WO2020206578A1 - 一种可调节型板材校平机 - Google Patents

一种可调节型板材校平机 Download PDF

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Publication number
WO2020206578A1
WO2020206578A1 PCT/CN2019/081672 CN2019081672W WO2020206578A1 WO 2020206578 A1 WO2020206578 A1 WO 2020206578A1 CN 2019081672 W CN2019081672 W CN 2019081672W WO 2020206578 A1 WO2020206578 A1 WO 2020206578A1
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Prior art keywords
wall
movable
movable block
shaft
groups
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PCT/CN2019/081672
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English (en)
French (fr)
Inventor
冯小亮
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江苏铭格锻压设备有限公司
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Priority to PCT/CN2019/081672 priority Critical patent/WO2020206578A1/zh
Publication of WO2020206578A1 publication Critical patent/WO2020206578A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D1/00Straightening, restoring form or removing local distortions of sheet metal or specific articles made therefrom; Stretching sheet metal combined with rolling
    • B21D1/02Straightening, restoring form or removing local distortions of sheet metal or specific articles made therefrom; Stretching sheet metal combined with rolling by rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D37/00Tools as parts of machines covered by this subclass
    • B21D37/16Heating or cooling

Definitions

  • the invention relates to the technical field of plate leveling, in particular to an adjustable plate leveling machine.
  • Leveling machine is a commonly used equipment in plate processing. It is mainly used to correct various specifications of plates and cut into blocks. Because of its simple operation, it is widely used in machinery, metallurgy, building materials, chemical industries and other industries.
  • the shaping mainly depends on the thickness and material of the plate to be calibrated.
  • the existing leveling machine can only level the plate of one thickness after the shaping. The function is relatively simple, and the equipment will generate heat after long-term operation, and the plate will be easily deformed when heated. For this reason, we propose an adjustable plate leveling machine.
  • the object of the present invention is to provide an adjustable plate leveling machine to solve the problems raised in the background art.
  • an adjustable plate leveling machine including a base, the top of the base is provided with support columns on the left and right sides, two groups of the support columns are symmetrically arranged on the opposite side of the outer wall
  • There are sliding grooves the two groups of sliding grooves are slidably connected with lifting grooves
  • the tops of the two groups of support columns are provided with cross arms
  • the top center of the lifting grooves is connected with a screw through a bearing
  • the top of the screw is arranged through the cross arm
  • the bottom center of the base is provided with a lower bin
  • the inner wall of the lower bin is provided with two sets of lower driven shafts and a set of lower driving shafts through bearings
  • the lower driving shafts are located on the right of the two sets of lower driven shafts Side
  • the rear end of the lower driving shaft penetrates the rear outer wall of the lower cabin and is provided with a first motor
  • the front ends of the lower driving shaft and the lower driven shaft both penetrate the front outer
  • the outer walls of the lower driving shaft and the lower driven shaft are respectively provided with a lower driving roller and a lower driven roller.
  • the inner walls of the left and right sides of the lifting groove are symmetrically provided with movable grooves.
  • the bottom of the outer wall of the left side of the housing is provided with a one-way water inlet pipe, the bottom of the housing is evenly provided with water inlet holes, and the other end of the one-way water pipe extends to the outer wall of the top of the lifting tank to connect with the external water tank, so
  • the inner wall of the installation groove is connected with four sets of rotating shafts through bearings, and the outer walls of the four sets of rotating shafts are all sleeved with gears.
  • a movable groove is provided between the adjacent two sets of gears, and a movable block is slidably connected in the movable groove.
