CN213647893U - A energy-saving compression fittings for plywood processing - Google Patents

A energy-saving compression fittings for plywood processing Download PDF

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CN213647893U
CN213647893U CN202021754403.2U CN202021754403U CN213647893U CN 213647893 U CN213647893 U CN 213647893U CN 202021754403 U CN202021754403 U CN 202021754403U CN 213647893 U CN213647893 U CN 213647893U
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template
rack
sliding
energy
block
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谢艺云
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Gucheng Yuanwei Wood Industry Co ltd
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Abstract

The utility model discloses an energy-saving compression fittings for plywood processing, including gyro wheel, safety cover, mount, cylinder, slide bar and slip mould, the utility model discloses a set up the slip mould at the mounting bracket top, remove first template and second template, make first template and second template move on the guide rail through the slider to make first template and second template can drive the plywood fast and get into the processing district, reached and can drive the plywood fast and carry out the advantage of pressfitting; through having set up the mechanism that leaves mutually in sliding die upper end, the motor drives the swinging arms and rotates, makes the swinging arms drive first rack through the movable block and removes in the slide rail inboard to make first rack and second rack drive first template and second template through the bearing piece and remove, reached the advantage that can quick adjustment mould width.

Description

A energy-saving compression fittings for plywood processing
Technical Field
The utility model relates to a plywood processing relevant field specifically is an energy-saving compression fittings for plywood processing.
Background
Plywood is a three-layer or multi-layer plate material made up by using wood segments and making them be rotary-cut into single board or sliced into thin wood and using adhesive to make them be glued together, and usually using odd number of layers of single board and making the fibre directions of adjacent layers of single board be mutually perpendicular.
When the plywood adds man-hour, often need use compression fittings to carry out the pressfitting to the plywood, but the mould size of pressfitting is generally fixed, when will pressing great plywood, often need change the mould, the width of the difficult quick adjustment mould of energy-saving compression fittings who is used for plywood processing now leads to the pressfitting to waste time and energy.
SUMMERY OF THE UTILITY MODEL
Therefore, in order to solve the above insufficiency, the utility model provides an energy-saving compression fittings for plywood processing herein.
The utility model is realized in such a way, an energy-saving pressing device for plywood processing is constructed, the device comprises a roller, a protective cover, a fixed frame, a cylinder, a sliding rod and a sliding die, the roller is fixedly connected with four corners of the bottom of the fixed frame, the right end of the fixed frame is provided with a control panel, the front end of the control panel is provided with a button, the rear end of the fixed frame is fixed with a power wire, the fixed frame and the bottom of the protective cover are fixed into a whole, the sliding die is installed and fixed on the top of the fixed frame, the sliding die comprises a guide rail, a sliding block, a guide mechanism, a first template, a second template and a phase separation mechanism, the bottom of the guide rail is locked and fixed with the fixed frame by a screw, the sliding block slides along the top of the guide rail, the top of the sliding block is provided with the guide mechanism, and the upper end of the phase separation mechanism is oppositely provided with a first template and a second template.
Preferably, the mounting frame is fixedly connected with the bottom of the fixing frame, the fixing frame is locked and fixed with the bottom of the air cylinder through screws, the bottom of the air cylinder penetrates through the fixing frame and is fixedly connected with the upper end of the movable plate, the bottom of the movable plate is provided with a pressing plate, and the left side and the right side of the upper end of the fixing frame are provided with sliding rods oppositely.
Preferably, the guide mechanism comprises a guide block, a pressure spring and a sliding groove, the sliding groove is formed in the first template, the guide block slides along the inner side of the sliding groove, and the guide block is elastically connected with the left end in the sliding groove through the pressure spring.
