CN2487552Y - Iron support structure for drying power transmission sequence of colour printing tin - Google Patents

Iron support structure for drying power transmission sequence of colour printing tin Download PDF

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Publication number
CN2487552Y
CN2487552Y CN 01244473 CN01244473U CN2487552Y CN 2487552 Y CN2487552 Y CN 2487552Y CN 01244473 CN01244473 CN 01244473 CN 01244473 U CN01244473 U CN 01244473U CN 2487552 Y CN2487552 Y CN 2487552Y
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China
Prior art keywords
plane
rolling
pulley
pattern iron
iron supporter
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Expired - Fee Related
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CN 01244473
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Chinese (zh)
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李炳兴
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Individual
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Individual
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Priority to CN 01244473 priority Critical patent/CN2487552Y/en
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Abstract

The utility model relates to an iron support structure for drying power transmission sequence of colour printing tin, which comprises a supporting frame body made up of members through fixed connection, and is characterized in that: the supporting side of the supporting frame body is provided with at least 12 plastic pulleys arranged in one plane, each pulley is rotationally connected with the frame body, and the surfaces of all the pulleys are at the same plane higher than the surface of the bracket, and the plane forms a supporting plane. The utility model changes the conditions that the existed iron support structure contacts directly with the tin, the tin is supported directly and obliquely by a plurality of plastic pulleys, so that the existed iron support structure scalds the tin is avoided, and the abrasion due to vibration and rubbing is overcome, thereby the product quality during the drying and transmission process of the colour printing tin is guaranteed.

