7 is a schematic view showing the overall structure of the first transfer mechanism according to the present embodiment;
FIG. 8 is a schematic view showing the structure of the pressing wheel and the pressing roller;
FIG. 9 is a schematic structural view of the salient rotary gear of the present embodiment;
FIG. 10 is a schematic view showing the left and right milling cutters in accordance with the present embodiment;
FIG. 11 is a schematic structural view showing the left and right centering correction mechanism according to the present embodiment;
FIG. 12 is a schematic view showing a third adjustment mechanism according to the present embodiment;
fig. 13 is an exploded view of the third adjustment mechanism highlighted in this embodiment.
In the drawings, the components represented by the respective reference numerals are listed below:
1. a support plate; 2. a reinforcing plate; 3. a base plate; 4. a wood feeding guide plate; 5. a centering and clamping mechanism; 6. a first conveying mechanism; 7. a left-right centering correction mechanism; 8. a wood pressing mechanism; 9. a second transport mechanism; 10. a third transport mechanism; 11. a lower side milling cutter; 12. a left side milling cutter; 13. a right side milling cutter; 14. an upper side milling cutter; 15. a lifting platform; 16. a mounting frame; 17. mounting grooves; 18. a middle shaft block; 19. a first rack; 20. a second rack; 21. a gear; 22. a fixing plate; 23. a side slider; 24. a transmission gear; 25. a cylinder; 26. a second mounting bracket; 27. a second mounting groove; 28. a lower conveying roller; 29. a second side slide block; 30. an upper conveying roller; 31. a second fixing plate; 32. a second cylinder; 33. pressing a plate; 34. a base plate; 35. pressing rollers; 36. an arc-shaped slot; 37. a side plate; 38. rotating the plate; 39. a pinch roller; 40. an extension plate; 41. a third cylinder; 44. a first adjustment mechanism; 45. a third adjustment mechanism; 46. a slide rail; 47. a stabilizer bar; 48. an arc-shaped opening; 49. clamping a plate; 50. a card slot; 51. a gear case; 52. a drive gear; 53. a transmission gear; 54. a universal joint; 55. rotating the gear; 56. a telescopic cylinder; 57. a connecting plate; 58. a U-shaped block; 59. an adjusting box; 60. a bearing block; 61. an outer sleeve; 62. a long axis; 63. a cylinder bore; 64. a drive rod; 65. a vortex tooth; 66. a rod tooth; 67. a support rod; 68. a second conditioning tank; 69. a bearing plate; 70. a T-shaped rail; 71. a base station; 72. a shaft sleeve; 73. milling a cutter shaft; 74. a connecting bond; 75. a ball screw; 76. a screw; 77. an upper guide wheel; 78. laminating the plates; 79. a small cylinder; 80. a keypad; 81. a side guide wheel; 82. a dust removal box; 83. and (5) exhausting the air pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1-13, the present invention provides a technical solution: the utility model provides a four sides are auxiliary positioning mechanism for planer, which comprises a main body frame, the main body frame is including setting up in backup pad 1 of both sides, reinforcing plate 2 between setting and two backup pads 1 and be fixed in the bottom plate 3 on reinforcing plate 2 top, the both ends of main body frame are equipped with into wooden end respectively and go out the wooden end, it is equipped with into wooden baffle 4 to advance wooden end one side, the main body frame is fixed with centering clamping mechanism 5 in proper order to going out wooden end one side by advancing wooden end one side, first transport mechanism 6, control centering aligning straightening mechanism 7, wood pressing mechanism 8, second transport mechanism 9 and third transport mechanism 10, be equipped with clamp plate 33 between first transport mechanism 6 and the second transport mechanism 9, clamp plate 33 middle part is equipped with the backing plate 34 that supplies the wood rod to pass through, control centering straightening mechanism 7 including the symmetry set up in the bull stick of the both sides of backing plate 34 and rotate the compression roller 35 that sets up on the bull stick.
Specifically, the pressing plate 33 is provided with an arc-shaped slot 36 for the rotating rod to rotate towards the side far away from the backing plate 34 or close to the backing plate 34.
