CN204466152U - Pipe charging feeding device - Google Patents
Pipe charging feeding device Download PDFInfo
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- CN204466152U CN204466152U CN201520191222.6U CN201520191222U CN204466152U CN 204466152 U CN204466152 U CN 204466152U CN 201520191222 U CN201520191222 U CN 201520191222U CN 204466152 U CN204466152 U CN 204466152U
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- cutter block
- guide vane
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- end stop
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Abstract
The utility model discloses pipe charging feeding device, versatility is good, and interchangeability is good, and can carry out feed to different components and parts, floor space is little, independently can there is use, and mounting, commissioning and maintenance is convenient.This device comprises frame, frame surface thereof is provided with shedding mechanism, shedding mechanism is provided with discharge channel, the lower end outside of discharge channel is tiltedly installed with guide vane end stop, be provided with towards the component locations adjustment passage of discharge channel in guide vane end stop, component locations adjustment passage comprises the guide vane end stop pin passage passed through for component's feet and the guide vane end stop body channel passed through for component body be arranged on above guide vane end stop pin passage, and the below of described component locations adjustment passage is provided with and rack-mountedly cuts reshaping device; The arranged outside cutting reshaping device has the straight shake guide rail be arranged on straight shake base.
Description
Technical field
The utility model relates to electronic devices and components feeding device field, particularly relates to the feeding device for pipe charging.
Background technology
Electron trade, when carrying out plug-in unit to pcb board, often needs each electronic devices and components to send into machining center, then by machining center, electronic devices and components is inserted pcb board.And electronic devices and components generally comprise body and be arranged on the pin below body.Electronic devices and components are when dispatching from the factory, and the length of its pin is often long, and pin is generally vertical state.So before electronic devices and components are inserted pcb board, generally need to cut the length of pin, some situation also needs to bend the pin after cutting.Components and parts through cutting and bending need progress send into machining center by corresponding mechanism and be arranged on corresponding pcb board.In prior art, the material package mode of components and parts is generally divided into balk cargo, braid material, dish charging and pipe charging.For pipe charging, also do not have good equipment can fill after components and parts cut bending pipe at present and be transported to machining center use.Current feeder apparatus or complex structure, or floor space is large, or poor universality, feed can only be carried out to a kind of components and parts, or need to be arranged in corresponding mechanism and could use.So research and development structure is simple, floor space is little, versatility good, the interchangeable pipe charging feeding device that can independently exist and use seems particularly necessary.
Utility model content
The technical problem that the utility model solves is to provide the good pipe charging feeding device of versatility.
The utility model solves the technical scheme that its technical problem adopts: pipe charging feeding device, comprises frame,
Frame surface thereof is provided with shedding mechanism, shedding mechanism is provided with discharge channel, the lower end outside of discharge channel is tiltedly installed with guide vane end stop, be provided with towards the component locations adjustment passage of discharge channel in guide vane end stop, component locations adjustment passage comprises the guide vane end stop pin passage passed through for component's feet and the guide vane end stop body channel passed through for component body be arranged on above guide vane end stop pin passage, and the below of described component locations adjustment passage is provided with and rack-mountedly cuts reshaping device;
Described the first ladder cutter block driving mechanism cutting reshaping device and comprise module, transfer bar mechanism, the first ladder cutter block and be connected with the first ladder cutter block, described first ladder cutter block comprises the first thick portion and the first narrow portion,
Described module is provided with processing channel, described processing channel comprises component body support passage and is arranged on the pin processing channel below component body support passage, align with the entrance of pin processing channel in the lower end of guide vane end stop pin passage, described transfer bar mechanism comprise the porch being arranged on component body support passage push rod and for driving push rod along the push rod driving mechanism of component body support passage movement
The tool bore excessively crossing pin processing channel passed through for the first ladder cutter block is also provided with in module, cross in tool bore the second ladder cutter block being positioned at pin processing channel side being provided with and being positioned at below component body support passage, second ladder cutter block comprises the second thick portion and the second narrow portion, when the first ladder cutter block crosses tool bore when being positioned at below the second ladder cutter block, the end face of the first narrow portion contacts with the bottom surface in the second thick portion and leaves the gap bent for component's feet between the end face in the first thick portion and the bottom surface of the second narrow portion by described;
The outlet of the processing channel of described module is provided with directly shakes guide rail, and described straight shake guide rails assembling is on straight shake base.
