WO2024098521A1 - Ceramic roller press frame structure facilitating replacement of steel belts - Google Patents

Ceramic roller press frame structure facilitating replacement of steel belts Download PDF

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Publication number
WO2024098521A1
WO2024098521A1 PCT/CN2022/141040 CN2022141040W WO2024098521A1 WO 2024098521 A1 WO2024098521 A1 WO 2024098521A1 CN 2022141040 W CN2022141040 W CN 2022141040W WO 2024098521 A1 WO2024098521 A1 WO 2024098521A1
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Prior art keywords
frame
pads
steel belt
roller press
contour
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PCT/CN2022/141040
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French (fr)
Chinese (zh)
Inventor
温怡彰
邱昭午
陈延林
刘枝钰
陈昌华
Original Assignee
佛山市恒力泰机械有限公司
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Publication of WO2024098521A1 publication Critical patent/WO2024098521A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B17/00Details of, or accessories for, apparatus for shaping the material; Auxiliary measures taken in connection with such shaping
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B3/00Producing shaped articles from the material by using presses; Presses specially adapted therefor
    • B28B3/12Producing shaped articles from the material by using presses; Presses specially adapted therefor wherein one or more rollers exert pressure on the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B3/00Producing shaped articles from the material by using presses; Presses specially adapted therefor
    • B28B3/12Producing shaped articles from the material by using presses; Presses specially adapted therefor wherein one or more rollers exert pressure on the material
    • B28B3/14Producing shaped articles from the material by using presses; Presses specially adapted therefor wherein one or more rollers exert pressure on the material with co-operating pocketed rollers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B5/00Presses characterised by the use of pressing means other than those mentioned in the preceding groups
    • B30B5/04Presses characterised by the use of pressing means other than those mentioned in the preceding groups wherein the pressing means is in the form of an endless band
    • B30B5/06Presses characterised by the use of pressing means other than those mentioned in the preceding groups wherein the pressing means is in the form of an endless band co-operating with another endless band

Definitions

  • the utility model relates to the technical field of ceramic roller presses, in particular to a frame structure of a ceramic roller press which is convenient for replacing steel strips.
  • a ceramic roller press is a machine that presses powder into bricks. It usually uses an upper pressing roller and a lower pressing roller to roll the ceramic.
  • the steel belts on the upper pressing roller and the lower pressing roller need to be replaced after a long period of use.
  • the frame of an existing ceramic roller press is usually fixed as a whole, and it is very cumbersome to replace the steel belts on the upper pressing roller and the lower pressing roller.
  • the ceramic roller press needs to be disassembled as a whole to replace the steel belt, which is very inconvenient.
  • Some ceramic roller presses also have a frame with an upper and lower spliced structure, and the two are usually connected in a detachable manner. The frame still needs to be disassembled to replace the steel belt. For this reason, we propose a ceramic roller press frame structure that is convenient for replacing the steel belt.
  • the utility model provides a ceramic roller press frame structure that facilitates the replacement of steel strips.
  • the problem of cumbersome steel strip replacement can be solved.
  • an operating space can be provided for steel strip replacement on the side where the equal height pad is removed.
  • the steel strip can be replaced without disassembling the frame, and the pulling assembly can pull the frame during replacement to provide overall stability.
  • a ceramic roller press frame structure for convenient steel strip replacement comprising: an upper frame, an upper roller group is arranged in the upper frame; a lower frame, a lower roller group is arranged in the lower frame, and the lower frame is detachably connected to the upper frame; an embedded chassis, the embedded chassis is used to provide support for the lower frame; a pulling assembly is used to connect the upper frame and the lower frame, and the lower frame and the embedded chassis; at least two upper contour pads, the upper contour pads are arranged between the upper frame and the lower frame; at least two lower contour pads, the lower contour pads are arranged between the lower frame and the embedded chassis; wherein, when replacing the upper steel strip in the upper roller group and/or the lower steel strip in the lower roller group, at least one of the upper contour pads and/or the lower contour pads close to the pulling assembly is retained, and the remaining upper contour pads and/or the lower contour pads are removed, and the upper frame and/or the lower frame are pulled by the pulling assembly to keep the upper frame, the lower frame, and the embedded chassis unchanged in relative position, so as
  • the upper and lower contour pads can be partially dismantled, leaving space for replacing the upper and/or lower steel belts, which is conducive to the disassembly and installation of the upper and/or lower steel belts without disassembling the roller press frame.
  • the pulling assembly includes: an upper cantilever beam, which is used to fix the upper frame; an upper pull rod, which is used to support the upper cantilever beam; a lower cantilever beam, which is used to fix the lower frame; and a lower pull rod, which is used to support the lower cantilever beam.
  • the upper frame and the lower frame can be pulled when the upper equal height pad and the lower equal height pad are removed to prevent the upper frame and the lower frame from falling due to gravity.
  • the upper cantilever beam is vertically connected to the upper pull rod
  • the lower cantilever beam is vertically connected to the lower pull rod
  • the upper frame and the lower frame can be supported stably.
  • At least two of the upper cantilever beams and the upper pull rods are provided, and the upper cantilever beams are installed on the same side of the upper frame.
