CN103264475A - Bar-shaped raw material charge mechanism of rubber injection machine - Google Patents
Bar-shaped raw material charge mechanism of rubber injection machine Download PDFInfo
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- CN103264475A CN103264475A CN2013102269427A CN201310226942A CN103264475A CN 103264475 A CN103264475 A CN 103264475A CN 2013102269427 A CN2013102269427 A CN 2013102269427A CN 201310226942 A CN201310226942 A CN 201310226942A CN 103264475 A CN103264475 A CN 103264475A
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- 238000002347 injection Methods 0.000 title claims abstract description 38
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- 230000007246 mechanism Effects 0.000 title claims abstract description 37
- 238000012544 monitoring process Methods 0.000 claims abstract description 6
- 238000007600 charging Methods 0.000 claims description 49
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- 239000000463 material Substances 0.000 abstract description 24
- 230000009286 beneficial effect Effects 0.000 abstract description 2
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- 230000006698 induction Effects 0.000 description 4
- 238000000465 moulding Methods 0.000 description 3
- 238000012797 qualification Methods 0.000 description 3
- 230000002051 biphasic effect Effects 0.000 description 2
- 238000005265 energy consumption Methods 0.000 description 2
- 238000005516 engineering process Methods 0.000 description 2
- 239000008187 granular material Substances 0.000 description 2
- FGRBYDKOBBBPOI-UHFFFAOYSA-N 10,10-dioxo-2-[4-(N-phenylanilino)phenyl]thioxanthen-9-one Chemical compound O=C1c2ccccc2S(=O)(=O)c2ccc(cc12)-c1ccc(cc1)N(c1ccccc1)c1ccccc1 FGRBYDKOBBBPOI-UHFFFAOYSA-N 0.000 description 1
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- 230000001276 controlling effect Effects 0.000 description 1
- 238000010586 diagram Methods 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 230000000977 initiatory effect Effects 0.000 description 1
- 238000001746 injection moulding Methods 0.000 description 1
- 238000003754 machining Methods 0.000 description 1
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- 238000012986 modification Methods 0.000 description 1
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Abstract
The invention provides a bar-shaped raw material charge mechanism of a rubber injection machine, and belongs to the technical field of injection machines, aiming to solve the technical problems that the existing material charge mechanism of an injection machine can only use granular raw materials, the material charge quantity is nonuniform and the material charge error is great. The technical scheme provided by the invention is as follows: the bar-shaped raw material charge mechanism of the rubber injection machine is installed on the injection machine; a material charge hole is formed in the injection machine; and the bar-shaped raw material charge mechanism of the rubber injection machine comprises a material charge frame and a dynamic wheel group, wherein the material charge frame is horizontally arranged on the injection machine; the dynamic wheel group is axially arranged on the material charge frame in parallel, and comprises a driving wheel and a driven wheel, and the driving wheel and the driven wheel are positioned above the material charge hole; the material charge frame is provided with a control device and a counting device, wherein the control device is used for controlling the driving wheel to rotate; the counting device is used for monitoring the walking length of bar-shaped raw materials; the counting device is electrically connected with the control device; the bar-shaped raw materials pass through a clearance between the driving wheel and the driven wheel, and are driven to enter the material charge hole when the driving wheel rotates. The bar-shaped raw material charge mechanism of the rubber injection machine provided by the invention has the beneficial effects that the bar-shaped raw materials are adopted, the material charge is uniform, and the error is small.
Description
Technical field
The invention belongs to the injector technical field, relate to a kind of rubber injection machine strip raw material feeding mechanism.
Background technology
Injecting systems is one of topmost part of injector, it comprises plasticizing apparatus and power transmission, and plasticizing apparatus is made up of feed arrangement, barrel, screw rod, injection nozzle, rubber enters into by feed arrangement and carries out heating plasticizing in the injector feeding cylinder, then under certain pressure and speed, by screw rod molten plastic or rubber are injected mold cavity, this shows that feed arrangement plays a part very important for injector.