Further: described first ladder cutter block driving mechanism is that cutter block drives cylinder.
Further: described push rod driving mechanism is that push rod drives cylinder.
Further: the two ends of described second ladder cutter block are located by dovetail groove.
Further: arranged outside frame being positioned at shedding mechanism has the shaker mechanism for making shedding mechanism shake.
Further: the below being positioned at pin processing channel in described module is provided with waste material passing away.
Further: described pin processing channel comprises two sections, the width of first paragraph mates with the width of the pin before bending, and the width of second segment mates with the width of the pin after bending.
Further: described shedding mechanism comprises strip hopper, the side of described discharge channel is empty material pipe outlet, described hopper is provided with towards the ejector sleeve through hole of discharge channel, the arranged outside free material pipe push rod of described ejector sleeve through hole, with rack-mounted sky, empty material pipe push rod expects that pipe push rod driving mechanism is connected, the upper end arranged outside of the component locations adjustment passage of described guide vane end stop has for detecting the transducer whether having components and parts by described component locations adjustment passage, described transducer is connected with controller, described controller is connected with sky material pipe push rod driving mechanism.
Further: described transducer is contrast type optoelectronic switch.
The beneficial effects of the utility model are: can cut and bend the pin of electronic devices and components and send into and directly shake guide rail, for carrying out feed to plug-in unit on pcb board.Device of the present utility model can independently exist and use.Use can be exchanged between different machining center.Feed can be carried out to different types of pipe dress components and parts material.Versatility is good.Feeding speed is fast.And apparatus structure of the present utility model is compact, and floor space is little.Mounting, commissioning and maintenance is convenient.
Accompanying drawing explanation
Fig. 1 is the schematic diagram of pipe of the present utility model charging feeding device;
Fig. 2 is the schematic diagram of module and guide vane end stop;
Fig. 3 is the schematic diagram cutting reshaping device;
Fig. 4 is the matching relationship schematic diagram of the first ladder cutter block, the second ladder cutter block and electronic devices and components;
Fig. 5 is the schematic diagram of each passage in guide vane end stop;
Fig. 6 is the schematic diagram of empty material pipe push rod driving mechanism, ejector sleeve through hole, empty material pipe push rod and transducer;
Be labeled as in figure: hopper 1, frame 2, push rod drives cylinder 3, push rod 4, guide vane end stop 5, module 6, cutter block drives cylinder 7, straight shake guide rail 8, straight shake base 9, first ladder cutter block 15, first thick portion 13, first narrow portion 14, second ladder cutter block 12, second thick portion 11, second narrow portion 10, body 16, pin 17, guide vane end stop pin passage 18, component body support passage 19, pin processing channel 20, crosses tool bore 21, guide vane end stop body channel 22, transducer 23, empty material pipe push rod driving mechanism 24, ejector sleeve through hole 25, empty material pipe push rod 26.
Embodiment
Below in conjunction with the drawings and specific embodiments, the utility model is further illustrated.
As shown in Figure 1, pipe of the present utility model charging feeding device, comprise frame 2, frame 2 surface thereof is provided with shedding mechanism, and shedding mechanism can hopper 1 as shown in Figure 1, and the angle of inclination of hopper 1 can carry out setting and adjusting according to actual service condition.Shedding mechanism is provided with discharge channel, and the lower end outside of discharge channel is tiltedly installed with guide vane end stop 5, is provided with towards the component locations adjustment passage of discharge channel in guide vane end stop 5.Pipe charging can slide to guide vane end stop 5 under above-mentioned discharge channel, and then, each components and parts skid off along material pipe and enter the component locations adjustment passage in guide vane end stop 5.Component locations adjustment passage comprises the guide vane end stop pin passage 18 passed through for component's feet and the guide vane end stop body channel 22 passed through for component body be arranged on above guide vane end stop pin passage 18, and the width of guide vane end stop body channel 22 can only hold a component body 16 substantially.When this just makes components and parts by above-mentioned guide vane end stop 5, the body 16 of components and parts is positioned at guide vane end stop body channel 22, and pin 17 is positioned at guide vane end stop pin passage 18.By arranging guide vane end stop 5, each components and parts can be made to enter one by one in order and follow-up to cut reshaping device.After a materials in the tube release, empty material pipe can manually take out from discharge channel.But can production efficiency be affected like this, in order to realize automatically being released in discharge channel by sky material pipe, follow-up material pipe can be glided smoothly, as shown in Figure 6, described shedding mechanism comprises strip hopper 1, the side of described discharge channel is empty material pipe outlet, described hopper 1 is provided with towards the ejector sleeve through hole 25 of discharge channel, the arranged outside free material pipe push rod 26 of described ejector sleeve through hole 25, with rack-mounted sky, empty material pipe push rod 26 expects that pipe push rod driving mechanism 24 is connected, the upper end arranged