WO2013083088A1 - 轮胎成型压辊装置及其组合滚压方法 - Google Patents

轮胎成型压辊装置及其组合滚压方法 Download PDF

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Publication number
WO2013083088A1
WO2013083088A1 PCT/CN2012/086205 CN2012086205W WO2013083088A1 WO 2013083088 A1 WO2013083088 A1 WO 2013083088A1 CN 2012086205 W CN2012086205 W CN 2012086205W WO 2013083088 A1 WO2013083088 A1 WO 2013083088A1
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WIPO (PCT)
Prior art keywords
pressure roller
tire
rolling
apex
combined
Prior art date
Application number
PCT/CN2012/086205
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English (en)
French (fr)
Inventor
袁仲雪
程继国
黄伟
贾海玲
邵睿
Original Assignee
Yuan Zhongxue
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Application filed by Yuan Zhongxue filed Critical Yuan Zhongxue
Publication of WO2013083088A1 publication Critical patent/WO2013083088A1/zh

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D30/00Producing pneumatic or solid tyres or parts thereof
    • B29D30/06Pneumatic tyres or parts thereof (e.g. produced by casting, moulding, compression moulding, injection moulding, centrifugal casting)
    • B29D30/08Building tyres
    • B29D30/20Building tyres by the flat-tyre method, i.e. building on cylindrical drums
    • B29D30/28Rolling-down or pressing-down the layers in the building process

Definitions

  • the present invention relates to a combined press roll device and a combined rolling method thereof for tire manufacture, which specifically solves the problem of press-fitting between the apex on the side bead side and the carcass ply, and belongs to the field of rubber machinery.
  • the preform is pressed and pressed on the tread, the sidewall and the like before and after the reverse molding on the forming drum to realize the multilayer belt and the tread.
  • the fitting of the tire components and the excess air discharged from them, the quality of the green tire rolling will directly affect the advantages and disadvantages of the subsequent vulcanization process and tire performance.
  • the prior patent discloses the following patent, the patent number is ZL200520146090, and the name is the all-steel radial tire forming machine combined rolling device, and the combined rolling device comprises a 3# roller device disposed at the upper end of the frame, and 1# disposed in the middle portion.
  • the roller device and the 2# roller device, and the 4# roller device provided at the bottom end, the front ends of all the pressure roller devices form an arc-shaped distribution corresponding to the outer circumference of the tire.
  • the 1# roller is responsible for rolling the tread portion
  • the 2# roller is responsible for rolling the shoulder portion, that is, from the 1# to 4# roller, there is no specific bead on the bead side.
  • the apex is rolled, resulting in the presence of excess air between the apex and the carcass.
  • the 4# roller device is responsible for rolling the sidewall portion.
  • the sidewall film has attached the apex into the carcass ply inward, and it is difficult to directly roll on the outer side of the sidewall film.
  • the excess air between the apex and the carcass ply is discharged, so that bubbles are easily formed in this area.
  • the tire forming pressure roller device and the combined rolling method thereof according to the present invention have the purpose of solving the defects of the prior art, adding a pressure roller device for specifically rolling the apex rubber, and improving the existing combined rolling method.
  • the object of the invention is also to improve the stability during the rolling process of the green tire combination and to improve the one rolling process. Bubble discharge rate.
  • the tire forming press device is disposed at a side of the forming drum, and mainly includes:
  • a combined press roll device that performs a rolling operation on the tread and the side wall before and after the green tire is reversed, and the combined press roll device is slidably coupled to the base through the carriage.
  • the tire building press device further includes a side press roller device that performs a rolling operation on the apex before the green tire is reversed.
  • the side pressure roller device includes a bracket, a pair of side pressure rollers, and a radial drive device that reciprocates along the radial direction of the green tire.
  • the operation of rolling the tread is performed by the combined press roll device before the green sheet is formed.
  • the rolling of the apex on the side of the bead is performed by the side pressure roller of the side pressure roller device to complete the extrusion of the bubble between the apex and the carcass ply.
  • driving and guiding mechanisms such as reciprocating movement or sliding in the radial/axial/longitudinal/transverse directions.
  • drive units such as cylinders, deceleration servo motors, and cylinders are used, as well as transmission and guide members such as screw-nuts, ball screw-threads, timing belts - timing pulleys, gear-racks, slide-rails, and the like.
