CN204607098U - The feeder of elongated shape round bar part - Google Patents
The feeder of elongated shape round bar part Download PDFInfo
- Publication number
- CN204607098U CN204607098U CN201520296228.XU CN201520296228U CN204607098U CN 204607098 U CN204607098 U CN 204607098U CN 201520296228 U CN201520296228 U CN 201520296228U CN 204607098 U CN204607098 U CN 204607098U
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- China
- Prior art keywords
- harvesting
- collecting box
- round bar
- material collecting
- elongated shape
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Abstract
The utility model discloses a kind of feeder of elongated shape round bar part, one end of active pendulum plate (3) is hinged on the madial wall of Material collecting box for harvesting (1), the other end is freedom of movement end, and transporter is positioned at the freedom of movement end place of active pendulum plate (3); Induction installation is arranged on the casing of Material collecting box for harvesting (1), and is electrically connected by wire with transporter; Actuating device comprises fork (4) and cylinder assembly (6), the cylinder body of cylinder assembly (6) is fixedly connected on the casing of Material collecting box for harvesting (1), the lower end of fork (4) and the piston rod free end of cylinder assembly (6) hinged, the middle part of fork (4) and the hinged and sliding block joint of casing, the upper end transhipment of fork (4) is connected with roller (7), and roller (7) rolls with the lower surface of active pendulum plate (3) and is connected.After adopting above structure, can time saving and energy saving, greatly enhance productivity, the demand of automation can be realized again.
Description
Technical field
The utility model relates to field of mechanical technique, is specifically a kind of feeder of elongated shape round bar part.
Background technology
Elongated shape round bar part, such as elongated shape pole or pipe are half-blanks common in production enterprise.Such as when processing the flow production line of the parts such as guide rod, pull bar, push rod, generally need to be brought by conveying to carry from a station to the movement of next station, and the source place that conveyor line starts, usually adopt artificial mode to be put on the belt by elongated shape round bar part.Therefore, the shortcoming that this feed exists is:
1) mode of artificial feed, cause the labour intensity of workman large, production efficiency is low, once not supply, conveyor line also can be caused normally not run;
2) when elongated shape round bar part is put load-transfer device by workman usually, do not correct the position that rod member is put exactly, in other words, elongated shape round bar part places on the conveyor belt randomly, when it be transferred band be transported to next station time, also need the putting position adjusting elongated shape round bar part in addition, successfully could carry out processing or the assembling of this station, therefore, additionally increase adjust structure, cause the increase of productive costs.
Utility model content
Technical problem to be solved in the utility model is, provides one elongated shape round bar part can be sent in flow production line automatically, and the feeder of elongated shape round bar part that is time saving and energy saving, that greatly enhance productivity.
For solving the problems of the technologies described above, the feeder of the elongated shape round bar part that the utility model provides, comprise the Material collecting box for harvesting that many elongated shape round bar parts are housed, this Material collecting box for harvesting is positioned at the initial end of flow production line, and every axis of root elongated shape round bar part and the transporting direction of flow production line are vertical configuration; The actuating device that this feeder also comprises active pendulum plate, drive active pendulum plate to do to swing up and down, elongated shape round bar part is transported to the induction installation of transporter on the load-transfer device of flow production line and the action of control wheel word, one end of described active pendulum plate is hinged on the madial wall of Material collecting box for harvesting, the other end is freedom of movement end, and transporter is positioned at the freedom of movement end place of active pendulum plate; Described induction installation is arranged on the casing of Material collecting box for harvesting, and is electrically connected by wire with transporter; Described actuating device comprises fork and cylinder assembly, the cylinder body of cylinder assembly is fixedly connected on the casing of Material collecting box for harvesting, the lower end of fork and the piston rod free end of cylinder assembly hinged, the middle part of fork and the hinged and sliding block joint of casing, the upper end transhipment of fork is connected with roller, and roller rolls with the lower surface of active pendulum plate and is connected.
Described transporter comprises grooved roller, splicing plate and transhipment motor; Wherein, the output shaft of described transhipment motor is connected with grooved roller, and grooved roller two ends are rotatably connected on the casing of Material collecting box for harvesting; The circumferential surface of described grooved roller is along the circumferential direction provided with many uniform parallel charging conduits, the size of charging conduit and the matching size of elongated shape round bar part, on grooved roller the charging conduit of highest point just to active pendulum plate to the end during nadir of lower swing; Described splicing plate is between grooved roller and the load-transfer device of flow production line, and one end of splicing plate and load-transfer device are just right, and the other end is just right with the outermost charging conduit be positioned near load-transfer device on grooved roller, and splicing plate is connected with the casing of Material collecting box for harvesting by bracing frame.