  • the bottom of the penetrating shell and the mounting groove is attached to the top of the movable block, the left and right sides of the movable block are provided with racks, the side of the racks away from the movable block is engaged with the gear, and the top of the movable block is provided with a spring retractable
  • the top of the spring telescopic rod is connected with the inner wall of the top of the mounting groove, the inner cavity of the movable block on the left side is connected with an upper driving shaft through a bearing, and the front and rear ends of the upper driving shaft are respectively provided with a pulley and a second motor through the movable block,
  • the outer wall of the upper driving shaft is provided with an upper driving roller, the inner cavities of the two groups on the right side of the movable block are connected with an upper driven shaft through a bearing, and the front end of the upper driven shaft penetrates the front outer wall of the movable block and is provided with a pulley, so
  • the outer wall of the aforementioned driven shaft is provided
  • the top center of the adjustment handle is connected with a vertical rod through a bearing, the top of the vertical rod is provided with a connecting rod, the left side of the top of the cross arm is provided with a benchmark, and the left outer wall of the benchmark is provided with a T-shaped chute, The T-shaped chute is slidably connected with the connecting rod, and the left side outer wall of the benchmark rod is provided with a scale line.
  • both the top of the movable block and the top of the lifting groove are provided with a through hole that matches the water inlet at the bottom of the housing, and the through hole is an inverted cone.
  • the bottom of the movable rod is clamped with an elastic rubber pad, the movable rod and the movable plate are connected and connected in a threaded manner, and the outer wall around the movable plate is provided with a sealing rubber gasket.
  • the upper driving roller, the upper driven roller, the lower driving roller and the lower driven roller are all equal in size and diameter
  • the inner cavity of the lower bin is provided with a water storage tank
  • the lower driving roller and the lower driven roller The bottom third of the roll is below the water surface.
  • the beneficial effect of the present invention is that when the equipment is used to perform a relatively flat board, the adjustment handle can be rotated according to the thickness of the board, the adjustment handle drives the screw to rotate, and the screw rotates the lifting groove to move up and down, changing the upper The distance between the active roller and the lower active roller realizes the leveling of plates of different thicknesses.
  • the movable block moves upward under pressure.
  • the spring telescopic rod is compressed, and the movable block moves upward to make the movable rod and The movable plate is pushed up to compress the spring.
  • the water in the external water tank is sucked into the shell under the effect of the movable plate movement.
  • the water entering the shell flows into the movable block through the water inlet and through holes, and the active The roller and the upper driven roller are cooled to avoid deformation caused by overheating of the plate.
  • the spring telescopic rod resets to drive the movable block down, and the spring reset pushes the movable plate downward.
  • the elastic force generated by the deformation of the spring telescopic rod is While pressing the plate, it plays a role of over-pressure protection to avoid excessive pressure and deformation of the plate.
  • Figure 1 is a schematic diagram of the structure of the present invention
  • Figure 2 is a schematic diagram of the connection between the lifting groove and the mounting groove of the present invention.
  • an adjustable plate leveling machine including a base 1, the top of the base 1 on the left and right sides are provided with support columns 2, two sets of support columns 2 opposite sides
  • the outer wall is symmetrically provided with sliding grooves 3, the two groups of sliding grooves 3 are slidingly connected with lifting grooves 4, the tops of the two groups of support columns 2 are provided with cross arms 5, the top center of the lifting grooves 4 is connected with a screw 6 through a bearing, and the top of the screw 6 penetrates
  • the cross arm 5 is provided with an adjusting handle 7, the top center of the base 1 is provided with a lower bin 11, and the inner wall of the lower bin 11 is provided with two sets of lower driven shafts 15 and a set of lower driving shafts 12 through bearings, and the lower driving shafts 12 are located in the two sets On the right side of the lower driven shaft 15, the rear end of the lower driving shaft 12 penetrates through the outer wall of the rear side of the lower bin 11 and a first motor 13 is provided.
  • the front ends of the lower driving shaft 12 and the lower driven shaft 15 both penetrate the front outer wall of the lower bin 11 There are pulleys, and the pulleys of the lower driving shaft 12 and the lower driven shaft 15 are connected by belts.
  • the outer walls of the lower driving shaft 12 and the lower driven shaft 15 are respectively provided with a lower driving roller 14 and a lower driven roller 16, and the lifting groove 4 has two left and right sides.