It is specific, control centering guiding mechanism 7 and include rotating gear 55 of connecting in the clamp plate 33 bottom through the round pin hub rotation, rotating gear 55 is equipped with two sets ofly and the symmetry sets up in the both sides of backing plate 34, so the bull stick is pegged graft on bottom rotating gear 55, rotating gear 55 rotates and drives the bull stick at the 36 internal rotations of arc wall, control centering guiding mechanism 7 still includes telescopic cylinder 56, telescopic cylinder 56 is fixed to be set up on the both sides outer wall of clamp plate 33, telescopic cylinder 56 output is fixed with connecting plate 57, connecting plate 57 through the round pin hub penetration connecting plate 57 and peg graft with rotating gear 55 on and with rotating gear 55 fixed connection.
Specifically, the two side gears 55 are engaged with each other.
Specifically, the pressing rollers 35 are arranged in an inverted circular truncated cone shape, and the two pressing rollers 35 can press the wood stick onto the backing plate 34 while clamping the wood stick.
Specifically, a side plate 37 is fixed on one side of the second conveying mechanism 9 close to the first conveying mechanism 6, a rotating plate 38 is rotatably arranged on the side plate 37, a pressing wheel 39 used for pressing a wood stick is rotatably arranged at one end of the rotating plate 38 far away from the side plate 37, an extending plate 40 is arranged at the top of the side plate 37, a third air cylinder 41 is fixed at the top of the extending plate 40, and the output end of the third air cylinder 41 is connected with the rotating plate 38.
The utility model discloses a concrete embodiment uses and does:
as shown in fig. 1 and 8, an auxiliary positioning mechanism for a four-sided planer comprises a main body frame, the frame comprises support plates 1 arranged at two sides, a reinforcing plate 2 arranged between the two support plates 1 and a bottom plate 3 fixed at the top end of the reinforcing plate 2, a wood inlet end and a wood outlet end are respectively arranged at two ends of the main body frame, a wood inlet guide plate 4 is arranged at one side of the wood inlet end, a centering clamping mechanism 5, a first conveying mechanism 6, a left-right centering correcting mechanism 7, a wood pressing mechanism 8, a second conveying mechanism 9 and a third conveying mechanism 10 are sequentially fixed on the main body frame from one side of the wood inlet end to one side of the wood outlet end, a lower side milling cutter 11 is arranged between the centering clamping mechanism 5 and the first conveying mechanism 6, a left side milling cutter 12 and a right side milling cutter 13 are arranged between the first conveying mechanism 6 and the second conveying mechanism 9, the left side milling cutter 12 and the right side milling cutter 13 are symmetrically arranged at two sides for planing and milling a wood rod, an upper milling cutter 14 is arranged between the second conveying mechanism 9 and the third conveying mechanism 10.
As shown in fig. 2 and 4, a lifting platform 15 is disposed on one side of the main frame located at the wood inlet end, a mounting frame 16 is fixed on the top of the lifting platform 15, the mounting frame 16 is of a hollow structure, mounting grooves 17 are symmetrically disposed on the front side wall and the rear side wall, the mounting grooves 17 are provided with multiple groups along the width direction, the centering clamping mechanisms 5 are provided with multiple groups corresponding to the multiple groups, each group of centering clamping mechanisms 5 includes two groups of centering components symmetrically disposed in the mounting grooves 17 on the front side and the rear side, each group of centering components includes a central shaft block 18, a first rack 19, a second rack 20 and a gear 21, the gear 21 is disposed on the outer side of the central shaft block 18 and is rotatably disposed on the central shaft block 18 through a pin shaft, the first rack 19 and the second rack 20 are disposed in parallel and symmetrically disposed on both sides of the gear 21, and both the first gear 21 and the second gear 21 are engaged with the gear 21, the toothed ends of the first rack 19 and the second rack 20 are oppositely arranged and engaged with two sides of the gear 21, and the gear 21 rotates to drive the first rack 19 and the second rack 20 to move in opposite directions.
