CN202824314U - Barrel ring edge spinning machine - Google Patents

Barrel ring edge spinning machine Download PDF

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Publication number
CN202824314U
CN202824314U CN 201220454775 CN201220454775U CN202824314U CN 202824314 U CN202824314 U CN 202824314U CN 201220454775 CN201220454775 CN 201220454775 CN 201220454775 U CN201220454775 U CN 201220454775U CN 202824314 U CN202824314 U CN 202824314U
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CN
China
Prior art keywords
diagonal
wheel
slideway
gear wheel
spinning
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
CN 201220454775
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Chinese (zh)
Inventor
刘笃兵
高飞
高尚卿
王继云
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.)
SHANDONG ZHONGDE EQUIPMENT CO Ltd
Original Assignee
SHANDONG ZHONGDE EQUIPMENT 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
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Application filed by SHANDONG ZHONGDE EQUIPMENT CO Ltd filed Critical SHANDONG ZHONGDE EQUIPMENT CO Ltd
Priority to CN 201220454775 priority Critical patent/CN202824314U/en
Application granted granted Critical
Publication of CN202824314U publication Critical patent/CN202824314U/en
Anticipated expiration legal-status Critical
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Abstract

The utility model discloses a barrel ring edge spinning machine. The barrel ring edge spinning machine comprises a rack, a driving mechanism connected with the rack, a hydraulic pressure elevating mechanism communicated with the driving mechanism, and a spinning mechanism communicated with the machine rack. The barrel ring edge spinning machine has the advantages that the ring edge can be directly spun into a cone, the efficiency can be improved and the attractiveness of the barrel can be ensured.