  • the side inner walls are symmetrically provided with movable grooves, the two groups of movable grooves are clamped with installation grooves 17, and the top of the installation grooves 17 are evenly provided with three groups of shells 18, the top inner wall of the shell 18 is evenly provided with springs 19, and the bottom of the springs 19 is provided with movable plates 20.
  • the bottom of the movable plate 20 is provided with a movable rod 21, the bottom of the left side outer wall of the housing 18 is provided with a one-way water inlet pipe 22, the bottom of the housing 18 is evenly provided with water inlet holes, and the other end of the one-way water inlet pipe 22 extends to the lifting groove 4
  • the outer wall of the top is connected with the outer water tank.
  • the inner wall of the mounting groove 17 is connected with four sets of rotating shafts through bearings. The outer walls of the four sets of rotating shafts are all sleeved with gears 23.
  • the side of the rack 25 away from the movable block 24 is connected to the gear 23 is engaged, the top of the movable block 24 is provided with a spring telescopic rod 26, the top of the spring telescopic rod 26 is connected with the top inner wall of the mounting groove 17, the inner cavity of the left movable block 24 is connected with an upper active shaft 27 through a bearing, and the upper active shaft 27 runs through the front and rear ends
  • the movable blocks 24 are respectively provided with a pulley and a second motor 28.
  • the outer wall of the upper driving shaft 27 is provided with an upper driving roller 29.
  • the inner cavities of the two groups of movable blocks 24 on the right are connected with an upper driven shaft 30 and an upper driven shaft 30 through bearings.
  • the front end penetrates the front outer wall of the movable block 24 and is provided with a pulley
  • the outer wall of the upper driven shaft 30 is provided with an upper driven roller 31
  • the upper driving shaft 27 and the pulley of the upper driven shaft 30 are connected by a belt.
  • the top center of the adjustment handle 7 is connected with a vertical rod 8 through a bearing, the top of the vertical rod 8 is provided with a connecting rod 9, the top left of the cross arm 5 is provided with a benchmark 10, and the left outer wall of the benchmark 10 is provided with a T-shaped slide.
  • the T-shaped chute is slidably connected to the connecting rod 9, and the left side wall of the benchmark rod 10 is provided with a scale line.
  • Rotating the adjustment handle 7 makes the screw 6 rotate up or down, and the screw 6 drives the lifting groove 4 to move up and down to change the upper driving roller 29
  • the distance between the lower driving roller 14 and the lower driving roller 14 is to level the plates of different thicknesses.
  • the screw 6 will drive the adjustment handle 7, the vertical rod 8 and the connecting rod 9 to rise or fall.
  • the connecting rod 9 moves up and down on the outer wall of the benchmarking rod 10. It can be observed that the scale line rotates and adjusts the handle 7 according to the thickness of the plate;
  • both the top of the movable block 24 and the top of the mounting groove 17 are provided with a through hole that matches the water inlet at the bottom of the housing 18, and the through hole is an inverted cone.
  • the water in the external water tank enters through the one-way water inlet pipe 22 In the housing 18, the water in the housing 18 flows into the movable block 24 through the water inlet and through holes, and cools the upper driving roller 29 and the upper driven roller 31 provided at the bottom of the movable block 24;
  • the bottom of the movable rod 21 is clamped with an elastic rubber pad to reduce the pressure on the top of the movable block 24 from the bottom of the movable rod 21.
  • the movable rod 21 and the movable plate 20 are connected through a threaded connection, which is convenient for replacement and disassembly.
  • the outer wall of the movable plate 20 is provided with a sealing rubber gasket to improve the sealing performance of the connection between the movable plate 20 and the housing 18;
  • the upper driving roller 29, the upper driven roller 31, the lower driving roller 14 and the lower driven roller 16 are all equal in size and diameter.
  • the inner cavity of the lower bin 11 is provided with a water storage tank, and the lower driving roller 14 and One third of the bottom of the lower driven roller 16 is located below the water surface, and the lower driving roller 14 and the lower driven roller 16 are cooled.
  • the water entering the housing 18 flows into the movable block 24 through the water inlet and through holes, and faces the active roller 29. And the upper driven roller 31 to cool down.
