Summary of the invention
Based on this, the purpose of the present invention is to provide a kind of belt process equipments, to solve to pass through scribing line in the prior art
The step of method punches belt be cumbersome and position inaccurate, and when cutting to the belt after punching, due to some skins
Band is thicker, can not be cut using artificial, that is, allow to cut, and speed is also very slow, and efficiency is very low, and artificial cut also is difficult to protect
The problem of holding the consistency of size.
The technical scheme is that:A kind of belt process equipment comprising:
Rack, the rack include first support and the second support that is located above the first support;
Punching assembly, including upper die holder, lower die holder, multiple punching components, guiding parts, the first transmission component, the first sense
The first driving device answered device and first transmission component is driven to move up and down, the lower die holder are fixed on described second
The top of frame, the bottom end of first transmission component and the output axis connection of the first driving device, first transmission group
The top of part is inserted in the upper die holder, and the guiding parts is telescopically inserted in the upper die holder under by elastomeric element
Between die holder, the punching component is removably mounted to the upper die holder and the lower die holder, and the punching component, which is equipped with, to be allowed
The connecting hole that belt passes through, first sensing device are set to the side of the lower die holder, and the upper die holder is connected with the first sense
Answer component;
Shearing component, including upper cutting die, lower cutting die, the second transmission component, fixation member, the second sensing device and driving institute
The second driving device that the second transmission component moves up and down is stated, second transmission component is inserted in the fixation member, institute
State the bottom end of the second transmission component and the output axis connection of second driving device, the top of second transmission component and institute
Cutting die connection is stated, the lower cutting die is connected to the fixed plate, and second sensing device is set to the bottom of the fixation member
End, the bottom of the transmission component is connected with the second induction component;
It holds down assembly, it is described to hold down assembly between the punching assembly and the shearing component, described in fixed
Belt;
Control device, the input terminal of the control device are electrically connected with first sensing device and the second sensing device,
The output end of the control device is electrically connected with the first driving device, the second driving device and control assembly.
Optionally, the upper die holder includes upper die holder ontology and the first convex block, and first convex block is set to the upper die holder
The centre of ontology, the lower die holder include lower die holder ontology and the second convex block, and second convex block is set to the lower die holder ontology
Centre;
First transmission component passes through the middle part of first convex block and second convex block and first driving fills
Connection is set, two guiding parts are set between first convex block and the second convex block, and are located at first transmission component
Two sides.
Optionally, the first locating slot there are two being set between the upper die holder ontology and first convex block, the lower die holder
Second locating slot there are two being set between ontology and second convex block;
The top of the punching component is installed in first locating slot, and the bottom end of the punching component is installed on described
In second locating slot.
Optionally, the both sides of the upper die holder ontology are equipped with the first mounting groove, and the tip end piece of the punching component is removable
It is connect with first mounting groove with unloading;
The both sides of the lower die holder ontology be equipped with the second mounting groove, the bottom end of the punching component removably with it is described
The connection of second mounting groove.
Optionally, the punching component includes upper fixed seat, lower fixed seat and striker, and fixed seat is installed on described
First locating slot, the lower fixed seat are installed on second locating slot, and the lower fixed seat, which is equipped with, allows the belt to pass through
The connecting hole;
The lower fixed seat is equipped with the through-hole for allowing the striker to pass through, and one end of the striker is anchored on fixed
Seat, the other end of the striker are inserted in the through-hole of the lower fixed seat.
Optionally, the lower die holder ontology sets first sliding groove, and the through-hole is located at the surface of the first sliding groove, described
The bottom end of first sliding groove is connected with device for discharging.
Optionally, first transmission component includes drive rod, the first fifth wheel, the first eccentric wheel and the first sliding dress
It sets, the side of first fifth wheel and the output axis connection of the first driving device, first eccentric wheel pass through connection
Bar is connect with the other side of first fifth wheel, and first eccentric wheel is inserted in first carriage;
The top of the drive rod is inserted in the upper die holder, the top of the drive rod and the fixed company of the carriage
It connects.
Optionally, second to hold down assembly including the first contact roller, immediately below first contact roller compresses
The third driving device that wheel, fastening frame and driving second contact roller roll, the third driving device pass through Synchronous Transmission
Device is connect with the second contact roller, and second contact roller is fixed in the fastening frame, and the fastening frame is connected with driving institute
State the lifting device of the first contact roller up and down motion.