Described induction installation is proximity switch, and proximity switch is arranged on the casing of Material collecting box for harvesting, and the inductive head of proximity switch is just to the end notch place of charging conduit, and proximity switch is electrically connected by wire with transhipment motor.
The middle part of described fork is provided with long chute along its length, and this long chute place is hinged with slide block; The casing of Material collecting box for harvesting is provided with horizontally disposed guide groove, and skid is connected in guide groove.
After adopting above structure, the utility model compared with prior art, has the following advantages:
1) be placed in Material collecting box for harvesting due to elongated shape round bar part is concentrated, and drive active pendulum plate to swing up and down by actuating device, elongated shape round bar part one one is made to send into transporter in an orderly manner, and be transported on the load-transfer device of flow production line by transporter, therefore, can time saving and energy saving, greatly enhance productivity, the demand of automation can be realized again; Simultaneously, proximity switch is provided with in the notch end of charging conduit, when making that round bar part falls in charging conduit each time, send signal to after proximity switch senses object transhipment motor, transhipment motor is transported and drives grooved roller synchronously to transport, round bar part is transported on splicing plate, thus realizes automation mechanized operation;
2) actuating device have employed the combination of fork and cylinder assembly, makes active pendulum plate regularly in swinging up and down state, thus the elongated shape round bar part energy one one on active pendulum plate is sent in transporter in an orderly manner.
Accompanying drawing explanation
Fig. 1 is the structural representation of feeder before feed of the utility model elongated shape round bar part;
Fig. 2 is the structural representation of feeder when feed of the utility model elongated shape round bar part.
Wherein: 1, Material collecting box for harvesting; 2, elongated shape round bar part; 3, active pendulum plate; 4, fork; 5, long chute; 6, cylinder assembly; 7, roller; 8, charging conduit; 9, splicing plate; 10, proximity switch; 11, grooved roller; 12, motor is transported; 13, guide groove; 14, slide block.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, the utility model is described in more detail.
From the structural representation of the feeder of the utility model elongated shape round bar part shown in Fig. 1 and Fig. 2, it comprises the Material collecting box for harvesting 1 that many elongated shape round bar parts 2 are housed, this Material collecting box for harvesting 1 is positioned at the initial end of flow production line, and every axis of root elongated shape round bar part 2 and the transporting direction of flow production line are vertical configuration.The actuating device that this feeding device also comprises active pendulum plate 3, drive active pendulum plate 3 to do to swing up and down, elongated shape round bar part 2 is transported to the induction installation of transporter on the load-transfer device of flow production line and the action of control wheel word, one end of described active pendulum plate 3 is hinged on the madial wall of Material collecting box for harvesting 1, the other end is freedom of movement end, and transporter is positioned at the freedom of movement end place of active pendulum plate 3.Described induction installation is arranged on the casing of Material collecting box for harvesting 1, and is electrically connected by wire with transporter.Described actuating device comprises fork 4 and cylinder assembly 6, the cylinder body of cylinder assembly 6 is fixedly connected on the casing of Material collecting box for harvesting 1, the lower end of fork 4 and the piston rod free end of cylinder assembly 6 hinged, the middle part of fork 4 and the hinged and sliding block joint of casing, the upper end transhipment of fork 4 is connected with roller 7, and roller 7 rolls with the lower surface of active pendulum plate 3 and is connected.
Described transporter comprises grooved roller 11, splicing plate 9 and transhipment motor 12; Wherein, the output shaft of described transhipment motor 12 is connected with grooved roller 11, and grooved roller 11 two ends are rotatably connected on the casing of Material collecting box for harvesting 1.The circumferential surface of described grooved roller 11 is along the circumferential direction provided with many uniform parallel charging conduits 8, the size of charging conduit 8 and the matching size of elongated shape round bar part 2, on grooved roller 11 charging conduit 8 of highest point just to active pendulum plate 3 to the end during nadir of lower swing.Described splicing plate 9 is between grooved roller 11 and the load-transfer device of flow production line, and one end of splicing plate 9 and load-transfer device are just right, the other end is just right with the outermost charging conduit 8 be positioned near load-transfer device on grooved roller 11, and splicing plate 9 is connected by the casing of bracing frame with Material collecting box for harvesting 1.