  • the spring telescopic rod 26 resets to drive the movable block 24 down
  • the spring 19 resets pushes the movable plate 20 downward
  • the elastic force generated by the deformation of the spring telescopic rod 26 is in While pressing the plate, it plays a role of over-pressure protection to avoid excessive pressure and deformation of the plate.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Special Wing (AREA)

Abstract

一种可调节型板材校平机,包括底座(1),所述底座顶部左右两侧均设置有支撑柱(2),两组所述支撑柱相对一侧外壁对称设置有滑槽(3),两组所述滑槽内滑动连接有升降槽(4),两组所述支撑柱的顶部设置有横臂(5)。在使用该校平机对板材进行较平时,可以对照板材的厚度旋转调节手柄(7),改变了上主动辊(29)与下主动辊(14)之间的距离,实现了对不同厚度板材的校平,进入壳体(18)中的水通过进水孔和通孔流入活动块(24)中,对上主动辊和上从动辊(31)进行降温,避免板材过热导致变形,弹簧伸缩杆(26)形变产生的弹力在压紧板材的同时,起到了过压保护作用,避免板材受到的压力过大变形。

Description

一种可调节型板材校平机 技术领域
本发明涉及板材校平技术领域,具体为一种可调节型板材校平机。
背景技术
校平机是板材加工中常用的设备,主要用于矫正各种规格板材及剪切成块的板材,由于操作简单,被广泛应用于机械、冶金、建材、化工等行业,而校平机的定型主要取决于被校平板材的厚度和材质,现有的校平机定型后只能对一种厚度的板材进行校平,功能较为单一,且设备长时间运行会发热,板材受热容易产生形变,为此,我们提出一种可调节型板材校平机。
发明内容
本发明的目的在于提供一种可调节型板材校平机,以解决上述背景技术中提出的问题。
为实现上述目的,本发明提供如下技术方案:一种可调节型板材校平机,包括底座,所述底座顶部左右两侧均设置有支撑柱,两组所述支撑柱相对一侧外壁对称设置有滑槽,两组所述滑槽内滑动连接有升降槽,两组所述支撑柱的顶部设置有横臂,所述升降槽顶部中心通过轴承连接有螺杆,所述螺杆顶部贯穿横臂设置有调节手柄,所述底座顶部中心设置有下仓,所述下仓内壁通过轴承设置有两组下从动转轴和一组下主动转轴,且所述下主动转轴位于两组下从动转轴右侧,所述下主动转轴的后端贯穿下仓后侧外壁设置有第一电机,所述下主动转轴和下从动转轴的前端均贯穿下仓前侧外壁设置有皮带轮,且所述下主动转轴与下从动转轴的皮带轮通过皮带连接,所述下主动转轴和下从动转轴外壁分别设置有下主动辊和下从动辊,所述升降槽左右两侧内壁对称设置有活动槽,两组活动槽内卡接有安装槽,所述安装槽顶部均匀设置有三组壳体,所述壳体顶部内壁均匀设置有弹簧,所述弹簧底部设置有活动板,所述活动板底部设置有活动杆,所述壳体左侧外壁底部设置有单 向进水管,所述壳体底部均匀设置有进水孔,所述单向进水管的另一端延伸至升降槽顶部外壁与外部水箱连接,所述安装槽内壁通过轴承连接有四组转轴,四组转轴外壁均套接齿轮,相邻两组所述齿轮之间设置有活动槽,且活动槽内滑动连接有活动块,所述活动杆底部贯穿壳体和安装槽底部与活动块顶部贴合,所述活动块左右两侧均设置有齿条,所述齿条远离活动块的一侧与齿轮啮合,所述活动块顶部设置有弹簧伸缩杆,所述弹簧伸缩杆顶部与安装槽顶部内壁连接,左侧所述活动块内腔通过轴承连接有上主动转轴,所述上主动转轴前后端贯穿活动块分别设置有皮带轮和第二电机,所述上主动转轴外壁设置有上主动辊,右侧两组所述活动块内腔均通过轴承连接有上从动转轴,所述上从动转轴前端贯穿活动块前侧外壁设置有皮带轮,所述上从动转轴外壁设置有上从动辊,且所述上主动转轴与上从动转轴的皮带轮通过皮带连接。