Preferably, the phase separation mechanism comprises a transverse plate, a mounting plate, a motor, a swinging rod, a movable block, a first rack, a gear, a second rack, a sliding rail and a bearing block, the transverse plate is fixedly connected with the right end of the sliding block, the transverse plate is fixed with the rear end of the mounting plate through electric welding, the mounting plate is locked and fixed with the rear end of the motor through a bolt, one end of the swinging rod is rotatably connected with the output end of the motor, the other end of the swinging rod is movably nested at the inner side of the movable block, the movable block is fixedly connected with the left side of the front end of the first rack, the first rack is meshed with the bottom of the gear for transmission, the gear is meshed with the bottom of the second rack, the second rack is in sliding fit with the inner side of the slide rail, the second rack is welded and fixed with the front end of the bearing block, and one end of the bearing block, which is far away from the second rack, extends to the lower end of the first template to be fixed, and the motor is electrically connected with the control panel.
Preferably, the rear ends of the first rack and the second rack are respectively provided with a guide wheel, and the guide wheels are in sliding fit with the inner side of the sliding rail.
Preferably, the number of the slide rails is two, and the slide rails are respectively located at the rear ends of the first rack and the second rack.
Preferably, the first template and the second template have the same size, are symmetrically distributed, and are internally provided with guide mechanisms.
Preferably, the number of the guide rails and the number of the sliding blocks are two, and the guide rails and the sliding blocks are respectively located at the lower ends of the first template and the second template.
Preferably, the gear is made of 42CrMo gear steel and has the advantages of high strength, high hardenability, good toughness and the like.
Preferably, the swinging rod is made of carbon steel and has high hardness.
The utility model has the advantages of as follows: the utility model discloses an improve and provide an energy-saving compression fittings for plywood processing here, compare with equipment of the same type, have following improvement:
the method has the advantages that: an energy-saving compression fittings for plywood processing through having set up sliding mold at the mounting bracket top, removes first template and second template, makes first template and second template remove on the guide rail through the slider to make first template and second template can drive the plywood fast and get into the processing district in, reached and to have driven the plywood fast and carry out the advantage of pressfitting.
The advantages are two: an energy-saving compression fittings for plywood processing through having set up in the slip mould upper end from the mechanism mutually, the motor drives the swinging arms and rotates, makes the swinging arms drive first rack through the movable block and removes in the slide rail inboard to make first rack and second rack drive first template and second template through the bearing piece and remove, reached the advantage that can quick adjustment mould width.
The advantages are three: an energy-saving compression fittings for plywood processing through having set up guiding mechanism in the sliding die upper end, when first template and second template moved toward both sides, can drive the guide block and remove in the spout inboard to the guide block can press the pressure spring to produce deformation and prevent that the guide block from removing too fast, has reached and can have arrived first template and second template and have led to the advantage of carrying out the direction transport.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the front view of the pressing device of the present invention;
FIG. 3 is a schematic view of the sectional structure of the sliding mold of the present invention;
fig. 4 is a schematic view of the sectional structure of the guiding mechanism of the present invention;
fig. 5 is a schematic side view of the guiding mechanism of the present invention.
Wherein: the device comprises a roller-1, a mounting rack-2, a control panel-3, a button-4, a power supply lead-5, a protective cover-6, a fixed rack-7, a cylinder-8, a moving plate-9, a press plate-10, a slide rod-11, a slide mold-12, a guide rail-121, a slide block-122, a guide mechanism-123, a first mold plate-124, a second mold plate-125, a separation mechanism-126, a guide block-1231, a pressure spring-1232, a chute-1233, a transverse plate-1261, a mounting plate-1262, a motor-1263, a swing rod-1264, a movable block-1265, a first rack-1266, a gear-1267, a second rack-1268, a slide rail-1269, a receiving block-12610 and a guide wheel-12611.
