CN203660615U - Capacitor charging device - Google Patents

Capacitor charging device Download PDF

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Publication number
CN203660615U
CN203660615U CN201420033623.4U CN201420033623U CN203660615U CN 203660615 U CN203660615 U CN 203660615U CN 201420033623 U CN201420033623 U CN 201420033623U CN 203660615 U CN203660615 U CN 203660615U
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CN
China
Prior art keywords
charging
conveyer belt
lifter plate
normal temperature
clamp device
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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.)
Withdrawn - After Issue
Application number
CN201420033623.4U
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Chinese (zh)
Inventor
郭维国
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.)
SUZHOU LIUHE MACHINERY CO Ltd
Original Assignee
SUZHOU LIUHE MACHINERY 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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Priority to CN201420033623.4U priority Critical patent/CN203660615U/en
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Publication of CN203660615U publication Critical patent/CN203660615U/en
Anticipated expiration legal-status Critical
Withdrawn - After Issue legal-status Critical Current

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Abstract

The utility model discloses a capacitor charging device comprising a machine frame, a charging mechanism arranged on the machine frame, and a transfer mechanism used for clamping, moving and placing a capacitor. The charging mechanism comprises a high-temperature charging conveyer belt, a normal-temperature charging conveyer belt, a first charging device connected with the high-temperature charging conveyer belt and used for charging the capacitor, a second charging device connected with the normal-temperature charging conveyer belt and used for charging the capacitor, and an oven arranged above the high-temperature charging conveyer belt and used for heating. With the above technical scheme, the capacitor charging device improves the defect that only high-temperature charging is allowed in the prior art; the charging is stable, and qualified product rate is high; the layout design of components in the whole device enables the occupied area of the device to be small and the capacity to be large; and the design of capacitor clamping and transferring process is simple and reasonable.