  • the upper frame can be kept level as a whole.
  • At least two lower cantilever beams are provided, the number of the lower pull rods is twice the number of the lower cantilever beams, each of the lower cantilever beams is connected to two lower pull rods, and the lower cantilever beams are all installed on the same side of the lower frame.
  • the lower frame can be kept level as a whole.
  • the bottom end of the upper pull rod is fixed between two lower pull rods located on the same lower cantilever beam.
  • the number of the embedded chassis is consistent with the number of the lower cantilever beams, and the two lower pull rods located on the same lower cantilever beam are fixed on the same embedded chassis.
  • the pre-buried base frame is buried underground to provide a more stable supporting force, which is used to support the overall ceramic roller press and improve stability.
  • the number of the upper contour pads is preferably four, and the number of the lower contour pads is preferably four.
  • the number of the upper contour pads retained is two
  • the number of the lower contour pads retained is two
  • the two retained upper contour pads and lower contour pads are both close to the pulling assembly.
  • the upper contour pad and the lower contour pad can be iron pads or wooden pads.
  • the ceramic roller press frame structure for convenient steel belt replacement provided by the utility model has the following technical effects:
  • the upper frame and the lower frame are split structures, which are easy to process and can be easily installed and disassembled;
  • An upper equal height pad and a lower equal height pad are arranged between the upper frame and the lower frame, which can be removed when replacing the upper steel belt and/or the lower steel belt, so as to provide an operating space for the removal of the upper steel belt and/or the lower steel belt;
  • the upper frame and the lower frame are both provided with a pulling assembly, which can provide a pulling effect on the upper frame and the lower frame when the upper and lower height pads are removed to stabilize the structure;
  • the pulling assembly adopts a cantilever beam and a pull rod to provide support stability.
  • FIG1 is a schematic diagram of the side structure of an embodiment of the utility model
  • FIG2 is a structural diagram of the front side of the embodiment of the utility model in a normal state
  • FIG3 is a structural diagram of a front disassembly state of a height pad according to an embodiment of the utility model
  • Embodiment 1 of the present invention is shown in FIG. 1 to FIG. 3 .
  • the present invention discloses a frame structure of a ceramic roller press for convenient steel strip replacement, including:
  • An upper frame 1 wherein an upper roller group is arranged in the upper frame 1, and the upper roller group comprises an upper active roller 11, an upper driven roller 12, and an upper pressure roller 13, and an upper steel belt 14 is wound between the upper active roller 11, the upper driven roller 12, and the upper pressure roller 13;
  • a lower frame 2 wherein a lower roller group is arranged in the lower frame 2, and the lower roller group comprises a lower active roller 21, a lower driven roller 22, and a lower pressure roller 23, and a lower steel belt 24 is wound between the lower active roller 21, the lower driven roller 22, and the lower pressure roller 23;
  • the embedded base frame 4, in this embodiment, is provided with two embedded base frames 4, which are used to provide support for the lower frame 2;
  • the pulling assembly 3 is used to connect the upper frame 1 and the lower frame 2, and the lower frame 2 and the embedded bottom frame 4, so that the upper frame 1 and the lower frame 2 are detachably connected, and the lower frame 2 and the embedded bottom frame 4 are detachably connected;
  • the upper contour pad 5 and the lower contour pad 6 can be partially dismantled to reserve a gap for replacing the upper steel belt 14 and/or the lower steel belt 24, which is conducive to the disassembly and installation of the upper steel belt 14 and/or the lower steel belt 24, and there is no need to dismantle the roller press frame.
  • the pulling assembly 3 comprises:
  • the lower pull rod 33 is fixed above the embedded chassis 4;
  • a lower cantilever beam 34 is fixed to the upper part of the embedded chassis 4 through the lower tie rod 33, so that the lower cantilever beam 34 fixes the lower frame 2 to play a supporting effect on the lower frame;
  • An upper cantilever beam 32 is fixed above the lower cantilever beam 34 through the upper pull rod 31, so that the upper cantilever beam 32 fixes the upper frame 1 to play a supporting effect on the upper frame;
  • the upper cantilever beam 32 is vertically connected to the upper pull rod 31, and the lower cantilever beam 34 is vertically connected to the lower pull rod 33, which can support the upper frame 1 and the lower frame 2 stably.
  • the upper cantilever beam 32 and the upper pull rod 31, and the lower cantilever beam 34 and the lower pull rod 33 may not be vertically arranged.
  • At least two upper cantilever beams 32 and upper pull rods 31 are provided, and the upper cantilever beams 32 are installed on the same side of the upper frame 1, so that the upper frame 1 can be kept horizontal as a whole.
  • two upper cantilever beams 32 and two upper pull rods 31 are provided; at least two lower cantilever beams 34 are provided, and the number of lower pull rods 33 is twice the number of lower cantilever beams 34.
  • Each of the lower cantilever beams 34 is connected to two lower pull rods 33, and the lower cantilever beams 34 are installed on the same side of the lower frame 2, so that the lower frame 2 can be kept horizontal as a whole.