As shown in fig. 2 and 4, two front and rear side walls of the mounting frame 16 are symmetrically provided with stabilizer bars 47, the stabilizer bars 47 are provided with a plurality of groups along the width direction of the mounting frame 16, each stabilizer bar 47 is respectively disposed on two sides of each group of the centering assembly and respectively attached to the outer end surfaces of the first rack 19 and the second rack 20, so that the tooth sides of the first rack 19 and the second rack 20 in each group are engaged with the gear 21, the non-tooth end surfaces of the first rack 19 and the second rack 20 are attached to the stabilizer bars 47, and the first rack 19 and the second rack 20 can stably slide up and down after the gear 21 rotates.
As shown in fig. 1 and 4, the centering and clamping mechanism 5 further includes fixing plates 22 disposed in the mounting groove 17 in an up-down symmetrical manner, the fixing plates 22 cross the mounting groove 17 at the front and rear sides and are disposed in the mounting groove 17 in an up-down sliding manner, the upper fixing plate 22 extends out of the front and rear mounting grooves 17 and has one side fixedly connected to the top of the first rack 19 at the front and rear sides, the lower fixing plate 22 extends out of the front and rear mounting grooves 17 and has one side fixedly connected to the bottom of the second rack 20 at the front and rear sides, side sliders 23 are symmetrically disposed at the upper and lower sides of the central shaft block 18 of each mounting groove 17, the side sliders 23 are disposed in the mounting groove 17 in an up-down sliding manner, a transmission gear 24 is rotatably disposed between the corresponding side sliders 23 at the front and rear sides, and an arc-shaped opening 48 is formed at the middle position of the tooth portion of the transmission gear 24, the arc-shaped openings 48 of the plurality of tooth parts form the annular arc-shaped openings 48, so that the tooth parts can be better contacted with the wooden stick, and the wooden stick can be better conveyed, the upper side sliding blocks 23 are symmetrically fixed on the front side and the rear side of the upper fixing plate 22, and the lower side sliding blocks 23 are symmetrically fixed on the front side and the rear side of the lower fixing plate 22.
As shown in fig. 4, a clamping plate 49 is disposed on one side end surface of the front and rear side sliders 23, the inner wall opening of the mounting groove 17 is provided with a clamping groove 50 for clamping two sides of the clamping plate 49, the cross section of the extension plate 40 combined with the side sliders 23 is T-shaped, the side sliders 23 can slide up and down in the mounting groove 17 more stably through the arrangement of the manner, and the side sliders 23 and the mounting frame 16 form a closer matching effect.
As shown in fig. 2, 3 and 4, the transmission gear 24 is rotatably disposed on the side sliding block 23 of the mounting frame 16 through a stepped shaft, a gear box 51 is further fixed on the support plate 1, a plurality of sets of driving gears 52 are disposed in the gear box 51 corresponding to the centering and clamping mechanism 5, each set of driving gears 52 has two driving gears 52 and is correspondingly engaged up and down, a transmission gear 53 is engaged between adjacent driving gears 52, the transmission gear 53 is engaged between bottom driving gears 52 of two adjacent sets of driving gears 52, a universal joint 54 is connected to each driving gear 52 and a joint shaft on the transmission gear 24, the universal joint 54 drives the transmission gear 24 to rotate, and when the side sliding block 23 slides up and down, the universal joint 54 can slide up and down along the side sliding block 23 without affecting the driving of the motor on the stepped shaft.
As shown in fig. 4, a plurality of sets of air cylinders 25 are respectively disposed at the top and the bottom of the mounting rack 16, a plurality of sets of air cylinders 25 are disposed corresponding to the fixing plates 22, an output end of each set of air cylinders 25 is fixedly connected to the corresponding fixing plate 22, the air cylinders 25 provide power through an air pump, so as to drive the fixing plates 22 at the upper and lower sides to slide toward the sides close to or away from each other, so as to drive the first rack 19 and the second rack 20 to slide toward the sides close to or away from each other, and to drive the side sliding plates at the upper and lower sides to slide toward the directions close to or away from each other, so as to clamp or loosen the wood sticks passing through by the transmission gear 24; it should be noted that: the distance between the fixing plates 22 on the upper side and the lower side and the gear 21 is equal, and the distance between the fixing plates 22 on the upper side and the lower side and the gear 21 after the fixing plates 22 slide up and down can be accurately controlled to be always equal through the meshing of the first gear 21, the second gear 21 and the gear 21, so that the axes of the sticks are always positioned at the position which is vertically intersected with the axes of the gear 21 after the sticks are clamped by the transmission gears 24 on the upper side and the lower side, and the positions of the axes of the sticks in the planing process are determined.
