CN216801113U - 一种纳米隔热板加工用成型装置 - Google Patents

一种纳米隔热板加工用成型装置 Download PDF

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CN216801113U
CN216801113U CN202122425828.XU CN202122425828U CN216801113U CN 216801113 U CN216801113 U CN 216801113U CN 202122425828 U CN202122425828 U CN 202122425828U CN 216801113 U CN216801113 U CN 216801113U
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柏苏琴
颜茂林
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Shenyang Lanzhong Intellectual Property Operation Co ltd
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Jiangsu Tiecheng New Building Materials Co ltd
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Abstract

本实用新型提供一种纳米隔热板加工用成型装置;包括底板,底板的顶部外壁焊接有若干个立柱,立柱的顶端焊接有顶板,顶板的底部外壁通过螺栓固定安装有两个液压缸,两个液压缸的底端均焊接有调节轴座,两个调节轴座的内部转动连接有上转杆,上转杆的外壁固定套接有上轧辊,上转杆的一端固定套接有从动轮一,底板的顶部外壁通过螺栓固定安装有电机一,电机一的输出轴传动连接有主动轮一,底板的顶部外壁焊接有滑轨,滑轨的顶部外壁滑动连接有滑座。本实用新型采用液压缸带动调节轴座上下移动,工作人员就可以根据板材的厚度来调整上轧辊与下轧辊之间的距离,降低投入成本,生产种类多样,效率提高。