  • two lower cantilever beams 34 and four lower pull rods 33 are provided; the bottom end of the upper pull rod 31 is fixed between the two lower pull rods 33 located on the same lower cantilever beam 34, and the load-bearing effect is better.
  • the number of the embedded base frames 4 is consistent with the number of the lower cantilever beams 34.
  • the two lower pull rods 33 located on the same lower cantilever beam 34 are fixed on the same embedded base frame 4.
  • the embedded base frames 4 are embedded in the ground to provide a more stable supporting force for the overall supporting effect of the ceramic roller press and improve stability. Two embedded base frames 4 are provided in this embodiment 1.
  • the upper frame 1 and the lower frame 2 can be pulled when the upper height pad 5 and the lower height pad 6 are removed, so as to prevent the upper frame 1 and the lower frame 2 from falling due to gravity.
  • the number of the lower contour pads 6 is preferably four, and the number of the lower contour pads 6 is preferably four, providing more support effects for the upper frame 1 or the lower frame 2.
  • the number of the lower contour pads 6 is preferably four, providing more support effects for the upper frame 1 or the lower frame 2.
  • two of the upper contour pads 5 and/or the lower contour pads 6 are retained, and the two retained upper contour pads 5 and/or the lower contour pads 6 are close to the pulling assembly 3, and can cooperate with the pulling assembly 3 to support the upper frame 1 and/or the lower frame 2, and do not hinder the upper steel belt 14 and/or the lower steel belt 24 from being removed from the side of the upper frame 1 and/or the lower frame 2 away from the pulling assembly 3, which helps to replace the upper steel belt 14 and/or the lower steel belt 24 and maintain the overall stability.
  • the upper height pad 5 and the lower height pad 6 can be iron pads or wooden pads, or other materials with good supporting effects, which are easy to remove.
  • the implementation method of the utility model is as follows:
  • the upper contour pad 5 When it is necessary to remove the upper steel belt 14, keep the upper contour pad 5 close to the traction component side and remove the other upper contour pads 5. At this time, an operation space 7 is reserved at the end of the upper frame 1 away from the traction component, and the upper steel belt 14 can be removed and replaced.
  • the upper cantilever beam 32 in the traction assembly can provide a pulling force for the upper frame 1 under the pulling force of the upper pull rod 31, thereby maintaining the horizontal stability of the upper frame 1 and avoiding tilting downward due to gravity. After replacing the upper steel belt 14, the removed upper contour pad 5 can be reset.
  • the lower contour pad 6 When it is necessary to remove the lower steel belt 24, retain the lower contour pad 6 close to the side of the traction assembly and remove the remaining lower contour pads 6. At this time, an operating space 7 is reserved at the end of the lower frame 2 away from the traction assembly, and the lower steel belt 24 can be removed and replaced.
  • the lower cantilever beam 34 in the traction assembly can provide a pulling force for the lower frame 2 under the pulling force of the lower pull rod 33, thereby maintaining the horizontal stability of the lower frame 2 and avoiding tilting downward due to gravity. After replacing the upper steel belt 14, the removed lower contour pad 6 can be reset.
  • the ceramic roller press frame structure for convenient steel belt replacement provided by the utility model has the following technical effects:
  • the upper frame 1 and the lower frame 2 are split structures, which are easy to process and convenient to install and disassemble;
  • An upper height pad 5 and a lower height pad 6 are provided between the upper frame 1 and the lower frame 2, which can be removed when replacing the upper steel belt 14 and/or the lower steel belt 24, providing an operating space 7 for the removal of the upper steel belt 14 and/or the lower steel belt 24;
  • the upper frame 1 and the lower frame 2 are both provided with a pulling assembly 3, which can provide a pulling effect on the upper frame 1 and the lower frame 2 when the upper height pad 5 and the lower height pad 6 are removed, thereby stabilizing the structure;
  • the pulling assembly 3 adopts a cantilever beam and a pull rod to provide support stability.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Rollers For Roller Conveyors For Transfer (AREA)

Abstract

A ceramic roller press frame structure facilitating the replacement of steel belts. The structure comprises: an upper frame (1) and a lower frame (2); a pre-embedded underframe (4); a traction assembly (3); upper equal-height pads (5), which are arranged between the upper frame (1) and the lower frame (2); and lower equal-height pads (6), which are arranged between the lower frame (2) and the pre-embedded underframe (4), wherein when an upper steel belt and/or a lower steel belt is replaced, some of the upper equal-height pads (5) and/or the lower equal-height pads (6) are removed, and by means of a traction effect of the traction assembly on the upper frame (1) and/or the lower frame (2), the relative positions of the upper frame (1), the lower frame (2) and the pre-embedded underframe (4) remain unchanged, so as to provide an operation space for replacing the upper steel belt and/or the lower steel belt. The ceramic roller press frame structure can solve the problem of it being complicated to replace steel belts. By removing the equal-height pads, an operation space for steel belts can be provided on the side where the equal-height pads have been removed, and the steel belts can be replaced without disassembling a frame; and the traction assembly (3) can pull the frame during replacement, thereby providing overall stability.