  • a more preferred radial drive device can be:
  • the radial driving device includes a mounting plate for mounting a side pressing roller and connected to the bracket;
  • a servo motor mounted on the bracket, a drive sprocket is axially disposed at a driving end of the servo motor;
  • a wire mother is mounted on the mounting plate along the radial direction of the tire, and a ball screw matched with the wire mother is connected to the support;
  • the ball screw end sleeve is provided with a drive sprocket, and the drive chain is connected between the drive sprocket and the motor sprocket.
  • a pair of sliding guides are mounted on the bracket along the radial direction of the tire blank, and a ball spline pair connecting the ball screw and the mounting plate is sleeved on the sliding guide.
  • a pair of axial driving for reciprocating the side pressure roller can be mounted on the mounting plate. Cylinder, axial drive The driving end of the moving cylinder is connected to the mounting seat, and the side pressing roller shaft is arranged on the mounting seat.
  • the mounting shaft can be further connected to a guide shaft on the mounting plate.
  • a spline sleeve with a set of guide shafts is provided.
  • the tire forming roller device also includes useful a positive pressure roller device for rolling the center line of the tread;
  • the positive pressure roller device includes a support frame mounted to the carriage, and a positive pressure drive cylinder for driving the positive pressure roller to move backward is disposed on the support frame.
  • the centerline of the tread is rolled by the positive pressure roller device before the combined press roll device performs the process of rolling the tread. Then, the green tire is axially rotated by the forming drum, and the combined pressing device performs the rolling operation of the tread and the sidewall portion, and the rolling of the apex portion is performed by the side pressing roller device before the reverse wrapping molding. operating.
  • the overall green tire can maintain the stability of the axial rotation without occurrence of the deviation and inclination of the green tire.
  • the present invention also achieves an improvement in the process of the combined rolling method.
  • the rolling operation for the fetal embryo surface and the sidewall portion is sequentially performed by the combined pressure roller device;
  • the rolling operation of the apex on the side of the bead is performed by the side pressure roller of the side pressure roller device to apply the apex to the carcass ply
  • the bubble is squeezed between.
  • the improvement measures include the following steps in the process of performing the apex rolling operation of the side pressure roller:
  • the radial driving device drives the side pressure roller along the radial direction of the tire to approach the apex;
  • the axial driving cylinder drives the side pressing roller to press on the surface of the apex, and the side pressing roller rotates with the axial rotation of the apex;
  • the radial driving device pulls the side pressing roller in the reverse direction of the first step, and the side pressing roller completes the rolling operation on the surface of the apex;
  • the axially driven cylinder retracts the side pressure roller in the reverse direction of the second step, and the radial drive returns to the initial position.
  • the bias between the pressure roller and the embryonic body is prevented. Problems such as turning, tilting, etc., before the combined press roll device performs the process of rolling the tread, the center line of the tread is rolled by the positive pressure roller device.
  • the tire forming press device and the combined rolling method thereof according to the present invention have the following advantages:
  • the fetal embryo can maintain the smooth performance of axial rotation during the combined rolling process, and improve the bubble discharge rate during one rolling process.
  • the tight fit between the carcass assembly and the bead can improve the quality of the tire manufacturing.
  • FIG. 1 is a schematic structural view of a tire forming press roll device according to the present invention.
  • Figure 2 is a schematic structural view of the side pressure roller device
  • Figure 3 is a partial cross-sectional view taken along line A-A of Figure 2;
  • Figure 4 is a schematic cross-sectional view of the B-B portion of Figure 3 after being rotated;
  • the tire forming roller device is disposed at a side portion of a forming drum (not shown), and mainly includes:
  • the side pressure roller device 4 includes a bracket 41, a pair of side pressure rollers 40, and a radial driving device that reciprocates along the radial direction of the green tire.
  • the radial driving device comprises: a mounting plate 42 for mounting the side pressure roller 40 and connected to the bracket 41; a servo motor 43 mounted on the bracket 41, a driving end of the servo motor 43 is axially disposed with a motor sprocket 44;
  • the radial direction of the green tire is mounted on the mounting plate 42 with a wire core 46, and the ball screw 45 matched with the wire core 46 is connected to the bracket 41;
  • the ball screw 45 is provided with a drive sprocket 47 at its end, and a drive chain 48 is connected between the drive sprocket 47 and the motor sprocket 44.