Optionally, the lifting device includes rocking bar, sliding bar, the first guiding hook and the second guiding hook, and described first leads
The both ends of the sliding bar are respectively arranged in hook and the second guiding hook, the both ends of first contact roller are connected separately with and institute
State the link block of the first guiding hook and the second guiding hook connects, the rocking bar and the first guiding hook connects.
Optionally, the top of the link block is connected with tightening device, and the tightening device includes lock screw, fastening block
And spring, the lock screw pass through the fastening frame and connect with the fastening block, the spring is set to the fastening block and company
It connects between block.
Implement the embodiment of the present invention, has the advantages that:
Belt process equipment of the invention, before belt is punched out and is sheared, first by belt from punching assembly
Connecting hole penetrate, then again by apron drawing into holding down assembly, finally under the drive of the second driving device, so that cutting
Mould and upper knife mold have certain gap, and belt is pierced by from gap.In the entire mistake for being punched out, compressing and cutting out to belt
Cheng Zhong, by the way that punching assembly is arranged, punching assembly uses the form of punching press, carries out perforating by punching to belt, punching assembly includes
Upper die holder and lower die holder, punching component are removably mounted in upper die holder and lower die holder, and lower die holder is as fixed part, upper die holder
Under the driving effect of first driving device, the transmission effect of the first transmission component and the guiding role of guidance set, upper die holder
Mobile toward lower die holder, punching component is moved downward with upper die holder toward lower die holder, to complete the punching of belt;By will be multiple
Punching component is removably mounted to upper die holder and lower die holder, so that operator can adjust according to the position of the through-hole designed by belt
Save position of the punching component in upper die holder and lower die holder, consequently facilitating punching component upper die holder and lower die holder installation with tear open
It unloads, and realizes the accurate punching that the distance in each hole on belt is adjustable and punching component is on belt, avoid generation position inclined
Difference;By the first induction component of setting and the first sensing device, when the first sensing device senses the first induction component, i.e., in fact
Punching component is showed and punching action is completed to belt, control device outputs signal to first driving device, the second driving device
In control assembly, the direction of rotation of first driving device changes, the compaction degree reduction to hold down assembly to belt, and belt is past
Preceding conveying, to realize the movement of punching, entire punching operation reduces labor intensity, which thereby enhances the working efficiency of punching
And quality;
By the way that shearing component is arranged, shearing component uses the shear pattern of disconnecting link formula, and lower cutting die is connected to fixed plate, therefore
Lower cutting die is connect as fixed part, upper cutting die with the second transmission component, therefore upper cutting die is as movable part, when needing to skin
When band is sheared, the second driving device drives upper cutting die to move down, after the completion of upper cutting die cuts belt, the second induction dress
It sets and senses the second induction component, control device outputs signal to first driving device, the second driving device and control assembly, the
One driving device stops working, and the direction of rotation of the second driving device changes, and the compaction degree reduction to hold down assembly to belt continues
Say that belt conveys forward, to realize the movement of shearing, entire cutting operation reduces labor intensity, which thereby enhances shearing
Working efficiency and quality.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of belt process equipment of the invention.
Fig. 2 is the structural schematic diagram of punching assembly of the invention.
Fig. 3 is the structural schematic diagram of upper die holder of the invention.
Fig. 4 is the structural schematic diagram of lower die holder of the invention.
Fig. 5 is the structural schematic diagram of punching component of the invention.
Fig. 6 is the structural schematic diagram of the first transmission component of the invention.
Fig. 7 is the structural schematic diagram of shearing component of the invention.
Fig. 8 is the attachment structure schematic diagram of upper slitter mould body and lower cutting die of the invention.
Fig. 9 is the structural schematic diagram of upper cutting die of the invention.
Figure 10 is the structural schematic diagram of the second transmission component of the invention.
Figure 11 is the structural schematic diagram to hold down assembly of the invention.
Figure 12 is the structural schematic diagram of lifting device of the invention.
Figure 13 is the structural schematic diagram of tightening device of the invention.