Description

一种纳米隔热板加工用成型装置
技术领域
本实用新型具体涉及板材生产技术领域,尤其是一种纳米隔热板加工用成型装置。
背景技术
纳米微孔隔热材料是应用最新高科技技术制造出来的新材料,其导热系数比静止空气还要小,在高温下,隔热性能比传统纤维类的保温材料要好3-4 倍,是传统保温材料的优良替代品。而纳米隔热板一般采用轧制成型。
但是现有板材轧制设备不能根据板材的厚度调整轧辊之间的距离,导致需要轧制不同厚度的板材时要不断的更换轧制设备,投入成本较高,生产种类单一,效率较低,且板材轧制设备在轧制过程中,皮带容易松动,造成上下轧辊转动不同步,对板材轧制造影响。因此,亟需一种纳米隔热板加工用成型装置来解决上述的问题。
发明内容
本实用新型的目的在于克服现有技术的不足,适应现实需要,提供一种结构设计新颖的纳米隔热板加工用成型装置。
为了实现本实用新型的目的,本实用新型所采用的技术方案为:
一种纳米隔热板加工用成型装置,包括底板,所述底板的顶部外壁焊接有若干个立柱,所述立柱的顶端焊接有顶板,所述顶板的底部外壁通过螺栓固定安装有两个液压缸,两个所述液压缸的底端均焊接有调节轴座,两个所述调节轴座的内部转动连接有上转杆,所述上转杆的外壁固定套接有上轧辊,所述上转杆的一端固定套接有从动轮一,所述底板的顶部外壁通过螺栓固定安装有电机一,所述电机一的输出轴传动连接有主动轮一,所述底板的顶部外壁焊接有滑轨,所述滑轨的顶部外壁滑动连接有滑座,所述滑座的内壁之间转动连接有张紧轮,所述从动轮一、主动轮一和张紧轮之间传动连接有皮带一,所述立柱的侧壁之间焊接有两个下横梁,两个所述下横梁的顶部外壁均通过螺栓固定有固定轴座,两个所述固定轴座的内部转动连接有下转杆,所述下转杆的外壁固定套接有下轧辊,所述下转杆的一端固定套接有从动轮二。
进一步的,所述底板的顶部外壁通过螺栓固定安装有电机二,所述电机二的输出轴传动连接有主动轮二,所述主动轮二与从动轮二之间传动连接有皮带二。
进一步的,所述立柱的侧壁之间焊接有上横梁,所述上横梁的顶部外壁与顶板底部外壁之间焊接有竖板,所述竖板的侧壁开设有滑孔,所述调节轴座的侧壁焊接有与滑孔相适配的滑杆。
进一步的,所述滑轨的顶部外壁开设有滑槽,所述滑座的底部外壁设置有与滑槽相适配的滑块,所述滑座的底部外壁设置有凸块。
进一步的,所述滑轨的一侧外壁开设有螺孔,所述螺孔的内部螺纹连接有螺杆。
进一步的,所述底板的顶部外壁与下横梁的底部外壁之间焊接有下撑杆,所述下横梁的顶部外壁与上横梁的底部外壁焊接有中撑杆,所述上横梁的顶部外壁与顶板的底部外壁之间焊接有上撑杆。
本实用新型的有益效果在于:
(1)本实用新型利用液压缸和调节轴座,通过液压缸带动调节轴座上下移动,工作人员就可以根据板材的厚度来调整上轧辊与下轧辊之间的距离,而不再需要轧制不同厚度的板材时不断的更换轧制设备,降低投入成本,生产种类多样,效率提高。
(2)本实用新型利用滑座和张紧轮,滑座带动张紧轮随上轧辊与下轧辊之间的距离变化而及时调整位置,使得皮带一始终保持在紧绷状态,避免皮带一容易松动,造成上轧辊与下轧辊转动不同步,影响板材轧制造。
(3)本实用新型利用竖板、滑孔和滑杆,调节轴座两侧的滑杆在竖板的滑孔中滑动,竖板对调节轴座水平方向上的位移进行限制,在通过滑孔对滑杆的约束,使得调节轴座在调节过程中更加稳定,提高调节轴座位置调节的精度性。
(4)本实用新型利用凸块和螺杆,凸块将滑座卡接在滑轨上,保证滑座只能沿滑轨左右滑动,使得滑座更加稳定,工作人员通过转动螺杆来推动滑块移动,便于工作人员对滑座位置的调节和固定。
附图说明
图1为本实用新型的结构示意图;
图2为本实用新型的正面结构示意图;
图3为本实用新型的背面结构示意图;
图4为本实用新型中A的局部放大示意图;
图5为本实用新型中B的局部放大示意图。
图中:1底板、2立柱、3顶板、4液压缸、5调节轴座、6上转杆、7上轧辊、8从动轮一、9电机一、10主动轮一、11滑轨、12滑座、13张紧轮、 14皮带一、15下横梁、16固定轴座、17下转杆、18下轧辊、19从动轮二、 20电机二、21主动轮二、22皮带二、23上横梁、24竖板、25滑孔、26滑杆、27滑槽、28滑块、29凸块、30螺孔、31螺杆、32下撑杆、33中撑杆、 34上撑杆。
具体实施方式
下面结合附图和实施例对本实用新型进一步说明:
参见图1至图5,本实用新型是一种纳米隔热板加工用成型装置,包括底板1,底板1的顶部外壁焊接有若干个立柱2,立柱2的顶端焊接有顶板3,顶板3便于液压缸4的安装,顶板3的底部外壁通过螺栓固定安装有两个液压缸4,液压缸4带动调节轴座5上下移动,工作人员就可以根据板材的厚度来调整上轧辊7与下轧辊18之间的距离,两个液压缸4的底端均焊接有调节轴座5,调节轴座5便于上转杆6的安装,调节轴座5带动上转杆6移动,两个调节轴座5的内部转动连接有上转杆6,上转杆6转动带动上轧辊7转动,上转杆6的外壁固定套接有上轧辊7,上转杆6的一端固定套接有从动轮一8,从动轮一8转动带动上转杆6转动,底板1的顶部外壁通过螺栓固定安装有电机一9,电机一9驱动主动轮一10转动,电机一9的输出轴传动连接有主动轮一10,底板1的顶部外壁焊接有滑轨11,滑轨11呈T字型,滑轨11便于滑座12的滑动,滑轨11的顶部外壁滑动连接有滑座12,滑座 12便于张紧轮的安装,滑座12沿滑轨11滑动,滑座12的内壁之间转动连接有张紧轮13,张紧轮13对皮带一14起到张紧作用,避免皮带一14容易松动,造成上轧辊7与下轧辊18转动不同步,影响板材轧制造,从动轮一8、主动轮一10和张紧轮13之间传动连接有皮带一14,主动轮一10转动通过皮带一14带动从动轮一8转动,立柱2的侧壁之间焊接有两个下横梁15,下横梁15便于固定轴座16的安装,两个下横梁15的顶部外壁均通过螺栓固定有固定轴座16,固定轴座16便于下转杆17的安装,两个固定轴座16的内部转动连接有下转杆17,下转杆17转动带动下轧辊18转动,下转杆17 的外壁固定套接有下轧辊18,下轧辊18配合上轧辊7对纳米隔热板进行轧制成型,下转杆17的一端固定套接有从动轮二19,从动轮二19转动带动下转杆17转动。
底板1的顶部外壁通过螺栓固定安装有电机二20,电机二20驱动主动轮二21转动,电机二20的输出轴传动连接有主动轮二21,主动轮二21与从动轮二19之间传动连接有皮带二22,主动轮二21转动通过皮带二22带动从动轮二19转动。
立柱2的侧壁之间焊接有上横梁23,上横梁23为竖板24提供支撑,上横梁23的顶部外壁与顶板3底部外壁之间焊接有竖板24,竖板24对调节轴座5水平方向上的位移进行限制,竖板24的侧壁开设有滑孔25,滑孔25用于滑动连接滑杆26,滑孔25通过滑杆26的限制,使得调节轴座5在调节过程中更加稳定,调节轴座5的侧壁焊接有与滑孔25相适配的滑杆26,滑杆 26在滑孔25中滑动。
滑轨11的顶部外壁开设有滑槽27,滑槽27用于滑动连接滑块28,滑座 12的底部外壁设置有与滑槽27相适配的滑块28,滑块28在滑槽27中带动滑座12左右滑动,滑座12的底部外壁设置有凸块29,凸块29使得滑座12 卡接在滑轨11上,保证滑座12只能沿滑轨11左右滑动,而无法产生其他方向的位移,使得滑座12更加稳定。
滑轨11的一侧外壁开设有螺孔30,螺孔30便于螺杆31的安装,螺孔 30的内部螺纹连接有螺杆31,螺杆31的一端抵于滑块28的一侧外壁,工作人员通过转动螺杆31来推动滑块28移动。
底板1的顶部外壁与下横梁15的底部外壁之间焊接有下撑杆32,下横梁15的顶部外壁与上横梁23的底部外壁焊接有中撑杆33,上横梁23的顶部外壁与顶板3的底部外壁之间焊接有上撑杆34,下撑杆32、中撑杆33和上撑杆34处于同一竖轴线上,下撑杆32、中撑杆33和上撑杆34对调节轴座5附近的结构进行局部加强,使得整个装置更加稳定。
综上所述,本实用新型的工作原理为:使用时,工作人员首先更具板材厚度确定上轧辊7与下轧辊18之间的距离,当上轧辊7与下轧辊18之间的距离较大时,工作人员通过液压缸4推动调节轴座5向下移动,调节轴座5 带动上转杆6和上轧辊7向下移动,同时调节轴座5上两侧的滑杆26在竖板 24上的滑孔25中向下滑动,上轧辊7与下轧辊18之间的距离到达指定值时,液压缸4停止工作,工作人员转动滑轨11一侧的螺杆31,螺杆31推动滑块 28向右移动,滑块28带动滑座12沿滑轨11向右滑动,滑座12带动张紧轮 13向右移动使得皮带二14紧绷,工作人员同时启动电机一9和电机二20,电机一9驱动主动轮一10转动,主动轮一10转动通过皮带一14带动从动轮一8转动,从动轮一8转动带动上转杆6转动,上转杆6转动带动上轧辊7 转动,电机二20驱动主动轮二21转动,主动轮二21转动通过皮带二22带动从动轮二19转动,从动轮二19转动带动下转杆17转动,下转杆17转动带动下轧辊18转动,下轧辊18配合上轧辊7对纳米隔热板进行轧制成型。
本实用新型的实施例公布的是较佳的实施例,但并不局限于此,本领域的普通技术人员,极易根据上述实施例,领会本实用新型的精神,并做出不同的引申和变化,但只要不脱离本实用新型的精神,都在本实用新型的保护范围内。