As shown in fig. 1 and 7, the first conveying mechanism 6 includes a second mounting frame 26, the second mounting frame 26 is hollow, the front and rear walls of the second mounting frame 26 are symmetrically provided with two sets of second mounting grooves 27, the second mounting grooves 27 are symmetrically provided with two sets in the width direction of the second mounting frame 26, the first conveying mechanism 6 is provided with two sets in the second mounting frame 26, each set of the first conveying mechanism 6 includes a lower conveying roller 28 rotatably provided in the hollow interior of the second mounting frame 26, each set of the second mounting grooves 27 is provided with a second side sliding block 29 above the lower conveying roller 28 in a vertical sliding manner, the first conveying mechanism 6 further includes an upper conveying roller 30 rotatably provided between the second side sliding blocks 29 at the front and rear sides and a second fixing plate 31 crossing the second mounting grooves 27 at the front and rear sides, the first conveying mechanism 6 further includes a second air cylinder 32 fixed at the top of the second mounting frame 26, the output end of the second cylinder 32 is fixed on the top outer wall of the second fixing plate 31, and it should be noted that: the upper conveying roller 30 has the same structure as the above-described conveying gear 24 (shown in fig. 4), and the circumferential outer wall of the lower conveying roller 28 is a smooth roller.
As shown in fig. 1, the second conveying mechanism 9 and the third conveying mechanism 10 have the same structure as the first conveying mechanism 6, and it should be noted that: since the four sides of the wooden stick are shaved by the milling cutter before the wooden stick passes through the third conveying mechanism 10, the upper and lower conveying rollers 28 (see fig. 7) and the lower conveying roller 28 in the third conveying mechanism 10 are smooth sticks, and the wooden stick is prevented from being damaged by the conveying rollers with teeth.
As shown in fig. 1 and 8, a pressing plate 33 is arranged between the first conveying mechanism 6 and the second conveying mechanism 9, a backing plate 34 for wood rods to pass through is arranged in the middle of the pressing plate 33, the left and right centering and correcting mechanisms 7 comprise rotating rods symmetrically arranged on two sides of the backing plate 34 and pressing rollers 35 rotatably arranged on the rotating rods, and an arc-shaped groove 36 for the rotating rods to rotate towards the side far away from the backing plate 34 or close to one side of the backing plate 34 is formed in the pressing plate 33.
As shown in fig. 8, 9, and 11, the left and right centering and correcting mechanism 7 includes a rotating gear 55 rotatably connected to the bottom of the pressing plate 33 through a pin, the rotating gear 55 is provided with two sets of rotating gears 55 symmetrically disposed on two sides of the backing plate 34, so that the rotating rod is inserted into the bottom of the rotating gear 55, the rotating gear 55 rotates to drive the rotating rod to rotate in the arc-shaped groove 36, the left and right centering and correcting mechanism 7 further includes a telescopic cylinder 56, the telescopic cylinder 56 is fixedly disposed on outer walls of two sides of the pressing plate 33, a connecting plate 57 is fixed at an output end of the telescopic cylinder 56, the connecting plate 57 penetrates through the connecting plate 57 and is inserted into the rotating gear 55 to be fixedly connected with the rotating gear 55 through a pin, and it is described that: the connecting plate 57 is equipped with the slot part with the round pin hub connection department, and certain removal can not take place for connecting plate 57 through the slot with the round pin axle, and round pin axle and the pivot on the connecting plate 57 set up respectively in the both sides of changeing the gear 55 axis, can drive through the concertina movement of telescopic cylinder 56's output and change gear 55 and rotate to drive the bull stick and rotate, drive compression roller 35 and loosen the tight stick of pressure afterwards.
As shown in fig. 11, the rotary gears 55 are engaged with each other at both sides so that they can be synchronized when the pressing rollers 35 are driven to press the sticks.