Traditional injector feed arrangement mainly is at the charging aperture of injector a feed hopper to be installed vertically, during injector work, manually the rubber raw materials that processes is poured in the feed hopper, constantly in the process, rubber raw materials constantly reduces, and the staff must constantly add raw material toward feed hopper power; For example, documents CN 202241804 U disclose a kind of horizontal injection machine feed arrangement, mainly comprise feed hopper, feed pipe and injecting systems, feed pipe connects injecting systems and feed hopper, offer a material observation window on the feed pipe, can observe material situation in the feed pipe at any time by the material observation window, in order in time make corresponding behave, though this feed arrangement can satisfy basic injector charging, but feed hopper can only the granular material material of splendid attire, because the volume of feed hopper is limited, when the material material of feed hopper uses up, need manually feed hopper to be fed in raw material, so just increased staff's working strength repeatedly, not only production efficiency is low, and the invisible production cost that increased, and granular material material enters in the process of injector injecting systems, the material material volume that at every turn enters injecting systems is all different and can not get control, therefore the quality of injection-molded article can not get guaranteeing, and raw material is processed into the invisible increase of graininess meeting staff's working strength and cost.
At these problems, people have invented the higher feed arrangement of a kind of automaticity, by at feed arrangement the higher apparatus of automaticity such as piston being installed, make that injector can be by these apparatuses material conveying material in the feeding cylinder endlessly when charging, for example, documents CN 202742615 U disclose a kind of pay-off of injection molding of rubber vulcanizer, comprise empty straight-through feeding barrel in, one port of feeding barrel and the feeding inlet of injection device, feeding barrel inside is provided with a piston, feeding barrel outer setting has driver, driver is connected with piston and control piston moves axially in the feeding barrel, the high low pressure of generation that in the feeding barrel, does not stop because of piston, thereby make raw material continually to be transported in the feeding cylinder of injector from the outside by the feeding barrel, though this pay-off has improved automaticity, reduced staff's working strength, reduced production cost to a certain extent, improved production efficiency, but some above-mentioned problems still can not get solving: because piston can only be transported to raw material in the injector feeding cylinder by high low pressure principle, the raw material quantity that at every turn enters in the feeding barrel still can not get effectively control and can't guarantee to send into the interior raw material quantity unanimity of barrel at every turn, therefore can't learn whether raw material has filled up dies cavity, its feed error is bigger, if dies cavity less than, then must biphasic injection, and biphasic injection can cause the globality of injection molded article poor, influence the quality of moulded products, if dies cavity is full and the continuation injection, the burr of moulded products are increased, also have influence on the quality of moulded products, if the burr of finishing moulded products, can increase staff's working strength again, because quantity and the volume of each charging can't be estimated, the speed of its charging also can not get controlling accurately, and continue to inject, if the harder words of material of raw material, the serious injector feeding cylinder that also can block causes injector to quit work, influence the normal operation of injector, and for injector, use invisible cost and the energy consumption that has increased equipment of piston device.
Summary of the invention
The objective of the invention is there are the problems referred to above at existing technology the injector strip raw material feeding mechanism that proposed the even charging of a kind of energy, reduces feed error, improves the quality of products.
Purpose of the present invention can be achieved through the following technical solutions: a kind of rubber injection machine strip raw material feeding mechanism, be installed on the injector, have a charging hole on the injector, this feeding mechanism comprises that the feeding rack that is horizontally installed on the injector and axially parallel are arranged on the driving wheel group on the feeding rack, the driving wheel group comprises that driving wheel and driven pulley and driving wheel and driven pulley all are positioned at the top of charging hole, be equipped with on the feeding rack for the control device of control driving wheel rotation with for the counting device of monitoring strip raw material walking length, counting device is electrically connected with control device, and the strip raw material passes the gap between driving wheel and the driven pulley and drive the strip raw material when driving wheel rotates and enters in the charging hole.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, described feeding rack is step-like and is made up of the support body two of support body one, support body three and connection support body one and support body three, above-mentioned driving wheel group is installed on the support body one, the driving wheel group and the driving wheel group that are parallel to the driving wheel group are installed on the support body three are positioned at driving wheel group top, described driving wheel group comprises that the drive one of horizontal parallel setting and drive two and drive two are installed in the junction of support body two and support body three, and the strip raw material rotates with driving wheel and enters charging hole and drive drive one, drive two rotations.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, described counting device comprises counting screw and the inductive switch that cooperates on mutually with the counting screw, described drive one is installed on the support body three by wheel shaft one, above-mentioned counting screw is horizontally installed on wheel shaft one end and is parallel to support body three, and inductive switch is installed on the support body three and is relative with the counting screw.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, the two ends of described drive one and drive two all are set with the taper type disk and the taper type disk is positioned at support body three inboards, and the taper surface of described taper type disk is oppositely arranged.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, drive one top is provided with the pin that is parallel to drive one, and pin one end is bent downwardly and is connected with support body three.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, described driving wheel and driven pulley are on the same horizontal plane.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, described support body one comprises two frame plates that are symmetrical arranged and are parallel to each other, be fixed with a mount pad on the frame plate lateral surface therein, lateral symmetry offers bar hole on two frame plates, driven pulley is installed between two frame plates by wheel shaft two, wheel shaft two two ends lay respectively in the corresponding bar hole and can laterally move in bar hole, be horizontally through fixed bar and fixed bar on the frame plate and be threaded with support body, fixed bar one end enters in the bar hole and is resisted against on the wheel shaft two.