进一步地,所述调节手柄顶部中心通过轴承连接有立杆,所述立杆顶部设置有连接杆,所述横臂顶部左侧设置有标杆,所述标杆左侧外壁设置有T型滑槽,T型滑槽与连接杆滑动连接,且所述标杆左侧外壁设置有刻度线。
进一步地,所述活动块顶部和升降槽顶部均设置有与壳体底部进水口相配合的通孔,且通孔为倒圆锥。
进一步地,所述活动杆的底部卡接有弹性橡胶垫,所述活动杆与活动板通过螺纹方式连接连接,且所述活动板四周外壁设置有密封橡胶垫。
进一步地,所述上主动辊、上从动辊、下主动辊和下从动辊的大小和直径均相等,所述下仓内腔设置有储水槽,且所述下主动辊和下从动辊底部的三分之一位于水面以下。
与现有技术相比,本发明的有益效果是:在使用时设备对板材进行较平时,可以对照板材的厚度旋转调节手柄,调节手柄带动螺杆旋转,螺杆旋转带动升降槽上下移动,改变了上主动辊与下主动辊之间的距离,实现了对不 同厚度板材的校平,且在校平时,活动块受到压力向上移动,此时弹簧伸缩杆被压缩,而活动块向上移动将活动杆和活动板向上顶,将弹簧压缩,此时外部水箱中的水在活动板运动的效果下被吸入壳体中,进入壳体中的水通过进水孔和通孔流入活动块中,对上主动辊和上从动辊进行降温,避免板材过热导致变形,当一件板材校平完成后,弹簧伸缩杆复位带动活动块下降,弹簧复位将活动板向下推,弹簧伸缩杆形变产生的弹力在压紧板材的同时,起到了过压保护作用,避免板材受到的压力过大变形。
附图说明
图1为本发明结构示意图;
图2为本发明升降槽与安装槽连接示意图。
图中:1、底座;2、支撑柱;3、滑槽;4、升降槽;5、横臂;6、螺杆;7、调节手柄;8、立杆;9、连接杆;10、标杆;11、下仓;12、下主动转轴;13、第一电机;14、下主动辊;15、下从动转轴;16、下从动辊;17、安装槽;18、壳体;19、弹簧;20、活动板;21、活动杆;22、单向进水管;23、齿轮;24、活动块;25、齿条;26、弹簧伸缩杆;27、上主动转轴;28、第二电机;29、上主动辊;30、上从动转轴;31、上从动辊。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-2,本发明提供一种技术方案:一种可调节型板材校平机,包括底座1,底座1顶部左右两侧均设置有支撑柱2,两组支撑柱2相对一侧外壁对称设置有滑槽3,两组滑槽3内滑动连接有升降槽4,两组支撑柱2的顶部设置有横臂5,升降槽4顶部中心通过轴承连接有螺杆6,螺杆6顶部贯穿 横臂5设置有调节手柄7,底座1顶部中心设置有下仓11,下仓11内壁通过轴承设置有两组下从动转轴15和一组下主动转轴12,且下主动转轴12位于两组下从动转轴15右侧,下主动转轴12的后端贯穿下仓11后侧外壁设置有第一电机13,下主动转轴12和下从动转轴15的前端均贯穿下仓11前侧外壁设置有皮带轮,且下主动转轴12与下从动转轴15的皮带轮通过皮带连接,下主动转轴12和下从动转轴15外壁分别设置有下主动辊14和下从动辊16,升降槽4左右两侧内壁对称设置有活动槽,两组活动槽内卡接有安装槽17,安装槽17顶部均匀设置有三组壳体18,壳体18顶部内壁均匀设置有弹簧19,弹簧19底部设置有活动