CN213005791U - Double-rail quick head-aligning mechanism for edge bonding machine - Google Patents
Double-rail quick head-aligning mechanism for edge bonding machine Download PDFInfo
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- CN213005791U CN213005791U CN202021304259.2U CN202021304259U CN213005791U CN 213005791 U CN213005791 U CN 213005791U CN 202021304259 U CN202021304259 U CN 202021304259U CN 213005791 U CN213005791 U CN 213005791U
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Abstract
The utility model discloses a double-track quick flush mechanism for an edge bonding machine, which comprises a base, a first oblique slide rail pair, a second oblique slide rail pair, a front slide rail pair, a rear slide rail pair and a flush cutting assembly; the first oblique sliding rail pair and the second oblique sliding rail pair are arranged on the front side of the base in parallel relatively and are used for driving the flush cutting assembly to move obliquely to a position where a timber sideband needs to be cut; the front and rear sliding rail pairs are arranged on the second inclined sliding rail pair and are used for driving the flush cutting assembly to reciprocate back and forth so as to realize quick reset; the flush cutting assembly comprises a motor, a saw blade and a positioning sheet and is used for cutting the allowance of the timber sidebands; the motor is connected to the first oblique sliding rail pair and the front and rear sliding rail pairs in a sliding manner; the saw blade is arranged on the output end of the motor; the positioning sheet is arranged on the front side of the motor; the utility model discloses compare in current flush mechanism, have quick flush, occupation space is little, job stabilization's advantage.
Description
Technical Field
The utility model relates to a bag sealer technical field, in particular to quick flush mechanism of double track for bag sealer.
Background
The edge bonding machine is a device for sealing the edge band on the wood instead of manual work, and comprises multiple functions of conveying, gluing and edge bonding, cutting, front and back edging, upper and lower trimming, upper and lower fine trimming, upper and lower edge scraping, polishing and the like. Front and back flush is the surplus of using the saw sword to cut the sideband on the timber, flush mechanism on the current bag sealer, generally by two sets of cutting components, a track board is constituteed, in order to avoid colliding with the sword each other, two sets of cutting components sliding connection are on same track board, be used for cutting timber respectively before, the sideband surplus of rear end, but this kind of flush mechanism need wait for two sets of cutting components all work the back that finishes, just can reset and carry out the cutting of next timber, the working cycle is long, drag the work efficiency of whole equipment slowly. Therefore, improvements are needed.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a quick flush mechanism of double track for bag sealer to solve above-mentioned problem.
The utility model discloses a following technical scheme realizes above-mentioned purpose:
a double-track quick head-aligning mechanism for an edge bonding machine comprises a base, a first oblique sliding rail pair, a second oblique sliding rail pair, a front sliding rail pair, a rear sliding rail pair and a head-aligning cutting assembly; the first oblique sliding rail pair and the second oblique sliding rail pair are arranged on the front side of the base in parallel relatively and are used for driving the flush cutting assembly to move obliquely to a position where a timber sideband needs to be cut; the front and rear sliding rail pairs are arranged on the second inclined sliding rail pair and are used for driving the flush cutting assembly to reciprocate back and forth so as to realize quick reset; the flush cutting assembly comprises a motor, a saw blade and a positioning sheet and is used for cutting the allowance of the timber sidebands; the motor is connected to the first oblique sliding rail pair and the front and rear sliding rail pairs in a sliding manner; the saw blade is arranged on the output end of the motor; the locating plate is arranged on the front side of the motor.
Furthermore, the first oblique sliding rail pair and the second oblique sliding rail pair comprise a first sliding rail, a first sliding block, a first driving cylinder and a hydraulic buffer column; the first sliding rail is arranged on the front side of the base, and the first sliding rail and the horizontal plane form an included angle of 45 degrees; the first sliding block is connected to the first sliding rail in a sliding manner; the first driving air cylinder is arranged on the first slide rail and is in driving connection with the first slide block; the hydraulic buffer column is arranged at the head end and the tail end of the first slide rail and is correspondingly placed with the first slide block.
Furthermore, the front and rear slide rail pair comprises a second slide rail, a second slide block and a second driving cylinder; the second slide rail is arranged on the first slide block of the second oblique slide rail pair; the second sliding block is connected to the second sliding rail in a sliding manner; the second driving cylinder is arranged on the second slide rail and is in driving connection with the second slide block.