Description

一种方便钢带更换的陶瓷辊压机机架结构A ceramic roller press frame structure for convenient steel belt replacement 技术领域Technical Field
本实用新型涉及陶瓷辊压机技术领域,尤其涉及一种方便钢带更换的陶瓷辊压机机架结构。The utility model relates to the technical field of ceramic roller presses, in particular to a frame structure of a ceramic roller press which is convenient for replacing steel strips.
背景技术Background technique
陶瓷辊压机是将粉料压制成砖坯的机器,通常采用上压辊和下压辊对陶瓷进行滚压,所述上压辊和下压辊上的钢带在使用时间过长需要更换,现有的陶瓷辊压机的机架通常为一体固定,对于上压辊与下压辊上的钢带更换非常繁琐,需要对陶瓷辊压机整体拆卸进行更换钢带,十分不便;还有部分陶瓷辊压机的机架采用上下的拼合结构,二者通常为可拆卸式连接的方式,对于钢带的更换依旧需要对机架进行拆卸后才能更换,为此,我们提出一种方便钢带更换的陶瓷辊压机机架结构。A ceramic roller press is a machine that presses powder into bricks. It usually uses an upper pressing roller and a lower pressing roller to roll the ceramic. The steel belts on the upper pressing roller and the lower pressing roller need to be replaced after a long period of use. The frame of an existing ceramic roller press is usually fixed as a whole, and it is very cumbersome to replace the steel belts on the upper pressing roller and the lower pressing roller. The ceramic roller press needs to be disassembled as a whole to replace the steel belt, which is very inconvenient. Some ceramic roller presses also have a frame with an upper and lower spliced structure, and the two are usually connected in a detachable manner. The frame still needs to be disassembled to replace the steel belt. For this reason, we propose a ceramic roller press frame structure that is convenient for replacing the steel belt.
实用新型内容Utility Model Content
为了克服上述现有技术所述的至少一种缺陷,本实用新型提供一种方便钢带更换的陶瓷辊压机机架结构。可解决钢带更换繁琐的问题,通过拆除等高垫,在拆除等高垫一侧可为钢带更换提供操作空间,在不拆卸机架的情况下可对钢带进行更换,且更换时所述牵拉组件可对机架进行牵拉,提供整体的稳定性。In order to overcome at least one defect of the above-mentioned prior art, the utility model provides a ceramic roller press frame structure that facilitates the replacement of steel strips. The problem of cumbersome steel strip replacement can be solved. By removing the equal height pad, an operating space can be provided for steel strip replacement on the side where the equal height pad is removed. The steel strip can be replaced without disassembling the frame, and the pulling assembly can pull the frame during replacement to provide overall stability.
本实用新型为解决其问题所采用的技术方案是:The technical solution adopted by the utility model to solve the problem is:
一种方便钢带更换的陶瓷辊压机机架结构,包括:上框架,所述上框架内设置有上辊组;下框架,所述下框架内设置有下辊组,所述下框架与上框架可拆卸连接;预埋底架,所述预埋底架用于为所述下框架提供支撑力;牵拉组件,用于连接上框架与下框架、下框架与预埋底架;至少两个 上等高垫,所述上等高垫设置于所述上框架与下框架之间;至少两个下等高垫,所述下等高垫设置于下框架与预埋底架之间;其中,当更换所述上辊组中的上钢带和/或下辊组中的下钢带时,保留靠近所述牵拉组件一侧的至少一个所述上等高垫和/或下等高垫,移除剩余所述上等高垫和/或下等高垫,所述上框架和/或下框架通过牵拉组件牵拉作用,将上框架、下框架、预埋底架三者保持相对位置不变,以用于为上钢带和/或下钢带更换提供操作空间。A ceramic roller press frame structure for convenient steel strip replacement, comprising: an upper frame, an upper roller group is arranged in the upper frame; a lower frame, a lower roller group is arranged in the lower frame, and the lower frame is detachably connected to the upper frame; an embedded chassis, the embedded chassis is used to provide support for the lower frame; a pulling assembly is used to connect the upper frame and the lower frame, and the lower frame and the embedded chassis; at least two upper contour pads, the upper contour pads are arranged between the upper frame and the lower frame; at least two lower contour pads, the lower contour pads are arranged between the lower frame and the embedded chassis; wherein, when replacing the upper steel strip in the upper roller group and/or the lower steel strip in the lower roller group, at least one of the upper contour pads and/or the lower contour pads close to the pulling assembly is retained, and the remaining upper contour pads and/or the lower contour pads are removed, and the upper frame and/or the lower frame are pulled by the pulling assembly to keep the upper frame, the lower frame, and the embedded chassis unchanged in relative position, so as to provide an operating space for replacing the upper steel strip and/or the lower steel strip.
通过采用上述方案,可对上等高垫及下等高垫进行部分拆除,预留出将上钢带和/或下钢带换出的空隙,有利于上钢带和/或下钢带的拆卸与安装,同时无需拆卸辊压机机架。By adopting the above scheme, the upper and lower contour pads can be partially dismantled, leaving space for replacing the upper and/or lower steel belts, which is conducive to the disassembly and installation of the upper and/or lower steel belts without disassembling the roller press frame.