Description of symbols:
1, rack;11, first support;12, second support;2, punching assembly;21, upper die holder;211, upper die holder ontology;
212, the first convex block;213, the first locating slot;214, the first mounting groove;215, first sliding groove;22, lower die holder;221, lower die holder
Ontology;222, the second convex block;223, the second locating slot;224, the second mounting groove;225, second sliding slot;23, punching component;231,
Upper fixed seat;232, lower fixed seat;233, striker;24, guiding parts;25, the first transmission component;251, the first drive rod;
252, the first fifth wheel;253, the first eccentric wheel;254, the first carriage;2541, sliding block;2542, sliding rail;26, the first sense
Answer device;27, first driving device;28, the first induction component;29, device for discharging;3, shearing component;31, upper cutting die;311,
Upper slitter mould body;312, upper slitter mold base;313, pedestal link block;32, lower cutting die;33, the second transmission component;331, second is sliding
Dynamic device;332, the second fifth wheel;333, the second eccentric wheel;34, fixation member;341, fixed pedestal;342, gripping block;35,
Second sensing device;36, the second driving device;37, the second induction component;4, it holds down assembly;41, the first contact roller;42, second
Contact roller;43, fastening frame;44, third driving device;45, synchronous transmission device;46, lifting device;461, rocking bar;462, sliding
Lever;463, the first guiding hook;464, the second guiding hook;465, link block;47, tightening device;471, lock screw;472, it adjusts
Tight block;473, spring.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on
Embodiment in the present invention, it is obtained by those of ordinary skill in the art without making creative efforts every other
Embodiment shall fall within the protection scope of the present invention.
In the description of the present invention, it is to be understood that, term " on ", "lower", "left", "right", "top", "bottom" etc. indicate
Orientation or positional relationship be based on the orientation or positional relationship shown in the drawings, be merely for convenience of description the present invention and simplification retouch
It states, rather than the device or element of indication or suggestion meaning must have a particular orientation, be constructed and operated in a specific orientation,
Therefore it is not considered as limiting the invention.
As shown in figs. 1-13, a kind of belt process equipment provided by the embodiment of the present invention comprising:
Rack 1, rack 1 include first support 11 and the second support 12 for being located at 11 top of first support;
Punching assembly 2, including upper die holder 21, lower die holder 22, multiple punching components 23, guiding parts 24, the first transmission group
The first driving device 27 that part 25, the first sensing device 26 and the first transmission component 25 of driving move up and down, lower die holder 22 are fixed
In the top of second support 12, the bottom end of the first transmission component 25 and the output axis connection of first driving device 27, the first transmission
The top of component 25 is inserted in upper die holder 21, and guiding parts 24 is telescopically inserted in upper die holder 21 and lower die by elastomeric element
Between seat 22, punching component 23 is removably mounted to upper die holder 21 and lower die holder 22, and punching component 23, which is equipped with, allows belt to pass through
Connecting hole, the first sensing device 26 is set to the side of lower die holder 22, and upper die holder 21 is connected with the first induction component 28;
Shearing component 3, including upper cutting die 31, lower cutting die 32, the second transmission component 33, fixation member 34, second induction dress
The second driving device 36 set 35 and the second transmission component 33 is driven to move up and down, the second transmission component 33 are inserted in fixation member
In 34, the output axis connection of the bottom end of the second transmission component 33 and the second driving device 36, the top of the second transmission component 33 with
Upper cutting die 31 connects, and lower cutting die 32 is connected to fixed plate, and the second sensing device 35 is set to the bottom end of fixation member 34, transmission component
Bottom be connected with the second induction component 37;
Hold down assembly 4, holding down assembly 4 is set between punching assembly 2 and shearing component 3, for fixing belt;
Control device, the input terminal of control device are electrically connected with the first sensing device 26 and the second sensing device 35, control
The output end of device is electrically connected with first driving device 27, the second driving device 36 and control assembly.
