CN211567111U - Joint cutter with corner conveyer - Google Patents

Joint cutter with corner conveyer Download PDF

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Publication number
CN211567111U
CN211567111U CN201922320147.XU CN201922320147U CN211567111U CN 211567111 U CN211567111 U CN 211567111U CN 201922320147 U CN201922320147 U CN 201922320147U CN 211567111 U CN211567111 U CN 211567111U
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CN
China
Prior art keywords
conveying
platform
receiving
sprocket
chain
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201922320147.XU
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Chinese (zh)
Inventor
丁兴超
张风新
石秀明
梁金忠
焦金生
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Hengrun Plastic Products Co ltd
Original Assignee
Beijing Hengrun Plastic Products Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Beijing Hengrun Plastic Products Co ltd filed Critical Beijing Hengrun Plastic Products Co ltd
Priority to CN201922320147.XU priority Critical patent/CN211567111U/en
Application granted granted Critical
Publication of CN211567111U publication Critical patent/CN211567111U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a joint cutter with corner conveyer, including being used for receiving the receiving platform who comes out by cutting device, with the conveying platform that receiving platform level was laid perpendicularly and add the conveying mechanism who establishes on conveying platform and be used for carrying the braided bag, receiving platform includes the receiving rack and is used for carrying the receiving conveyer belt of braided bag. The utility model has the advantages that: the woven bag is conveyed by the right-angle steering conveying device, so that the joint cutter is compact in structure, and the space occupation of the joint cutter in the linear direction is reduced.