  • a pair of slide guides 49 are attached to the bracket 41, and a ball spline pair 50 connecting the ball screw 45 and the mounting plate 42 is fitted over the slide guide 49.
  • a pair of axially driven cylinders 51 for reciprocatingly driving the side pressure rollers 40 are mounted on the mounting plate 42, and the driving end of the axially driven cylinder 51 is coupled to the mounting seat 52, and the side pressure roller 40 is axially mounted to the mounting seat 52.
  • the mounting base 52 is connected to a guide shaft 53, and a spline sleeve 54 for the set guide shaft 53 is provided on the mounting plate 42.
  • the positive pressure roller unit 6 includes a support frame 61 mounted to the carriage 2, and a positive pressure drive cylinder 62 for driving the reciprocating movement of the positive pressure roller 60 is disposed on the support frame 61.
  • the rolling operation for the fetal embryo surface and the sidewall portion is sequentially performed by the combined pressure roller device 3;
  • the rolling operation of the apex on the side of the bead is performed by the side pressure roller 40 of the side pressure roller device 4, so as to Bubble extrusion between carcass plies;
  • the center line of the tread is rolled by the positive pressure roller unit 6 before the combined press roll unit 3 performs the process of rolling the tread;
  • the positive pressure roller device always rolls the center line of the tread, so that the overall green tire can maintain the stability of the axial rotation without occurrence of the deviation and inclination of the embryo.
  • the process of performing the apex rolling operation of the side pressure roller 40 the following steps are included:
  • the green tire is axially rotated by the forming drum, and the radial driving device drives the side pressing roller 40 along the radial direction of the green tire to approach the apex;
  • the servo motor 43 is turned on to drive the motor sprocket 44 to rotate, and the coil 46 is driven to rotate by the drive chain 48 and the drive sprocket 47.