Description

Capacitor charging equipment
Technical field
the utility model relates to a kind of capacitor charging equipment.
Background technology
in electric capacity production process, need to charge to electric capacity.Capacitor charging equipment of the prior art is all to charge under hot conditions, but due to the performance difference of various electric capacity, existing high-temperature charging mode causes some electric capacity stable not in the time of charging, and yields is lower.
Utility model content
for addressing the above problem, the purpose of this utility model is to provide a kind of capacitor charging equipment.
in order to reach above object, the technical solution adopted in the utility model is: capacitor charging equipment, it comprises frame, is arranged on the charging mechanism in frame, the transfer mechanism that electric capacity is carried out to gripping, handover and placement, and charging mechanism comprises high-temperature charging conveyer belt, normal temperature charge delivery band, the first charging device to capacitor charging being connected with high-temperature charging conveyer belt, the second charging device to capacitor charging being connected with normal temperature charge delivery band, be positioned at the baking box for heating above high-temperature charging conveyer belt.
further, normal temperature charge delivery band is contrary with the throughput direction of high-temperature charging conveyer belt, and the throughput direction of normal temperature charge delivery band is from one end to the other end, and the throughput direction of high-temperature charging conveyer belt is from its end, the other end to.The feed end that one end of normal temperature charge delivery band is charging mechanism, the discharge end that an end of high-temperature charging conveyer belt is charging mechanism, and the feed end of charging mechanism and discharge end are positioned at the same end of charging mechanism.
further, normal temperature charge delivery band is positioned at the below of high-temperature charging conveyer belt, and the both ends of being longer than high-temperature charging conveyer belt, the both ends of normal temperature charge delivery band.
further, transfer mechanism comprise an end that is positioned at charging mechanism the first clamp device, be positioned at normal temperature charge delivery band one end the first lifter plate moving up and down, be positioned at high-temperature charging conveyer belt one end the second lifter plate moving up and down, the first clamp device is positioned at the top of the first lifter plate and the second lifter plate, and the first clamp device can move and be arranged on rotationally in frame along the Width of normal temperature charge delivery band.
further, the first clamp device comprises the first fixture and the second fixture that close up and open gripping and placement electric capacity by self.
further, transfer mechanism comprise the other end that is positioned at charging mechanism the second clamp device, be positioned at normal temperature charge delivery band the other end the 3rd lifter plate moving up and down, be positioned at high-temperature charging conveyer belt the other end the 4th lifter plate moving up and down, the second clamp device is positioned at the top of the 3rd lifter plate and the 4th lifter plate, and the second clamp device can be arranged in frame movably along the length direction of normal temperature charge delivery band.
further, the second clamp device comprises the 3rd fixture that closes up and open gripping and placement electric capacity by self.
further, in frame, be also provided with two guide rails that throughput direction is contrary, and two guide rail parallels in the longitudinal direction with normal temperature charge delivery band and high-temperature charging conveyer belt, on guide rail, be connected with electric capacity is discharged and recharged discharge and recharge mechanism and electric capacity is detected to the mechanism that sorts sorting.
further, an end of two guide rails is provided with lifter plate moving up and down.
further, the rotating range of the first clamp device is 90 °.
by adopting technique scheme, the utility model capacitor charging equipment, improve the defect that is merely able to high-temperature charging in prior art, charging is stable, yields is high, layout designs between whole equipment components makes occupation area of equipment little, and capacity is large, and electric capacity gripping is transferred to Process Design advantages of simple.
Brief description of the drawings
accompanying drawing 1 is a visual angle perspective view of the utility model capacitor charging equipment;
accompanying drawing 2 is the A partial structurtes schematic diagram of the utility model capacitor charging equipment;
accompanying drawing 3 is the B partial structurtes schematic diagram of the utility model capacitor charging equipment;
accompanying drawing 4 is another visual angle perspective view of the utility model capacitor charging equipment;
accompanying drawing 5 is the C partial structurtes schematic diagram of the utility model capacitor charging equipment;
accompanying drawing 6 is the D partial structurtes schematic diagram of the utility model capacitor charging equipment;
accompanying drawing 7 is the E partial structurtes schematic diagram of the utility model capacitor charging equipment;
the master that accompanying drawing 8 is the utility model capacitor charging equipment looks cross-sectional view;
accompanying drawing 9 is the partial structurtes schematic diagram of an end of the utility model capacitor charging equipment;