板20,活动板20底部设置有活动杆21,壳体18左侧外壁底部设置有单向进水管22,壳体18底部均匀设置有进水孔,单向进水管22的另一端延伸至升降槽4顶部外壁与外部水箱连接,安装槽17内壁通过轴承连接有四组转轴,四组转轴外壁均套接齿轮23,相邻两组齿轮23之间设置有活动槽,且活动槽内滑动连接有活动块24,活动杆21底部贯穿壳体18和安装槽17底部与活动块24顶部贴合,活动块24左右两侧均设置有齿条25,齿条25远离活动块24的一侧与齿轮23啮合,活动块24顶部设置有弹簧伸缩杆26,弹簧伸缩杆26顶部与安装槽17顶部内壁连接,左侧活动块24内腔通过轴承连接有上主动转轴27,上主动转轴27前后端贯穿活动块24分别设置有皮带轮和第二电机28,上主动转轴27外壁设置有上主动辊29,右侧两组活动块24内腔均通过轴承连接有上从动转轴30,上从动转轴30前端贯穿活动块24前侧外壁设置有皮带轮,上从动转轴30外壁设置有上从动辊31,且上主动转轴27与上从动转轴30的皮带轮通过皮带连接。
如图1所示,调节手柄7顶部中心通过轴承连接有立杆8,立杆8顶部设置有连接杆9,横臂5顶部左侧设置有标杆10,标杆10左侧外壁设置有T型滑槽,T型滑槽与连接杆9滑动连接,且标杆10左侧外壁设置有刻度线,旋转调节手柄7使螺杆6旋转上升或下降,而螺杆6带动升降槽4上下移动改 变上主动辊29与下主动辊14之间的距离,对不同厚度的板材进行校平,此时螺杆6会带动调节手柄7、立杆8和连接杆9上升或下降,连接杆9在标杆10外壁上下移动,可以观察刻度线根据板材的厚度旋转调节手柄7;
如图2所示,活动块24顶部和安装槽17顶部均设置有与壳体18底部进水口相配合的通孔,且通孔为倒圆锥,外部水箱中的水通过单向进水管22进入壳体18内,壳体18中的水通过进水孔和通孔流入活动块24中,对活动块24底部设置的上主动辊29和上从动辊31进行冷却;
如图2所示,活动杆21的底部卡接有弹性橡胶垫,减小活动杆21底部对活动块24顶部的压力,活动杆21与活动板20通过螺纹方式连接连接,方便更换和拆卸,且活动板20四周外壁设置有密封橡胶垫,提高活动板20与壳体18连接的密封性;
如图1所示,上主动辊29、上从动辊31、下主动辊14和下从动辊16的大小和直径均相等,下仓11内腔设置有储水槽,且下主动辊14和下从动辊16底部的三分之一位于水面以下,对下主动辊14和下从动辊16进行降温。
实施例:在使用时对照板材的厚度旋转调节手柄7,调节手柄7带动螺杆6旋转,螺杆6旋转带动升降槽4上下移动,改变了上主动辊29与下主动辊14之间的距离,实现了对不同厚度板材的校平,且在校平时,活动块24受到压力向上移动,此时弹簧伸缩杆26被压缩,而活动块24向上移动将活动杆21和活动板20向上顶,将弹簧19压缩,此时外部水箱中的水在活动板20运动的效果下被吸入壳体18中,进入壳体18中的水通过进水孔和通孔流入活动块24中,对上主动辊29和上从动辊31进行降温,当一件板材校平完成后,弹簧伸缩杆26复位带动活动块24下降,弹簧19复位将活动板20向下推,且弹簧伸缩杆26形变产生的弹力在压紧板材的同时,起到了过压保护作用,避免板材受到的压力过大变形。
尽管已经示出和描述了本发明的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本发明的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本发明的范围由所附权利要求及其等同物限定。

Claims (5)