  • the ball screw 45 is rotated out along the radial direction of the tire, and the ball splines are on both sides.
  • Deputy 50 and slip Under the guiding action of the moving guide 49, the mounting plate 42 is pushed out, and the side pressing roller 40 approaches the apex to wait for the rolling operation to be performed.
  • the axial driving cylinder 51 drives the side pressing roller 40 to press against the surface of the apex, and the side pressing roller 40 rotates with the axial rotation of the triangular rubber;
  • the shaft-driven cylinder 51 drives the side pressure roller 40 to be pressed against the surface of the apex by the drive guiding action between the mounting seat 52 of the side pressure roller 40 and the guide shaft 53 and the spline sleeve 54.
  • the axial drive cylinder 51 provides a stable, long-lasting pressure during the rolling process and prevents the side pressure roller 40 from being pushed back by the apex.
  • the radial driving device pulls the side pressing roller 40 in the reverse direction of the first step, and the side pressing roller 40 completes the rolling operation on the surface of the apex;
  • the axially driven cylinder 51 is reversely retracted back to the side pressure roller 40 in the second step, and the radial drive is returned to the initial position.
  • the preferred embodiment of the present invention has been described in connection with the embodiments of the present invention. It will be apparent to those skilled in the art from this disclosure that other alternative structures that conform to the design concept of the present invention are directly derived, and other structural features derived therefrom are also within the scope of the present invention.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Tyre Moulding (AREA)

Abstract

一种轮胎成型压辊装置及其组合滚压方法,压辊装置设置于成型鼓的侧部,包括底座(1),在胎胚反包前后依次针对胎面、胎侧进行滚压操作的组合压辊装置(3),组合压辊装置(3)通过滑架(2)滑动地连接于底座(1),还包括在胎胚反包之前针对三角胶进行滚压操作的侧压辊装置(4),侧压辊装置(4)包括有支架(41)、一对侧压辊(40)、以及沿胎胚径向驱动侧压辊(40)往复移动的径向驱动装置。该压辊装置及其组合滚压方法,通过增设针对三角胶进行专门滚压的压辊装置,促使三角胶与胎体帘布之间多余空气排出,提高了各层部件之间的贴合质量,从而提升了轮胎的制造品质。