In above-mentioned a kind of rubber injection machine strip raw material feeding mechanism, described control device is the air motor that is fixed on the above-mentioned mount pad, the air motor output shaft passes frame plate and driving wheel and is connected and drives the driving wheel rotation, and air motor is electrically connected with above-mentioned inductive switch.
Compared with prior art, of the present invention have a following beneficial effect: the driving wheel group of being made up of driving wheel and driven pulley is installed on the feeding rack, cooperate and adopt the comparatively strip raw material of rule of structure and shape, the strip raw material is clamped by driving wheel and driven pulley, air motor is controlled the driving wheel uniform rotation and is driven the strip raw material and enters in the charging hole, the length that the feasible driving wheel of process successively enters the strip raw material in the charging hole is consistent with volume, the single feed error reduces greatly, the qualification rate of its moulding product improves, stopped secondary feeds and caused the phenomenon of rubber globality difference to take place, and charging rate is controlled and can adjust; 2, counting device can be monitored the walking length of strip raw material, can calculate the raw material length that enters charging hole more accurately, in the error range of minimum, make the possibility of many chargings or few charging reduce greatly the control of mould needed raw material, guaranteed the quality of shaped article more; 3, because charging can be observed and can monitor, learn raw material quantity and the mould residue needed raw material that enters in the charging hole according to counting device, can adjust the speed of charging at any time, guaranteeing the situation energy faster production of shaped article quality, boost productivity.
Description of drawings
Fig. 1 is a kind of injector feeding mechanism of the present invention planar structure schematic diagram.
Fig. 2 is a kind of injector feeding mechanism of the present invention side cross-sectional view.
Fig. 3 is a kind of injector feeding mechanism of the present invention back elevation structural representation.
Among the figure, 1, injector; 11, charging hole; 2, feeding rack; 21; Support body one; 22, support body two; 23, support body three; 2a, frame plate; 2b, mount pad; 3, air motor; 4, driving wheel; 5, driven pulley; 51, wheel shaft two; 52, bar hole, 53 fixed bars; 6, drive one; 61, drive two; 62, wheel shaft one; 63, taper type disk; 7, counting screw; 8, inductive switch; 9, pin.
The specific embodiment
Below be specific embodiments of the invention and by reference to the accompanying drawings, technical scheme of the present invention is further described, but the present invention be not limited to these embodiment.
As shown in Figure 1 to Figure 3, this a kind of rubber injection machine strip raw material feeding mechanism, be installed on the injector 1, have a charging hole 11 on the injector 1, this feeding mechanism comprises that the feeding rack 2 that is horizontally installed on the injector 1 and axially parallel are arranged on the driving wheel group on the feeding rack 2, the driving wheel group comprises that driving wheel 4 and driven pulley 5 and driving wheel 4 and driven pulley 5 all are positioned at the top of charging hole 11, be equipped with on the feeding rack 2 for the control device of control driving wheel 4 rotations with for the counting device of monitoring strip raw material walking length, counting device is electrically connected with control device, the strip raw material passes the gap between driving wheel 4 and the driven pulley 5 and drive the strip raw material when driving wheel 4 rotates and enters in the charging hole 11, feeding rack 2 is step-like and by support body 1, support body 3 23 and support body 2 22 compositions that connect support body 1 and support body 3 23, above-mentioned driving wheel group is installed on the support body 1, the driving wheel group and the driving wheel group that are parallel to the driving wheel group are installed on the support body 3 23 are positioned at driving wheel group top, described driving wheel group comprises that the drive 1 of horizontal parallel setting and drive 2 61 and drive 2 61 are installed in the junction of support body 2 22 and support body 3 23, and the strip raw material rotates with driving wheel 4 and enters charging hole 11 and drive drive 1, drive 2 61 rotates.
