Asynchronous chip mounter for foam

文档序号:981571 发布日期:2020-11-06 浏览:20次 中文

阅读说明:本技术 泡棉用异步贴片机 (Asynchronous chip mounter for foam ) 是由 徐新宏 于 2020-08-25 设计创作,主要内容包括:本发明涉及泡棉生产装置技术领域,公开了泡棉用异步贴片机,包括机架,所述机架上设有收卷辊、动力结构和间歇传动结构,所述收卷辊与机架转动连接,所述动力结构通过间歇传动结构驱动收卷辊间歇转动;所述机架上设有压紧结构和放置泡棉的放置板,所述机架上还设有驱动放置板沿机架滑动的动力部。采用该贴片机可以非常方便的对泡棉进行存放和使用。(The invention relates to the technical field of foam production devices, and discloses an asynchronous chip mounter for foam, which comprises a rack, wherein a winding roller, a power structure and an intermittent transmission structure are arranged on the rack, the winding roller is rotationally connected with the rack, and the power structure drives the winding roller to intermittently rotate through the intermittent transmission structure; the machine frame is provided with a compaction structure and a placing plate for placing foam, and the machine frame is also provided with a power part for driving the placing plate to slide along the machine frame. The foam can be stored and used conveniently by adopting the chip mounter.)

1. Bubble cotton asynchronous chip mounter, its characterized in that: the winding machine comprises a rack, wherein a winding roller, a power structure and an intermittent transmission structure are arranged on the rack, the winding roller is rotationally connected with the rack, and the power structure drives the winding roller to intermittently rotate through the intermittent transmission structure; the frame is provided with a placing plate for placing foam, and the frame is also provided with a power part for driving the placing plate to slide along the frame.

2. The asynchronous chip mounter for foam according to claim 1, wherein: the power part comprises a connecting frame, a first eccentric gear and a second eccentric gear, the second eccentric gear is rotationally connected with the connecting frame, the first eccentric gear is meshed with the second eccentric gear, and the first eccentric gear is driven to rotate by a power structure; the frame is provided with a sliding sleeve, the connecting frame is connected with a connecting shaft, and the connecting shaft penetrates through the sliding sleeve and is in sliding connection with the sliding sleeve.

3. The asynchronous chip mounter for foam according to claim 2, wherein: the intermittent transmission structure comprises an incomplete gear, a first transmission gear and a first rotating shaft, wherein the incomplete gear is meshed with the first transmission gear, the first transmission gear is coaxially connected with the first rotating shaft, the first rotating shaft is provided with a first belt pulley, the wind-up roll is provided with a second belt pulley, and a conveying belt is arranged between the first belt pulley and the second belt pulley; the incomplete gear is driven to rotate by the power structure.

4. The asynchronous chip mounter for foam according to claim 3, wherein: the first eccentric gear is coaxially provided with a second rotating shaft, the second rotating shaft is coaxially provided with a second transmission gear, and the second transmission gear is meshed with the incomplete gear.

5. The asynchronous chip mounter for foam according to claim 4, wherein: still include the storage silo, the storage silo lower part is equipped with the export, place the board and be located the exit and rotate with the storage silo and be connected, the frame is equipped with the control and places board intermittent type pivoted control part.

6. The asynchronous chip mounter for foam according to claim 5, wherein: the control part comprises a fixed sleeve and a fixed shaft, and the fixed shaft is fixedly connected with the rack; the fixed shaft is provided with a plurality of spiral sections which are arranged intermittently, the fixed shaft penetrates through the fixed sleeve and is in sliding fit with the fixed sleeve, and the fixed sleeve is fixedly connected with the placing plate.

7. The asynchronous chip mounter for foam according to claim 6, wherein: the number of the spiral sections is four.

8. The asynchronous chip mounter for foam according to claim 7, wherein: the plurality of spiral sections are uniformly arranged along the connecting shaft.

9. The asynchronous chip mounter for foam according to claim 8, wherein: and the rack is also provided with a pressing structure.

10. The asynchronous chip mounter for foam according to claim 9, wherein: the pressing structure comprises a pressing roller and a pressing support, one end of the pressing support is fixedly connected with the rack, and the pressing roller is rotatably connected with the other end of the pressing support.

Technical Field

The invention relates to the technical field of foam production devices, in particular to an asynchronous chip mounter for foam.

Background

The foam is a short for the material foamed by plastic particles. The foam is divided into PU foam, antistatic foam, conductive foam, EPE, antistatic EPE, CR, EVA, bridging PE, SBR, EPDM, etc. The foam has the characteristics of elasticity, light weight, quick pressure-sensitive fixation, convenient use, free bending, ultrathin volume, reliable performance and the like.