Description

轮胎成型压辊装置及其组合滚压方法 技术领域
本发明涉及一种应用于轮胎制造的组合压辊装置及其组合滚压方法, 具体地解 决子口胎圈一侧三角胶与胎体帘布之间的压合问题, 属于橡胶机械领域。
背景技术
在现有橡胶轮胎的制备工艺中, 胎胚在成型鼓上完成反包成型前后需分别采用 压辊装置针对胎面、 胎侧等部位进行压合操作, 以实现多层带束层与胎面、 胎筒部 件的贴合、 排出其中的多余空气, 胎胚滚压质量的好坏将直接影响到后续硫化工艺 的优劣与轮胎使用性能。
如公开以下内容的在先专利, 专利号为 ZL200520146090 , 名称为全钢子午线轮 胎成型机组合滚压装置, 该组合滚压装置包括设置在机架上端的 3#辊装置、 在中部 设置的 1#辊装置和 2#辊装置、在底端设置的 4#辊装置, 全部压辊装置的前端形成与 轮胎外圆相对应的弧形分布。
其中, 在胎胚反包前, 仅有 1#辊负责滚压胎面部位, 2#辊负责滚压胎肩部位, 即由 1# 至 4#辊中并无具体针对子口胎圈一侧的三角胶进行滚压操作, 导致三角胶 与胎体帘布之间较易存在多余的空气。
当胎胚反包后, 4#辊装置负责实施胎侧部位的滚压, 此时胎侧胶片已将三角胶 向内贴合于胎体帘布上, 在胎侧胶片外侧进行滚压难以直接将三角胶与胎体帘布之 间的多余空气排出, 从而较易形成这一区域存在气泡。
上述现有技术方案的局限导致三角胶滚压效果较差, 在一次组合滚压周期内未 形成针对三角胶气泡的排出操作, 直接影响到胎胚整体反包压合质量。
有鉴于特提出本专利申请。
发明内容
本发明所述轮胎成型压辊装置及其组合滚压方法, 其目的在于解决现有技术存 在的缺陷而增设针对三角胶进行专门滚压的压辊装置, 以及改进现有组合滚压方法 中的工艺步骤, 以期提高三角胶与胎体帘布之间多余空气的排出, 以期全面提高各 层部件之间的贴合质量, 提升轮胎制造品质。
发明目的还在于, 能够改善胎胚组合滚压过程中的稳定性, 提高一次滚压过程 的气泡排出率。
为实现上述发明目的, 所述轮胎成型压辊装置设置于成型鼓的侧部, 主要包括 有:
底座,
在胎胚反包前后依次针对胎面、 胎侧进行滚压操作的组合压辊装置, 组合压辊 装置通过滑架滑动地连接于底座。
与现有技术的区别之处在于, 轮胎成型压辊装置还包括有在胎胚反包之前针对 三角胶进行滚压操作的侧压辊装置。
侧压辊装置包括有支架、 一对侧压辊、 以及沿胎胚径向驱动侧压辊往复移动的 径向驱动装置。
如上述方案, 在胎胚反包成型之前, 由组合压辊装置执行滚压胎面的操作。 与 此同时, 由侧压辊装置的侧压辊执行针对胎圈一侧三角胶的滚压, 以完成将三角胶 与胎体帘布之间的气泡挤出。
基于本发明的设计构思, 诸如实现径向 /轴向 /纵向 /横向等方向上的往复移动或 滑动的相应驱动和导向机构可以有多种。 例如采用气缸、 减速伺服电机、 油缸等驱 动装置, 以及采取螺杆-螺母、 滚珠丝杠-丝母、 同步带 -同步带轮、 齿轮-齿条、 滑 块-导轨等类传输和导向部件。
在上述侧压辊装置中, 较为优选的径向驱动装置可以是:
所述径向驱动装置包括有, 用于安装侧压辊并连接于支架的安装板;
在支架上安装的伺服电机, 伺服电机的驱动端轴向设置一电机链轮;
沿胎胚径向、 在安装板上安装有丝母, 与丝母配合套装的滚珠丝杠连接于在支 架;
滚珠丝杠端部套设有驱动链轮, 驱动链轮与电机链轮之间连接传动链条。
为提高伺服电机通过安装板而往复推出、 拉回所述执行三角胶滚压操作的侧压 辊的平滑性, 防止安装板沿滚珠丝杠移动时出现蹩劲或偏转, 可采取的改进方案是: 沿胎胚径向、 在支架上安装有一对滑动导杆, 在滑动导杆上套设有连接所述滚 珠丝杠和安装板的滚珠花键副。
为提高侧压辊执行三角胶滚压操作时的灵活性、 侧压辊与三角胶表面滚压时的 压力稳定性, 可在安装板上安装一对用于往复驱动侧压辊的轴向驱动气缸, 轴向驱 动气缸的驱动端连接安装座, 侧压辊轴设于安装座。
为提高轴向驱动气缸往复驱动所述侧压辊移动的平滑性能, 以保证侧压辊与三 角胶表面的着力平均, 可进一步地将所述安装座轴设连接一导轴, 在安装板上设置 有套装导轴的花键套。
为能够实现在组合滚压过程中胎胚的稳定性, 防止压辊与胎胚各部位接触时出 现偏转、 倾斜等影响滚压质量的问题现出, 所述的轮胎成型压辊装置还包括有用于 滚压胎面中心线的正压辊装置;
正压辊装置包括有安装于滑架的支撑架, 在支撑架上设置有用于驱动正压辊往 复移动的正压驱动气缸。
在组合压辊装置执行滚压胎面的过程之前, 由正压辊装置滚压胎面的中心线。 随后胎胚在成型鼓的带动下轴向旋转, 所述的组合压辊装置执行胎面、 胎侧部 位的滚压操作, 而在反包成型前由侧压辊装置执行三角胶部位的滚压操作。