accompanying drawing 10 is the partial structurtes schematic diagram of the other end of the utility model capacitor charging equipment.
number in the figure is:
1, frame; 2, high-temperature charging conveyer belt; 3, normal temperature charge delivery band; 4, baking box; 5, the first charging device; 6, the second charging device; 7, the first clamp device; 8, the first lifter plate; 9, the first cylinder; 10, the second lifter plate; 11, the second cylinder; 12, the first fixture; 13, the second fixture; 14, the second clamp device; 15, the 3rd lifter plate; 16, the 3rd cylinder; 17, the 4th lifter plate; 18, four-cylinder; 19, the 3rd fixture; 20, the first guide rail; 21, the second guide rail.
Embodiment
below in conjunction with accompanying drawing, preferred embodiment of the present utility model is described in detail, thereby so that advantage of the present utility model and feature can be easier to be it will be appreciated by those skilled in the art that, protection range of the present utility model is made to more explicit defining.
if accompanying drawing 1 is to as shown in accompanying drawing 10, in order to reach above object, the technical solution adopted in the utility model is: capacitor charging equipment, it comprises frame 1, is arranged on the charging mechanism in frame 1, the transfer mechanism that electric capacity is carried out to gripping, handover and placement, and charging mechanism comprises high-temperature charging conveyer belt 2, normal temperature charge delivery band 3, the first charging device 5 to capacitor charging being connected with high-temperature charging conveyer belt 2, the second charging device 6 to capacitor charging being connected with normal temperature charge delivery band 3, the baking box 4 for heating that is positioned at high-temperature charging conveyer belt 2 tops.
normal temperature charge delivery band 3 is contrary with the throughput direction of high-temperature charging conveyer belt 2, and the throughput direction of normal temperature charge delivery band 3 is from one end to the other end, and the throughput direction of high-temperature charging conveyer belt 2 is from its end, the other end to.The feed end that one end of normal temperature charge delivery band 3 is charging mechanism, the discharge end that one end of high-temperature charging conveyer belt 2 is charging mechanism, and the feed end of charging mechanism and discharge end are positioned at the same end (hereinafter an end of described charging mechanism) of charging mechanism.Normal temperature charge delivery band 3 be arranged in parallel in the longitudinal direction with high-temperature charging conveyer belt 2, and normal temperature charge delivery band 3 be positioned at high-temperature charging conveyer belt 2 under, and both ends of being longer than high-temperature charging conveyer belt 2, the both ends of normal temperature charge delivery band 3.
transfer mechanism comprises two cover facilities, wherein a set of facility is positioned at an end of charging mechanism, for charging and the discharging of charging mechanism, a set of facility is positioned at the other end of charging mechanism in addition, for the electric capacity on normal temperature charge delivery band is transferred to high-temperature charging conveyer belt.
wherein a set of facility comprise an end that is positioned at charging mechanism the first clamp device 7, be positioned at normal temperature charge delivery band 3 one ends the first lifter plate 8 moving up and down, be positioned at high-temperature charging conveyer belt 2 one ends the second lifter plate 10 moving up and down, the first clamp device 7 is positioned at the top of the first lifter plate 8 and the second lifter plate 10, and the first clamp device 7 can move and be arranged on rotationally in frame 1 along the Width of normal temperature charge delivery band 3, and the rotating range of the first clamp device 7 in the present embodiment is 90 °.The first clamp device 7 has at least two service positions, and called after the first service position and the second service position, will specifically describe hereinafter.
in the present embodiment, the first clamp device 7 comprises the first fixture 12 and the second fixture 13, the first fixture 12 and the second fixture 13 be closing up and opening gripping and place electric capacity by self all, the first lifter plate 8 drives it to move up and down by the first cylinder 9, and the second lifter plate 10 drives it to move up and down by the second cylinder 11.
in addition a set of facility comprise the other end that is positioned at charging mechanism the second clamp device 14, be positioned at normal temperature charge delivery band 3 the other end the 3rd lifter plate 15 moving up and down, be positioned at high-temperature charging conveyer belt 2 the other end the 4th lifter plate 17 moving up and down, the second clamp device 14 is positioned at the top of the 3rd lifter plate 15 and the 4th lifter plate 17, and the second clamp device 14 can be arranged in frame 1 movably along the length direction of normal temperature charge delivery band 3.
in the present embodiment, the second clamp device 12 comprises the 3rd fixture 19 that closes up and open gripping and placement electric capacity by self, the 3rd lifter plate 15 drives it to move up and down by the 3rd cylinder 16, and the 4th lifter plate 17 drives it to move up and down by four-cylinder 18.
the second clamp device 14 also has at least two service positions, called after the 3rd service position and the 4th service position.In the time that the second clamp device 14 is positioned at the 3rd service position, the 3rd fixture 19 be positioned at the 3rd lifter plate 15 directly over, in the time that the second clamp device 14 is positioned at the 4th service position, the 3rd fixture 19 be positioned at the 4th lifter plate 17 directly over.