As shown in fig. 11, the pressing rollers 35 are arranged in an inverted circular truncated cone shape, and the two pressing rollers 35 can press the wood stick against the backing plate 34 while clamping the wood stick, so that the wood stick can be straightened and corrected better.
As shown in fig. 1 and 8, a side plate 37 is fixed on one side of the second conveying mechanism 9 close to the first conveying mechanism 6, a rotating plate 38 is rotatably arranged on the side plate 37, a pressing wheel 39 for pressing a wood stick is rotatably arranged at one end of the rotating plate 38 far away from the side plate 37, an extending plate 40 is arranged on the top of the side plate 37, a third air cylinder 41 is fixed on the top of the extending plate 40, and the output end of the third air cylinder 41 is connected with the rotating plate 38.
As shown in fig. 8, an output end of the third cylinder 41 is fixedly connected with a U-shaped block 58, the U-shaped block 58 is disposed upside down and is clamped on the rotating plate 38, the U-shaped block 58 penetrates through the U-shaped block 58 through a pin shaft to form a fixed connection with the rotating plate 38, a sliding opening for sliding the pin shaft on the U-shaped block 58 is formed in the rotating plate 38, and the pressing wheel 39 is located right above the backing plate 34.
As shown in fig. 1 and 12, the main body frame is provided with a first adjusting mechanism 44 (shown in fig. 5) for adjusting the height position of the lower milling cutter 11, a second adjusting mechanism for adjusting the height position of the upper milling cutter 14, and a third adjusting mechanism 45 for adjusting the width positions of the left milling cutter 12 and the right milling cutter 13, respectively.
As shown in fig. 1 and 5, an adjusting box 59 is disposed between the mounting frame 16 and the second mounting frame 26, the adjusting box 59 is disposed in a hollow manner, a receiving block 60 for receiving a stick is disposed in the adjusting box 59, a shaving opening is disposed on the receiving block 60, the lower milling cutter 11 is disposed at the shaving opening of the adjusting box 59, the first adjusting mechanism 44 includes an outer sleeve 61 disposed on the adjusting box 59 in a penetrating manner, the first adjusting mechanism 44 further includes a long shaft 62 rotatably disposed on the outer sleeve 61, an axis of the long shaft 62 is parallel to and does not coincide with an axis of the outer sleeve 61, the long shaft 62 is eccentrically disposed on the outer sleeve 61, and the first adjusting mechanism 44 further includes a rotating component for driving the outer sleeve 61 to rotate.
As shown in fig. 5 and 6, a cylindrical hole 63 axially penetrates through the outer sleeve 61, the cylindrical hole 63 is eccentrically arranged, bearings are embedded in two axial ends of the cylindrical hole 63, two ends of the long shaft 62 are fixed in inner rings of the bearings, the long shaft 62 is rotatably arranged in the outer sleeve 61 through matching with the bearings, and one end of the long shaft 62, which extends outwards, is driven by transmission of a motor belt.
As shown in fig. 5 and 6, the driving member includes a driving rod 64 penetrating the adjusting box 59 (see fig. 1), a vortex tooth 65 is provided on an outer circumferential wall of the outer sleeve 61, a rod tooth 66 engaged with the vortex tooth 65 is provided on an outer wall of the driving rod 64, the driving rod 64 is rotatably provided in the adjusting box 59, and a resisting rod 67 is threadedly connected to the adjusting box 59.
As shown in fig. 1, a second adjusting box 68 is provided between the second conveying mechanism 9 and the third conveying mechanism 10, the second adjusting box 68 is hollow, a receiving plate 69 for receiving a stick is provided in the second adjusting box 68, the upper milling cutter 14 is provided above the second receiving plate 69 in the second adjusting box 68, and the second adjusting mechanism has the same structure as the first adjusting mechanism 44.