  1. 一种可调节型板材校平机,包括底座(1),其特征在于:所述底座(1)顶部左右两侧均设置有支撑柱(2),两组所述支撑柱(2)相对一侧外壁对称设置有滑槽(3),两组所述滑槽(3)内滑动连接有升降槽(4),两组所述支撑柱(2)的顶部设置有横臂(5),所述升降槽(4)顶部中心通过轴承连接有螺杆(6),所述螺杆(6)顶部贯穿横臂(5)设置有调节手柄(7),所述底座(1)顶部中心设置有下仓(11),所述下仓(11)内壁通过轴承设置有两组下从动转轴(15)和一组下主动转轴(12),且所述下主动转轴(12)位于两组下从动转轴(15)右侧,所述下主动转轴(12)的后端贯穿下仓(11)后侧外壁设置有第一电机(13),所述下主动转轴(12)和下从动转轴(15)的前端均贯穿下仓(11)前侧外壁设置有皮带轮,且所述下主动转轴(12)与下从动转轴(15)的皮带轮通过皮带连接,所述下主动转轴(12)和下从动转轴(15)外壁分别设置有下主动辊(14)和下从动辊(16),所述升降槽(4)左右两侧内壁对称设置有活动槽,两组活动槽内卡接有安装槽(17),所述安装槽(17)顶部均匀设置有三组壳体(18),所述壳体(18)顶部内壁均匀设置有弹簧(19),所述弹簧(19)底部设置有活动板(20),所述活动板(20)底部设置有活动杆(21),所述壳体(18)左侧外壁底部设置有单向进水管(22),所述壳体(18)底部均匀设置有进水孔,所述单向进水管(22)的另一端延伸至升降槽(4)顶部外壁与外部水箱连接,所述安装槽(17)内壁通过轴承连接有四组转轴,四组转轴外壁均套接齿轮(23),相邻两组所述齿轮(23)之间设置有活动槽,且活动槽内滑动连接有活动块(24),所述活动杆(21)底部贯穿壳体(18)和安装槽(17)底部与活动块(24)顶部贴合,所述活动块(24)左右两侧均设置有齿条(25),所述齿条(25)远离活动块(24)的一侧与齿轮(23)啮合,所述活动块(24)顶部设置有弹簧伸缩杆(26),所述弹簧伸缩杆(26)顶部与安装槽(17)顶部内壁连接,左侧所述活动块(24)内腔通过轴承连接有上主动转轴(27),所述上主动转轴(27) 前后端贯穿活动块(24)分别设置有皮带轮和第二电机(28),所述上主动转轴(27)外壁设置有上主动辊(29),右侧两组所述活动块(24)内腔均通过轴承连接有上从动转轴(30),所述上从动转轴(30)前端贯穿活动块(24)前侧外壁设置有皮带轮,所述上从动转轴(30)外壁设置有上从动辊(31),且所述上主动转轴(27)与上从动转轴(30)的皮带轮通过皮带连接。
  2. 根据权利要求1所述的一种可调节型板材校平机,其特征在于:所述调节手柄(7)顶部中心通过轴承连接有立杆(8),所述立杆(8)顶部设置有连接杆(9),所述横臂(5)顶部左侧设置有标杆(10),所述标杆(10)左侧外壁设置有T型滑槽,T型滑槽与连接杆(9)滑动连接,且所述标杆(10)左侧外壁设置有刻度线。
  3. 根据权利要求1所述的一种可调节型板材校平机,其特征在于:所述活动块(24)顶部和安装槽(17)顶部均设置有与壳体(18)底部进水口相配合的通孔,且通孔为倒圆锥。
  4. 根据权利要求1所述的一种可调节型板材校平机,其特征在于:所述活动杆(21)的底部卡接有弹性橡胶垫,所述活动杆(21)与活动板(20)通过螺纹方式连接连接,且所述活动板(20)四周外壁设置有密封橡胶垫。
  5. 根据权利要求1所述的一种可调节型板材校平机,其特征在于:所述上主动辊(29)、上从动辊(31)、下主动辊(14)和下从动辊(16)的大小和直径均相等,所述下仓(11)内腔设置有储水槽,且所述下主动辊(14)和下从动辊(16)底部的三分之一位于水面以下。
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