outside of the component locations adjustment passage of described guide vane end stop 5 has for detecting the transducer 23 whether having components and parts by described component locations adjustment passage, described transducer 23 is connected with controller, described controller is connected with sky material pipe push rod driving mechanism 24.Above-mentioned sky material pipe push rod driving mechanism 24 can be cylinder isoline driving mechanism.The sensor 23 can be the transducers such as contrast type optoelectronic switch.After the components and parts in material pipe all pass through above-mentioned guide vane end stop 5, material pipe forms empty material pipe, now transducer 23 detects does not have components and parts enter component locations adjustment passage and produce signal, this signal can pass to controller, control empty material pipe push rod driving mechanism 24 after controller receives this signal and sky is expected that pipe push rod 26 stretches into discharge channel by ejector sleeve through hole 25, the sky material pipe in discharge channel can be released discharge channel by sky material pipe push rod 26.Make so follow-up material pipe can smoothly under slide to guide vane end stop 5.Thus realize automatically removing empty material pipe.Can effectively improve feed efficiency like this.
The below of above-mentioned component locations adjustment passage is also provided with and rack-mountedly cuts reshaping device; Described the first ladder cutter block driving mechanism cutting reshaping device and comprise module 6, transfer bar mechanism, the first ladder cutter block 15 and be connected with the first ladder cutter block 15.Above-mentioned guide vane end stop 5 can be arranged on module 6.Described first ladder cutter block 15 comprises the first thick portion 13 and the first narrow portion 14, described module 6 is provided with strip processing channel, described processing channel comprises component body support passage 19 and is arranged on the pin processing channel 20 below component body support passage 19, above-mentioned component body support passage 19 can comprise one for supporting the guide rail platform of component body 16, and component body support passage 19 is communicated with the pin processing channel about 20 of below.Align with the entrance of pin processing channel 20 in the lower end of guide vane end stop pin passage 18, after the processing channel making the components and parts in guide vane end stop 5 fall in module like this, the pin 17 of components and parts can directly enter pin processing channel 20, and body 16 can be positioned at component body support passage 19, can with reference to shown in figure 2.Described transfer bar mechanism comprise the porch being arranged on component body support passage 19 push rod 4 and for driving push rod 4 along the push rod driving mechanism of component body support passage 19 movement.The tool bore 21 excessively crossing pin processing channel 20 passed through for the first ladder cutter block 15 is also provided with in module 6, cross in tool bore 21 the second ladder cutter block 12 being positioned at pin processing channel 20 side being provided with and being positioned at below component body support passage 19, second ladder cutter block 12 comprises the second thick portion 11 and the second narrow portion 10, when the first ladder cutter block 15 crosses tool bore 21 when being positioned at below the second ladder cutter block 12 by described, the end face of the first narrow portion 14 contacts with the bottom surface in the second thick portion 11 and leaves the gap bent for component's feet 17 between the end face in the first thick portion 13 and the bottom surface of the second narrow portion 10.Components and parts were when push rod effect was moved to tool bore 21 position, and pin 17 is first cut by the first narrow portion 14 and the second thick portion 11 cooperation, namely by Partial Resection unnecessary for pin 17, shortens the length of pin 17.Concrete is exactly that the first ladder cutter block 15 is horizontally through pin processing channel 20, pin 17 will inevitably be promoted like this move towards the second ladder cutter block 12, but be subject to the barrier effect in the second thick portion 11 of the second ladder cutter block 12, that section that makes pin 17 to exceed the second thick portion 11 cropped fall.So the thickness in the second thick portion 11 determines the length that pin 17 cuts.Along with constantly moving forward of follow-up components and parts, pin 17 has cut the also corresponding reach of rear components and parts, and at this moment the pin 17 of these components and parts enters bending operation.Namely need pin 17 to bend in this stage.Concrete, pin 17 and the second narrow portion 10 to time corresponding when the first ladder cutter block 15 is horizontally through pin processing channel 20, pin 17 will inevitably be promoted like this move towards the second narrow portion 10, owing to leaving the gap bent for component's feet between the end face in the first thick portion 13 and the bottom surface of the second narrow portion 10, so pin 17 can not be cropped, but bend, can with reference to figure 4.This completes cutting and bending of pin.And, known by above-mentioned analysis, because each components and parts are reaches side by side of next-door neighbour mutually, so can be processed two components and parts by the one stroke of the first ladder cutter block simultaneously, namely one of them is cut, to another bending.Working (machining) efficiency can be significantly improved like this.After cutting shaping, components and parts enter straight shake guide rail 8 under the promotion of postorder components and parts, then impel components and parts constantly to move forward by the shock effect of straight shake guide rail 8, thus for supply raw materials to plug-in unit on pcb board.