As shown in fig. 13, the left side milling cutter 12 and the right side milling cutter 13 are symmetrically disposed on the pressing plate 33 at both sides of the backing plate 34, respectively, the third adjusting mechanism 45 includes T-shaped rails 70 symmetrically disposed at both sides of the top end surface of the bottom plate 3 (see fig. 1) and a base 71 slidably disposed on the T-shaped rails 70, two groups of the base tables 71 are symmetrically arranged and are respectively arranged right below the left side milling cutter 12 and the right side milling cutter 13, a shaft sleeve 72 is fixedly arranged on the base 71, a milling cutter shaft 73 is rotatably arranged at the center of the shaft sleeve 72, the milling cutter shafts 73 on the two base 71 respectively penetrate through the left milling cutter 12 and the right milling cutter 13 which are right above the two base, the milling cutter shaft 73 is fixedly connected with the left milling cutter 12 or the right milling cutter 13 through key connection, the bottom of the bottom plate 3 is provided with a motor for driving the milling cutter shaft 73 to rotate through belt transmission, and the bottom plate 3 is provided with a driving assembly for driving the two base platforms 71 to slide towards one sides far away from or close to each other.
As shown in fig. 13, the two bases 71 are fixedly provided with connecting keys 74 at the bottom, the driving assembly includes a ball screw 75 rotatably disposed on the bottom plate 3, the ball screw 75 penetrates through the two connecting keys 74 and is in threaded connection with the connecting keys 74, and the thread on the ball screw 75 is a bidirectional thread.
As shown in fig. 1 and 2, a slide rail 46 is fixed on the front side surface of the reinforcing plate 2, the assembly of the slide rail 46 is inclined downward from the wood outlet end side to the wood inlet end side, the lifting platform 15 is slidably disposed on the slide rail 46, and a driving member for driving the lifting platform 15 to slide is disposed at the bottom end of the slide rail 46.
As shown in fig. 1 and 2, the driving member includes a screw 76 threadedly connected to the bottom of the lifting platform 15, the screw 76 is axially parallel to the slide rail 46 and is disposed at an equal inclination angle with the slide rail 46, and one end of the screw 76 away from the lifting platform 15 is rotatably disposed at the bottom end of the slide rail 46.
As shown in fig. 1 and 8, an upper guide wheel 77 for pressing the top of the stick is arranged in the adjusting box 59, a fitting plate 78 fitted to the inner wall of the adjusting box 59 is arranged in the adjusting box 59, a small cylinder 79 for controlling the fitting plate 78 to slide up and down through an output end is arranged at the top of the adjusting box 59, and the upper guide wheel 77 is rotatably arranged on the fitting plate 78; the key plates 80 are arranged on one side, close to the second mounting frame 26, of the pressing wheel 39 on the end face of the top of the pressing plate 33, the key plates 80 are symmetrically arranged on two sides of the backing plate 34, and side guide wheels 81 used for pressing two sides of a wood stick are rotatably arranged on the key plates 80 on the two sides; the second adjusting box 68 is provided with an upper guide wheel 77 for pressing the top of the stick, which has the same structure as the adjusting box 59, and it should be noted that: the upper guide wheel 77 in the second adjusting box 68 moves up and down in the same way as the upper guide wheel 77 is driven by the small air cylinder 79 in the adjusting box 59.
As shown in fig. 1 and 10, the milling sticks of the upper milling cutter 14, the left milling cutter 12, the right milling cutter 13 and the lower milling cutter 11 are all provided with a dust removal box 82, and the dust removal box 82 is all provided with an exhaust pipe 83 connected with an external exhaust fan.