At present, foam is widely applied to various electronic communication processes, and the specifications of the foam are various according to different applied electronic equipment. The present foam is all scattered after being produced, and because the volume of bubble cotton is generally smaller, the bubble cotton of scattering will have the condition that the space can't be by make full use of and be not convenient for deposit, also be not convenient for the workman to take when follow-up use moreover.

Disclosure of Invention

The invention aims to provide an asynchronous chip mounter for foam, which can be used for conveniently storing and using the foam.

In order to achieve the purpose, the invention adopts the following technical scheme: the asynchronous chip mounter for the foam comprises a rack, wherein a winding roller, a power structure and an intermittent transmission structure are arranged on the rack, the winding roller is rotationally connected with the rack, and the power structure drives the winding roller to intermittently rotate through the intermittent transmission structure; the frame is provided with a placing plate for placing foam, and the frame is also provided with a power part for driving the placing plate to slide along the frame.

The principle and the beneficial effect of this scheme of adoption lie in: when using, will treat that the bubble cotton of arrangement is placed on placing the board, then start power portion, power portion drive is placed the board and is slided along the frame and will place the bubble cotton on the board and place on the receipts roll film. The power structure can not drive the winding roller to rotate in the placing process. And after placing the board and transversely sliding once, power structure drives the wind-up roll through intermittent drive structure and rotates, then places the board and slides once more and place the bubble cotton on the rolling membrane. This facilitates the user's use and access.

Further, the power part comprises a connecting frame, a first eccentric gear and a second eccentric gear, the second eccentric gear is rotationally connected with the connecting frame, the first eccentric gear is meshed with the second eccentric gear, and the first eccentric gear is driven to rotate by the power structure; the frame is provided with a sliding sleeve, the connecting frame is connected with a connecting shaft, and the connecting shaft penetrates through the sliding sleeve and is in sliding connection with the sliding sleeve.

Further, the intermittent transmission structure comprises an incomplete gear, a first transmission gear and a first rotating shaft, the incomplete gear is meshed with the first transmission gear, the first transmission gear is coaxially connected with the first rotating shaft, the first rotating shaft is provided with a first belt pulley, the winding roller is provided with a second belt pulley, and a conveying belt is arranged between the first belt pulley and the second belt pulley; the incomplete gear is driven to rotate by the power structure.

Further, a second rotating shaft is coaxially arranged on the first eccentric gear, a second transmission gear is coaxially arranged on the second rotating shaft, and the second transmission gear is meshed with the incomplete gear.

Further, still include the storage silo, the storage silo lower part is equipped with the export, place the board and be located the exit and rotate with the storage silo and be connected, the frame is equipped with the control and places board intermittent type pivoted control part.

Further, the control part comprises a fixed sleeve and a fixed shaft, and the fixed shaft is fixedly connected with the rack; the fixed shaft is provided with a plurality of spiral sections which are arranged intermittently, the fixed shaft penetrates through the fixed sleeve and is in sliding fit with the fixed sleeve, and the fixed sleeve is fixedly connected with the placing plate.

Further, the number of the spiral sections is four.

Further, a plurality of spiral sections are evenly arranged along the connecting shaft.

Furthermore, a pressing structure is further arranged on the machine frame.

Furthermore, the compressing structure comprises a compressing roller and a compressing bracket, one end of the compressing bracket is fixedly connected with the rack, and the compressing roller is rotatably connected with the other end of the compressing bracket.

Drawings

Fig. 1 is a front view of a foam asynchronous chip mounter according to a first embodiment of the present invention; (ii) a

FIG. 2 is a schematic structural view of an intermittent drive structure;

FIG. 3 is a schematic structural view of the power section;

FIG. 4 is a perspective view of the stationary shaft;

fig. 5 is a schematic structural view of the fixing sleeve;

FIG. 6 is a schematic structural view of the storage bin;

fig. 7 is a front view of the second embodiment.

Detailed Description

The following is further detailed by way of specific embodiments:

reference numerals in the drawings of the specification include: the device comprises a rack 1, a winding roller 2, a power part 3, a motor 4, a first rotating shaft 5, a first transmission gear 6, an incomplete gear 7, a first eccentric gear 8, a spring 9, a second eccentric gear 10, a connecting frame 11, a connecting shaft 12, a fixing sleeve 13, a bulge 14, a spiral groove 15, a connecting groove 16, a storage bin 17, an outlet 18, a placing plate 19, a pressing roller 20, a sliding sleeve 21, a rotating shaft 22, a second transmission gear 23, a second rotating shaft 24 and a fixing shaft 25.

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