CN216710759U - Capacitor production is with putting equipment flitch material loading conveyor to be constructed - Google Patents

Capacitor production is with putting equipment flitch material loading conveyor to be constructed Download PDF

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Publication number
CN216710759U
CN216710759U CN202122410857.9U CN202122410857U CN216710759U CN 216710759 U CN216710759 U CN 216710759U CN 202122410857 U CN202122410857 U CN 202122410857U CN 216710759 U CN216710759 U CN 216710759U
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China
Prior art keywords
flitch
conveying mechanism
plate
conveyer belt
feeding
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CN202122410857.9U
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Chinese (zh)
Inventor
安雨峰
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Wuxi Huayu Electronic Co ltd
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Wuxi Huayu Electronic Co ltd
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Priority to CN202122410857.9U priority Critical patent/CN216710759U/en
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Abstract

The utility model relates to a flitch feeding and conveying mechanism of stacking equipment for capacitor production. The utility model has the advantages that: structural design is reasonable, and the flitch is taken out and horizontal transport from flitch storage mechanism by flitch conveying mechanism, makes things convenient for peripheral hardware electric capacity to put things in good order the mechanism with electric capacity one by one on the flitch surface on flitch conveying mechanism. The automatic feeding and stable conveying of the material plates are realized, and the production efficiency can be effectively improved.

Description

Capacitor production is with putting things in good order equipment flitch material loading conveyor to be constructed
Technical Field
The utility model relates to a capacitor production stacking equipment material plate feeding and conveying mechanism, and belongs to the technical field of capacitor production.
Background
When the capacitor is produced, the capacitor needs to be orderly stacked on the flitch, and then the subsequent shaping process treatment is carried out.
In the prior art, capacitors are manually stacked on a material plate, so that the efficiency is low, the distance between every two rows cannot be accurately controlled, and the subsequent shaping quality is influenced; the capacitor stacking equipment in the prior art has the defects of low automation, low efficiency, dependence on a large amount of manual work and the like. Design a production of electric capacity and put things in good order equipment, flitch material loading conveyor constructs to be important component, how to realize the material loading and the transport of flitch, and the putting in good order of cooperation electric capacity is closely relevant with production efficiency.
SUMMERY OF THE UTILITY MODEL
The utility model provides a material plate feeding conveying mechanism of stacking equipment for capacitor production, which aims to overcome the defects in the prior art, realize automatic feeding and conveying of material plates and facilitate stacking of capacitors on the material plates by a capacitor stacking mechanism.
The technical solution of the utility model is as follows: capacitor production is with putting things in good order equipment flitch material loading conveyor constructs, and its structure includes flitch conveyor constructs and the flitch storage mechanism of adjacent installation in the frame.
Preferably, the flitch storage mechanism comprises a plurality of vertical bottom support rods and vertical side limiting rods arranged on two sides of the whole bottom support rods and far away from the outer side of the flitch conveying mechanism, the flitch is stacked between the side limiting rods and above the bottom support rods, the side limiting rods are mounted on the supporting blocks, slotted holes are formed in the supporting blocks, and the supporting blocks are connected and fixed with screw holes of the rack through screws penetrating through the slotted holes and with tops pressed on the top surfaces of the supporting blocks.
Preferably, a side mounting frame is arranged on the outer side of the side limiting rod on one side, a photoelectric sensor is mounted on the side mounting frame, and the photoelectric sensor is aligned above the top end of one bottom supporting rod.
Preferably, flitch conveying mechanism include a pair of parallel arrangement's conveyer belt, conveyer belt one end is close to the flitch and stores the mechanism, the conveyer belt is close to the flitch and stores the one end both sides of mechanism and establish the direction swash plate, the conveyer belt is close to flitch and stores mechanism part and flitch and store the mechanism top and be equipped with a pair of horizontal slide bar that both ends are fixed in the frame, the sliding plate underrun slip cap and horizontal slide bar sliding connection, the sliding plate still connects the lifter plate top surface through the guide sleeve pole, lifter plate top surface center connection installs the output of the lift jar on the sliding plate, be equipped with vacuum chuck on four angles of lifter plate bottom surface.
The utility model has the advantages that: structural design is reasonable, and the flitch is taken out and horizontal transport from flitch storage mechanism by flitch conveying mechanism, makes things convenient for peripheral hardware electric capacity to put things in good order the mechanism with electric capacity one by one on the flitch surface on flitch conveying mechanism. The automatic feeding and stable conveying of the material plates are realized, and the production efficiency can be effectively improved.
Drawings
Fig. 1 is a schematic top view of a material plate feeding conveying mechanism of a stacking device for producing capacitors.
Fig. 2 is a front view of the material conveying mechanism in fig. 1.
In the figure, 1 is a frame,
2 is a flitch storage mechanism, 201 is a side limit rod, 202 is a support block, 203 is a slotted hole, 204 is a screw, 205 is a bottom support rod, 206 is a side mounting rack, 207 is a photoelectric sensor,
3 is a guide sloping plate,
4 is a flitch conveying mechanism, 401 is a conveyor belt, 402 is a vacuum chuck, 403 is a lift cylinder, 404 is a horizontal slide bar, 405 is a slide sleeve, 406 is a slide plate, 407 is a guide sleeve bar, 408 is a lift plate.
Detailed Description
The present invention will be described in further detail with reference to examples and specific embodiments.
As shown in fig. 1, the stacking device flitch feeding and conveying mechanism for capacitor production structurally comprises a flitch conveying mechanism 4 and a flitch storage mechanism 2 which are adjacently installed on a rack 1.
The flitch is taken out and horizontal transport from flitch storage mechanism 2 by flitch conveying mechanism 4, makes things convenient for peripheral hardware electric capacity to put things in good order the mechanism with the electric capacity one by one on the flitch surface on flitch conveying mechanism 4.
As shown in fig. 1, the flitch storage mechanism 2 comprises a plurality of vertical bottom support rods 205 and vertical side limiting rods 201 arranged at both sides of the bottom support rods 205 as a whole and at the outer side far from the flitch conveying mechanism 4, flitches are stacked between the side limiting rods 201, above the bottom support rod 205, the side limit rod 201 is installed on the supporting block 202, slotted hole 203 is opened on the supporting block 202, the supporting block 202 is connected with the screw hole on the frame 1 through passing through the slotted hole 203 and the screw 204 whose top is pressed on the top surface of the supporting block 202 (the position of the supporting block 202 can be adjusted and the distance between the side limit rods 201 can be adjusted), a side mounting rack 206 is arranged outside the side limit rod 201, a photoelectric sensor 207 is installed on the side mounting rack 206, the photoelectric sensor 207 is aligned to the top of one of the bottom support rods 205 (after the flitch is used up, the operator can be informed timely by the photoelectric sensor 207 in cooperation with other prior art mechanisms to add the flitch).
As shown in fig. 1 and 2, the flitch conveying mechanism 4 includes a pair of conveyor belts 401 arranged in parallel, one end of the conveyor belt 401 is close to the flitch storage mechanism 2, two sides of one end of the conveyor belt 401 close to the flitch storage mechanism 2 are provided with guide inclined plates 3 (facilitating the flitch to be lowered and guided), a pair of horizontal slide bars 404 with two ends fixed on the frame 1 are arranged above the part of the conveyor belt 401 close to the flitch storage mechanism 2 and the part of the flitch storage mechanism 2, the bottom surface of the sliding plate 406 is slidably connected with the horizontal slide bars 404 through sliding sleeves 405 (the sliding plate 406 is driven to slide along the horizontal slide bars 404 through any prior art power mechanism, which is not described in detail), the sliding plate 406 is further connected with the top surface of the lifting plate 408 through guide sleeve rods 407, the center of the top surface of the lifting plate 408 is connected with output ends of four corners of a lifting cylinder 403 installed on the sliding plate 406, and vacuum chucks 402 are arranged on the bottom surface of the lifting plate 408.
The flitch conveying mechanism 4 moves to the position above the flitch storage mechanism 2, the lifting cylinder 403 drives the lifting plate 408 to descend, the vacuum chuck 402 adsorbs the topmost flitch, the lifting cylinder 403 ascends to the position, the sliding plate 406 slides to the other end along the horizontal sliding rod 404, the lifting cylinder 403 drives the lifting plate 408 to descend, and the vacuum chuck 402 releases the flitch to the conveyor belt 401.
All the above components are prior art, and those skilled in the art can use any model and existing design that can implement their corresponding functions.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, various changes and modifications can be made without departing from the inventive concept of the present invention, and these changes and modifications are all within the scope of the present invention.