One specific application example of this embodiment is:
when the device is used, a columnar wood stick is placed on the wood feeding guide plate 4 and pushed towards the wood feeding end of the main body frame, after the wood stick enters the centering clamping mechanism 5, the cylinders 25 on the upper side and the lower side of the mounting frame 16 are started, the cylinders 25 push the fixing plates 22 on the upper side and the lower side, the fixing plates 22 on the two sides slide towards one side close to each other, under the driving of the fixing plates 22 on the two sides, the first rack 19 and the second rack 20 respectively slide towards opposite directions, under the meshing action of the gears 21, the moving distances of the first rack 19 and the second rack 20 are the same, so that the sliding distances of the fixing plates 22 on the upper side and the lower side are the same, the fixing plates 22 slide and drive the side sliding blocks 23 on the upper side and the lower side to slide towards the direction close to each other, so as to drive the transmission gears 24 on the side sliding blocks 23 on the upper side and the lower side to move towards the direction close to each other until the wood stick is clamped, the motor drives the transmission gears 53 to rotate through belt transmission, thereby driving the driving gear 52 to rotate, the driving gear 52 rotates to drive the corresponding transmission gear 24 on the side slide block 23 to rotate through the universal joint 54, and the wood sticks are transmitted backwards; the conveying gear 24 conveys the wooden stick to the adjusting box 59, the wooden stick is attached to the bearing block 60 to move and passes through the lower side milling cutter 11, the lower side milling cutter 11 digs and mills the lower side of the wooden stick, (the thickness of the wood stick planed and milled by the lower side milling cutter 11 can drive the outer sleeve 61 to rotate by rotating the driving rod 64, so that the height of the lower side milling cutter 11 is adjusted by utilizing the eccentric structure of the outer sleeve 61 and the long shaft 62, or the height of the mounting frame 16 is adjusted by directly adjusting the height of the lifting table 15, the height position of the axis of the wooden stick is adjusted, and the height of the mounting frame 16 is preferably selected and adjusted), the lower side of the wooden stick is planed and milled, then passes through the upper guide wheel 77 and is continuously conveyed to the first conveying mechanism 6, the upper conveying roller 30 in the first conveying mechanism 6 is driven by the second side sliding block 29 to downwardly press the wooden stick and convey the wooden stick to the next process; the wood sticks are conveyed out of the second mounting frame 26 through the upper conveying rollers 30, the wood sticks firstly pass through the side guide wheels 81 on the key plate 80 to be guided and corrected for one time, the corrected wood sticks are conveyed continuously, the wood sticks move on the backing plate 34 and pass through the compression roller 35, the telescopic cylinder 56 is started, the output end of the telescopic cylinder 56 pulls the rotating gear 55 to rotate, the rotating gear 55 rotates to drive the compression roller 35 fixed on the rotating gear 55 to rotate in the arc-shaped groove 36, so that the two sides of the wood sticks are pressed, the compression roller 35 is arranged in a reverse circular table shape, and the wood sticks are driven to be attached to the backing plate 34 and conveyed while the two sides of the wood sticks are pressed; the wooden stick is continuously conveyed backwards to the side milling cutter, and after the wooden stick passes through the side milling cutter, the planing and milling are finished on two sides of the wooden stick, (the thickness of the wooden stick planed and milled by the side milling cutter can drive the base table 71 to slide by rotating the ball screw 75, so that the distance between the side milling cutters is adjusted; after being planed and milled, the two sides of the wooden stick are continuously conveyed to the second conveying mechanism 9, and during conveying, the third air cylinder 41 drives the rotating plate 38 to rotate so as to drive the pressing wheel 39 to press the upper side of the wooden stick tightly, so that the wooden stick is corrected and then conveyed to the second conveying mechanism 9; the second conveying mechanism 9 conveys the wood sticks to the second adjusting box 68 in the same direction as the first conveying mechanism 6, the wood sticks firstly pass through an upper guide wheel 77 in the second adjusting box 68, the wood sticks are corrected by the upper guide wheel 77 and then subjected to upper side planing and milling by an upper side milling cutter 14, so that planing and milling of four side faces of the wood sticks are completed, and finally the wood sticks are conveyed to the outside of the main body frame through the third conveying mechanism 10, so that planing and milling are completed.
In the description of the present invention, it is to be understood that the terms "coaxial", "bottom", "one end", "top", "middle", "other end", "upper", "one side", "top", "inner", "front", "center", "both ends", and the like, indicate orientations or positional relationships based on the drawings, and are merely for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
In the present invention, unless otherwise explicitly specified or limited, the terms "mounted", "disposed", "connected", "fixed", "screwed" and the like are to be understood broadly, and may be, for example, a fixed connection, a detachable connection, or an integral body; can be mechanically or electrically connected; the terms may be directly connected or indirectly connected through an intermediate medium, and may be used for communicating the inside of two elements or for interacting with each other, unless otherwise specifically defined, and the specific meaning of the terms in the present invention will be understood by those skilled in the art according to the specific circumstances.