Description

Cylindrical shell ring limit spinning machine
Technical field
The utility model relates to the spinning field, and is particularly related to a kind of cylindrical shell ring limit spinning machine.
Background technology
In the cylindrical shell process, in order to reach the intensity that improves cylindrical shell and purpose attractive in appearance, cone need to be made in the ring limit of cylindrical shell.At present all is by on the ring limit of cylindrical shell, directly welding a cone, so girth joints more than on cylindrical shell are so not only time-consuming, and also very not attractive in appearance.
Summary of the invention
In order to improve the efficient of cylindrical shell moulding, make cylindrical shell more attractive in appearance, the utility model provides a kind of cylindrical shell ring limit spinning machine, and this equipment can not only make the ring limit of cylindrical shell directly be spun into cone, raises the efficiency, and can also guarantee the attractive in appearance of cylindrical shell.
In order to address the above problem, the utility model provides a kind of cylindrical shell ring limit spinning machine, comprising: frame;
The driving mechanism that links to each other with described frame;
The hydraulicefficiency elevation structure that links to each other with described driving mechanism;
The spinning machine that links to each other with described frame.
Described driving mechanism is comprised of reducing motor, pinion, gear wheel, holder, driving shaft, lower pressure wheel.
Described reducing motor is connected by hexagon socket cap head screw with described frame, and described pinion is connected with the reducing motor shaft by flat key.
Described gear wheel and pinion, the in-built cylinder roller bearing of described holder, described lower pressure wheel is connected with driving shaft by flat key.
Described driving shaft connects gear wheel, holder, lower pressure wheel.
Be provided with flat key between described gear wheel and described driving shaft, be used for guaranteeing the synchronous rotation of gear wheel and driving shaft.
Hang black rubber above the described lower pressure wheel, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
Described hydraulicefficiency elevation structure comprises: gear wheel, sliding seat, driven shaft, upper pressure wheel, vertical slideway, vertical slideway connecting plate, hoist cylinder.
The gear wheel engagement of described gear wheel and described driving mechanism, the in-built cylinder roller bearing of described sliding seat, described upper pressure wheel is connected with driven shaft by flat key.
Described driven shaft connects gear wheel, sliding seat, upper pressure wheel.Be provided with flat key between described gear wheel and described driven shaft, be used for guaranteeing the synchronous rotation of gear wheel and driven shaft.
Described sliding seat is fixed in the vertical slideway and can vertically slides along vertical slideway.
Described vertical slideway connecting plate is positioned at the top of vertical slideway and connects by hexagon socket cap head screw.
Described hoist cylinder is connected by screw thread pair with sliding seat.
Described hoist cylinder is fixed on the vertical slideway connecting plate.
Hang black rubber above the described upper pressure wheel, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
Described spinning machine comprises: diagonal slideway, diagonal slideway connecting plate, diagonal oil cylinder, spinning wheel, diagonal seat.
Described diagonal slideway is fixed on the described frame, connects by hexagon socket cap head screw.
Described diagonal slideway connecting plate is positioned at the top of diagonal slideway and connects by hexagon socket cap head screw.
Described diagonal seat is fixed on also can be along the oblique slip of diagonal slideway in the diagonal slideway.
Described diagonal seat in-built deep groove ball bearing, described spinning wheel and deep groove ball bearing interference fits.
Described diagonal oil cylinder one end is connected with the diagonal seat, and the other end is connected with frame, and hinge is all passed through in the connection at two ends.
Be macropore in the middle of the described spinning wheel, the driving shaft in the described driving mechanism does not interfere with driving shaft when described spinning wheel moves by macropore in the middle of the spinning wheel.
Described frame is welded by channel-section steel, and frame top is steel plate.
The beneficial effect that the utility model has is, can simplify the cone forming process on cylindrical shell ring limit, raises the efficiency, and can also guarantee the attractive in appearance of cylindrical shell.
Description of drawings
Fig. 1 is the front view of the utility model cylindrical shell ring limit spinning machine;
Fig. 2 is the right view of the utility model cylindrical shell ring limit spinning machine;
Fig. 3 is that the A of front view of the utility model cylindrical shell ring limit spinning machine is to view.
The specific embodiment
In conjunction with Fig. 1, Fig. 2, Fig. 3, the utility model provides a kind of cylindrical shell ring limit spinning machine, comprising: frame 1;
The driving mechanism that links to each other with described frame;
The hydraulicefficiency elevation structure that links to each other with described driving mechanism;
The spinning machine that links to each other with described frame.
Described driving mechanism as shown in Figure 1, comprising: reducing motor 2, pinion 3, gear wheel 4, cylinder roller bearing 5, holder 6, lower pressure wheel 11, driving shaft 20.
Described driving mechanism is comprised of reducing motor 2, pinion 3, gear wheel 4, holder 6, driving shaft 20, lower pressure wheel 11.
Described reducing motor 2 and described frame 1 are connected by hexagon socket cap head screw, and described pinion 3 is connected with reducing motor 2 shafts by flat key.
Described gear wheel 4 and pinion 3 engagements, described holder 6 in-built cylinder roller bearings 5, described lower pressure wheel 11 is connected with driving shaft 20 by flat key.
Described driving shaft 20 connects gear wheel 4, holder 6, lower pressure wheel 11.
20 of described gear wheel 4 and described driving shafts are provided with flat key, are used for guaranteeing the synchronous rotation of gear wheel 4 and driving shaft 20.
Hang black rubber above the described lower pressure wheel 11, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