This feeding mechanism adopts the comparatively strip raw material of rule of structure and shape, the driving wheel group of being made up of driving wheel 4 and driven pulley 5 is installed on the feeding rack 2, the strip raw material is clamped by driving wheel 4 and driven pulley 5, control device is controlled driving wheel 4 uniform rotation and is driven the strip raw material and enters in the charging hole 11, the length that the feasible driving wheel 4 of process successively enters the strip raw material in the charging hole 11 is consistent with volume, the single feed error reduces greatly, the qualification rate of its moulding product improves, stopped secondary feeds and caused the phenomenon of rubber globality difference to take place, and charging rate is controlled and can adjust.
Counting device comprises counting screw 7 and the inductive switch 8 that cooperates on mutually with counting screw 7, described drive 1 is installed on the support body 3 23 by wheel shaft 1, above-mentioned counting screw 7 is horizontally installed on wheel shaft one 62 ends and is parallel to support body 3 23, inductive switch 8 is installed on the support body 3 23 and is relative with counting screw 7, thereby the strip raw material can drive drive one 6 rotations through drive 1 and drive 7 rotations of counting screw, and drive 1 rotates a circle, counting screw 7 can be responded to inductive switch 8, therefore constantly respond to the walking length that to monitor the strip raw material with inductive switch 8 by counting screw 7, can calculate the raw material length that enters charging hole 11 more accurately, the mould needed raw material is controlled in the error range of minimum, make the possibility of many chargings or few charging reduce greatly, guaranteed the quality of shaped article more.
The two ends of drive 1 and drive 2 61 all are set with taper type disk 63 and taper type disk 63 is positioned at support body 3 23 inboards, the taper surface of described taper type disk 63 is oppositely arranged, because drive 1 and drive 2 61 are installed on the support body 3 23, when drive 1 and drive 2 61 rotations, if the material of strip raw material footpath hour, the strip raw material can be displaced sideways and be stuck in when drive 1 and drive 2 61 rotate between drive 1 or drive 2 61 and the support body 3 23 and can't be driven by driving wheel 4, and the taper type disk 63 at drive 1 and drive 2 61 two ends is controlled the strip raw material between the two, prevent that the strip raw material is stuck, guaranteed the normal walking of strip raw material and the normal charging of injector.
Drive one 6 tops are provided with the pin 9 that is parallel to drive 1, pin 9 one ends are bent downwardly and are connected with support body 3 23, pin 9 be positioned at drive 1 directly over, drive 1 is when rotating, the strip raw material is normally walked, but what drive 1 stopped can continuing to be walked to driving wheel 4 directions by drive 1 owing to inertia strip raw material in a flash, and driving wheel 4 has stopped, therefore the strip raw material can be toward driving wheel 4 direction plaies, the strip raw material can be scurried out beyond the drive 1 when strip raw material play distance is long, and driving wheel 4 when rotating again since the strip raw material not on drive 1, drive 1 can not rotate, can not realize the monitoring to the strip raw material, can influence normal charging this moment, and pin 9 be positioned at drive 1 directly over, pin 9 can be blocked in the strip raw material top of drive 1, has prevented that the strip raw material from scurrying out beyond the drive 1.
Driving wheel 4 is on the same horizontal plane with driven pulley 5; because driving wheel 4 and driven pulley 5 all are positioned at the top of charging hole 11; the strip raw material directly passes the space of driving wheel 4 and driven pulley 5 centres later from drive 2 61 warps; drive 2 61 is positioned at the top of driving wheel 4 and driven pulley 5 again; when therefore driving wheel 4 is on the same horizontal plane with driven pulley 5; frictional force minimum when the strip raw material is driven by driving wheel 4; can prevent the strip raw material like this because excessive and pullled disconnectedly with the frictional force of driving wheel 4, effectively protect the continuity of strip raw material.