Based on above-mentioned setting, belt process equipment of the invention, before belt is punched out and is sheared, first by skin
Band is penetrated from the connecting hole of punching assembly 2, then again by apron drawing to holding down assembly in 4, finally in the second driving device 36
Drive under so that lower cutting die 32 and upper cutting die 31 have certain gap, belt is pierced by from gap.It is rushed to belt
Hole, during the entire process of compressing and cutting out, by be arranged punching assembly 2, punching assembly 2 using punching press form, to belt into
Row perforating by punching, punching assembly 2 include upper die holder 21 and lower die holder 22, and punching component 23 is removably mounted to upper die holder 21 under
In die holder 22, lower die holder 22 is used as fixed part, driving effect of the upper die holder 21 in first driving device 27, the first transmission component
Under 25 transmission effect and the guiding role of guidance set, upper die holder 21 is mobile toward lower die holder 22, and punching component 23 is with upper mold
Seat 21 is moved downward toward lower die holder 22, to complete the punching of belt;By the way that multiple punching components 23 are removably mounted to
Die holder 21 and lower die holder 22, so that operator can adjust punching component 23 in upper mold according to the position of the through-hole designed by belt
Position in seat 21 and lower die holder 22, consequently facilitating installation and removal of the punching component 23 in upper die holder 21 and lower die holder 22, and
It realizes the accurate punching that the distance in each hole on belt is adjustable and punching component 23 is on belt, avoids generating position deviation;
By the first induction component 28 of setting and the first sensing device 26, when the first sensing device 26 senses the first induction component 28
When, that is, it realizes punching component 23 and punching action is completed to belt, control device outputs signal to first driving device 27,
In two driving devices 36 and control assembly, the direction of rotation of first driving device 27 changes, the compaction degree for the 4 pairs of belts that hold down assembly
It reduces, and belt is conveyed forward, to realize the movement of punching, entire punching operation reduces labor intensity, thus improves
The working efficiency and quality of punching;
By the way that shearing component 3 is arranged, shearing component 3 uses the shear pattern of disconnecting link formula, and lower cutting die 32 is connected to fixed plate,
Therefore lower cutting die 32 is used as fixed part, and upper cutting die 31 is connect with the second transmission component 33, therefore upper cutting die 31 is used as moving portion
Point, when needing to shear belt, the second driving device 36 drives upper cutting die 31 to move down, and upper cutting die 31 cuts belt
After the completion of cutting, the second sensing device 35 senses the second induction component 37, control device output signal to first driving device 27,
Second driving device 36 and control assembly, first driving device 27 stop working, and the direction of rotation of the second driving device 36 changes,
Hold down assembly 4 pairs of belts compaction degree reduce, continue to say that belt conveys forward, to realize the movement of shearing, entirely shear work
Sequence reduces labor intensity, which thereby enhances the working efficiency and quality of shearing.
In the present embodiment, as shown in figs. 2 to 4, for the ease of the first transmission component 25 and two guiding parts 24 in upper mold
The positioning and installation of seat 21 and lower die holder 22, upper die holder 21 include upper die holder ontology 211 and the first convex block 212, the first convex block 212
Set on the centre of upper die holder ontology 211, lower die holder 22 includes lower die holder ontology 221 and the second convex block 222, and the second convex block 222 is set
In the centre of lower die holder ontology 221;
First transmission component 25 passes through the first convex block 212 and the middle part of the second convex block 222 is connect with first driving device 27,
Two guiding parts 24 are set between the first convex block 212 and the second convex block 222, and are located at the two sides of the first transmission component 25.Tool
Body, the top of upper die holder 21 is connected with cover board, the fixation for the top to punching component 23;Two guiding parts 24 are arranged
Flexible component, so that the movement of the first transmission component 25 in vertical direction has return action.
In the present embodiment, as shown in figs. 2 to 4, for the ease of punching component 23 relative to the first convex block 212 and the second convex block
222 fixation in vertical direction is set between upper die holder ontology 211 and the first convex block 212 there are two the first locating slot 213, under
Second locating slot 223 there are two being set between die seat body 221 and the second convex block 222;
The top of punching component 23 is installed in the first locating slot 213, and the bottom end of punching component 23 is installed on the second positioning
In slot 223.Specifically, the opposite two sides of the first locating slot 213 can resist the opposite two sides in 23 top of punching component, second is fixed
The position opposite two sides of slot 223 can the opposite two sides in 23 bottom end of landlord's punching component, and the top of punching component 23 and bottom end peace
It loaded in the first locating slot 213 and the second locating slot 223, can prevent about 23 punching component from toppling over, guarantee the stabilization of installation.
In the present embodiment, as shown in figs. 2 to 4, for the ease of punching component 23 relative to the first convex block 212 and the second convex block
The both sides of 222 fixation in two side directions, upper die holder ontology 211 are equipped with the first mounting groove 214, the top of punching component 23
Removably it is connect with the first mounting groove 214;
The both sides of lower die holder ontology 221 be equipped with the second mounting groove 224, the bottom end of punching component 23 detachably install ground and
The connection of second mounting groove 224.Specifically, the first mounting groove 214 can resist the two sides of upper die holder ontology 211, the second mounting groove
224 can resist the two sides of lower die holder ontology 221, prevent upper die holder ontology 211 and lower die holder ontology 221 from inclining toward the left and right sides
, guarantee the stabilization of installation;The top and bottom end of punching component 23 by bolt or tighten screw and the first mounting groove 214 and
Second mounting groove 224 is detachably connected, and convenient for operator to the installation and removal of punching component 23, improves working efficiency.