Description

Joint cutter with corner conveyer
Technical Field
The utility model belongs to the technical field of the joint cutter technique and specifically relates to a joint cutter with corner conveyer is related to.
Background
The plastic woven bag is an outer packing product with wide application, is mainly used for packing granular and powdery objects, is very commonly used in the industries of grain, chemical engineering and the like, and a joint cutter is an important device in devices required for producing the plastic woven bag.
The joint cutter generally includes cutting device, limit seam device, conveyer and receipts bagging apparatus, weaves cloth and at first enters into cutting device and carries out the cutting of length, then sends into by conveyer and receives in the bagging apparatus to the braided bag after cutting when conveyer carries, limit seam device carries out the limit seam to the braided bag, and among cutting device, limit seam device, conveyer and the receipts bagging apparatus four, the advancing direction of braided bag is the same.
Although the existing joint cutter can efficiently produce woven bags, the traveling direction of the production line of the joint cutter is a straight line, so that the joint cutter can be arranged in a straight line, the arrangement of the joint cutter is not compact, and the occupied space of the joint cutter on the straight line is increased.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a joint cutter with corner conveyer, its advantage is: the woven bag is conveyed by the right-angle steering conveying device, so that the joint cutter is compact in structure, and the space occupation of the joint cutter in the linear direction is reduced.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme: the joint cutter with the corner conveying device comprises a receiving platform used for receiving a cutting device, a conveying platform horizontally and vertically arranged with the receiving platform, and a conveying mechanism additionally arranged on the conveying platform and used for conveying woven bags, wherein the receiving platform comprises a receiving frame and a receiving conveying belt used for conveying the woven bags.
Through adopting above-mentioned technical scheme, receiving platform and conveying platform lay perpendicularly, make the braided bag reach the right angle corner and carried, and then reduced the occupation space size of joint cutter in the transverse direction, make joint cutter overall structure compact.
The utility model discloses further set up to: conveying mechanism is including adding the conveying subassembly that establishes on conveying platform and be used for carrying the braided bag and add and establish conveying platform towards receiving platform one end and be used for carrying conveying platform's transportation subassembly with the braided bag on the receiving platform.
Through adopting above-mentioned technical scheme, transport the subassembly and transport the braided bag on the receiving platform to conveying platform on, the braided bag on the conveying platform is conveyed to the conveying subassembly, has realized the transport that turns to the braided bag.
The utility model discloses further set up to: the conveying assembly comprises a driven shaft, a driving shaft, a plurality of driven sprockets, a driving chain wheel, a plurality of chains, a conveying motor and a plurality of chains, wherein the driven shaft is horizontally arranged at one end of the conveying platform and close to one end of the receiving platform, the driving shaft is horizontally arranged and rotates to be arranged at one end of the conveying platform, the driving chain wheel is arranged on the driving shaft in a rotating mode and corresponds to the driven sprocket, the conveying motor is arranged on the conveying platform and coaxially fixedly connected with the driving shaft, the chains are respectively meshed with the driving sprocket and the driven sprocket, the conveying platform is provided with a containing groove for containing the chains, and the chains are located in the containing groove all the.
Through adopting above-mentioned technical scheme, when the braided bag on the conveying platform of needs conveying, start the conveying motor, the conveying motor drives the driving shaft and rotates, and the driving shaft drives driving sprocket and rotates, and driving sprocket drives the chain and rotates, and the chain is inconsistent with the braided bag, carries the braided bag through frictional force between the two, has guaranteed that the braided bag on the conveying platform is stable conveys.
The utility model discloses further set up to: the subassembly sets up on the driven shaft of transporting, the driven shaft rotates with conveying platform to be connected, transport the subassembly including add the mount of establishing on the driven shaft, add the braided bag of establishing on the mount and drive receiving platform and enter into the driving piece on conveying platform and add the transportation motor of establishing on conveying platform and with the coaxial rigid coupling of driven shaft.
Through adopting above-mentioned technical scheme, it is on conveying platform is transported to the braided bag on the receiving platform as required, start the transportation motor, it drives driven axial and is close to receiving platform's direction and rotates to transport the motor, and then drive the mount and rotate to the direction that is close to receiving platform, transport conveying platform on until the driving piece transports the braided bag, after the transportation finishes, transport the motor reversal, drive the mount and rotate to the direction of keeping away from receiving platform, prevent to transport the braided bag that the subassembly influences receiving platform and carry.
The utility model discloses further set up to: the driving piece adds the transportation sprocket who deviates from driven shaft one end at the mount including rotating, the chain meshes simultaneously on drive sprocket, driven sprocket and transportation sprocket, set up the groove of stepping down that holds the chain on the receiving rack, the chain is when carrying the braided bag, and the last chain of drive sprocket is inconsistent with the braided bag on the receiving platform to be located the inslot of stepping down.