Described induction installation is proximity switch 10, and proximity switch 10 is arranged on the casing of Material collecting box for harvesting 1, and the inductive head of proximity switch 10 is just to the end notch place of charging conduit 8, and proximity switch 10 is electrically connected by wire with transhipment motor 12.
The middle part of described fork 4 is provided with long chute 5 along its length, and this long chute 5 place is hinged with slide block 14; The casing of Material collecting box for harvesting 1 is provided with horizontally disposed guide groove 13, and slide block 14 is slidably connected in guide groove 13.
Course of action of the present utility model is as follows: before elongated shape round bar part 2 is put into Material collecting box for harvesting 1, first adjust active pendulum plate 3 to be the level of state, now the piston rod free end of cylinder assembly 6 is positioned at farthest, and fork 4 is in vertical state, and the roller 7 namely on fork 4 is positioned at highest point; After putting into elongated shape round bar part 2, cylinder assembly 6 drives piston rod to inside contracting, fork 4 is rotated around the hinge-point at slide block 14 place, slide block 14 is while the long chute 5 along fork 4 slides while slide along the guide groove 13 on the casing of Material collecting box for harvesting 1 simultaneously, when the piston rod of cylinder assembly 6 be retracted to the inside time, roller 5 is positioned at nadir, active pendulum plate 3 is rocked to nadir, now forms the passage that can pass through for an elongated shape round bar part 2 between the free end of active pendulum plate 3 and the casing of Material collecting box for harvesting 1; Therefore, an elongated shape round bar part 2 falls in the charging conduit 8 of the grooved roller 11 waited already, now proximity switch 10 senses signal, and feed back to transhipment motor 12, transhipment motor 12 starts, and grooved roller 11 is rotated, the elongated shape round bar part 2 in the charging conduit 8 of vertex is transported to the outermost of grooved roller 11, now, elongated shape round bar part 2 is rolled into the load-transfer device of flow production line by splicing plate 9 after departing from charging conduit 8.
Claims (4)
1. the feeder of an elongated shape round bar part, comprise the Material collecting box for harvesting (1) that many elongated shape round bar parts (2) are housed, this Material collecting box for harvesting (1) is positioned at the initial end of flow production line, and every axis of root elongated shape round bar part (2) and the transporting direction of flow production line are vertical configuration; It is characterized in that: this feeder also comprises active pendulum plate (3), the actuating device that drives active pendulum plate (3) to do to swing up and down, elongated shape round bar part (2) is transported to the induction installation of transporter on the load-transfer device of flow production line and the action of control wheel word, one end of described active pendulum plate (3) is hinged on the madial wall of Material collecting box for harvesting (1), the other end is freedom of movement end, and transporter is positioned at the freedom of movement end place of active pendulum plate (3); Described induction installation is arranged on the casing of Material collecting box for harvesting (1), and is electrically connected by wire with transporter; Described actuating device comprises fork (4) and cylinder assembly (6), the cylinder body of cylinder assembly (6) is fixedly connected on the casing of Material collecting box for harvesting (1), the lower end of fork (4) and the piston rod free end of cylinder assembly (6) hinged, the middle part of fork (4) and the hinged and sliding block joint of casing, the upper end transhipment of fork (4) is connected with roller (7), and roller (7) rolls with the lower surface of active pendulum plate (3) and is connected.
2. the feeder of elongated shape round bar part according to claim 1, is characterized in that: described transporter comprises grooved roller (11), splicing plate (9) and transhipment motor (12); Wherein, the output shaft of described transhipment motor (12) is connected with grooved roller (11), and grooved roller (11) two ends are rotatably connected on the casing of Material collecting box for harvesting (1); The circumferential surface of described grooved roller (11) is along the circumferential direction provided with many uniform parallel charging conduits (8), the size of charging conduit (8) and the matching size of elongated shape round bar part (2), the charging conduit (8) of the upper highest point of grooved roller (11) just to active pendulum plate (3) to the end during nadir of lower swing; Described splicing plate (9) is positioned between grooved roller (11) and the load-transfer device of flow production line, and one end and the load-transfer device of splicing plate (9) are just right, the other end is just right with the outermost charging conduit (8) being positioned at the upper close load-transfer device of grooved roller (11), and splicing plate (9) is connected by the casing of bracing frame with Material collecting box for harvesting (1).