In the present embodiment, as shown in figure 5, the punching for the ease of punching component 23 to belt, and it is convenient for punching component 23
Installation and positioning, punching component 23 includes upper fixed seat 231, lower fixed seat 232 and striker 233, and upper fixed seat 231 is installed on
First locating slot 213, lower fixed seat 232 are installed on the second locating slot 223, and lower fixed seat 232 is equipped with the company for allowing belt to pass through
Connect hole;
Lower fixed seat 232 is equipped with the through-hole for allowing striker 233 to pass through, and one end of striker 233 is anchored on upper fixed seat 231,
The other end of striker 233 is inserted in the through-hole of lower fixed seat 232.Specifically, upper fixed seat 231 is convex shape fixed block, upper mold
Seat ontology 211 is equipped with two second sliding slots 225, and upper fixed seat 231 is inserted in first sliding groove 215;Lower die holder ontology 221 is equipped with
Two first sliding grooves 215, lower fixed seat 232 is set to the surface of first sliding groove 215, when needing to adjust adjacent punching component 23
The distance between when, it is only necessary to adjacent the distance between upper fixed seat 231 is adjusted, to realize adjacent punching component
The convenience of adjustable range between 23 improves working efficiency;Striker 233 is driven in the guiding role of guiding parts 24 and first
Under the transmission effect of component 25, striker 233 moves down, and punching is formed through from belt.
In the present embodiment, as shown in Fig. 2, facilitating operator after punching to belt for the ease of punching component 23
By waste material, clear away waste, lower die holder ontology 221 set first sliding groove 215 from punching assembly 2, and through-hole is located at first sliding groove 215
Surface, the bottom end of first sliding groove 215 are connected with device for discharging 29.Specifically, device for discharging 29 is by the first inclined plate, the second inclined plate
It is sequentially connected composition with straight panel, after the completion of punching component 23 is to belt punching, waste material is from the through-hole of lower fixed seat 232 by the
One sliding slot 215, the first inclined plate, the second inclined plate and straight panel flow into preprepared waste material device, consequently facilitating operator is to useless
The collection of material.
In the present embodiment, as shown in fig. 6, being moved in vertical direction for the ease of upper die holder 21 and punching component 23
Dynamic, the first transmission component 25 includes drive rod 251, the first fifth wheel 252, the first eccentric wheel 253 and the first carriage 254,
The side of first fifth wheel 252 and the output axis connection of first driving device 27, the first eccentric wheel 253 pass through connecting rod and first
The other side of fifth wheel 252 connects, and the first eccentric wheel 253 is inserted in the first carriage 254;
The top of drive rod 251 is inserted in upper die holder 21, and the top of drive rod 251 is fixedly connected with carriage.Specifically
, the first carriage 254 includes that sliding block 2541 and two sliding rails 2542, two sliding rails 2542 are located at the two sides of sliding block 2541,
Drive rod 251 is connect with the top of sliding block 2541, and the first eccentric wheel 253 is inserted in sliding block 2541, and first driving device 27 is
Eccentric motor starts first driving device 27, and the output shaft rotation of first driving device 27 drives the movement of the first fifth wheel 252,
First fifth wheel 252 drives the rotation of the first eccentric wheel 253, and then drive rod 251 is driven to move back and forth in vertical direction, thus
It is spaced and is punched on belt convenient for punching component 23.