进一步地,所述牵拉组件包括:上悬臂梁,所述上悬臂梁用于固定所述上框架;上拉杆,所述上拉杆用于支撑上悬臂梁;下悬臂梁,所述下悬臂梁用于固定所述下框架;下拉杆;所述下拉杆用于支撑下悬臂梁。Furthermore, the pulling assembly includes: an upper cantilever beam, which is used to fix the upper frame; an upper pull rod, which is used to support the upper cantilever beam; a lower cantilever beam, which is used to fix the lower frame; and a lower pull rod, which is used to support the lower cantilever beam.
通过采用上述方案,可在上等高垫及下等高垫拆除时对上框架与下框架进行牵拉,防止上框架与下框架受重力下落。By adopting the above scheme, the upper frame and the lower frame can be pulled when the upper equal height pad and the lower equal height pad are removed to prevent the upper frame and the lower frame from falling due to gravity.
进一步地,所述上悬臂梁与上拉杆垂直连接,所述下悬臂梁与下拉杆垂直连接。Furthermore, the upper cantilever beam is vertically connected to the upper pull rod, and the lower cantilever beam is vertically connected to the lower pull rod.
通过采用上述方案,可对上框架与下框架支撑稳定。By adopting the above solution, the upper frame and the lower frame can be supported stably.
进一步地,所述上悬臂梁与上拉杆均设置至少有两个,所述上悬臂梁均安装于上框架的同一侧面。Furthermore, at least two of the upper cantilever beams and the upper pull rods are provided, and the upper cantilever beams are installed on the same side of the upper frame.
通过采用上述方案,可使所述上框架整体保持水平。By adopting the above solution, the upper frame can be kept level as a whole.
进一步地,所述下悬臂梁设置有至少两个,所述下拉杆数量为下悬臂梁数量的二倍,每个所述下悬臂梁上连接有两个下拉杆,所述下悬臂梁均安装于下框架的同一侧面。Furthermore, at least two lower cantilever beams are provided, the number of the lower pull rods is twice the number of the lower cantilever beams, each of the lower cantilever beams is connected to two lower pull rods, and the lower cantilever beams are all installed on the same side of the lower frame.
通过采用上述方案,可使所述下框架整体保持水平。By adopting the above solution, the lower frame can be kept level as a whole.
进一步的,所述上拉杆底端固定于位于同一个下悬臂梁上的两个下拉 杆之间。Furthermore, the bottom end of the upper pull rod is fixed between two lower pull rods located on the same lower cantilever beam.
通过采用上述方案,承重效果更佳。By adopting the above solution, the load-bearing effect is better.
进一步地,所述预埋底架数量与下悬臂梁数量一致,位于同一个所述下悬臂梁上的两个下拉杆固定于同一个预埋底架上。Furthermore, the number of the embedded chassis is consistent with the number of the lower cantilever beams, and the two lower pull rods located on the same lower cantilever beam are fixed on the same embedded chassis.
通过采用上述方案,通过预埋底架预埋在地下,提供更加稳固的支撑力,用于对陶瓷锟压机整体的支撑效果,提升稳定性。By adopting the above solution, the pre-buried base frame is buried underground to provide a more stable supporting force, which is used to support the overall ceramic roller press and improve stability.
进一步地,所述上等高垫的数量优选为四个,所述下等高垫的数量优选为四个。Further, the number of the upper contour pads is preferably four, and the number of the lower contour pads is preferably four.
通过采用上述方案,分别设置在四个角处,提供支撑效果。By adopting the above solution, they are respectively set at the four corners to provide a supporting effect.
进一步地,更换上钢带和/或下钢带时,所述上等高垫保留的数量为两个,所述下等高垫保留的数量为两个,且保留的两个上等高垫及下等高垫均靠近牵拉组件。Furthermore, when replacing the upper steel belt and/or the lower steel belt, the number of the upper contour pads retained is two, the number of the lower contour pads retained is two, and the two retained upper contour pads and lower contour pads are both close to the pulling assembly.
通过采用上述方案,有助于更换上钢带和/或下钢带,且存在未拆除的上等高垫及下等高垫,配合牵拉组件可共同提供支撑力,保持整体稳定性。By adopting the above solution, it is helpful to replace the upper steel belt and/or the lower steel belt, and there are upper contour pads and lower contour pads that have not been removed, which can jointly provide support force with the pulling assembly to maintain overall stability.
进一步地,所述上等高垫和下等高垫可以是铁垫或木垫。Furthermore, the upper contour pad and the lower contour pad can be iron pads or wooden pads.
通过采用上述方案,支撑效果好,且拆除方便。By adopting the above solution, the supporting effect is good and the removal is convenient.