Although embodiments of the present invention have been shown and described, it would be appreciated by those skilled in the art that changes may be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the claims and their equivalents.

Claims (6)

1. The utility model provides a four sides are facing and are milled machine auxiliary positioning mechanism, includes the main part frame, its characterized in that: the main body frame comprises supporting plates (1) arranged at two sides, a reinforcing plate (2) arranged between the two supporting plates (1) and a bottom plate (3) fixed at the top end of the reinforcing plate (2), the two ends of the main body frame are respectively provided with a wood inlet end and a wood outlet end, a wood feeding guide plate (4) is arranged on one side of the wood feeding end, a centering clamping mechanism (5), a first conveying mechanism (6), a left and right centering correcting mechanism (7), a wood pressing mechanism (8), a second conveying mechanism (9) and a third conveying mechanism (10) are sequentially fixed on the main body frame from one side of the wood feeding end to one side of the wood discharging end, a pressing plate (33) is arranged between the first conveying mechanism (6) and the second conveying mechanism (9), the clamp plate (33) middle part is equipped with backing plate (34) that supplies the stick to pass through, control centering guiding mechanism (7) including the symmetry set up in the bull stick of the both sides of backing plate (34) and rotate compression roller (35) that set up on the bull stick.
2. The auxiliary positioning mechanism for the four-sided planer according to claim 1, wherein: the pressing plate (33) is provided with an arc-shaped groove (36) for the rotating rod to rotate towards one side far away from the base plate (34) or close to the base plate (34).
3. The auxiliary positioning mechanism for the four-sided planer according to claim 2, wherein: the left and right centering and correcting mechanism (7) comprises a rotating gear (55) which is connected to the bottom of the pressing plate (33) in a rotating mode through a pin shaft, the rotating gear (55) is provided with two groups of rotating gears and symmetrically arranged on two sides of the base plate (34), so that a rotating rod is inserted into the bottom of the rotating gear (55), the rotating gear (55) rotates to drive the rotating rod to rotate in the arc-shaped groove (36), the left and right centering and correcting mechanism (7) further comprises a telescopic cylinder (56), the telescopic cylinder (56) is fixedly arranged on outer walls of two sides of the pressing plate (33), a connecting plate (57) is fixed at the output end of the telescopic cylinder (56), and the connecting plate (57) penetrates through the connecting plate (57) and is inserted into the rotating gear (55) to be fixedly connected with the rotating gear (55) through the pin shaft.
4. The auxiliary positioning mechanism for the four-sided planer according to claim 3, wherein: the rotating gears (55) on the two sides are meshed and connected with each other.
5. The auxiliary positioning mechanism for the four-sided planer according to claim 4, wherein: the compression rollers (35) are arranged in an inverted circular truncated cone shape, and the wood stick can be compressed tightly onto the cushion plate (34) when the two compression rollers (35) clamp the wood stick.
6. The auxiliary positioning mechanism for the four-sided planer according to claim 1, wherein: one side that second transport mechanism (9) are close to first transport mechanism (6) is fixed with curb plate (37), it is provided with commentaries on classics board (38) to rotate on curb plate (37), the one end that curb plate (37) were kept away from in commentaries on classics board (38) rotates and is provided with pinch roller (39) that are used for compressing tightly the stick, curb plate (37) top is equipped with extension board (40), extension board (40) top is fixed with third cylinder (41), third cylinder (41) output with it is connected to change board (38).
CN202220076546.5U 2022-01-13 2022-01-13 Auxiliary positioning mechanism for four-side planing and milling machine Active CN217454243U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220076546.5U CN217454243U (en) 2022-01-13 2022-01-13 Auxiliary positioning mechanism for four-side planing and milling machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220076546.5U CN217454243U (en) 2022-01-13 2022-01-13 Auxiliary positioning mechanism for four-side planing and milling machine

Publications (1)

Publication Number Publication Date
CN217454243U true CN217454243U (en) 2022-09-20

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220076546.5U Active CN217454243U (en) 2022-01-13 2022-01-13 Auxiliary positioning mechanism for four-side planing and milling machine

Country Status (1)

Country Link
CN (1) CN217454243U (en)

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