在上述组合滚压过程中, 由于有正压辊装置滚压胎面的中心线, 因此整体胎胚 能够保持轴向旋转的稳定性, 不会出现胎胚跑偏与倾斜等现象。
在完成上述针对轮胎成型压辊装置结构改进的基础上, 本发明还实现组合滚压 方法工艺方面的提高。 相应地,
在组合滚压方法中, 由组合压辊装置依次执行针对胎胚胎面、 胎侧部位的滚压 操作;
在胎胚反包成型之前、 组合压辊装置滚压胎面的过程中, 由侧压辊装置的侧压 辊执行针对胎圈一侧三角胶的滚压操作, 以将三角胶与胎体帘布之间的气泡挤出。
更为具体地改进措施是, 在侧压辊执行三角胶滚压操作的过程中包括以下步骤: 第一步, 径向驱动装置沿胎胚径向驱动侧压辊趋近于三角胶;
第二步, 轴向驱动气缸驱动侧压辊压在三角胶表面, 侧压辊伴随三角胶的轴向 转动而旋转;
第三步, 径向驱动装置沿第一步的反向提拉侧压辊, 侧压辊完成在三角胶表面 的滚压操作;
第四步, 轴向驱动气缸沿第二步的反向縮回侧压辊, 径向驱动装置恢复至初始 位。
为保证在组合滚压过程中胎胚的稳定性, 防止压辊与胎胚各部位接触时出现偏 转、 倾斜等问题, 在组合压辊装置执行滚压胎面的过程之前, 由正压辊装置滚压胎 面的中心线。
综上内容, 本发明所述轮胎成型压辊装置及其组合滚压方法具有的优点是:
1、 专门增加针对三角胶进行滚压的压辊装置,明显地提高三角胶与胎体帘布之间多 余空气的排出, 从而全面地提高各层部件之间的贴合质量。
2、 胎胚在组合滚压过程中能够始终保持轴向旋转的平稳性能,提高一次滚压过程的 气泡排出率。
3、 胎体组件与胎圈之间的贴合紧密性, 能够较高地提升轮胎制造品质。
附图说明
现结合附图对本发明做进一步的说明,
图 1是本发明所述轮胎成型压辊装置的结构示意图;
图 2是所述侧压辊装置的结构示意图;
图 3是图 2中的 A-A向部分剖面示意图;
图 4是图 3中的 B-B向部分旋转后的剖面示意图;
如图 1至图 4所示, 底座 1, 滑架 2, 组合压辊装置 3, 侧压辊装置 4, 正压辊 装置 6 ;
侧压辊 40, 支架 41, 安装板 42, 伺服电机 43, 电机链轮 44, 滚珠丝杠 45, 丝 母 46, 驱动链轮 47, 传动链条 48, 滑动导杆 49, 滚珠花键副 50, 轴向驱动气缸 51, 安装座 52, 导轴 53, 花键套 54, 支撑架 61, 正压辊 60, 正压驱动气缸 62。
具体实施方式
实施例 1, 如图 1至图 4所示, 所述的轮胎成型压辊装置设置于成型鼓(图中未 示出) 的侧部, 主要包括有:
底座 1 ;
在胎胚反包前后依次针对胎面、胎侧进行滚压操作的组合压辊装置 3, 组合压辊 装置 3通过滑架 2滑动地连接于底座 1;
在胎胚反包之前针对三角胶进行滚压操作的侧压辊装置 4, 以及,
用于滚压胎面中心线的正压辊装置 6。 其中,
侧压辊装置 4包括有支架 41、 一对侧压辊 40、 以及沿胎胚径向驱动侧压辊 40 往复移动的径向驱动装置。 径向驱动装置包括有, 用于安装侧压辊 40并连接于支架 41的安装板 42 ; 在支 架 41上安装的伺服电机 43, 伺服电机 43的驱动端轴向设置一电机链轮 44; 沿胎胚 径向、在安装板 42上安装有丝母 46, 与丝母 46配合套装的滚珠丝杠 45连接于在支 架 41 ;
滚珠丝杠 45端部套设有驱动链轮 47,驱动链轮 47与电机链轮 44之间连接传动 链条 48。
在支架 41上安装有一对滑动导杆 49, 在滑动导杆 49上套设有连接滚珠丝杠 45 和安装板 42的滚珠花键副 50。
在安装板 42上安装一对用于往复驱动侧压辊 40的轴向驱动气缸 51, 轴向驱动 气缸 51的驱动端连接安装座 52, 侧压辊 40轴设于安装座 52。
安装座 52轴设连接一导轴 53, 在安装板 42上设置有套装导轴 53的花键套 54。 正压辊装置 6包括有安装于滑架 2的支撑架 61,在支撑架 61上设置有用于驱动 正压辊 60往复移动的正压驱动气缸 62。 基于上述轮胎成型压辊装置而实现的组合滚压方法, 具体地:
由组合压辊装置 3依次执行针对胎胚胎面、 胎侧部位的滚压操作;
在胎胚反包成型之前、 组合压辊装置 3滚压胎面的过程中, 由侧压辊装置 4的 侧压辊 40执行针对胎圈一侧三角胶的滚压操作, 以将三角胶与胎体帘布之间的气泡 挤出;
在组合压辊装置 3执行滚压胎面的过程之前, 由正压辊装置 6滚压胎面的中心 线;
在上述组合滚压过程中, 正压辊装置始终滚压胎面的中心线, 因此整体胎胚能 够保持轴向旋转的稳定性, 不会出现胎胚跑偏与倾斜等现象。 在侧压辊 40执行三角胶滚压操作的过程中, 包括有以下步骤:
第一步, 胎胚在成型鼓的带动下轴向旋转, 径向驱动装置沿胎胚径向驱动侧压 辊 40趋近于三角胶;
即伺服电机 43开启以驱动电机链轮 44转动, 通过传动链条 48、驱动链轮 47而 带动丝母 46旋转, 此时滚珠丝杠 45沿胎胚径向被旋出, 在两侧滚珠花键副 50与滑 动导杆 49的导向作用下, 安装板 42被推出, 侧压辊 40趋近于三角胶以等待执行滚 压操作。