Detailed Description
The present invention will be described in detail with reference to the accompanying fig. 1-5, and the technical solutions in the embodiments of the present invention will be clearly and completely described, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The utility model provides an energy-saving compression fittings for plywood processing through the improvement here, including gyro wheel 1, safety cover 6, mount 7, cylinder 8, slide bar 11 and sliding die 12, gyro wheel 1 and the fixed connection in mounting bracket 2 bottom four corners, mounting bracket 2 right-hand member is provided with control panel 3, control panel 3 front end is installed and is pressed the button 4, mounting bracket 2 rear end is fixed with power wire 5, mounting bracket 2 and safety cover 6 bottom are fixed as an organic whole, sliding die 12 is installed and is fixed in the mounting bracket 2 top, sliding die 12 includes guide rail 121, slider 122, guiding mechanism 123, first template 124, second template 125 and from mechanism 126, guide rail 121 bottom is fixed with mounting bracket 2 locking through the screw, slider 122 slides along guide rail 121 top, slider 122 top has set up guiding mechanism 123, guiding mechanism 123 and first template 124 bottom fixed connection, the separating mechanism 126 is fixedly connected with the right end of the sliding block 122, and the upper end of the separating mechanism 126 is oppositely provided with a first template 124 and a second template 125.
Further, mounting bracket 2 and 7 bottom fixed connection of mount, mount 7 is fixed with 8 bottom locking of cylinder through the screw, 8 cylinder bottoms of cylinder run through in mount 7 and 9 upper end fixed connection of movable plate, 9 bottoms of movable plate are provided with compressed particleboard 10, the mount 7 upper end left and right sides is provided with slide bar 11 relatively.
Further, the guide mechanism 123 includes a guide block 1231, a pressure spring 1232, and a sliding groove 1233, the sliding groove 1233 is formed inside the first mold plate 124, the guide block 1231 slides along the inner side of the sliding groove 1233, and the guide block 1231 is elastically connected to the left end inside the sliding groove 1233 through the pressure spring 1232.
Further, the separating mechanism 126 includes a transverse plate 1261, a mounting plate 1262, a motor 1263, a swing rod 1264, a movable block 1265, a first rack 1266, a gear 1267, a second rack 1268, a slide rail 1269 and a receiving block 12610, the transverse plate 1261 is fixedly connected with the right end of the slide block 122, the transverse plate 1261 is fixed with the rear end of the mounting plate 1262 by electric welding, the mounting plate 1262 is locked and fixed with the rear end of the motor 1263 by bolts, one end of the swing rod 1264 is rotatably connected with the output end of the motor 1263, the other end of the swing rod 1264 is movably nested inside the movable block 1265, the movable block 1265 is fixedly connected with the left side of the front end of the first rack 1266, the first rack 1266 is engaged with the bottom of the gear 1267, the gear 1267 is engaged with the bottom of the second rack 1268, the second rack 1268 is slidably matched with the inside of the slide rail 1269, the front end of the receiving block 1268 is fixedly welded with the front end of the receiving block 12610, and one end of the second rack 1268 is extended to the fixed template, the motor 1263 is electrically connected to the control panel 3.
Further, a guide wheel 12611 is arranged at the rear end of each of the first rack 1266 and the second rack 1268, and the guide wheel 12611 is in sliding fit with the inner side of the sliding rail 1269, so that the function of guiding the first rack 1266 and the second rack 1268 is facilitated.
Further, two sliding rails 1269 are provided, and the sliding rails 1269 are respectively located at the rear ends of the first rack 1266 and the second rack 1268, so as to facilitate smooth movement of the first rack 1266 and the second rack 1268.
Further, the first mold plate 124 and the second mold plate 125 have the same size, the first mold plate 124 and the second mold plate 125 are symmetrically distributed, and the guide mechanisms 123 are disposed inside the first mold plate 124 and the second mold plate 125, so as to guide the first mold plate 124 and the second mold plate 125.
Further, two guide rails 121 and two sliders 122 are provided, and the guide rails 121 and the sliders 122 are respectively located at the lower ends of the first mold plate 124 and the second mold plate 125, which is beneficial for achieving the effect of enabling the first mold plate 124 and the second mold plate 125 to move smoothly.