3. the feeder of elongated shape round bar part according to claim 2, it is characterized in that: described induction installation is proximity switch (10), proximity switch (10) is arranged on the casing of Material collecting box for harvesting (1), and the inductive head of proximity switch (10) is just to the end notch place of charging conduit (8), proximity switch (10) is electrically connected by wire with transhipment motor (12).
4. the feeder of elongated shape round bar part according to claim 1, it is characterized in that: the middle part of described fork (4) is provided with long chute (5) along its length, this long chute (5) place is hinged with slide block (14); The casing of Material collecting box for harvesting (1) is provided with horizontally disposed guide groove (13), and slide block (14) is slidably connected in guide groove (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520296228.XU CN204607098U (en) | 2015-05-08 | 2015-05-08 | The feeder of elongated shape round bar part |
Applications Claiming Priority (1)
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CN201520296228.XU CN204607098U (en) | 2015-05-08 | 2015-05-08 | The feeder of elongated shape round bar part |
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CN204607098U true CN204607098U (en) | 2015-09-02 |
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CN201520296228.XU Expired - Fee Related CN204607098U (en) | 2015-05-08 | 2015-05-08 | The feeder of elongated shape round bar part |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106185253A (en) * | 2016-08-25 | 2016-12-07 | 长沙成进汽车配件有限公司 | Feeding device for motor bellows braider |
CN112960363A (en) * | 2021-02-04 | 2021-06-15 | 湖州泰能物联科技有限公司 | High-efficient directional conveyor of connector who prevents blocking up |
CN114043211A (en) * | 2021-12-28 | 2022-02-15 | 富乐压铸(太仓)有限公司 | Hinge shaft assembling mechanism |
CN115215069A (en) * | 2022-08-05 | 2022-10-21 | 浙江腾龙不锈钢棒线有限公司 | Single-station batch feeding machine for stainless steel bar |
DE102021123629A1 (en) | 2021-09-13 | 2023-03-16 | erler gmbh automation . robotik | DEVICE AND PROCESS FOR SEPARATING CYLINDRICAL WORKPIECES |
CN116513805A (en) * | 2023-05-19 | 2023-08-01 | 湖南旗滨医药材料科技有限公司 | Glass tube bullet-proof transport equipment and glass tube production line |
-
2015
- 2015-05-08 CN CN201520296228.XU patent/CN204607098U/en not_active Expired - Fee Related
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106185253A (en) * | 2016-08-25 | 2016-12-07 | 长沙成进汽车配件有限公司 | Feeding device for motor bellows braider |
CN106185253B (en) * | 2016-08-25 | 2019-02-26 | 长沙成进汽车配件有限公司 | Feeding device for motor bellows braider |
CN112960363A (en) * | 2021-02-04 | 2021-06-15 | 湖州泰能物联科技有限公司 | High-efficient directional conveyor of connector who prevents blocking up |
DE102021123629A1 (en) | 2021-09-13 | 2023-03-16 | erler gmbh automation . robotik | DEVICE AND PROCESS FOR SEPARATING CYLINDRICAL WORKPIECES |
DE102021123629B4 (en) | 2021-09-13 | 2024-01-04 | erler gmbh automation . robotik | DEVICE AND METHOD FOR SEPARATING CYLINDRICAL WORKPIECES |
CN114043211A (en) * | 2021-12-28 | 2022-02-15 | 富乐压铸(太仓)有限公司 | Hinge shaft assembling mechanism |
CN114043211B (en) * | 2021-12-28 | 2023-01-24 | 富乐压铸(太仓)有限公司 | Hinge shaft assembling mechanism |
CN115215069A (en) * | 2022-08-05 | 2022-10-21 | 浙江腾龙不锈钢棒线有限公司 | Single-station batch feeding machine for stainless steel bar |
CN116513805A (en) * | 2023-05-19 | 2023-08-01 | 湖南旗滨医药材料科技有限公司 | Glass tube bullet-proof transport equipment and glass tube production line |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150902 Termination date: 20160508 |