Support body 1 comprises the two frame plate 2a that are symmetrical arranged and are parallel to each other, be fixed with a mount pad 2b on the frame plate 2a lateral surface therein, two frame plate 2a go up lateral symmetry and offer bar hole 52, driven pulley 5 is installed between the two frame plate 2a by wheel shaft 2 51, wheel shaft 2 51 two ends lay respectively in the corresponding bar hole 52 and can laterally move in bar hole 52, be horizontally through fixed bar 53 on the frame plate 2a and fixed bar 53 is threaded with support body, fixed bar 53 1 ends enter in the bar hole 52 and are resisted against on the wheel shaft 2 51, because the thickness of strip raw material is different, for passing driving wheel 4, the stub bar that guarantees the strip raw material clamps with the space of driven pulley 5 centres and by driving wheel 4 and driven pulley 5, driving wheel 4 must be regulated with the space in the middle of the driven pulley 5, after the stub bar of strip raw material passes driving wheel 4 and enters charging hole 11 with space in the middle of the driven pulley 5, tighten fixed bar 53, make driving wheel 4 and driven pulley 5 clamp the strip raw material, reload as need, only need bar pine fixed bar 53, just can make strip raw material and driving wheel 4 and driven pulley 5 be in relaxed state.
Control device is the air motor 3 that is fixed on the above-mentioned mount pad 2b, and air motor 3 output shafts pass frame plate 2a and driving wheel 4 and are connected and drive driving wheel 4 rotations, and air motor 3 is electrically connected with inductive switch 8; Air motor 3 is the devices that compressed-air actuated pressure can be converted to the mechanical energy of rotation, it has simple in structure, handiness, maintenance easily, low cost and other advantages, be not subjected to simultaneously the influence of high temperature and vibration, power bracket and the range of speeds are all wideer and have a higher starting torque, therefore use air motor 3 stability best, and energy consumption minimum, the most practical, when the strip raw material uses up, drive 1 stops operating, counting screw 7 also stops the rotation and can not respond to inductive switch 8, and air motor 3 is electrically connected with inductive switch 8, and inductive switch 8 stops to make air motor 3 also quit work after the induction that driving wheel 4 stops the rotation, whole feeding mechanism stops charging, reminds this moment the staff reinforced.
The operation principle that can learn a kind of rubber injection machine strip of the present invention raw material feeding mechanism according to the above embodiments is as follows, the strip raw material is formed by machining earlier and rolls up, regulate driven pulley 5 and guarantee that the strip raw material can pass from driving wheel 4 and 5 of driven pulleys, earlier pass the stub bar of strip raw material between driving wheel 4 and the driven pulley 5 by the staff and stub bar is in the charging hole 11, driven pulley 5 is drawn close to driving wheel 4, regulate the fixed bar 53 on the frame plate 2a then, make an end of fixed bar 53 be resisted against on the wheel shaft 2 51 and the strip raw material is clamped by driving wheel 4 and driven pulley 5; Open air motor 3, air motor 3 drives driving wheel 4 and rotates, because the strip raw material is clamped by driving wheel 4 and driven pulley 5, when rotating, driving wheel 4 then frictional force is passed to driven pulley 5 with strip raw material generation frictional force, therefore driving wheel 4 all can relatively rotate by ecto-entad with driven pulley 5, under clamped condition, driving wheel 4 can drive the strip raw material with driven pulley 5 and walk in charging hole 11, because strip raw material regular shape, under air motor 3 uniform rotation, the length that enters the strip raw material in the charging hole 11 through driving wheel 4 and volume remain consistently successively, and the single feed error reduces greatly, the qualification rate raising of its moulding product; When driving wheel 4 rotates, because drive 1 and drive 2 61 all are positioned at the top of driving wheel 4 and driven pulley 5, the strip raw material can be tightened because of deadweight, rotate with drive 61 thereby drop on drive 1 and the drive 2 61 and drive drive 1 with the strip raw material to the charging hole walking, the counting screw 7 that is installed on the wheel shaft 1 rotates with the rotation of wheel shaft 1, and the moving circle of wheel shaft one 62 revolutions, counting screw 7 can respond to 8 once with inductive switch, inductive switch record and the induction number of times of counting screw 7, therefore can clearly learn the walking length of strip raw material, can calculate the raw material length that enters charging hole more accurately, the mould needed raw material is controlled in the error range of minimum, make the possibility of many chargings or few charging reduce greatly, the quality that has guaranteed shaped article more is certain, and counting screw 7 was identical with the induction number of times of inductive switch 8 when the number that is installed