Furthermore, the gear 1267 is made of 42CrMo gear steel and has the advantages of high strength, high hardenability, good toughness and the like.
Furthermore, the swing rod 1264 is made of carbon steel and has high hardness.
The utility model provides an energy-saving pressing device for plywood processing through improvement, and the working principle is as follows;
firstly, before use, horizontally placing an energy-saving laminating device for plywood processing, and enabling a roller 1 to support the device;
secondly, when the device is used, an external power supply is connected through a power supply lead 5 to provide power for the device, then plywood is placed on the tops of the first template 124 and the second template 125, the first template 124 and the second template 125 are moved on the upper ends of the guide rails 121 through the sliders 122, and therefore the first template 124 and the second template 125 can quickly drive the plywood into a processing area;
thirdly, a button 4 at the upper end of the control panel 3 is pressed down, the device is started, and the air cylinder 8 drives the pressing plate 10 to press down through the movable plate 9, so that the pressing plate 10 presses the plywood;
fourthly, when the widths of the first die plate 124 and the second die plate 125 are to be adjusted, the phase separation mechanism 126 is started, the motor 1263 is electrified to work, the rotor arranged at the front end drives the swing rod 1264 to rotate, the swing rod 1264 drives the first rack 1266 to move on the inner side of the slide rail 1269 through the movable block 1265, and the first rack 1266 drives the second rack 1268 to move towards the other side through the gear 1267 when moving, so that the first rack 1266 and the second rack 1268 drive the first die plate 124 and the second die plate 125 to move through the bearing block 12610, and the width of the die can be adjusted quickly;
fifthly, by providing the guide mechanism 123 at the upper end of the sliding mold 12, when the first mold plate 124 and the second mold plate 125 move to both sides, the guide block 1231 is driven to move inside the sliding groove 1233, and the guide block 1231 presses the compression spring 1232 to deform so as to prevent the guide block 1231 from moving too fast, so that the guide conveying can be performed on the first mold plate 124 and the second mold plate 125.
The utility model provides an energy-saving compression fittings for plywood processing through improving, through set up sliding mold 12 at the top of mounting bracket 2, remove first template 124 and second template 125, make first template 124 and second template 125 move on guide rail 121 through slider 122, thus make first template 124 and second template 125 can drive the plywood fast and enter the processing district, have reached the advantage that can drive the plywood fast and carry out the pressfitting; the separation mechanism 126 is arranged at the upper end of the sliding mold 12, the motor 1263 is electrified to work, the rotor arranged at the front end drives the swing rod 1264 to rotate, the swing rod 1264 drives the first rack 1266 to move on the inner side of the sliding rail 1269 through the movable block 1265, and the first rack 1266 drives the second rack 1268 to move towards the other side through the gear 1267 when moving, so that the first rack 1266 and the second rack 1268 drive the first mold plate 124 and the second mold plate 125 to move through the bearing block 12610, and the advantage of quickly adjusting the width of the mold is achieved; through having set up guiding mechanism 123 in sliding die 12 upper end, when first template 124 and second template 125 move toward both sides, can drive guide block 1231 and move in spout 1233 inboard to guide block 1231 can press pressure spring 1232 to produce and deform and prevent that guide block 1231 from moving too fast, has reached and can have arrived first template 124 and second template 125 and have led the advantage of carrying.
The basic principle and the main characteristics of the utility model and the advantages of the utility model have been shown and described above, and the utility model discloses the standard part that uses all can purchase from the market, and dysmorphism piece all can be customized according to the record of the description with the drawing, and the concrete connection mode of each part all adopts conventional means such as ripe bolt rivet among the prior art, welding, and machinery, part and equipment all adopt prior art, conventional model, and conventional connection mode in the prior art is adopted in addition to circuit connection, and the details are not repeated here.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (8)