Further, the flush cutting assembly further comprises a motor mounting rack; the motor mounting rack is connected to the first oblique sliding rail pair and the front and rear sliding rail pairs in a sliding manner; the motor is arranged on the motor mounting frame.
Furthermore, the positioning plate comprises a first positioning plate and a second positioning plate; the first positioning piece is arranged on the front side of the motor of the first oblique sliding rail pair, and a sliding wheel is arranged below the first positioning piece; the second locating piece is arranged on the front side of the motor of the second oblique sliding rail pair, and a blocking part is arranged on the left side of the second locating piece.
The utility model has the advantages of rapid alignment, small occupied space, stable work and long service life; the utility model discloses a set up two sets of flush cutting assembly respectively on two sets of slant slide rail are vice, and two sets of slant slide rail are vice relatively parallel and become the contained angle setting of 45 degrees with the horizontal plane, and flush cutting assembly is through the vice drive of slant slide rail, and the synchronous cutting of going on perpendicular relatively with timber, and the sideband machine need not to shut down and wait for the cutting, and the setting that the double track is parallel and close to each other can reduce horizontal occupation space under the function of guaranteeing synchronous cutting; the front sliding rail pair and the rear sliding rail pair are arranged on the group of oblique sliding rail pairs, the front sliding rail pair and the rear sliding rail pair can realize quick reset after margin is left at the cutting head end, and the front sliding rail pair and the rear sliding rail pair do not need to be reset after another flush cutting assembly finishes working like the prior art; the oblique sliding rail pair is provided with hydraulic buffer columns, the hydraulic buffer columns can buffer and reduce the impact force of the air cylinder at the tail end of the stroke, the service lives of the sliding rail pair and the air cylinder are prolonged, the flush cutting assembly is driven by the sliding rail pair to move, and the hydraulic buffer columns can buffer the vibration of the flush cutting assembly at the tail end of the stroke of the sliding rail pair and protect the flush cutting assembly; compared with the existing flush mechanism, the flush mechanism has the advantages of quick flush, small occupied space, stable work and long service life.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic structural view of the first oblique sliding rail pair and the second oblique sliding rail pair of the present invention;
fig. 3 is a schematic view of a partial structure of the flush cutting assembly of the first inclined slide rail pair of the present invention;
fig. 4 is a schematic view of a partial structure of the flush cutting assembly of the second inclined slide rail pair of the present invention;
fig. 5 is a schematic view of the present invention in operation.
10. A base; 20. a first inclined slide rail pair; 30. a second inclined slide rail pair; 40. a front and rear slide rail pair; 41. a second slide rail; 42. a second slider; 43. a second driving cylinder; 50. a flush cutting assembly; 51. a motor mounting bracket; 52. a motor; 53. sawing a cutter; 53A, adjustable bolts; 53B, a protective cover; 53C, processing a notch; 54. a first positioning sheet; 55. a second positioning sheet; 56. a sliding wheel; 57. a blocking portion; 60. a first slide rail; 61. a first slider; 62. a first driving cylinder; 63. and a hydraulic buffer column.
Detailed Description
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings. It should be noted that the drawings of the present invention are simplified and use non-precise ratios, and are only used for the purpose of facilitating and clearly assisting the description of the embodiments of the present invention.
