CN204847473U - A sheet metal conveyer for conveying bridging component of sheet metal and including its - Google Patents
A sheet metal conveyer for conveying bridging component of sheet metal and including its Download PDFInfo
- Publication number
- CN204847473U CN204847473U CN201520564241.9U CN201520564241U CN204847473U CN 204847473 U CN204847473 U CN 204847473U CN 201520564241 U CN201520564241 U CN 201520564241U CN 204847473 U CN204847473 U CN 204847473U
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- Prior art keywords
- thin plate
- bridge member
- transmission shaft
- fixed parts
- plate according
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Abstract
The utility model relates to a sheet metal conveyer for conveying bridging component of sheet metal and including its. The bridging component includes: the support component, it is including being used for the support the sheet metal from its upper surface that passes through and with the lower surface that the upper surface is relative, the support component is including being located the first end of upper surface one side and with the second end that first end is relative, a fixed part, it is connected to first end and by the structure for can with the fixed extremely first transmission shaft of bridging component. The sheet metal conveyer include: a plurality of transmission shafts, the transmission shaft is including flower gyro wheel structure to and above -mentioned bridging component, the bridging component sets up adjacent at least two between the transmission shaft, just the upper surface of bridging component with the top parallel and level of transmission shaft.
Description
Technical field
The utility model relates to quartz conductor preparation field.More specifically, the utility model relates to a kind of bridge member for transmitting thin plate and comprises its thin plate conveyer.
Background technology
Between wet process operational period prepared by quartz conductor, thin plate (thin plate as herein described is often referred to the thin plate of thickness of slab below 0.15 millimeter, espespecially the ultra thin plate of thickness of slab below 0.06 millimeter) along with the not stall of transmission shaft dynamic and move forward.As shown in Figure 1, treat liquid is sprayed to thin plate 40 to clean it or to etch operation from the below of thin plate 40 and upper vertical by the shower nozzle 30a between transmission shaft 10,20 and shower nozzle 30b, 30c of being positioned at transmission shaft 10,20 opposite side respectively.But, because thin plate (or ultra thin plate) is relatively thin, what the injection of treat liquid can make thin plate bears larger pressure with the position of liquid comes into contact, the partial treatment liquids remained in after injection on thin plate also can make thin plate occur the situation of unbalance stress, this all can cause thin plate to produce less desirable warpage (such as, thin sheet surface is uneven or thin plate edge is sagging (40a see Fig. 1)), there is the thin plate of warpage and be easily stuck in again shower nozzle place and cannot continue to advance (" clamp ") and the paralysis that causes whole operating line.In addition, if the spacing between transmission shaft is comparatively large, particularly between two cell bodies junction transmission shaft between spacing comparatively large, the generation of clamp phenomenon will be aggravated.
In order to avoid above-mentioned situation, the settling mode that prior art adopts usually arranges a relatively thick band plate in the front inlet side of thin plate direction of transfer, and this band plate is connected with thin plate by adhesive tape.Because band plate is thicker, be not easily subject to processing the impact of liquid and produce deformation, thus thin plate can be driven successfully to advance between transmission shaft, which solving clamp problem.But liquid remaining in adhesive tape easily oozes out and corrodes the copper wire of thin plate, this has a strong impact on the quality of thin plate.In addition, the operation of attachment and stripping band plate also may make thin plate break, and affects production efficiency.
Therefore, this area needs a kind of device that can either prevent thin plate generation clamp from due to attachment band plate, thin plate quality can not be produced again to additional risk.
Utility model content
In order to solve the problem, the utility model provides a kind of bridge member for transmitting thin plate, it comprises: support component, it comprises for supporting the upper surface and the lower surface relative with described upper surface that described thin plate passes through from it, and described support component comprises the first end and second end relative with described first end that are positioned at described upper surface side; First fixed parts, it is connected to described first end and is constructed to described bridge member to be fixed to the first transmission shaft.
The utility model provides a kind of thin plate conveyer further, it comprises: multiple transmission shaft, described transmission shaft comprises colored roller structure, and bridge member as above, described bridge member is arranged between at least two adjacent described transmission shafts, and the upper surface of described bridge member is concordant with the top of described transmission shaft.
By this, bridge member of the present utility model and the conveyer that comprises it can prevent thin plate generation clamp from can not produce harmful effect to the quality of thin plate again.The manufacture of bridge member is simple, with low cost, Be very effective, is applicable to large-scale application in the wet process operation of thin plate.
Accompanying drawing explanation
Fig. 1 shows the schematic diagram of the mechanism transmitting thin plate.