Description

Pattern iron supporter structure on the color printing tinplate oven dry conveyer line
The utility model relates to the conveyer on a kind of color printing tinplate stoving process flowing water conveyer line, is specifically related to a kind of anti-scratch, the anti-scald Pattern iron supporter structure of Pattern iron supporter as conveyer.
The color printing black sheet iron is through after the typography, must be through baking room, and the color printing coating on black sheet iron surface and printing ink are carried out heating, drying handle, thereby make coating and ink solidification on the tinplate surface.In the prior art, the color printing tinplate adopts the chain drive mode usually by in the transport process of baking room, and its tinplate conveyer is the Pattern iron supporter structure.In the transport process, many Pattern iron supporters inclination support tinplates that front and back are separated by and arrange, and with the parallel mobile baking room that passes through successively of driving-chain.Because the vibration of hot blast effect and transport process, often make between the tinplate of the Pattern iron supporter of intensification and support and produce collision, impel between the two and rub, this phenomenon very easily causes the scratch of tinplate tin layer and scalds, thereby has a strong impact on the outward appearance and the quality of product.This is in the present tin graphed sheet system jar industry, and the insoluble common fault of color printing tinplate drying assembly line also is that industry drying assembly line often influences product quality, and a technical barrier anxious to be solved.
The utility model purpose provide a kind ofly in the drying assembly line transport process, can prevent abrading, the Pattern iron supporter structure of anti-scald.
For achieving the above object, the technical solution adopted in the utility model is: the Pattern iron supporter structure on a kind of color printing tinplate oven dry conveyer line, comprise by rod member by the fixedly connected supporting frame that constitutes, the support side of supporting frame is provided with the rolling element structure of plane distribution, and the rolling surface of all rolling element structures constitutes supporting plane.
In the technique scheme, described " supporting frame " is generally the plane frame structure that rod member constitutes, and can certainly be space frame structure.Described " support side " is meant the one side of tinplate.Described " plane distribution " is meant at least 3 points in the plane, and not point-blank.
In the technique scheme, the rolling element structure of described plane distribution comprises following two kinds:
1, at least by 3 pulleys assembly pulley that parallel planes arranges of going forward side by side, each pulley all is rotationally connected with support body, the pivot center of pulley is parallel with supporting plane, and the surface of all pulleys all is in together in the plane that is higher than the support body surface, and this plane constitutes supporting plane.
(1), about pulley quantity problem.The pulley quantitative requirement is to determine with reference to the different size that is coated with the seal tinplate, at least 3 ability constitute the plane in theory, generally be no less than 12 in the practice, at least 12 strong points just, otherwise do not reach the effect of supporting tinplate, do not have tinplate and the buffer action that Pattern iron supporter directly contacts, can't avoid scratch and scald.Comprehensive this situation is preferably: assembly pulley is made up of 12 pulleys at least, and pulley is arranged along the rod member that constitutes support body.The best is: assembly pulley is made up of 14~20 pulleys, and pulley is arranged along the rod member that constitutes support body.If quantity is more again to be seen harmlessly from the angle that supports, but consider factors such as the operability of installation and cost increase, neither select preferably.
(2), about the Layout Problem of pulley.The layout of pulley is according to the easiest frequent position that contacts of tinplate and Pattern iron supporter, evenly arrange, but this even layout will be determined according to the residing position of Pattern iron supporter upper lever, because Pattern iron supporter is a kind of plane frame structure, re-entrant portion on the plane can't be arranged pulley, if must arrange so also to increase corresponding connector, do to make structure become complicated like this, be actually and there is no need.In the practice, can support to hold evenly rationally and be located on the rod member and get final product.
(3), about the problem of materials of pulley.Described pulley is made by high temperature resistant low Heat Conduction Material, wherein can be high-temperature resistance plastice preferably.
2, the rolling element structure of described plane distribution is one group of axis of rolling that is arranged in parallel, and the two ends and the support body of the axis of rolling are rotationally connected, and the surface of all axis of rolling constitutes supporting plane.
The surperficial upper edge axis direction of described each axis of rolling is separated by and is had groove, makes axis of rolling surface segmentation become each segment structure to form.The axis of rolling is made by high-temperature resistance plastice.
The utility model operation principle is: based on original Pattern iron supporter, on supporting plane by the mode of a plurality of rolling elements is set, original tinplate directly contacted with the Pattern iron supporter supporting surface be improved to tinplate and directly contact with a plurality of rolling elements, Pattern iron supporter has become the supporting structure of a plurality of rolling elements.This variation is improved to the face contact relation of tinplate face in the prior art and Pattern iron supporter face the contact relation of face and multiple spot in fact, and multiple spot is connected with the face rolling, greatly reduce the frictional force between tinplate and the Pattern iron supporter like this, further improved the contact condition of tinplate and Pattern iron supporter.
Adopt high temperature resistant low Heat Conduction Material to manufacture rolling element, as plastic pulley, relative Pattern iron supporter, plastic pulley heats up slowly because of poor thermal conductivity when heating, just may avoid like this scalding when contacting with tinplate.
Because the technique scheme utilization, the utility model compared with prior art has following advantage:
1, the utility model is by the improvement to the Pattern iron supporter original structure, on supporting surface, be provided with the rolling element structure of a plurality of high temperature resistant low heat conductivity materials, when making tinplate pass through drying tunnel, changed the situation that original Pattern iron supporter and tinplate directly contact, but support black sheet iron by rolling element, (general temperature is 205 ℃) caused Pattern iron supporter to heat up and directly contacted the scald (fusing point of tin is 230 ℃) that causes with tinplate when both having avoided tinplate by the high temperature drying room, overcome again because the vibration of hot blast effect and transmission process, the scratch that rubs and cause, its technical conceive is simple, ingenious, have novelty, creativeness and practicality.
2, the utility model actual effect is remarkable, has thoroughly changed original tinplate and almost 100% has caused scald and abrasive situation by drying room, through both having kept the outward appearance of tinplate after transforming, has guaranteed tin graphed sheet quality of stability and reliability again.
3, the utility model is particularly avoided fully to the infringement of vegetables, fruit type mental package jar (general jar inwall all adopts and is coated with the tin floor No. 100) inwall tin floor, guarantees the antirust and preservation of this based food.
Accompanying drawing 1 is the utility model embodiment front view;
Accompanying drawing 2 is the utility model embodiment left view;
Accompanying drawing 3 is the utility model embodiment pulley structure partial enlarged drawing;
Accompanying drawing 4 transmits the streamline schematic diagram for the tinplate baking.
Wherein: [1], Pattern iron supporter; [2], mould pulley; [3], bolt; [4], packing ring; [5], tinplate; [6], nut.
Below in conjunction with drawings and Examples the utility model is further described:
Embodiment one: shown in accompanying drawing 1, accompanying drawing 2 and accompanying drawing 3, by the fixedly connected Pattern iron supporter that constitutes [1] support body be located on the support body 14 and mould pulley [2] and form, each moulds pulley [2] and is installed on the rod member of Pattern iron supporter [1] by bolt [3], nut [6] and packing ring [4] Pattern iron supporter structure on a kind of color printing tinplate oven dry conveyer line by rod member.Mould pulley [2] for 14 and arrange by the position shown in the accompanying drawing 1, and all surfaces of moulding pulley [2] all are in together in the plane that is higher than the support body surface, this plane constitutes the supporting plane of tinplate [5].Moulding pulley [2] is made by high-temperature resistance plastice.Present embodiment Pattern iron supporter structure applications is after the oven dry of color printing tinplate transmits on the streamline, changed the situation that original Pattern iron supporter and tinplate directly contact, mould pulley [2] by 14 and directly tilt to support tinplate [5], so both avoided original Pattern iron supporter structure to scald tinplate, overcome the scratch that vibration, friction cause again, thereby guaranteed the product quality in the color printing tinplate oven dry transport process.