As shown in fig. 1 to 4, a double-rail quick head-aligning mechanism for an edge bonding machine includes a base 10, a first oblique sliding rail pair 20, a second oblique sliding rail pair 30, a front and rear sliding rail pair 40, and a head-aligning cutting assembly 50;
the first oblique sliding rail pair 20 and the second oblique sliding rail pair 30 are arranged in parallel at the front side of the base 10, and are used for driving the flush cutting assembly 50 to move obliquely to a position where a timber side belt needs to be cut; the first oblique sliding rail pair 20 and the second oblique sliding rail pair 30 comprise a first sliding rail 60, a first sliding block 61, a first driving cylinder 62 and a hydraulic buffer column 63; the first slide rail 60 is arranged on the front side of the base 10, and the first slide rail 60 and the horizontal plane form an included angle of 45 degrees; the first sliding block 61 is connected to the first sliding rail 60 in a sliding manner; the first driving cylinder 62 is arranged on the first slide rail 60 and is in driving connection with the first slide block 61; the hydraulic buffer columns 63 are arranged at the head end and the tail end of the first slide rail 60 and are arranged corresponding to the first slide block 61; the first oblique sliding rail pair 20 and the second oblique sliding rail pair 30 are relatively parallel and arranged at an included angle of 45 degrees with the horizontal plane, so that the flush cutting assembly 50 can be driven by the oblique sliding rail pair to perform synchronous cutting relatively vertical to wood, a conveying mechanism on the edge banding machine does not need to stop feeding, the edge banding machine does not need to be stopped temporarily, and the overall working efficiency is improved; the hydraulic buffer column 63 can buffer and reduce the impact force of the cylinder at the stroke end, the service lives of the sliding rail pair and the cylinder are prolonged, the flush cutting assembly 50 is driven by the sliding rail pair to move, and the hydraulic buffer column 63 can buffer the vibration of the flush cutting assembly 50 at the stroke end of the sliding rail pair, so that the flush cutting assembly 50 is protected;
the front and rear sliding rail pair 40 is arranged on the second oblique sliding rail pair 30 and used for driving the flush cutting assembly 50 to reciprocate back and forth so as to realize quick reset; the front and rear slide rail pair 40 comprises a second slide rail 41, a second slide block 42 and a second driving cylinder 43; the second slide rail 41 is disposed on the first slide block 61 of the second inclined slide rail pair 30; the second sliding block 42 is slidably connected to the second sliding rail 41; the second driving cylinder 43 is arranged on the second slide rail 41 and is in driving connection with the second slide block 42; the first inclined slide rail pair 20 and the second inclined slide rail pair 30 are both provided with a flush cutting component 50, the front and rear sliding rail pairs 40 are additionally arranged on the flush cutting component 50 on the second inclined sliding rail pair 30, the flush cutting component 50 on the second inclined sliding rail pair 30 is used for cutting the margin of the head end of the timber, the flush cutting component 50 on the first inclined sliding rail pair 20 is used for cutting the margin of the rear end of the timber, when the margin of the belt at the head end of the timber is cut, the flush cutting component 50 on the second inclined slide rail pair 30 can retreat through the front and rear slide rail pairs 40, the wood material is returned to the head end of the stroke through the second inclined slide rail pair 30, and finally, the wood material is moved forward to the initial position through the front and rear slide rail pairs 40, so that the rapid reset is realized, the reset is not needed to be carried out after another flush cutting assembly 50 finishes the work as in the prior art, and finally, the next wood material is cut, so that the working efficiency is improved;
the flush cutting assembly 50 comprises a motor mounting frame 51, a motor 52, a saw blade 53 and a positioning sheet, and is used for cutting the allowance of the timber sidebands; the motor mounting rack 51 is slidably connected to the first inclined slide rail pair 20 and the front and rear slide rail pairs 40; the motor 52 is arranged on the motor mounting frame 51; the saw blade 53 is arranged at the output end of the motor 52, the saw blade 53 is arranged at the output end of the motor 52 through an adjustable bolt 53A, a protective cover 53B is arranged on the outer side, and a processing notch 53C is formed in the protective cover 53B; when cutting, the allowance of the upper edge belt of the wood is in contact cutting with the saw blade 53 through the processing notch 53C; the positioning sheet is arranged on the front side of the motor 52; the positioning plate comprises a first positioning plate 54 and a second positioning plate 55; the first positioning piece 54 is disposed in front of the motor 52 of the first inclined slide rail pair 20, and a sliding wheel 56 is disposed below the first positioning piece 54; the second positioning piece 55 is disposed at the front side of the motor 52 of the second diagonal slide rail pair 30, and a blocking portion 57 is disposed at the left side of the second positioning piece 55.