Through adopting above-mentioned technical scheme, the driving piece sets up to sprocket and chain, and on the frictional force that produces through chain and braided bag are inconsistent carried the conveying platform with the braided bag, a chain is shared with conveying subassembly to the driving piece, has guaranteed that conveying subassembly stable conveying braided bag has been guaranteed to the below that conveying subassembly was carried to the driving piece with the braided bag.
The utility model discloses further set up to: the fixed frame rotates between transfer sprocket and driven shaft and is provided with the chain wheel that compresses tightly that is used for compressing tightly the chain downwards.
Through adopting above-mentioned technical scheme, through setting up the compression sprocket, guaranteed that the chain is in the tight state when rotating, prevented that the chain from breaking away from the sprocket when rotating, and then the influence carries the braided bag.
The utility model discloses further set up to: the driven chain wheel is rotatably connected to the driven shaft through a bearing.
Through adopting above-mentioned technical scheme, improved the slip coefficient between driven sprocket and the driven shaft, reduced the driven shaft to driven sprocket's influence when initiative is rotated.
To sum up, the utility model discloses a beneficial technological effect does:
1. the woven bags are conveyed by adopting the right-angle steering conveying device, so that the joint cutter is compact in structure, and the space occupation of the joint cutter in the linear direction is reduced;
2. the chain is shared to transportation subassembly and conveying subassembly, has guaranteed that the driving piece carries the below of conveying subassembly with the braided bag, has guaranteed the stable conveying braided bag of conveying subassembly.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a partially enlarged schematic view of a portion a in fig. 1.
Fig. 3 is a schematic view of the partial explosion structure of the protective cover according to the present invention.
Fig. 4 is a schematic structural diagram of the present invention.
Fig. 5 is a schematic structural view of the corner conveying device according to the present invention.
Fig. 6 is a partially enlarged schematic view of a portion B in fig. 5.
Fig. 7 is a schematic structural view of the turnover collecting device of the present invention.
Fig. 8 is a schematic structural view of the collecting surface according to the present invention.
Fig. 9 is a schematic view of a partial structure of the windshield assembly according to the present invention.
Fig. 10 is a schematic structural view of the guide assembly according to the present invention.
In the figure, 1, a cutting device; 11. a frame; 12. a conveyor belt; 13. hot cutting machine; 2. a side seam device; 3. a corner conveying device; 31. a receiving platform; 311. a receiving rack; 312. a receiving conveyor; 313. a yielding groove; 32. a conveying platform; 321. accommodating grooves; 4. a conveying mechanism; 41. a transfer assembly; 411. a driven shaft; 412. a drive shaft; 413. a driven sprocket; 414. a drive sprocket; 415. a chain; 416. a transfer motor; 42. a transfer assembly; 421. a fixed mount; 422. a transfer motor; 423. a transfer sprocket; 424. a pressing sprocket; 5. turning over the collecting device; 51. a turning shaft; 52. collecting the noodles; 521. a collection rod; 53. turning over a motor; 54. flatbed vehicle; 55. a limiting block; 6. a guide assembly; 61. a guide frame; 62. a guide plate; 7. a cling assembly; 71. a blower; 72. an air inlet pipe; 73. an air outlet; 8. a wind shielding assembly; 81. a wind shielding frame; 82. a wind deflector; 9. a cutting and purifying device; 91. an air intake cover; 911. a top plate; 912. a side plate; 913. a metal frame; 92. an exhaust pipe; 93. an exhaust fan; 94. a threaded sleeve; 95. connecting sleeves; 96. a flange plate; 10. a fixing assembly; 101. an L-shaped plate; 1011. a rubber pad; 102. a control member; 103. a fixed block; 104. a screw; 105. a rotating wheel.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Example (b): as shown in fig. 1, for the utility model discloses a joint cutter with corner conveyer, the joint cutter includes cutting device 1, limit seam device 2, corner conveyer 3 and upset collection device 5, combine fig. 3, cutting device 1 includes frame 11, the conveyer belt 12 of setting in frame 11 with add and establish in frame 11 and be located the thermocutter 13 of conveyer belt 12 output, corner conveyer 3 includes receiving platform 31, conveying platform 32 and the conveying mechanism 4 of setting on conveying platform 32, limit seam device 2 sets up to the sewing machine, and set up on conveying platform 32, be used for carrying out the limit seam to the braided bag, upset collection device 5 sets up the output at conveying platform 32, be used for collecting the braided bag. In the production process, the woven cloth enters the lower part of the thermal cutting machine 13 under the conveying of the conveying belt 12 and is positioned on the receiving platform 31, then the thermal cutting machine 13 cuts the woven cloth, the conveying mechanism 4 in the corner conveying device 3 conveys the woven bag, the woven bag passes through the sewing machine, edge sewing is carried out, and then the woven cloth enters the overturning and collecting device 5 to be collected.
As shown in fig. 1 and fig. 3, a cutting and purifying device 9 is disposed over the frame 11 and over the thermal cutting machine 13, the cutting and purifying device 9 includes an air suction cover 91, an exhaust pipe 92 and an exhaust fan 93, the air suction cover 91 is disposed on the frame 11 and completely covers the thermal cutting machine 13, the exhaust pipe 92 is communicated with the upper end face of the air suction cover 91 and extends to the outside, the exhaust fan 93 is disposed on the exhaust pipe 92, when the thermal cutting machine 13 starts to work, the exhaust fan 93 is started to exhaust the odor generated by the woven cloth cut by the thermal cutting machine 13 to the outside, and the emission of the gas to the indoor space is reduced, thereby affecting the health of the working personnel.