Claims (8)

1, the Pattern iron supporter structure on a kind of color printing tinplate oven dry conveyer line, comprise by rod member by the fixedly connected supporting frame that constitutes, it is characterized in that: the support side of supporting frame is provided with the rolling element structure of plane distribution, and the rolling surface of all rolling element structures constitutes supporting plane.
2, Pattern iron supporter structure according to claim 1, it is characterized in that: the rolling element structure of described plane distribution is at least by 3 pulleys assembly pulley that parallel planes arranges of going forward side by side, each pulley all is rotationally connected with support body, the pivot center of pulley is parallel with supporting plane, and the surface of all pulleys all is in together in the plane that is higher than the support body surface, and this plane constitutes supporting plane.
3, Pattern iron supporter structure according to claim 2 is characterized in that: described assembly pulley is made up of 12 pulleys at least, and pulley is arranged along the rod member that constitutes support body.
4, according to claim 2 or 3 described Pattern iron supporter structures, it is characterized in that: described pulley is made by high temperature resistant low Heat Conduction Material.
5, Pattern iron supporter structure according to claim 4 is characterized in that: described high temperature resistant low Heat Conduction Material is a high-temperature resistance plastice.
6, Pattern iron supporter structure according to claim 1 is characterized in that: the rolling element structure of described plane distribution is one group of axis of rolling that is arranged in parallel, and the two ends and the support body of the axis of rolling are rotationally connected, and the surface of all axis of rolling constitutes supporting plane.
7, Pattern iron supporter structure according to claim 6 is characterized in that: the surperficial upper edge axis direction of described each axis of rolling is separated by and is had groove, makes axis of rolling surface segmentation become each segment structure to form.
8, according to claim 6 or 7 described Pattern iron supporter structures, it is characterized in that: the described axis of rolling is made by high-temperature resistance plastice.
CN 01244473 2001-06-22 2001-06-22 Iron support structure for drying power transmission sequence of colour printing tin Expired - Fee Related CN2487552Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 01244473 CN2487552Y (en) 2001-06-22 2001-06-22 Iron support structure for drying power transmission sequence of colour printing tin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 01244473 CN2487552Y (en) 2001-06-22 2001-06-22 Iron support structure for drying power transmission sequence of colour printing tin

Publications (1)

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CN2487552Y true CN2487552Y (en) 2002-04-24

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101968306A (en) * 2010-10-27 2011-02-09 宇华机械(南通)有限公司 Transmission mechanism in front of drying furnace
CN104924752A (en) * 2015-05-30 2015-09-23 佛山市三水艺辉印铁制罐有限公司 Drying room feed mechanism for iron printing
CN105346236A (en) * 2015-12-10 2016-02-24 重庆凯西驿电子科技有限公司 Diode printing ink drying fixture
CN110328969A (en) * 2019-07-27 2019-10-15 华源包装(咸宁)有限公司 A kind of tank tin graphed sheet drying production line processed

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101968306A (en) * 2010-10-27 2011-02-09 宇华机械(南通)有限公司 Transmission mechanism in front of drying furnace
CN104924752A (en) * 2015-05-30 2015-09-23 佛山市三水艺辉印铁制罐有限公司 Drying room feed mechanism for iron printing
CN105346236A (en) * 2015-12-10 2016-02-24 重庆凯西驿电子科技有限公司 Diode printing ink drying fixture
CN110328969A (en) * 2019-07-27 2019-10-15 华源包装(咸宁)有限公司 A kind of tank tin graphed sheet drying production line processed
CN110328969B (en) * 2019-07-27 2024-01-26 华源包装(咸宁)有限公司 Tin printing and drying production line

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Granted publication date: 20020424