第二步, 轴向驱动气缸 51驱动侧压辊 40压在三角胶表面, 侧压辊 40伴随三角 胶的轴向转动而旋转;
通过轴设侧压辊 40的安装座 52与导轴 53、花键套 54之间的驱动导向作用,轴 向驱动气缸 51驱动侧压辊 40滚压于三角胶表面。 在滚压过程中, 轴向驱动气缸 51 提供稳定、 持久的压力并能够防止侧压辊 40被三角胶顶回。
第三步, 径向驱动装置沿第一步的反向提拉侧压辊 40,侧压辊 40完成在三角胶 表面的滚压操作;
第四步, 轴向驱动气缸 51沿第二步反向地縮回侧压辊 40,径向驱动装置恢复至 初始位。 如上所述, 结合附图本实施例仅就本发明的优选实施例进行了描述。 对于所属 领域技术人员来说可以据此得到启示, 而直接推导出符合本发明设计构思的其他替 代结构, 由此得到的其他结构特征也应属于本发明所述的方案范围。

Claims

1、 一种轮胎成型压辊装置, 设置于成型鼓的侧部, 包括有底座(1),
在胎胚反包前后依次针对胎面、 胎侧进行滚压操作的组合压辊装置 (3) , 组合 压辊装置 (3) 通过滑架 (2) 滑动地连接于底座(1), 其特征在于:
所述的轮胎成型压辊装置还包括有, 在胎胚反包之前针对三角胶进行滚压操作 的侧压辊装置 (4) ;
侧压辊装置 (4) 包括有支架 (41) 、 一对侧压辊 (40) 、 以及沿胎胚径向驱动 侧压辊 (40) 往复移动的径向驱动装置。
2、 根据权利要求 1所述的轮胎成型压辊装置, 其特征在于: 所述的径向驱动装 置包括有, 用于安装侧压辊 (40) 并连接于支架 (41) 的安装板 (42) ;
在支架 (41) 上安装的伺服电机 (43) , 伺服电机 (43) 的驱动端轴向设置一 电机链轮 (44) ;
沿胎胚径向、 在安装板 (42) 上安装有丝母 (46) , 与丝母 (46) 配合套装的 滚珠丝杠 (45) 连接于在支架 (41) ;
滚珠丝杠 (45) 端部套设有驱动链轮 (47) , 驱动链轮 (47) 与电机链轮 (44) 之间连接传动链条 (48) 。
3、 根据权利要求 2所述的轮胎成型压辊装置, 其特征在于: 沿胎胚径向、 在支 架 (41) 上安装有一对滑动导杆 (49) , 在滑动导杆 (49) 上套设有连接滚珠丝杠 (45) 和安装板 (42) 的滚珠花键副 (50) 。
4、根据权利要求 2或 3所述的轮胎成型压辊装置, 其特征在于: 在安装板(42) 上安装一对用于往复驱动侧压辊 (40) 的轴向驱动气缸 (51) , 轴向驱动气缸 (51) 的驱动端连接安装座 (52) , 侧压辊 (40) 轴设于安装座 (52) 。
5、 根据权利要求 4所述的轮胎成型压辊装置, 其特征在于: 安装座 (52) 轴设 连接一导轴 (53) , 在安装板 (42) 上设置有套装导轴 (53) 的花键套 (54) 。
6、 根据权利要求 5所述的轮胎成型压辊装置, 其特征在于: 所述的轮胎成型压 辊装置还包括有, 用于滚压胎面中心线的正压辊装置 (6) ;
正压辊装置 (6) 包括有安装于滑架 (2) 的支撑架 (61) , 在支撑架 (61) 上 设置有用于驱动正压辊 (60) 往复移动的正压驱动气缸 (62) 。
7、 根据权利要求 1至 6所述轮胎成型压辊装置实现的组合滚压方法, 由组合压 辊装置 (3) 依次执行针对胎胚胎面、 胎侧部位的滚压操作, 其特征在于:
在胎胚反包成型之前、组合压辊装置(3)滚压胎面的过程中, 由侧压辊装置(4) 的侧压辊 (40) 执行针对胎圈一侧三角胶的滚压操作, 以将三角胶与胎体帘布之间 的气泡挤出。
8、根据权利要求 7所述的轮胎成型组合滚压方法, 其特征在于: 在侧压辊(40) 执行三角胶滚压操作的过程中包括有以下步骤,
第一步, 径向驱动装置沿胎胚径向驱动侧压辊 (40) 趋近于三角胶;
第二步, 轴向驱动气缸 (51) 驱动侧压辊 (40) 压在三角胶表面, 侧压辊 (40) 伴随三角胶的轴向转动而旋转;
第三步, 径向驱动装置沿第一步的反向提拉侧压辊 (40) , 侧压辊 (40) 完成 在三角胶表面的滚压操作;
第四步, 轴向驱动气缸 (51) 沿第二步的反向縮回侧压辊 (40) , 径向驱动装 置恢复至初始位。
9、 根据权利要求 8所述的轮胎成型组合滚压方法, 其特征在于: 在组合压辊装 置 (3) 执行滚压胎面的过程之前, 由正压辊装置 (6) 滚压胎面的中心线。
PCT/CN2012/086205 2011-12-07 2012-12-07 轮胎成型压辊装置及其组合滚压方法 WO2013083088A1 (zh)

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