The practical work process of described driving mechanism is as described below: reducing motor 2 starts, reducing motor 2 shafts drive pinion 3 by flat key and rotate, pinion 3 and gear wheel 4 engagements, thereby driving gear wheel 4 rotates, gear wheel 4 is fixing by flat key and driving shaft 20, thereby gear wheel 4 drives driving shaft 20 and rotates, and owing to lower pressure wheel 11 is connected with driving shaft 20 by flat key equally, thereby lower pressure wheel 11 also can rotate.
Described hydraulicefficiency elevation structure as shown in Figure 1 and Figure 2, comprising: gear wheel 4, cylinder roller bearing 5, sliding seat 7, hoist cylinder 8, driven shaft 9, upper pressure wheel 10, vertical slideway 16, vertical slideway connecting plate 17.
Described hydraulicefficiency elevation structure comprises: gear wheel 4, sliding seat 7, driven shaft 9, upper pressure wheel 10, vertical slideway 16, vertical slideway connecting plate 17, hoist cylinder 8.
Described gear wheel 4 meshes with the gear wheel 4 of described driving mechanism, described sliding seat 7 in-built cylinder roller bearings 5, and described upper pressure wheel 10 is connected with driven shaft 9 by flat key.
Described driven shaft 9 connects gear wheel 4, sliding seat 7, upper pressure wheel 10.
9 of described gear wheel 4 and described driven shafts are provided with flat key, are used for guaranteeing the synchronous rotation of gear wheel 4 and driven shaft 9.
Described sliding seat 7 is fixed on vertical slideway 16 interior can vertically slips along vertical slideway 16.
Described vertical slideway connecting plate 17 is positioned at the top of vertical slideway 16 and connects by hexagon socket cap head screw.
Described hoist cylinder 8 and sliding seat 7 are connected by screw thread pair.
Described hoist cylinder 8 is fixed on the vertical slideway connecting plate 17.
Hang black rubber above the described upper pressure wheel 10, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
The practical work process of described hydraulicefficiency elevation structure is as described below: gear 4 engagements in the gear wheel 4 in the driving mechanism and this mechanism, effect by key can drive driven shaft 9 rotations, upper pressure wheel 10 also is connected with driven shaft 9 by key, thereby drives the upper pressure wheel rotation.Hoist cylinder 8 is flexible, because it is connected with screw thread pair between the sliding seat 7 and the restriction of 16 pairs of sliding seats 7 of vertical slideway, the vertical slideway 16 in sliding seat 7 edges is slided up and down.Because driven shaft 9, gear wheel 4, sliding seat 7, upper pressure wheel 10 link together, so driven shaft 9, gear wheel 4, upper pressure wheel 10 are all stretched along vertical slideway 16 with the contracting of hoist cylinder 8 and moved up and down.
Described spinning machine such as Fig. 1, shown in Figure 3, comprising: spinning wheel 11, deep groove ball bearing 13, diagonal seat 14, diagonal oil cylinder 15, diagonal slideway 18, diagonal slideway connecting plate 19.
Described spinning machine comprises: diagonal slideway 18, diagonal slideway connecting plate 19, diagonal oil cylinder 15, spinning wheel 12, diagonal seat 14.
Described diagonal slideway 18 is fixed on the described frame 1, connects by hexagon socket cap head screw.
Described diagonal slideway connecting plate 19 is positioned at the top of diagonal slideway 18 and connects by hexagon socket cap head screw.
Described diagonal seat 14 is fixed on also can be along the 18 oblique slips of diagonal slideway in the diagonal slideway 18.
Described diagonal seat 14 in-built deep groove ball bearings 13, described spinning wheel 12 and deep groove ball bearing 13 interference fits.
Described diagonal oil cylinder 15 1 ends are connected with diagonal seat 14, and the other end is connected with frame 1, and hinge is all passed through in the connection at two ends.
Be macropore in the middle of the described spinning wheel 12, the driving shaft 20 in the described driving mechanism does not interfere with driving shaft 20 when described spinning wheel 12 moves by macropore in the middle of the spinning wheel 12.
The practical work process of described spinning machine is as described below: diagonal oil cylinder 15 is flexible, because the chain connection between itself and the diagonal seat 14 and the restriction of 18 pairs of diagonal seats 14 of diagonal slideway make diagonal seat 14 along the 18 oblique slips of diagonal slideway.Because diagonal seat 14, spinning wheel 12 is fixed together with deep groove ball bearing 13, so equal the stretching along diagonal slideway 18 oblique movements with diagonal oil cylinder 15 of spinning wheel 12 and deep groove ball bearing 13.
Described frame 1 is welded by channel-section steel, and frame top is steel plate.
The utility model cylindrical shell ring limit spinning machine is under the effect of control system, and practical work process is as follows:
(1) position as shown in Figure 1, hoist cylinder 8 retractions drive sliding seats 7 and promote the segment distances, and making between upper pressure wheel 10, the lower pressure wheel 11 has enough distances.
(2) cylindrical shell after the moulding is put between upper pressure wheel 10, the lower pressure wheel 11 and be close in diagonal slideway 18 1 sides.
(3) hoist cylinder 8 stretches out, and drives sliding seat 7 and descends, and upper pressure wheel 10, lower pressure wheel 11 are compressed with cylindrical shell.
(4) start reducing motor 2, by between pinion 3, the gear wheel 4 and the engagement between the gear wheel 4, gear wheel 4 drive upper pressure wheel 10, lower pressure wheel 11 and cylindrical shell rotation.
(5) diagonal oil cylinder 15 stretches out, and drives spinning wheel and moves obliquely, and can come in contact this moment with cylindrical shell, owing between diagonal seat 14 and the spinning wheel 12 deep groove ball bearing 13 is arranged, spinning wheel 12 can passive rotation.Along with diagonal oil cylinder 15 slowly stretches out, spinning wheel 12 can change the shape on cylindrical shell ring limit gradually to cone.After spinning was finished, diagonal oil cylinder 15 bounced back to as shown in Figure 1 original position.
(6) close reducing motor 2, upper pressure wheel 10, lower pressure wheel 11 are stopped operating, hoist cylinder 8 retractions drive sliding seat 7 and promote large segment distance, and the cylindrical shell that spinning is finished takes off.
Above-mentioned explanation is not to be to restriction of the present utility model; the utility model also is not limited in above-mentioned giving an example; the variation that those skilled in the art make in essential scope of the present utility model, remodeling, interpolation or replacement also should belong to the scope that the utility model is protected.