Suction hood 91 includes roof 911 and four curb plates 912, and roof 911 and curb plate 912 all have transparent material to make to all be provided with metal frame 913, roof 911 and four curb plates 912 all pass metal frame 913 fixed connection through the bolt, pass metal frame 913 fixed connection through the bolt between the adjacent curb plate 912, make things convenient for the staff installation and dismantle suction hood 91.
As shown in fig. 1 and 2, a pair of fixing assemblies 10 for clamping a pair of diagonal end corners of the air suction hood 91 is arranged on the rack 11, and with reference to fig. 3, each fixing assembly 10 comprises an L-shaped plate 101 and a control member 102 for controlling the L-shaped plate 101 to be far away from or close to the air suction hood 91, the L-shaped plate 101 abuts against two side plates 912 at the end corners of the air suction hood 91, a rubber pad 1011 is arranged on the end surfaces of the L-shaped plate 101 abutting against the side plates 912, the control member 102 comprises a fixing block 103 and a screw 104, the fixing block 103 is fixedly connected to the rack 11, the screw 104 penetrates through the fixing block 103 in a horizontal thread manner and is rotatably connected with the. 105 when the suction hood 91 needs to be fixed, the screw 104 is screwed in the direction close to the suction hood 91 to drive the L-shaped plate 101 to move in the direction close to the suction hood 91 until the L-shaped plate 101 is abutted against the side plate 912 of the suction hood 91, and the two fixing assemblies 10 arranged diagonally clamp and fix the suction hood 91 on the frame 11.
As shown in fig. 3, a vent hole for communicating the exhaust pipe 92 is formed in the middle of the top plate 911, a threaded sleeve 94 with external threads is fixedly connected to the upper end surface of the top plate 911 along the vent hole, a connecting sleeve 95 is connected to the threaded sleeve 94 in a threaded manner, and the connecting sleeve 95 and the exhaust pipe 92 are fixedly connected through a flange 96, so that the exhaust pipe 92 can be conveniently installed and detached by a worker.
As shown in fig. 4 and 5, the receiving platform 31 includes a receiving frame 311 and a receiving conveyor belt 312, the receiving frame 311 is disposed at the output end of the conveyor belt 12, and there is a gap between the receiving frame 311 and the conveyor belt 12 for the heat cutter 13 to cut the woven fabric, the receiving conveyor belt 312 is disposed on the receiving frame 311 and is the same as the conveying direction of the conveyor belt 12, the conveying platform 32 is disposed at one side of the receiving platform 31, and the receiving platform and the conveying platform are arranged at right angles, the direction in which the conveying mechanism 4 conveys the woven fabric is perpendicular to the direction in which the receiving platform 31 conveys the woven fabric, the conveying mechanism 4 includes a conveying component 41 and a transferring component 42, the conveying component 41 is used for conveying the woven fabric on the conveying platform 32, and the transferring component 42 is used for transferring the woven.
As shown in fig. 5 and 6, the conveying assembly 41 includes a driven shaft 411 and a driving shaft 412 respectively connected to two ends of the conveying platform 32 in a horizontal rotating manner, four driving sprockets 414 are respectively and uniformly distributed on the driving shaft 412, four driven sprockets 413 are respectively and rotatably connected to the driven shaft 411, four pairs of sprockets are formed, a chain 415 is respectively engaged with each pair of driving sprocket 414 and driven sprocket 413, a conveying motor 416 coaxially and fixedly connected with the driving shaft 412 is fixedly connected to the conveying platform 32, an accommodating groove 321 for accommodating the chain 415 is provided at a position of the conveying platform 32 vertically opposite to the chain 415, the chain 415 below the driving sprocket 414 and the driven sprocket 413 is always located in the accommodating groove 321, when the woven bag is conveyed on the conveying platform 32, the woven bag is pressed downwards by the chain 415, and the woven bag is driven to move forward by friction force of the chain 415 and the woven.
The transferring component 42 is arranged on the driven shaft 411, the transferring component 42 comprises a fixing frame 421, a driving part and a transferring motor 422, the fixing frame 421 is fixedly connected on the driven shaft 411, the driving part is arranged on the fixing frame 421, the transferring motor 422 is arranged on the receiving frame 311 and coaxially and fixedly connected with the driven shaft 411, the transferring motor 422 drives the fixing frame 421 to rotate towards the direction far away from or close to the receiving conveyor belt 312, and further drives the driving part to rotate towards the direction close to or far away from the receiving conveyor belt 312, when the driving part is abutted against the woven bags on the receiving conveyor belt 312, the driving part drives the woven bags to move towards the conveying platform 32, the driving part comprises a transferring chain wheel 423, the transferring chain wheel 423 is rotatably connected at one end of the fixing frame 421 far away from the driven shaft 411, the rotating shaft of the transferring chain wheel 423 is arranged in parallel with the driven shaft, and a chain 415 of three sharing, the top of mount 421 between transfer sprocket 423 and driven sprocket 413 is provided with the chain wheel 424 that compresses tightly that pushes down chain 415, receive frame 311 goes up vertical groove 313 of stepping down that holds chain 415 to offering the position of transferring sprocket 423, when the braided bag is transported to transport subassembly 42, chain 415 on the transfer sprocket 423 is located the groove 313 of stepping down, the area of contact of material strip and braided bag has been increased, and then frictional force between the two has been increased, transfer efficiency has been improved.