in the counting screw 7 on the wheel shaft 1 was rotated a circle with wheel shaft 1; By the strip raw material quantity that can understand the walking length of strip raw material at any time or enter mould the monitoring of strip raw material, therefore pass through the control system setting, at the initial stage of injection, can accelerate the speed of charging, before strip raw material walking length reaches the mould needed raw material, transfer the speed of charging slow, so that more accurate additional mould residue needed raw material, so guaranteeing the situation energy faster production of shaped article quality, boost productivity, in addition, inductive switch 8 is installed in the initiating terminal of feeding mechanism, because a volume strip raw material has certain-length, it is not endless, when the strip raw material is used up, drive 1 at first stops operating, count screw 7 and also stop operating this moment, stop back counting screw 7 and can not respond to inductive switch 8, air motor 3 is electrically connected with above-mentioned inductive switch 8, when the strip raw material uses up, drive 1 stops operating, counting screw 7 also stops the rotation and can not respond to inductive switch 8, and inductive switch 8 stops to make air motor 3 also quit work after the induction that driving wheel 4 stops the rotation, whole feeding mechanism stops charging, reminds this moment the staff reinforced.
Specific embodiment described herein only is that the present invention's spirit is illustrated.Those skilled in the art can make various modifications or replenish or adopt similar mode to substitute described specific embodiment, but can't depart from spirit of the present invention or surmount the defined scope of appended claims.
Claims (8)
1. rubber injection machine strip raw material feeding mechanism, be installed on the injector (1), have a charging hole (11) on the injector (1), it is characterized in that: this feeding mechanism comprises that the feeding rack (2) that is horizontally installed on the injector (1) and axially parallel are arranged on the driving wheel group on the feeding rack (2), the driving wheel group comprises that driving wheel (4) and driven pulley (5) and driving wheel (4) and driven pulley (5) all are positioned at the top of charging hole (11), be equipped with on the feeding rack (2) for the control device of control driving wheel (4) rotation with for the counting device of monitoring strip raw material walking length, counting device is electrically connected with control device, and the strip raw material passes the gap between driving wheel (4) and the driven pulley (5) and drive the strip raw material when driving wheel (4) rotates and enters in the charging hole (11).
2. a kind of rubber injection machine strip raw material feeding mechanism according to claim 1, it is characterized in that: described feeding rack (2) is step-like and by support body one (21), support body three (23) and support body two (22) compositions that connect support body one (21) and support body three (23), above-mentioned driving wheel group is installed on the support body one (21), the driving wheel group and the driving wheel group that are parallel to the driving wheel group are installed on the support body three (23) are positioned at driving wheel group top, described driving wheel group comprises that drive one (6) that horizontal parallel arranges and drive two (61) and drive two (61) are installed in the junction of support body two (22) and support body three (23), and the strip raw material enters charging hole (11) and drives drive one (6) with driving wheel (4) rotation, drive two (61) rotates.
3. a kind of rubber injection machine strip raw material feeding mechanism according to claim 2, it is characterized in that: described counting device comprises counting screw (7) and the inductive switch (8) that cooperates on mutually with counting screw (7), described drive one (6) is installed on the support body three (23) by wheel shaft one (62), above-mentioned counting screw (7) is horizontally installed on wheel shaft one (62) end and is parallel to support body three (23), and inductive switch (8) is installed in support body three (23) upward and is relative with counting screw (7).
4. according to claim 2 or 3 described a kind of rubber injection machine strip raw material feeding mechanisms, it is characterized in that: the two ends of described drive one (6) and drive two (61) all are set with taper type disk (63) and taper type disk (63) is positioned at support body three (23) inboards, and the taper surface of described taper type disk (63) is oppositely arranged.
5. a kind of rubber injection machine strip raw material feeding mechanism according to claim 4, it is characterized in that: drive one (6) top is provided with the pin (9) that is parallel to drive one (6), and pin (9) one ends are bent downwardly and are connected with support body three (23).
6. a kind of rubber injection machine strip raw material feeding mechanism according to claim 5 is characterized in that: described driving wheel (4) is on the same horizontal plane with driven pulley (5).