Fig. 2 shows the schematic diagram of the bridge member for transmitting thin plate according to the utility model embodiment.
Fig. 3 shows another schematic diagram of the bridge member for transmitting thin plate according to another embodiment of the utility model.
Fig. 4 shows the scheme of installation of the bridge member for transmitting thin plate according to the another embodiment of the utility model.
Detailed description of the invention
As follows, the bridge member for thin plate transmission of the present utility model will be described in more detail.Bridge member of the present utility model is set at least two adjacent transmission shafts of bridge joint to enable the thin plate on it smooth in these transmission shafts.
As shown in Figure 2, bridge member 100 comprises support component 101.Wherein, support component 101 comprises for supporting the upper surface 1011 and the lower surface 1012 relative with described upper surface 1011 that thin plate passes through from it.Support component 101 also comprises the first end 1013 and second end 1014 relative with described first end 1013 that are positioned at described upper surface 1011 side.
Bridge member 100 comprises the first fixed parts 102 further.First fixed parts 102 is connected to the first end 1013 of support component 101 and is constructed to described bridge member 100 to be fixed to the first transmission shaft.It will be understood by those skilled in the art that the connection can adopted and realize in any way between the first fixed parts 102 and support component 101, as long as ensure that thin plate can successfully be advanced on bridge member.Such as, the top of the first fixed parts 102 and the first end 1013 of support component 101 one-body molded thus realize level and smooth seamless link.The bottom of the first fixed parts 102 is constructed to have opening 1021 to match with the outline of the first transmission shaft thus to make the first fixed parts 102 block and to the first transmission shaft.In a preferred embodiment, in order to ensure that thin plate steadily transmits on bridging component, described opening 1021 is constructed to its internal diameter and is a bit larger tham the arc opening of the external diameter of the first mated transmission shaft or semicircle opening.Further, the extension 1022 also comprising separately downwards foremost or slightly extend internally of the both sides of this arc opening or semicircle opening is to ensure that bridge member 100 can not come off easily due to the rotation of transmission shaft.
In one embodiment, the upper surface 1011 of support component 101 and lower surface 1012 are parallel to each other at the second end 1014 place.In a preferred embodiment, this upper surface 1011 is constructed to tilt an angle towards lower surface 1012 in the part of described second end 1014, and such as, but not limited to 10-30 degree (as shown in Figure 2), this is conducive to thin plate and transmits reposefully and leave transmission shaft.
As shown in Figure 3, in another embodiment, bridge member 100 comprises the second fixed parts 103.Second fixed parts 103 is connected to the second end 1014 of support component 101 and is constructed to described bridge member 100 to be fixed to second driving shaft.Preferably, the second fixed parts 103 is constructed to identical with described first fixed parts 102.Such as, the bottom of the second fixed parts 103 is constructed to have opening to match with the outline of second driving shaft thus to make the second fixed parts 103 block and to this transmission shaft.In a preferred embodiment, in order to ensure that thin plate steadily transmits on bridging component, described opening is constructed to its internal diameter and is a bit larger tham the arc opening of the external diameter of mated second driving shaft or semicircle opening.Further, the extension also comprising separately downwards foremost or slightly extend internally of the both sides of this arc opening or semicircle opening is to ensure that bridge member can not come off easily due to the rotation of this transmission shaft.
Bridge member 100 can be made up of the material of any appropriate, such as, but not limited to the contour molecule plastic material of PP, PVC, Teflon or other suitable materials, wherein, is preferably the Teflon using and have the corrosion of antiacid alkali resistant.
The utility model provides a kind of thin plate conveyer further, and it comprises multiple transmission shaft and bridge member mentioned above 100, and wherein, described transmission shaft comprises colored roller structure.Described bridge member 100 is arranged between two adjacent described transmission shafts (as shown in Figure 4), arranges bridge member 100 between two the adjacent drive axles being usually greater than 1 centimetre in spacing.And the upper surface of described bridge member 100 is concordant with the top of described transmission shaft.More specifically, described in be provided with two of bridge member 100 adjacent transmission shaft 200 comprise colored roller structure, its have respectively center mast 201 and around and protrude from center mast 201 and spaced multiple shoulder 202.First fixed parts of bridge member 100 is arranged on the center mast between two adjacent shoulders 202.Preferably, bridge member 100 is constructed and is arranged as: while making its first fixed parts and/or the second fixed parts block center mast, the upper surface of its support component is concordant with the top of shoulder, thus when preventing thin plate from advancing between transmission shaft, generation plate pin is torn or clamp phenomenon.Bridge member can be selected one or morely to be disposed side by side on transmission shaft, between bridge member preferred distance be thin plate at axial 1/4 width of transmission, to play better supporting role.In one embodiment, the utility model thin plate conveyer comprises cell body, motor and the shower nozzle for carrying out wet process operation further.Wherein, cell body inner both sides inwall horizontal parallel multiple transmission shaft is provided with.The two ends of each transmission shaft are all provided with sprocket wheel, are provided with chain between adjacent sprocket wheel, and motor is connected with transmission shaft to drive it to rotate.Described shower nozzle is arranged at top and/or the below of transmission shaft, cleans the thin plate upper surface via transmission shaft horizontal transmission or etches operation.