综上所述,本实用新型提供的一种方便钢带更换的陶瓷辊压机机架结构具有如下技术效果:In summary, the ceramic roller press frame structure for convenient steel belt replacement provided by the utility model has the following technical effects:
1.所述上框架与下框架为分体结构,加工较为容易,且二者安装拆卸便捷;1. The upper frame and the lower frame are split structures, which are easy to process and can be easily installed and disassembled;
2.所述上框架与下框架之间设置有上等高垫和下等高垫,可在更换上钢带和/或下钢带时拆除,为上钢带和/或下钢带的拆卸提供操作空间;2. An upper equal height pad and a lower equal height pad are arranged between the upper frame and the lower frame, which can be removed when replacing the upper steel belt and/or the lower steel belt, so as to provide an operating space for the removal of the upper steel belt and/or the lower steel belt;
3.所述上框架与下框架上均设置有牵拉组件,可在上等高垫、下等高垫拆除时对上框架与下框架提供牵拉效果,稳定结构;3. The upper frame and the lower frame are both provided with a pulling assembly, which can provide a pulling effect on the upper frame and the lower frame when the upper and lower height pads are removed to stabilize the structure;
4.所述牵拉组件采用悬臂梁及拉杆配合,提供支撑的稳定性。4. The pulling assembly adopts a cantilever beam and a pull rod to provide support stability.
附图说明BRIEF DESCRIPTION OF THE DRAWINGS
图1为本实用新型实施例的侧面结构示意图;FIG1 is a schematic diagram of the side structure of an embodiment of the utility model;
图2为本实用新型实施例的正面正常状态时结构图;FIG2 is a structural diagram of the front side of the embodiment of the utility model in a normal state;
图3为本实用新型实施例的正面拆卸等高垫状态结构图;FIG3 is a structural diagram of a front disassembly state of a height pad according to an embodiment of the utility model;
其中,附图标记含义如下:1、上框架;11、上主动辊;12、上从动辊;13、上压辊;14、上钢带;2、下框架;21、下主动辊;22、下从动辊;23、下压辊;24、下钢带;3、牵拉组件;31、上拉杆;32、上悬臂梁;33、下拉杆;34、下悬臂梁;4、预埋底架;5、上等高垫;6、下等高垫;7、操作空间。Among them, the meanings of the figure numbers are as follows: 1. Upper frame; 11. Upper active roller; 12. Upper driven roller; 13. Upper pressure roller; 14. Upper steel belt; 2. Lower frame; 21. Lower active roller; 22. Lower driven roller; 23. Lower pressure roller; 24. Lower steel belt; 3. Pulling assembly; 31. Upper pull rod; 32. Upper cantilever beam; 33. Lower pull rod; 34. Lower cantilever beam; 4. Embedded chassis; 5. Upper equal height pad; 6. Lower equal height pad; 7. Operating space.
具体实施方式Detailed ways
为了更好地理解和实施,以下将结合本实用新型的附图,对本实用新型实施例中的技术方案进行清楚、完整的描述和讨论,显然,这里所描述的仅仅是本实用新型的一部分实例,并不是全部的实例,基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动的前提下所获得的所有其他实施例,都属于本实用新型的保护范围。For better understanding and implementation, the technical solutions in the embodiments of the present invention will be clearly and completely described and discussed below in conjunction with the accompanying drawings of the present invention. Obviously, what is described here is only a part of the examples of the present invention, not all the examples. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
为了便于对本实用新型实施例的理解,下面将结合附图以具体实施例为例作进一步的解释说明,且各个实施例不构成对本实用新型实施例的限定。In order to facilitate the understanding of the embodiments of the present utility model, the following will be further explained by taking specific embodiments as examples in conjunction with the drawings, and each embodiment does not constitute a limitation on the embodiments of the present utility model.
在本实用新型的描述中,需要说明的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本实用新型和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本实用新型的限制。In the description of the present invention, it should be noted that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on the present invention.
除非另有定义,本文所使用的所有的技术和科学术语与属于本实用新型的技术领域的技术人员通常理解的含义相同。本文中在本实用新型的说明书中所使用的术语只是为了描述具体的实施例的目的,不是旨在限制本 实用新型。Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.