When the woven bag on the receiving platform 31 needs to be rotated and conveyed, the conveying motor 416 is started, the conveying motor 416 drives the driving shaft 412 to rotate, thereby driving the driving sprocket 414 to rotate, the driving sprocket 414 driving the chain 415 to rotate, then the transfer motor 422 is started, the transfer motor 422 rotates forwards to drive the driven shaft 411 to rotate, and then drive mount 421 and to being close to the direction removal of receiving frame 311, it can to transfer chain 415 level on sprocket 423 to be located the groove 313 of stepping down, chain 415 is inconsistent with the braided bag, it removes to the direction towards conveying platform 32 to drive the braided bag, until the braided bag enters into receiving platform 31 on, it reverses to transport motor 422, drive mount 421 and resume initial condition, chain 415 and the braided bag of below between driven sprocket 413 and drive sprocket 414 this moment are inconsistent, it advances to drive the braided bag, the quarter turn conveying of braided bag has been accomplished.
As shown in fig. 7 and 8, the turnover collecting device 5 includes a turnover shaft 51, a collecting surface 52, a turnover motor 53 and a flat car 54, the turnover shaft 51 is horizontally and rotatably connected to the lower end of the output end of the conveying platform 32, the collecting surface 52 is disposed on the turnover shaft 51 and used for collecting woven bags, the turnover motor 53 is disposed on the conveying platform 32 and coaxially and fixedly connected with the turnover shaft 51, the flat car 54 is disposed on the ground and located at one end of the turnover shaft 51 away from the conveying platform 32 and used for receiving the woven bags on the collecting surface 52, the collecting surface 52 is composed of a plurality of collecting rods 521 fixedly connected to the turnover shaft 51 in parallel, and a limiting block 55 is disposed at one end of the collecting surface 52 close to the turnover shaft 51 and used for preventing the woven bags on the collecting rods 521 from sliding off the collecting rods 521, when the woven bags on the conveying platform 32 need to be collected, the turnover motor 53 is started and the, the turning shaft 51 is driven to rotate, the collecting face 52 is driven to rotate towards the direction close to the conveying platform 32 until the upper end of the collecting face 52 is abutted to the conveying platform 32, woven bags on the conveying platform 32 fall onto the collecting face 52 under the action of gravity until the lower end of the woven bags are abutted to the limiting block 55, then the turning motor 53 rotates reversely, the collecting face 52 is driven to rotate towards the direction far away from the conveying platform 32, and the woven bags are driven to the flat car 54 by the collecting face 52, so that the woven bags are collected.
As shown in fig. 9 and 10, the output end of conveying platform 32 is provided with guide assembly 6, guide assembly 6 includes guide frame 61 and deflector 62, the horizontal rigid coupling of guide frame 61 is at conveying platform 32's output end, deflector 62 sets up to the arc, and deflector 62 rigid coupling is on guide frame 61 to the opening of arc is towards the below, plays the effect of a direction when dropping downwards under the effect of self gravity to the braided bag.
As shown in fig. 7, the output end of the conveying platform 32 is further provided with a clinging component 7, the clinging component 7 comprises an air blower 71, an air inlet pipe 72 and an air outlet 73, the air blower 71 is arranged on the ground, the air inlet pipe 72 is communicated with the air blower 71 and fixed on the conveying platform 32, the air outlet 73 is arranged at the outlet of the air inlet pipe 72 and is obliquely and downwards opposite to the side end face of the output end of the conveying platform 32, when the collecting surface 52 is abutted against the output platform to collect woven bags, the air blower 71 is started, the air outlet 73 blows air to the collecting surface 52, so that the woven bags are tightly attached to the collecting surface 52 under the action of wind force, the woven bags on the collecting surface 52 are ensured to be in a flat state, and the woven bags are prevented from being separated from the collecting surface 52 when the collecting surface.
As shown in fig. 7 and 9, the output end of the conveying platform 32 is provided with the wind shielding assembly 8, the wind shielding assembly 8 includes a wind shielding frame 81 and a wind shielding plate 82, the wind shielding frame 81 is horizontally and fixedly connected to the output end of the conveying platform 32 and is located above the end surface of the conveying platform 32, the wind shielding plate 82 is fixedly connected to the wind shielding frame 81 and is arranged downwards, the lower end edge of the wind shielding plate 82 is lower than the end surface of the conveying platform 32 for conveying woven bags, and the woven bags on the conveying platform 32 are prevented from being influenced by wind blown out of the air.
All positions of rotating connection in the embodiment are rotatably connected through the bearing, and the stability of rotating connection between the two is guaranteed.
The implementation principle of the embodiment is as follows: when the joint cutter began work, woven cloth enters into on the below and the receiving platform 31 of earnestly machine 13 under the transport of conveyer belt 12, the hot cutting machine 13 starts, cut off woven cloth, cut purifier 9 simultaneously and start, the smell that air exhauster 93 will cut the production is got rid of, conveying mechanism 4 starts, chain 415 carries under the effect of sprocket, transport assembly 42 at first and transport the braided bag on the receiving platform 31 and transport platform 32, then conveying assembly 41 carries the braided bag, through side seam device 2, the sewing machine carries out the side seam to the braided bag, then enter into upset collection device 5, start air-blower 71, when the braided bag falls down to inconsistent with restriction piece 55, start upset motor 53, place the braided bag upset on flatbed 54, it can to resume initial condition.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (7)