in frame 1, be also provided with two guide rails that throughput direction is contrary, comprise the first guide rail 20 and the second guide rail 21.Article two, guide rail is positioned at same plane.Article two, guide rail all parallels in the longitudinal direction with normal temperature charge delivery band 3 and high-temperature charging conveyer belt 2, and wherein the first guide rail 20 is identical with the throughput direction of high-temperature charging conveyer belt 2, and the second guide rail 21 is identical with the throughput direction of normal temperature charge delivery band 3.On the first guide rail 20, be connected with electric capacity is detected to the mechanism that sorts sorting, on the second guide rail 21, be connected with the mechanism that discharges and recharges that electric capacity is discharged and recharged to work.Between the first guide rail 20 and the second guide rail 21, be provided with the translation mechanism of mobile electric capacity.One end of the first guide rail 20 is provided with the 5th lifter plate (not indicating in figure) moving up and down, one end of the second guide rail 21 is provided with the 6th lifter plate (not indicating in figure) moving up and down, and the 5th lifter plate and the 6th lifter plate drive it to move up and down by two cylinders respectively.
two service positions of the first above-mentioned clamp device 7, are specifically described below.In the time that the first clamp device 7 is positioned at the first service position, the first clamp device 7 be positioned at the 5th lifter plate and the 6th lifter plate directly over, and the first fixture 12 be positioned at the 5th lifter plate directly over, the second fixture 13 be positioned at the 6th lifter plate directly over; In the time that the second clamp device 7 is positioned at the second service position, the first clamp device 7 be positioned at the first lifter plate 8 and the second lifter plate 10 directly over, and the first fixture 12 be positioned at the first lifter plate 8 directly over, the second fixture 13 be positioned at the second lifter plate 10 directly over.
the course of work of the first clamp device 7, i.e. the charging of charging mechanism and discharging process are as follows:
1, the first clamp device 7 is positioned at the first service position (the first fixture 12 is now for empty, on the second fixture 13, accompany the electric capacity of charging), the 5th lifter plate and the 6th lifter plate rise (wherein the 5th lifter plate holds up the electric capacity to be charged on the first guide rail 20), the first fixture 12 is gripping electric capacity to be charged from the 5th lifter plate, the second fixture 13 is placed on the electric capacity that completes charging on the 6th lifter plate, the 5th lifter plate and the 6th lifter plate are fallen, and the electric capacity that completes charging is carried by the second guide rail 21 and discharges and recharges work by discharging and recharging mechanism;
2, the first clamp device 7 moves and half-twist to the second service position, the first lifter plate 8 and the second lifter plate 10 rise (wherein the second lifter plate 10 holds up the electric capacity that completes charging on high-temperature charging conveyer belt 2), the first fixture 12 is placed on electric capacity to be charged on the first lifter plate 8, the gripping from the second lifter plate 10 of the second fixture 13 completes the electric capacity of charging, and the first lifter plate 8 and the second lifter plate 10 are fallen.
the course of work of the second clamp device 14:
1, the second clamp device 14 is positioned at the first service position, and the 3rd lifter plate 15 rises and electric capacity charged on normal temperature charge delivery band 3 is held up, the electric capacity on the 3rd fixture 19 grippings the 3rd lifter plate 15, and the 3rd lifter plate 15 is fallen;
2, the second clamp device 14 moves to the second service position, and the 4th lifter plate 17 rises, and the 3rd fixture 19 is placed on electric capacity on the 4th lifter plate 17, and the 4th lifter plate 17 is fallen, and electric capacity carries by high-temperature charging conveyer belt 2 charging of carrying out under hot conditions.
the whole charging flow of electric capacity on this capacitor charging equipment is:
after electric capacity detects and sorts on the first guide rail 20, be transferred on normal temperature charge delivery band 3 and carry out normal temperature charging by the first clamp device 7, the second clamp device 14 is transferred to high-temperature charging conveyer belt 2 by the electric capacity that completes normal temperature charging again and carries out high-temperature charging, and the first clamp device 7 is transferred to the electric capacity that completes high-temperature charging the second guide rail 21 again and discharges and recharges after work by translation mechanism and be transferred to and on the first guide rail 20, detect after the work of sorting, enter self-emptying platform.
above-described embodiment is only explanation technical conceive of the present utility model and feature, and its object is to allow person skilled in the art can understand content of the present utility model and implement according to this, can not limit protection range of the present utility model with this.All equivalences of doing according to the utility model Spirit Essence change or modify, within all should being encompassed in protection range of the present utility model.