Claims (3)

1. The stacking equipment flitch feeding and conveying mechanism for capacitor production is characterized by comprising a flitch conveying mechanism (4) and a flitch storage mechanism (2) which are adjacently installed on a rack (1);
flitch conveying mechanism (4) including a pair of parallel arrangement's conveyer belt (401), conveyer belt (401) one end is close to the flitch and stores mechanism (2), the direction swash plate (3) are established to conveyer belt (401) one end both sides that are close to the flitch and store mechanism (2), conveyer belt (401) are close to flitch and store mechanism (2) part and flitch and are equipped with a pair of horizontal slide bar (404) that both ends are fixed on frame (1), sliding plate (406) bottom surface passes through sliding sleeve (405) and horizontal slide bar (404) sliding connection, sliding plate (406) still connect lifter plate (408) top surface through direction loop bar (407), lifter plate (408) top surface center connection installs the output of lift cylinder (403) on sliding plate (406), be equipped with vacuum chuck (402) on lifter plate (408) bottom surface four angles.
2. The flitch feeding and conveying mechanism of the stacking equipment for capacitor production as claimed in claim 1, characterized in that the flitch storage mechanism (2) comprises a plurality of vertical bottom support rods (205) and vertical side limit rods (201) arranged on both sides of the bottom support rods (205) and far away from the flitch conveying mechanism (4), the flitch is stacked between the side limit rods (201) and above the bottom support rods (205), the side limit rods (201) are mounted on the support block (202), the support block (202) is provided with slots (203), the support block (202) is connected and fixed with the screw hole on the frame (1) by a screw (204) which passes through the slots (203) and the top of which is pressed on the top surface of the support block (202).
3. The material plate feeding and conveying mechanism of the stacking equipment for capacitance production as claimed in claim 2, wherein a side mounting frame (206) is arranged outside the side limiting rod (201) on one side, a photoelectric sensor (207) is mounted on the side mounting frame (206), and the photoelectric sensor (207) is aligned above the top end of one bottom supporting rod (205).
CN202122410857.9U 2021-09-30 2021-09-30 Capacitor production is with putting equipment flitch material loading conveyor to be constructed Active CN216710759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122410857.9U CN216710759U (en) 2021-09-30 2021-09-30 Capacitor production is with putting equipment flitch material loading conveyor to be constructed

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122410857.9U CN216710759U (en) 2021-09-30 2021-09-30 Capacitor production is with putting equipment flitch material loading conveyor to be constructed

Publications (1)

Publication Number Publication Date
CN216710759U true CN216710759U (en) 2022-06-10

Family

ID=81872480

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122410857.9U Active CN216710759U (en) 2021-09-30 2021-09-30 Capacitor production is with putting equipment flitch material loading conveyor to be constructed

Country Status (1)

Country Link
CN (1) CN216710759U (en)

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