本实用新型的实施例1参阅图1-图3所示,本实用新型公开了一种方便钢带更换的陶瓷辊压机机架结构:包括: Embodiment 1 of the present invention is shown in FIG. 1 to FIG. 3 . The present invention discloses a frame structure of a ceramic roller press for convenient steel strip replacement, including:
上框架1,所述上框架1内设置有上辊组,所述上辊组包括上主动辊11、上从动辊12、上压辊13,所述上主动辊11、上从动辊12、上压辊13之间绕设有上钢带14;An upper frame 1, wherein an upper roller group is arranged in the upper frame 1, and the upper roller group comprises an upper active roller 11, an upper driven roller 12, and an upper pressure roller 13, and an upper steel belt 14 is wound between the upper active roller 11, the upper driven roller 12, and the upper pressure roller 13;
下框架2,所述下框架2内设置有下辊组,所述下辊组包括下主动辊21、下从动辊22、下压辊23,所述下主动辊21、下从动辊22、下压辊23之间绕设有下钢带24;A lower frame 2, wherein a lower roller group is arranged in the lower frame 2, and the lower roller group comprises a lower active roller 21, a lower driven roller 22, and a lower pressure roller 23, and a lower steel belt 24 is wound between the lower active roller 21, the lower driven roller 22, and the lower pressure roller 23;
预埋底架4,本实施例中,所述预埋底架4设置有两个,用于为所述下框架2提供支撑力;The embedded base frame 4, in this embodiment, is provided with two embedded base frames 4, which are used to provide support for the lower frame 2;
牵拉组件3,用于连接上框架1与下框架2、下框架2与预埋底架4,使得所述上框架1与下框架2之间可拆卸连接,所述下框架2与预埋底架4可拆卸连接;The pulling assembly 3 is used to connect the upper frame 1 and the lower frame 2, and the lower frame 2 and the embedded bottom frame 4, so that the upper frame 1 and the lower frame 2 are detachably connected, and the lower frame 2 and the embedded bottom frame 4 are detachably connected;
至少两个上等高垫5,所述上等高垫5设置有多个,均设置于所述上框架1与下框架2之间;At least two upper height pads 5, wherein a plurality of upper height pads 5 are provided and all are provided between the upper frame 1 and the lower frame 2;
至少两个下等高垫6,所述下等高垫6设置有多个,均设置于所述下框架2与预埋底架4之间;At least two lower contour pads 6, wherein a plurality of lower contour pads 6 are provided, and all are provided between the lower frame 2 and the embedded chassis 4;
其中,当更换所述上辊组中的上钢带14和/或下辊组中的下钢带24时,保留靠近所述牵拉组件3一侧的至少一个所述上等高垫5和/或下等高垫6,移除剩余所述上等高垫5和/或下等高垫6,所述上框架1和/或下框架2通过牵拉组件3牵拉作用,将上框架1、下框架2、预埋底架4三者保持相对位置不变,以用于为上钢带14和/或下钢带24更换提供操作空间7,可对上等高垫5及下等高垫6进行部分拆除,预留出将上钢带14和/或下钢带24换出的空隙,有利于上钢带14和/或下钢带24的拆卸与安装,同时无需拆卸辊压机机架。Among them, when replacing the upper steel belt 14 in the upper roller group and/or the lower steel belt 24 in the lower roller group, retain at least one of the upper contour pads 5 and/or the lower contour pads 6 close to the side of the pulling component 3, remove the remaining upper contour pads 5 and/or the lower contour pads 6, and the upper frame 1 and/or the lower frame 2 are pulled by the pulling component 3 to keep the relative positions of the upper frame 1, the lower frame 2, and the embedded base frame 4 unchanged, so as to provide an operating space 7 for replacing the upper steel belt 14 and/or the lower steel belt 24. The upper contour pad 5 and the lower contour pad 6 can be partially dismantled to reserve a gap for replacing the upper steel belt 14 and/or the lower steel belt 24, which is conducive to the disassembly and installation of the upper steel belt 14 and/or the lower steel belt 24, and there is no need to dismantle the roller press frame.
进一步地,所述牵拉组件3包括:Furthermore, the pulling assembly 3 comprises:
下拉杆33;所述下拉杆33固定于所述预埋底架4上方;The lower pull rod 33 is fixed above the embedded chassis 4;
下悬臂梁34,通过所述下拉杆33将所述下悬臂梁34固定于预埋底架4上方,以使所述下悬臂梁34固定所述下框架2,起到对下框支撑效果;A lower cantilever beam 34 is fixed to the upper part of the embedded chassis 4 through the lower tie rod 33, so that the lower cantilever beam 34 fixes the lower frame 2 to play a supporting effect on the lower frame;
上拉杆31,所述上拉杆31固定于所述下悬臂梁34上方;An upper pull rod 31, wherein the upper pull rod 31 is fixed above the lower cantilever beam 34;
上悬臂梁32,通过所述上拉杆31将所述上悬臂梁32固定于下悬臂梁34上方,以使所述上悬臂梁32固定所述上框架1,起到对上框支撑效果;An upper cantilever beam 32 is fixed above the lower cantilever beam 34 through the upper pull rod 31, so that the upper cantilever beam 32 fixes the upper frame 1 to play a supporting effect on the upper frame;