Although illustrated and described the different embodiments of this announcement, this announcement has been not limited to these embodiments.The technical characteristic only occurred in some claim or embodiment does not also mean that and can not combine with other features in other claims or embodiment to realize useful new technical scheme.When not deviating from the spirit and scope of this announcement described by claims, many amendments, change, distortion, substitute and equivalent be obvious to those skilled in the art.
Claims (10)
1., for transmitting a bridge member for thin plate, it is characterized in that comprising:
Support component, it comprises for supporting the upper surface and the lower surface relative with described upper surface that described thin plate passes through from it, and described support component comprises the first end and second end relative with described first end that are positioned at described upper surface side;
First fixed parts, it is connected to described first end and is constructed to described bridge member to be fixed to the first transmission shaft.
2. the bridge member for transmitting thin plate according to claim 1, is characterized in that, described first fixed parts is constructed to have opening to match with the outline of described first transmission shaft.
3. the bridge member for transmitting thin plate according to claim 2, is characterized in that, described opening is arc opening or semicircle opening.
4. the bridge member for transmitting thin plate according to claim 3, is characterized in that, the extension that the front end of the both sides of described arc opening or described semicircle opening is provided with separately downwards or slightly extends internally.
5. the bridge member for transmitting thin plate according to claim 1, is characterized in that, described upper surface is constructed to towards portions incline one angle of described lower surface at described second end in the part of described second end.
6. the bridge member for transmitting thin plate according to claim 5, is characterized in that, the angle ranging from 10-30 degree.
7. the bridge member for transmitting thin plate according to claim 1, is characterized in that, described first transmission shaft comprises colored roller structure, described colored roller structure have center mast and around and protrude from described center mast and spaced multiple shoulder; Wherein said first fixed parts is fixed to the described center mast between two described shoulders.
8. the bridge member for transmitting thin plate according to any one of claim 1 to 4, is characterized in that, comprise further:
Second fixed parts, it is positioned at described second end and is constructed to described bridge member to be fixed to second driving shaft.
9. the bridge member for transmitting thin plate according to claim 8, it is characterized in that, described second fixed parts is constructed to identical with described first fixed parts, described second driving shaft comprises colored roller structure, described colored roller structure have center mast and around and protrude from described center mast and spaced multiple shoulder; Wherein said second fixed parts is fixed to the described center mast between two described shoulders.
10. a thin plate conveyer, is characterized in that, comprising:
Multiple transmission shaft, described transmission shaft comprises colored roller structure, and
As claimed in any one of claims 1-9 wherein for transmitting the bridge member of thin plate, described bridge member is arranged between at least two adjacent described transmission shafts, and the upper surface of described bridge member is concordant with the top of described transmission shaft.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520564241.9U CN204847473U (en) | 2015-07-30 | 2015-07-30 | A sheet metal conveyer for conveying bridging component of sheet metal and including its |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520564241.9U CN204847473U (en) | 2015-07-30 | 2015-07-30 | A sheet metal conveyer for conveying bridging component of sheet metal and including its |
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CN204847473U true CN204847473U (en) | 2015-12-09 |
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CN201520564241.9U Withdrawn - After Issue CN204847473U (en) | 2015-07-30 | 2015-07-30 | A sheet metal conveyer for conveying bridging component of sheet metal and including its |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105151848A (en) * | 2015-07-30 | 2015-12-16 | 日月光半导体(上海)有限公司 | Bridging component for conveying sheets and sheet conveying device with bridging components |
-
2015
- 2015-07-30 CN CN201520564241.9U patent/CN204847473U/en not_active Withdrawn - After Issue
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105151848A (en) * | 2015-07-30 | 2015-12-16 | 日月光半导体(上海)有限公司 | Bridging component for conveying sheets and sheet conveying device with bridging components |
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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: 20151209 Effective date of abandoning: 20170929 |
|
AV01 | Patent right actively abandoned |