Known by above-mentioned analysis, above-mentioned device of the present utility model can realize the feed to different types of electronic devices and components.Interchangeability is good.Meanwhile, space is saved.And it is installed and use does not rely on machining center, can independently exist and use.Facilitate mounting, commissioning and maintenance.
As shown in figures 1 and 3, above-mentioned first ladder cutter block driving mechanism can be cutter block and drives cylinder, can certainly be the straight line driving mechanism of other type, such as hydraulic drive mechanism etc.Application cylinder can realize the accurate control to the first ladder cutter block.
As shown in figures 1 and 3, above-mentioned push rod driving mechanism is that push rod drives cylinder.Certainly, also can be the straight line driving mechanism of the types such as screw mechanism.
On the basis of the above, for the ease of installing and location above-mentioned second ladder cutter block, as shown in Figure 2 and Figure 4, the two ends of described second ladder cutter block 12 are located by dovetail groove.The two ends of corresponding second ladder cutter block 12 are mated with dovetail groove.
Because each components and parts need just can enter guide vane end stop 5 to the component locations adjustment passage on its above-mentioned guide vane end stop, under normal circumstances, components and parts in a row all can enter smoothly.But may misplace once in a while.For this reason, arranged outside frame 2 being positioned at discharge channel 1 has the shaker mechanism for making discharge channel 1 shake.If components and parts misplace, discharge channel 1 can be shaken, make component locations slight adjustment occur and then enter guide vane end stop 5 smoothly.Above-mentioned shaker mechanism can be a cylinder, is knocked discharge channel 1 by cylinder, also can be electromagnetic shaker etc.
Conveniently discharged from module fast by the waste material after cutting, the below being positioned at pin processing channel 20 in described module 6 is provided with waste material passing away.Waste material can arrange waste collection reservoirs under getting rid of passage, and like this, the pin 17 after cutting can be fallen in waste collection reservoirs by above-mentioned waste material passing away.Waste material can be discharged in time and collect process like this.
In order to in the pin course of processing, ensure that the course of processing is steadily carried out smoothly, on the basis of the above, described pin processing channel 20 comprises two sections, the width of first paragraph mates with the width of the pin before bending, namely basic suitable with the width of a pin, when can ensure that pin is cropped more so fast and stable, otch is more concordant.The width of second segment mates with the width of the pin after bending, and namely the width of the pin of width substantially and after bending of second segment is suitable, can ensure that pin shifts out smoothly from pin processing channel 20 like this, specifically can with reference to figure 2.The width of certain above-mentioned pin processing channel 20 also can whole section all wider.As long as can ensure that pin is cropped and shift out smoothly.
Above-described specific embodiment; the purpose of this utility model, technical scheme and beneficial effect are further described; be understood that; the foregoing is only specific embodiment of the utility model; be not limited to the utility model; all within spirit of the present utility model and principle, any amendment made, equivalent replacement, improvement etc., all should be included within protection range of the present utility model.