7. according to claim 5 or 6 described a kind of rubber injection machine strip raw material feeding mechanisms, it is characterized in that: described support body one (21) comprises two frame plates (2a) that are symmetrical arranged and are parallel to each other, be fixed with a mount pad (2b) on a frame plate (2a) lateral surface therein, two frame plates (2a) are gone up lateral symmetry and are offered bar hole (52), driven pulley (5) is installed between two frame plates (2a) by wheel shaft two (51), wheel shaft two (51) two ends lay respectively in the corresponding bar hole (52) and can laterally move in bar hole (52), be horizontally through fixed bar (53) on the frame plate (2a) and fixed bar (53) is threaded with support body, fixed bar (53) one ends enter in the bar hole (52) and are resisted against on the wheel shaft two (51).
8. a kind of rubber injection machine strip raw material feeding mechanism according to claim 7, it is characterized in that: described control device is for being fixed on the air motor (3) on the above-mentioned mount pad (2b), air motor (3) output shaft passes frame plate (2a) and driving wheel (4) and is connected and drives driving wheel (4) rotation, and air motor (3) is electrically connected with above-mentioned inductive switch (8).
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104647691A (en) * | 2014-12-24 | 2015-05-27 | 余姚华泰橡塑机械有限公司 | Driving feeding device of rubber injection molding machine |
CN114006052A (en) * | 2021-11-04 | 2022-02-01 | 薛寒美 | Automatic filling system for lithium battery shell |
Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB1486818A (en) * | 1973-12-24 | 1977-09-28 | Berstorff Gmbh Masch Hermann | Arrangement for feeding a cohesive strip of material |
DE3405931A1 (en) * | 1984-02-18 | 1985-08-22 | Reifen-Ihle GmbH, 8870 Günzburg | Device for producing an injection-moulded unvulcanised rubber part |
FR2650216A1 (en) * | 1989-07-25 | 1991-02-01 | Joint Francais | Feed device for an extruder |
EP1249324A2 (en) * | 2001-04-10 | 2002-10-16 | Händle Gmbh | Extruder for for plastic materials, in particular for ceramic materials |
JP2004148766A (en) * | 2002-10-31 | 2004-05-27 | Tokai Rubber Ind Ltd | Extruder |
CN201471670U (en) * | 2009-07-29 | 2010-05-19 | 杭州大禹机械有限公司 | Rubber injection molding machine |
CN203317663U (en) * | 2013-06-06 | 2013-12-04 | 宁波莱力机械有限公司 | Strip raw material feeding mechanism for rubber injection molding machines |
-
2013
- 2013-06-06 CN CN201310226942.7A patent/CN103264475B/en active Active
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB1486818A (en) * | 1973-12-24 | 1977-09-28 | Berstorff Gmbh Masch Hermann | Arrangement for feeding a cohesive strip of material |
DE3405931A1 (en) * | 1984-02-18 | 1985-08-22 | Reifen-Ihle GmbH, 8870 Günzburg | Device for producing an injection-moulded unvulcanised rubber part |
FR2650216A1 (en) * | 1989-07-25 | 1991-02-01 | Joint Francais | Feed device for an extruder |
EP1249324A2 (en) * | 2001-04-10 | 2002-10-16 | Händle Gmbh | Extruder for for plastic materials, in particular for ceramic materials |
JP2004148766A (en) * | 2002-10-31 | 2004-05-27 | Tokai Rubber Ind Ltd | Extruder |
CN201471670U (en) * | 2009-07-29 | 2010-05-19 | 杭州大禹机械有限公司 | Rubber injection molding machine |
CN203317663U (en) * | 2013-06-06 | 2013-12-04 | 宁波莱力机械有限公司 | Strip raw material feeding mechanism for rubber injection molding machines |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
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CN104647691A (en) * | 2014-12-24 | 2015-05-27 | 余姚华泰橡塑机械有限公司 | Driving feeding device of rubber injection molding machine |
CN114006052A (en) * | 2021-11-04 | 2022-02-01 | 薛寒美 | Automatic filling system for lithium battery shell |
CN114006052B (en) * | 2021-11-04 | 2023-12-08 | 深圳市鑫奇睿科技有限公司 | Automatic filling system of lithium battery shell |
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