1. The joint cutter with the corner conveying device is characterized by comprising a receiving platform (31) used for receiving materials discharged by a cutting device (1), a conveying platform (32) horizontally and vertically arranged with the receiving platform (31) and a conveying mechanism (4) additionally arranged on the conveying platform (32) and used for conveying woven bags, wherein the receiving platform (31) comprises a receiving frame (311) and a receiving conveying belt (312) used for conveying the woven bags.
2. The slitting machine with corner conveyor according to claim 1, characterized in that the conveying mechanism (4) comprises a conveying assembly (41) added to the conveying platform (32) for conveying woven bags and a transfer assembly (42) added to the end of the conveying platform (32) facing the receiving platform (31) for conveying woven bags on the receiving platform (31) to the conveying platform (32).
3. The slitting machine with the corner conveying device according to claim 2, wherein the conveying assembly (41) includes a driven shaft (411) horizontally disposed on one end of the conveying platform (32) close to the receiving platform (31), a driving shaft (412) horizontally and rotatably disposed on one end of the conveying platform (32) away from the receiving platform (31), a plurality of driven sprockets (413) rotatably disposed on the driven shaft (411), a driving sprocket (414) fixedly disposed on the driving shaft (412) and corresponding to the driven sprockets (413), a conveying motor (416) coaxially and fixedly connected to the driving shaft (412) and a plurality of chains (415) engaged with the driving sprocket (414) and the driven sprockets (413) respectively, and a receiving groove (321) for receiving the chain (415) is formed in a position of the conveying platform (32) facing the chain (415), the chain (415) is always positioned in the accommodating groove (321).
4. The slitting machine with corner conveying device according to claim 3, wherein the transferring assembly (42) is disposed on a driven shaft (411), the driven shaft (411) is rotatably connected with the conveying platform (32), the transferring assembly (42) includes a fixing frame (421) attached to the driven shaft (411), a driving member attached to the fixing frame (421) for driving the woven bags on the receiving platform (31) to enter the conveying platform (32), and a transferring motor (422) attached to the conveying platform (32) and coaxially fixed to the driven shaft (411).
5. The slitting machine with corner conveyer of claim 4, characterized in that, the driving piece includes that the rotation adds the transfer sprocket (423) of establishing in mount (421) one end that deviates from driven shaft (411), chain (415) meshes simultaneously on drive sprocket (414), driven sprocket (413) and transfer sprocket (423), set up the groove of stepping down (313) that holds chain (415) on receiving frame (311), chain (415) when carrying the braided bag, chain (415) on drive sprocket (414) contradicts with the braided bag on receiving platform (31), and is located the groove of stepping down (313).
6. The slitting machine with corner transmission according to claim 5, characterized in that the holder (421) is provided with a pressing sprocket (424) for pressing the chain (415) downwards, rotating between the transfer sprocket (423) and the driven shaft (411).
7. The slitting machine with corner transmission according to claim 5, wherein the driven sprocket (413) is rotatably connected to the driven shaft (411) by a bearing.
CN201922320147.XU 2019-12-19 2019-12-19 Joint cutter with corner conveyer Expired - Fee Related CN211567111U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922320147.XU CN211567111U (en) 2019-12-19 2019-12-19 Joint cutter with corner conveyer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922320147.XU CN211567111U (en) 2019-12-19 2019-12-19 Joint cutter with corner conveyer

Publications (1)

Publication Number Publication Date
CN211567111U true CN211567111U (en) 2020-09-25

Family

ID=72549894

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922320147.XU Expired - Fee Related CN211567111U (en) 2019-12-19 2019-12-19 Joint cutter with corner conveyer

Country Status (1)

Country Link
CN (1) CN211567111U (en)

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20200925

Termination date: 20211219

CF01 Termination of patent right due to non-payment of annual fee