In the present embodiment, as shown in Fig. 7~10, shearing for the ease of shearing component 3 to belt reduces the labour of worker
Intensity, improves production efficiency, and shearing component 3 includes upper cutting die 31, lower cutting die 32, the second transmission component 33, fixation member 34, the
Two sensing devices 35, the second driving device 36 for moving up and down of the second transmission component 33 of driving and for changing the second driving device
The second control device of 36 working conditions, second control device are electrically connected with the second driving device 36, and the second transmission component 33 is inserted
In fixation member 34, the second transmission component 33 includes the second carriage 331, the second fifth wheel 332 and the second eccentric wheel
333, the output shaft of the second driving device 36 is connect with the side of the second fifth wheel 332, and one end of the second eccentric wheel 333 is set to the
The other side of two fifth wheels 332, and the center line of the second eccentric wheel 333 deviates from the center line of the second fifth wheel 332, second partially
The other end of heart wheel 333 is anchored on the bottom of the second carriage 331;
Lower cutting die 32 is connected to fixed plate, and the second sensing device 35 is set to the bottom end of fixation member 34, the second carriage
331 top is connect with upper cutting die 31.Specifically, when the direction of rotation of the output shaft of the second transmission device is to make the second transmission group
When the direction that part 33 rises vertically upward, the second eccentric wheel 333 is planar up moved, and the second eccentric wheel 333 is due to being inserted in
In second carriage 331, the second carriage 331 is up moved with the second eccentric wheel 333, upper cutting die 31 and lower cutting die 32
Between have gap, consequently facilitating belt passes through between upper cutting die 31 and lower cutting die 32;When the output shaft of the second transmission device
Direction of rotation when being the direction for dropping the second transmission component 33 vertically downward, the second eccentric wheel 333 drives the second carriage
331 to decline, and the second carriage 331 drives upper 31 slide downward of cutting die, and upper cutting die 31 shears belt, thus second
Transmission device, the second eccentric wheel 333 and the second carriage 331 can guarantee that upper cutting die 31 in vertical direction can be smoothly
It moves back and forth.
In the present embodiment, as shown in fig. 7, the fixation for the ease of the second carriage 331 in vertical direction, prevents
Two carriages 331 are fallen in vertical direction, and fixation member 34 includes fixed substrate 341 and gripping block 342, fixed base
Plate 341 is detachably connected with gripping block 342;
Second carriage 331 is set between fixed substrate 341 and gripping block 342.Specifically, fixed substrate 341 and folder
Tight block 342 is detachably connected by bolt, consequently facilitating operator fills fixed substrate 341, gripping block 342 and the second sliding
Set 331 installation and removal.
In the present embodiment, as shown in Fig. 7~10, in order to enable the second eccentric wheel 333 is convenient for the second carriage 331 of drive
It moves up and down and the second carriage 331 is convenient for driving upper cutting die 31 to move up and down, it is logical that the second carriage 331 is equipped with first
Slot and the second through slot, the first through slot are located at the surface of the second through slot, and upper cutting die 31 is set in the first through slot, the second eccentric wheel
333 are set in the second through slot.Specifically, the second eccentric wheel 333 is anchored in the second through slot by bearing, bearing has fastening effect
The feature that fruit is good and power transitivity is good;Upper cutting die 31 is removably mounted in the first through slot, to facilitate the peace of operator
Dress and disassembly.
In the present embodiment, as shown in Fig. 7~10, for the ease of the installation and removal of upper cutting die 31 and lower cutting die 32, cut
Mould 32 is removably mounted to the top of fixed substrate 341, and upper cutting die 31 is removably mounted to the top of the second carriage 331.
In the present embodiment, as shown in figs. 7-9, for the ease of fixation of the upper cutting die 31 on the second carriage 331, and
Shearing of the upper cutting die 31 to belt, upper cutting die 31 include upper slitter mould body 311, upper slitter mold base 312 and two pedestal link blocks
465313, two pedestal link blocks 465313 are symmetrically arranged on the top of the second carriage 331, and the one of upper slitter mold base 312
Side is detachably connected with pedestal link block 465313, and the other side and the upper slitter mould body 311 of upper slitter mold base 312 detachably connect
It connects.Specifically, pedestal link block 465313 is connected to the second carriage 331, upper cutting die base by bolt or fastening screw
The two sides of seat 312 pass through bolt respectively or fastening screw is connected to pedestal link block 465313 and upper slitter mould body 311, pedestal
Link block 465313 plays a part of fixed upper slitter mold base 312, and upper slitter mold base 312 plays fixation to upper slitter mould body 311
Effect, upper slitter mould body 311 play a part of to belt carry out severing.
In the present embodiment, as shown in fig. 7, the second driving device 36 is eccentric motor.
In the present embodiment, as shown in Fig. 7~10, in order to realize that control device can well carry out the second driving device 36
Control, the bottom end of fixation member 34 are connected with fixed block, and the second sensing device 35 is connected to fixed matrix by fixed block.Specifically
, the second sensing device 35 is infrared sensor, when infrared sensor is covered by the second induction component 37, the second induction component
37 issue signals into control device, and control device issues signal to the second driving device 36, and the second driving device 36 drives the
Two transmission parts, so that upper cutting die 31 resets, have the characteristics that high degree of automation toward rising.