Claims (9)
1. pipe charging feeding device, comprises frame, it is characterized in that:
Frame surface thereof is provided with shedding mechanism, shedding mechanism is provided with discharge channel, the lower end outside of discharge channel is tiltedly installed with guide vane end stop, be provided with towards the component locations adjustment passage of discharge channel in guide vane end stop, component locations adjustment passage comprises the guide vane end stop pin passage passed through for component's feet and the guide vane end stop body channel passed through for component body be arranged on above guide vane end stop pin passage, and the below of described component locations adjustment passage is provided with and rack-mountedly cuts reshaping device;
Described the first ladder cutter block driving mechanism cutting reshaping device and comprise module, transfer bar mechanism, the first ladder cutter block and be connected with the first ladder cutter block, described first ladder cutter block comprises the first thick portion and the first narrow portion,
Described module is provided with processing channel, described processing channel comprises component body support passage and is arranged on the pin processing channel below component body support passage, align with the entrance of pin processing channel in the lower end of guide vane end stop pin passage, described transfer bar mechanism comprise the porch being arranged on component body support passage push rod and for driving push rod along the push rod driving mechanism of component body support passage movement
The tool bore excessively crossing pin processing channel passed through for the first ladder cutter block is also provided with in module, cross in tool bore the second ladder cutter block being positioned at pin processing channel side being provided with and being positioned at below component body support passage, second ladder cutter block comprises the second thick portion and the second narrow portion, when the first ladder cutter block crosses tool bore when being positioned at below the second ladder cutter block, the end face of the first narrow portion contacts with the bottom surface in the second thick portion and leaves the gap bent for component's feet between the end face in the first thick portion and the bottom surface of the second narrow portion by described;
The outlet of the processing channel of described module is provided with directly shakes guide rail, and described straight shake guide rails assembling is on straight shake base.
2. pipe charging feeding device as claimed in claim 1, is characterized in that: described first ladder cutter block driving mechanism is that cutter block drives cylinder.
3. pipe charging feeding device as claimed in claim 1, is characterized in that: described push rod driving mechanism is that push rod drives cylinder.
4. pipe charging feeding device as claimed in claim 1, is characterized in that: the two ends of described second ladder cutter block are located by dovetail groove.
5. the pipe charging feeding device as described in claim 1,2,3 or 4, is characterized in that: arranged outside frame being positioned at shedding mechanism has the shaker mechanism for making shedding mechanism shake.
6. pipe charging feeding device as claimed in claim 1, is characterized in that: the below being positioned at pin processing channel in described module is provided with waste material passing away.
7. pipe charging feeding device as claimed in claim 1, is characterized in that: described pin processing channel comprises two sections, and the width of first paragraph mates with the width of the pin before bending, and the width of second segment mates with the width of the pin after bending.
8. pipe charging feeding device as claimed in claim 1, it is characterized in that: described shedding mechanism comprises strip hopper, the side of described discharge channel is empty material pipe outlet, described hopper is provided with towards the ejector sleeve through hole of discharge channel, the arranged outside free material pipe push rod of described ejector sleeve through hole, with rack-mounted sky, empty material pipe push rod expects that pipe push rod driving mechanism is connected, the upper end arranged outside of the component locations adjustment passage of described guide vane end stop has for detecting the transducer whether having components and parts by described component locations adjustment passage, described transducer is connected with controller, described controller is connected with sky material pipe push rod driving mechanism.
9. pipe charging feeding device as claimed in claim 8, is characterized in that: described transducer is contrast type optoelectronic switch.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520191222.6U CN204466152U (en) | 2015-04-01 | 2015-04-01 | Pipe charging feeding device |
Applications Claiming Priority (1)
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CN201520191222.6U CN204466152U (en) | 2015-04-01 | 2015-04-01 | Pipe charging feeding device |
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CN204466152U true CN204466152U (en) | 2015-07-08 |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104797128A (en) * | 2015-04-01 | 2015-07-22 | 苏州辉隆自动化设备有限公司 | Feed device for tube-loaded materials |
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2015
- 2015-04-01 CN CN201520191222.6U patent/CN204466152U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104797128A (en) * | 2015-04-01 | 2015-07-22 | 苏州辉隆自动化设备有限公司 | Feed device for tube-loaded materials |
CN104797128B (en) * | 2015-04-01 | 2017-08-18 | 广东华技达精密机械有限公司 | Pipe charging feeding device |
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Legal Events
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GR01 | Patent grant | ||
TR01 | Transfer of patent right |
Effective date of registration: 20170627 Address after: 523401 Guangdong city of Dongguan province Liaobu Xixi Zhen Jin Xing Lu Patentee after: Guangdong Hua Cheng Pml Precision Mechanism Ltd Address before: Suzhou City, Jiangsu province 215000 Yang Loufeng town Suzhou Industrial Park Road No. 37 Patentee before: Suzhou Huilong Automation Equipment Co., Ltd. |
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TR01 | Transfer of patent right |