Claims (10)

1. a capacitor charging equipment, it is characterized in that: it comprises frame (1), be arranged on the charging mechanism in described frame (1), electric capacity is carried out to gripping, the transfer mechanism of transferring and placing, described charging mechanism comprises high-temperature charging conveyer belt (2), normal temperature charge delivery band (3), the first charging device (5) to capacitor charging being connected with described high-temperature charging conveyer belt (2), the second charging device (6) to capacitor charging being connected with described normal temperature charge delivery band (3), be positioned at the baking box (4) for heating of described high-temperature charging conveyer belt (2) top.
2. capacitor charging equipment according to claim 1, it is characterized in that: described normal temperature charge delivery band (3) is contrary with the throughput direction of high-temperature charging conveyer belt (2), the feed end that one end of described normal temperature charge delivery band (3) is described charging mechanism, the discharge end that one end of described high-temperature charging conveyer belt (2) is described charging mechanism, and the feed end of described charging mechanism and discharge end are positioned at the same end of charging mechanism.
3. capacitor charging equipment according to claim 1 and 2, it is characterized in that: described normal temperature charge delivery band (3) is positioned at the below of high-temperature charging conveyer belt (2), and the both ends of high-temperature charging conveyer belt (2) are longer than at the both ends of normal temperature charge delivery band (3).
4. capacitor charging equipment according to claim 3, it is characterized in that: described transfer mechanism comprises first clamp device (7) of an end that is positioned at charging mechanism, be positioned at described normal temperature charge delivery band (3) one ends the first lifter plate moving up and down (8), be positioned at described high-temperature charging conveyer belt (2) one ends the second lifter plate moving up and down (10), described the first clamp device (7) is positioned at the top of the first lifter plate (8) and the second lifter plate (10), and the first clamp device (7) can move and be arranged on rotationally in described frame (1) along the Width of described normal temperature charge delivery band (3).
5. capacitor charging equipment according to claim 4, is characterized in that: described the first clamp device (7) comprises the first fixture (12) and the second fixture (13) that close up and open gripping and placement electric capacity by self.
6. capacitor charging equipment according to claim 3, it is characterized in that: described transfer mechanism comprises second clamp device (14) of the other end that is positioned at charging mechanism, be positioned at described normal temperature charge delivery band (3) the other end the 3rd lifter plate (15) moving up and down, be positioned at described high-temperature charging conveyer belt (2) the other end the 4th lifter plate (17) moving up and down, described the second clamp device (14) is positioned at the top of the 3rd lifter plate (15) and the 4th lifter plate (17), and the second clamp device (14) can be arranged in described frame (1) movably along the length direction of described normal temperature charge delivery band (3).
7. capacitor charging equipment according to claim 6, is characterized in that: described the second clamp device (14) comprises the 3rd fixture (19) that closes up and open gripping and placement electric capacity by self.
8. capacitor charging equipment according to claim 4, it is characterized in that: in described frame (1), be also provided with two guide rails (20,21) that throughput direction is contrary, and two guide rail (20,21) parallels in the longitudinal direction with normal temperature charge delivery band (3) and high-temperature charging conveyer belt (2), on described guide rail (20,21), be connected with electric capacity is discharged and recharged discharge and recharge mechanism and electric capacity is detected to the mechanism that sorts sorting.
9. capacitor charging equipment according to claim 8, is characterized in that: an end of described two guide rails (20,21) is provided with lifter plate moving up and down.
10. capacitor charging equipment according to claim 4, is characterized in that: the rotating range of described the first clamp device (7) is 90 °.
CN201420033623.4U 2014-01-20 2014-01-20 Capacitor charging device Withdrawn - After Issue CN203660615U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420033623.4U CN203660615U (en) 2014-01-20 2014-01-20 Capacitor charging device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420033623.4U CN203660615U (en) 2014-01-20 2014-01-20 Capacitor charging device

Publications (1)

Publication Number Publication Date
CN203660615U true CN203660615U (en) 2014-06-18

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420033623.4U Withdrawn - After Issue CN203660615U (en) 2014-01-20 2014-01-20 Capacitor charging device

Country Status (1)

Country Link
CN (1) CN203660615U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103762641A (en) * 2014-01-20 2014-04-30 苏州六赫机械有限公司 Capacitor charging device
CN109243870A (en) * 2018-11-12 2019-01-18 武汉轻工大学 A kind of translation lane-change device of chip type capacitor

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103762641A (en) * 2014-01-20 2014-04-30 苏州六赫机械有限公司 Capacitor charging device
CN109243870A (en) * 2018-11-12 2019-01-18 武汉轻工大学 A kind of translation lane-change device of chip type capacitor
CN109243870B (en) * 2018-11-12 2020-02-07 武汉轻工大学 Translation of chip capacitor trades a device

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20140618

Effective date of abandoning: 20150909

RGAV Abandon patent right to avoid regrant