In the present embodiment, as shown in Figure 11~13, for the ease of the compression for the 4 pairs of belts that hold down assembly, and hold down assembly 4 pairs
The transmission of belt, to hold down assembly 4 include the first contact roller 41, the second contact roller 42 immediately below the first contact roller 41, tight
Gu the third driving device 44 that frame 43 and the second contact roller 42 of driving roll, third driving device 44 pass through synchronous transmission device 45
It is connect with the second contact roller 42, the second contact roller 42 is fixed in fastening frame 43, and fastening frame 43 is connected with the first contact roller of driving
41 lifting devices 46 to move up and down.Specifically, fastener is fixed in first support 11, fastening frame 43 is the first contact roller 41
It is provided a supporting role with the second contact roller 42, since the first contact roller 41 can be relative on fastening frame 43 by lifting device 46
Therefore lower movement can pass through convenient for belt;When belt is between the first contact roller 41 and the second contact roller 42, by the
The transmission of one contact roller 41 and the second contact roller 42, belt are able to achieve feeding and sliding, and third driving device 44 is the second compression
Wheel 42 provides power;Third driving device 44 is stepper motor, and stepper motor has good power output effect.
In the present embodiment, as shown in Figure 11~13, for the ease of the second contact roller 42 can on fastening frame 43 it is more stable
Carry out move, lifting device 46 include rocking bar 461, sliding bar 462, first be oriented to hook 463 and second guiding hook 464, first
Guiding hook 463 and the second guiding hook 464 are respectively arranged in the both ends of sliding bar 462, and the both ends of the first contact roller 41 are separately connected
There is the link block 465 connecting with the first guiding hook 463 and the second guiding hook 464, rocking bar 461 is connect with the first guiding hook 463.Tool
Body, when rocking bar 461 to be pressed downward, the first guiding hook 463 and the second guiding hook 464 are ramped up, and are oriented to 463 He of hook first
Under the induced effect of second guiding hook 464, the first contact roller 41 moves up in vertical direction;It is mentioned upwards when by rocking bar 461
When rising, to decline, the first contact roller 41 moves down in vertical direction for the first guiding hook 463 and the second guiding hook 464, because
This, entire 46 structure of lifting device is simple, has stronger practicability.
In the present embodiment, as shown in Figure 11~13, for the ease of adjusting belt in the first contact roller 41 and the second contact roller
Clamping degree between 42, the top of link block 465 are connected with tightening device 47, and tightening device 47 includes lock screw 471, adjusts
Tight block 472 and spring 473, lock screw 471 pass through fastening frame 43 and connect with fastening block 472, and spring 473 is set to fastening block 472
Between link block 465.Specifically, moving up and down by lock screw 471, and spring has the movement of fastening block 472
Flexible adjustment effect, to realize the pore size adjusted between the first contact roller 41 and the second contact roller 42.
In the present embodiment, control device is PLC controller.
To sum up, belt process equipment of the invention, punching shearing work process are:Control device control first is driven first
Dynamic device 27, the second driving device 36 and third driving device 44 work, wherein the second driving device 36 is in second
Carriage 331 is located at the state of highest point;First driving device 27 drives the movement of the first transmission component 25, the first transmission component
25 drive punching component 23 to move, and when reaching the punching hole of setting, the second driving device 36 stops operating, punching component
23 pairs of belts punch, and after the completion of to belt punching punching, first driving device 27 stops working, third driving device 44
The direction of belt toward shearing component 3 is driven to be moved, when reaching the sheared length of setting, third driving device 44 is stopped
It only works, the second driving device 36 starts operation, and upper cutting die 31 shears belt, to complete the cutting of belt, entirely
Punching shear history reduces process, reduces labor intensity, which thereby enhances working efficiency and quality, reduce manually at
This.
It should be understood that various information are described in the present invention using term " first ", " second " etc., but these information
It should not necessarily be limited by these terms, these terms are only used to for same type of information being distinguished from each other out.For example, not departing from the present invention
In the case where range, " first " information can also be referred to as " second " information, and similar, " second " information can also be referred to as
" first " information.
The above is a preferred embodiment of the present invention, it is noted that for those skilled in the art
For, without departing from the principle of the present invention, several improvement and deformations can also be made, these improvement and deformations are also considered as
Protection scope of the present invention.