1. An energy-saving pressing device for plywood processing comprises rollers (1), a protective cover (6), a fixing frame (7), a cylinder (8) and a sliding rod (11), wherein the rollers (1) are fixedly connected with four corners of the bottom of a mounting frame (2), a control panel (3) is arranged at the right end of the mounting frame (2), a button (4) is installed at the front end of the control panel (3), a power supply lead (5) is fixed at the rear end of the mounting frame (2), and the mounting frame (2) and the bottom of the protective cover (6) are fixed into a whole;
the method is characterized in that: still include sliding die (12), sliding die (12) installation is fixed in mounting bracket (2) top, sliding die (12) include guide rail (121), slider (122), guiding mechanism (123), first template (124), second template (125) and leave mechanism (126) mutually, guide rail (121) bottom is fixed with mounting bracket (2) locking through the screw, slider (122) slide along guide rail (121) top, slider (122) top has set up guiding mechanism (123), guiding mechanism (123) and first template (124) bottom fixed connection, it constructs (126) and slider (122) right-hand member fixed connection to leave mechanism (126) upper end and be provided with first template (124) and second template (125) relatively.
2. An energy-saving laminating device for plywood processing according to claim 1, characterized in that: mounting bracket (2) and mount (7) bottom fixed connection, mount (7) are fixed through screw and cylinder (8) bottom locking, cylinder (8) bottom is run through in mount (7) and movable plate (9) upper end fixed connection, movable plate (9) bottom is provided with compressed particleboard (10), mount (7) upper end left and right sides is provided with slide bar (11) relatively.
3. An energy-saving laminating device for plywood processing according to claim 1, characterized in that: the guide mechanism (123) comprises a guide block (1231), a pressure spring (1232) and a sliding groove (1233), the sliding groove (1233) is formed in the first template (124), the guide block (1231) slides along the inner side of the sliding groove (1233), and the guide block (1231) is elastically connected with the inner left end of the sliding groove (1233) through the pressure spring (1232).
4. An energy-saving laminating device for plywood processing according to claim 1, characterized in that: the separating mechanism (126) comprises a transverse plate (1261), a mounting plate (1262), a motor (1263), a swinging rod (1264), a movable block (1265), a first rack (1266), a gear (1267), a second rack (1268), a sliding rail (1269) and a receiving block (12610), the transverse plate (1261) is fixedly connected with the right end of the sliding block (122), the transverse plate (1261) is fixed with the rear end of the mounting plate (1262) through electric welding, the mounting plate (1262) is fixedly locked with the rear end of the motor (1263) through a bolt, one end of the swinging rod (1264) is rotatably connected with the output end of the motor (1263), the other end of the swinging rod (1264) is movably nested inside the movable block (1265), the movable block (1265) is fixedly connected with the left side of the front end of the first rack (1266), the first rack (1266) is meshed with the bottom of the gear (1267) for transmission, and the second rack (1268), the second rack (1268) is in sliding fit with the inner side of the sliding rail (1269), the second rack (1268) is welded and fixed with the front end of the bearing block (12610), one end, far away from the second rack (1268), of the bearing block (12610) extends to the lower end of the first template (124) to be fixed, and the motor (1263) is electrically connected with the control panel (3).
5. An energy-saving laminating device for plywood processing according to claim 4, wherein: the rear ends of the first rack (1266) and the second rack (1268) are provided with guide wheels (12611), and the guide wheels (12611) are in sliding fit with the inner sides of the sliding rails (1269).
6. An energy-saving laminating device for plywood processing according to claim 4, wherein: the number of the slide rails (1269) is two, and the slide rails (1269) are respectively positioned at the rear ends of the first rack (1266) and the second rack (1268).
7. An energy-saving laminating device for plywood processing according to claim 1, characterized in that: the first template (124) and the second template (125) are the same in size, the first template (124) and the second template (125) are symmetrically distributed, and guide mechanisms (123) are arranged inside the first template (124) and the second template (125).
8. An energy-saving laminating device for plywood processing according to claim 1, characterized in that: the guide rail (121) and the sliding block (122) are respectively provided with two, and the guide rail (121) and the sliding block (122) are respectively positioned at the lower ends of the first template (124) and the second template (125).
CN202021754403.2U 2020-08-20 2020-08-20 A energy-saving compression fittings for plywood processing Active CN213647893U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021754403.2U CN213647893U (en) 2020-08-20 2020-08-20 A energy-saving compression fittings for plywood processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021754403.2U CN213647893U (en) 2020-08-20 2020-08-20 A energy-saving compression fittings for plywood processing

Publications (1)

Publication Number Publication Date
CN213647893U true CN213647893U (en) 2021-07-09

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Application Number Title Priority Date Filing Date
CN202021754403.2U Active CN213647893U (en) 2020-08-20 2020-08-20 A energy-saving compression fittings for plywood processing

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Country Link
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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20230616

Address after: 441700 Xiewan Industrial Park, Wushan Town, Gucheng County, Xiangyang City, Hubei Province

Patentee after: Gucheng Yuanwei Wood Industry Co.,Ltd.

Address before: 362100 No. 91, Dunhou, Jinshan Village, Luoyang Town, Hui'an County, Quanzhou City, Fujian Province

Patentee before: Xie Yiyun

TR01 Transfer of patent right