Claims (6)

1.一种纳米隔热板加工用成型装置,包括底板(1),其特征在于:所述底板(1)的顶部外壁焊接有若干个立柱(2),所述立柱(2)的顶端焊接有顶板(3),所述顶板(3)的底部外壁通过螺栓固定安装有两个液压缸(4),两个所述液压缸(4)的底端均焊接有调节轴座(5),两个所述调节轴座(5)的内部转动连接有上转杆(6),所述上转杆(6)的外壁固定套接有上轧辊(7),所述上转杆(6)的一端固定套接有从动轮一(8),所述底板(1)的顶部外壁通过螺栓固定安装有电机一(9),所述电机一(9)的输出轴传动连接有主动轮一(10),所述底板(1)的顶部外壁焊接有滑轨(11),所述滑轨(11)的顶部外壁滑动连接有滑座(12),所述滑座(12)的内壁之间转动连接有张紧轮(13),所述从动轮一(8)、主动轮一(10)和张紧轮(13)之间传动连接有皮带一(14),所述立柱(2)的侧壁之间焊接有两个下横梁(15),两个所述下横梁(15)的顶部外壁均通过螺栓固定有固定轴座(16),两个所述固定轴座(16)的内部转动连接有下转杆(17),所述下转杆(17)的外壁固定套接有下轧辊(18),所述下转杆(17)的一端固定套接有从动轮二(19)。
2.如权利要求1所述的一种纳米隔热板加工用成型装置,其特征在于:所述底板(1)的顶部外壁通过螺栓固定安装有电机二(20),所述电机二(20)的输出轴传动连接有主动轮二(21),所述主动轮二(21)与从动轮二(19)之间传动连接有皮带二(22)。
3.如权利要求1所述的一种纳米隔热板加工用成型装置,其特征在于:所述立柱(2)的侧壁之间焊接有上横梁(23),所述上横梁(23)的顶部外壁与顶板(3)底部外壁之间焊接有竖板(24),所述竖板(24)的侧壁开设有滑孔(25),所述调节轴座(5)的侧壁焊接有与滑孔(25)相适配的滑杆(26)。
4.如权利要求1所述的一种纳米隔热板加工用成型装置,其特征在于:所述滑轨(11)的顶部外壁开设有滑槽(27),所述滑座(12)的底部外壁设置有与滑槽(27)相适配的滑块(28),所述滑座(12)的底部外壁设置有凸块(29)。
5.如权利要求1所述的一种纳米隔热板加工用成型装置,其特征在于:所述滑轨(11)的一侧外壁开设有螺孔(30),所述螺孔(30)的内部螺纹连接有螺杆(31)。
6.如权利要求1所述的一种纳米隔热板加工用成型装置,其特征在于:所述底板(1)的顶部外壁与下横梁(15)的底部外壁之间焊接有下撑杆(32),所述下横梁(15)的顶部外壁与上横梁(23)的底部外壁焊接有中撑杆(33),所述上横梁(23)的顶部外壁与顶板(3)的底部外壁之间焊接有上撑杆(34)。
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