Claims (4)

1. cylindrical shell ring limit spinning machine is characterized in that, described cylindrical shell ring limit spinning machine comprises: frame;
The driving mechanism that links to each other with described frame;
The hydraulicefficiency elevation structure that links to each other with described driving mechanism;
The spinning machine that links to each other with described frame.
2. cylindrical shell ring according to claim 1 limit spinning machine is characterized in that described driving mechanism is comprised of reducing motor, pinion, gear wheel, holder, driving shaft, lower pressure wheel;
Described reducing motor is connected by hexagon socket cap head screw with described frame, and described pinion is connected with the reducing motor shaft by flat key;
Described gear wheel and pinion, the in-built cylinder roller bearing of described holder, described lower pressure wheel is connected with driving shaft by flat key;
Described driving shaft connects gear wheel, holder, lower pressure wheel;
Be provided with flat key between described gear wheel and described driving shaft, be used for guaranteeing the synchronous rotation of gear wheel and driving shaft;
Hang black rubber above the described lower pressure wheel, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
3. cylindrical shell ring according to claim 1 limit spinning machine is characterized in that described hydraulicefficiency elevation structure comprises: gear wheel, sliding seat, driven shaft, upper pressure wheel, vertically slideway, vertically slideway connecting plate, hoist cylinder;
The gear wheel engagement of described gear wheel and described driving mechanism, the in-built cylinder roller bearing of described sliding seat, described upper pressure wheel is connected with driven shaft by flat key;
Described driven shaft connects gear wheel, sliding seat, upper pressure wheel;
Be provided with flat key between described gear wheel and described driven shaft, be used for guaranteeing the synchronous rotation of gear wheel and driven shaft;
Described sliding seat is fixed in the vertical slideway and can vertically slides along vertical slideway;
Described vertical slideway connecting plate is positioned at the top of vertical slideway and connects by hexagon socket cap head screw;
Described hoist cylinder is connected by screw thread pair with sliding seat;
Described hoist cylinder is fixed on the vertical slideway connecting plate;
Hang black rubber above the described upper pressure wheel, be used for increasing friction force, avoid cylindrical shell in spinning process, to scratch.
4. cylindrical shell ring according to claim 1 limit spinning machine is characterized in that described spinning machine comprises: diagonal slideway, diagonal slideway connecting plate, diagonal oil cylinder, spinning wheel, diagonal seat;
Described diagonal slideway is fixed on the described frame, connects by hexagon socket cap head screw;
Described diagonal slideway connecting plate is positioned at the top of diagonal slideway and connects by hexagon socket cap head screw;
Described diagonal seat is fixed on also can be along the oblique slip of diagonal slideway in the diagonal slideway;
The in-built deep groove ball bearing of described diagonal seat, described spinning wheel and deep groove ball bearing interference fits;
Described diagonal oil cylinder one end is connected with the diagonal seat, and the other end is connected with frame, and hinge is all passed through in the connection at two ends;
Be macropore in the middle of the described spinning wheel, the driving shaft in the described driving mechanism does not interfere with driving shaft when described spinning wheel moves by macropore in the middle of the spinning wheel.
CN 201220454775 2012-09-08 2012-09-08 Barrel ring edge spinning machine Expired - Fee Related CN202824314U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201220454775 CN202824314U (en) 2012-09-08 2012-09-08 Barrel ring edge spinning machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201220454775 CN202824314U (en) 2012-09-08 2012-09-08 Barrel ring edge spinning machine

Publications (1)

Publication Number Publication Date
CN202824314U true CN202824314U (en) 2013-03-27

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ID=47936110

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201220454775 Expired - Fee Related CN202824314U (en) 2012-09-08 2012-09-08 Barrel ring edge spinning machine

Country Status (1)

Country Link
CN (1) CN202824314U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826913A (en) * 2015-05-20 2015-08-12 蒋桂云 Spinning equipment applied to machining flexible gear of harmonic wave reducer

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826913A (en) * 2015-05-20 2015-08-12 蒋桂云 Spinning equipment applied to machining flexible gear of harmonic wave reducer

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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

Granted publication date: 20130327

Termination date: 20150908

EXPY Termination of patent right or utility model