The working principle is as follows: the mechanism is used for cutting the margin of the edge band on the timber, the timber is transported to the front of the mechanism by a transporting mechanism on the edge band machine, firstly, the timber is contacted with a blocking part 57 on a second positioning sheet 55, then a second oblique slide rail pair 30 drives a flush head cutting component 50 on the second oblique slide rail pair to move obliquely right and down, a saw blade 53 cuts the margin of the edge band at the head end of the timber, after the margin cutting of the margin at the head end is finished, a first oblique slide rail pair 20 drives the flush head cutting component 50 on the first oblique slide rail pair to move obliquely right and down, a sliding wheel 56 is arranged below a first positioning sheet 54 and is contacted with the upper end face of the timber and is in sliding connection, the timber is driven by the transporting mechanism on the edge band machine to continue to advance, when the sliding wheel 56 slides over the timber, the flush head cutting component 50 on the first oblique slide rail pair 20 continues to move obliquely right and down and cuts the, meanwhile, the flush cutting assembly 50 on the second diagonal slide rail pair 30 can retreat through the front and rear slide rail pairs 40, return to the head end of the stroke through the second diagonal slide rail pair 30, and finally advance to the initial position through the front and rear slide rail pairs 40, so that the quick reset is realized.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (5)
1. The utility model provides a quick neat head mechanism of double track for bag sealer which characterized in that: the automatic trimming device comprises a base, a first oblique sliding rail pair, a second oblique sliding rail pair, a front sliding rail pair, a rear sliding rail pair and a flush cutting assembly; the first oblique sliding rail pair and the second oblique sliding rail pair are arranged on the front side of the base in parallel relatively and are used for driving the flush cutting assembly to move obliquely to a position where a timber sideband needs to be cut; the front and rear sliding rail pairs are arranged on the second inclined sliding rail pair and are used for driving the flush cutting assembly to reciprocate back and forth so as to realize quick reset; the flush cutting assembly comprises a motor, a saw blade and a positioning sheet and is used for cutting the allowance of the timber sidebands; the motor is connected to the first oblique sliding rail pair and the front and rear sliding rail pairs in a sliding manner; the saw blade is arranged on the output end of the motor; the locating plate is arranged on the front side of the motor.
2. The double-rail quick flush mechanism for the edge bonding machine according to claim 1, wherein: the first oblique sliding rail pair and the second oblique sliding rail pair comprise first sliding rails, first sliding blocks, first driving cylinders and hydraulic buffer columns; the first sliding rail is arranged on the front side of the base, and the first sliding rail and the horizontal plane form an included angle of 45 degrees; the first sliding block is connected to the first sliding rail in a sliding manner; the first driving air cylinder is arranged on the first slide rail and is in driving connection with the first slide block; the hydraulic buffer column is arranged at the head end and the tail end of the first slide rail and is correspondingly placed with the first slide block.
3. The double-rail quick flush mechanism for the edge bonding machine according to claim 2, wherein: the front and rear slide rail pair comprises a second slide rail, a second slide block and a second driving cylinder; the second slide rail is arranged on the first slide block of the second oblique slide rail pair; the second sliding block is connected to the second sliding rail in a sliding manner; the second driving cylinder is arranged on the second slide rail and is in driving connection with the second slide block.
4. The double-rail quick flush mechanism for the edge bonding machine according to claim 1, wherein: the flush cutting assembly further comprises a motor mounting rack; the motor mounting rack is connected to the first oblique sliding rail pair and the front and rear sliding rail pairs in a sliding manner; the motor is arranged on the motor mounting frame.
5. The double-rail quick flush mechanism for the edge bonding machine according to claim 4, wherein: the positioning plate comprises a first positioning plate and a second positioning plate; the first positioning piece is arranged on the front side of the motor of the first oblique sliding rail pair, and a sliding wheel is arranged below the first positioning piece; the second locating piece is arranged on the front side of the motor of the second oblique sliding rail pair, and a blocking part is arranged on the left side of the second locating piece.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021304259.2U CN213005791U (en) | 2020-07-06 | 2020-07-06 | Double-rail quick head-aligning mechanism for edge bonding machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021304259.2U CN213005791U (en) | 2020-07-06 | 2020-07-06 | Double-rail quick head-aligning mechanism for edge bonding machine |
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CN213005791U true CN213005791U (en) | 2021-04-20 |
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CN202021304259.2U Active CN213005791U (en) | 2020-07-06 | 2020-07-06 | Double-rail quick head-aligning mechanism for edge bonding machine |
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