其中,所述上悬臂梁32与上拉杆31垂直连接,所述下悬臂梁34与下拉杆33垂直连接,可对上框架1与下框架2支撑稳定,需要说明的是,在其他实施例中,所述上悬臂梁32与上拉杆31、下悬臂梁34与下拉杆33也可以不垂直设置。所述上悬臂梁32与上拉杆31均设置至少有两个,所述上悬臂梁32均安装于上框架1的同一侧面,可使所述上框架1整体保持水平,本实施例1中设置有两个上悬臂梁32和两个上拉杆31;所述下悬臂梁34设置有至少两个,所述下拉杆33数量为下悬臂梁34数量的二倍,每个所述下悬臂梁34上连接有两个下拉杆33,所述下悬臂梁34均安装于下框架2的同一侧面,可使所述下框架2整体保持水平,本实施例1中设置有两个下悬臂梁34和四个下拉杆33;所述上拉杆31底端固定于位于同一个下悬臂梁34上的两个下拉杆33之间,承重效果更佳。所述预埋底架4数量与下悬臂梁34数量一致,位于同一个所述下悬臂梁34上的两个下拉杆33固定于同一个预埋底架4上,通过预埋底架4预埋在地下,提供更加稳固的支撑力,用于对陶瓷锟压机整体的支撑效果,提升稳定性,本实施例1中设置有两个预埋底架4。Among them, the upper cantilever beam 32 is vertically connected to the upper pull rod 31, and the lower cantilever beam 34 is vertically connected to the lower pull rod 33, which can support the upper frame 1 and the lower frame 2 stably. It should be noted that in other embodiments, the upper cantilever beam 32 and the upper pull rod 31, and the lower cantilever beam 34 and the lower pull rod 33 may not be vertically arranged. At least two upper cantilever beams 32 and upper pull rods 31 are provided, and the upper cantilever beams 32 are installed on the same side of the upper frame 1, so that the upper frame 1 can be kept horizontal as a whole. In this embodiment 1, two upper cantilever beams 32 and two upper pull rods 31 are provided; at least two lower cantilever beams 34 are provided, and the number of lower pull rods 33 is twice the number of lower cantilever beams 34. Each of the lower cantilever beams 34 is connected to two lower pull rods 33, and the lower cantilever beams 34 are installed on the same side of the lower frame 2, so that the lower frame 2 can be kept horizontal as a whole. In this embodiment 1, two lower cantilever beams 34 and four lower pull rods 33 are provided; the bottom end of the upper pull rod 31 is fixed between the two lower pull rods 33 located on the same lower cantilever beam 34, and the load-bearing effect is better. The number of the embedded base frames 4 is consistent with the number of the lower cantilever beams 34. The two lower pull rods 33 located on the same lower cantilever beam 34 are fixed on the same embedded base frame 4. The embedded base frames 4 are embedded in the ground to provide a more stable supporting force for the overall supporting effect of the ceramic roller press and improve stability. Two embedded base frames 4 are provided in this embodiment 1.
通过设置上述牵拉组件3,可在上等高垫5及下等高垫6拆除时对上框架1与下框架2进行牵拉,防止上框架1与下框架2受重力下落。By providing the pulling assembly 3, the upper frame 1 and the lower frame 2 can be pulled when the upper height pad 5 and the lower height pad 6 are removed, so as to prevent the upper frame 1 and the lower frame 2 from falling due to gravity.
作为本实用新型的一种实施例,所述下等高垫6的数量优选为四个,所述下等高垫6的数量优选为四个,为上框架1或下框架2提供更多的支 撑效果,在更换上钢带14和/或下钢带24时,所述上等高垫5和/或下等高垫6保留两块,所述保留的两块上等高垫5和/或下等高垫6靠近牵拉组件3,可配合牵拉组件3对上框架1和/或下框架2进行支撑,且不妨碍上钢带14和/或下钢带24从上框架1和/或下框架2远离牵拉组件3一侧拆卸,有助于上钢带14和/或下钢带24的更换,且可保持整体的稳定性。As an embodiment of the utility model, the number of the lower contour pads 6 is preferably four, and the number of the lower contour pads 6 is preferably four, providing more support effects for the upper frame 1 or the lower frame 2. When replacing the upper steel belt 14 and/or the lower steel belt 24, two of the upper contour pads 5 and/or the lower contour pads 6 are retained, and the two retained upper contour pads 5 and/or the lower contour pads 6 are close to the pulling assembly 3, and can cooperate with the pulling assembly 3 to support the upper frame 1 and/or the lower frame 2, and do not hinder the upper steel belt 14 and/or the lower steel belt 24 from being removed from the side of the upper frame 1 and/or the lower frame 2 away from the pulling assembly 3, which helps to replace the upper steel belt 14 and/or the lower steel belt 24 and maintain the overall stability.
作为本实用新型的一种实施例,所述上等高垫5和下等高垫6可以是铁垫或木垫,也可以是其他支撑效果好的材质,便于拆除。As an embodiment of the utility model, the upper height pad 5 and the lower height pad 6 can be iron pads or wooden pads, or other materials with good supporting effects, which are easy to remove.
本实用新型的实施方法如下:The implementation method of the utility model is as follows:
当需要拆卸上钢带14时,保留靠近牵引组件一侧的上等高垫5,拆除其余上等高垫5,此时所述上框架1远离牵引组件一端预留出操作空间7,可将上钢带14进行拆除更换,且所述牵引组件中的上悬臂梁32受上拉杆31拉力可为上框架1提供牵拉力,保持上框架1的水平稳定性,避免受重力下斜,更换好上钢带14后,将拆卸的上等高垫5复位即可。When it is necessary to remove the upper steel belt 14, keep the upper contour pad 5 close to the traction component side and remove the other upper contour pads 5. At this time, an operation space 7 is reserved at the end of the upper frame 1 away from the traction component, and the upper steel belt 14 can be removed and replaced. The upper cantilever beam 32 in the traction assembly can provide a pulling force for the upper frame 1 under the pulling force of the upper pull rod 31, thereby maintaining the horizontal stability of the upper frame 1 and avoiding tilting downward due to gravity. After replacing the upper steel belt 14, the removed upper contour pad 5 can be reset.
当需要拆卸下钢带24时,保留靠近牵引组件一侧的下等高垫6,拆除其余下等高垫6,此时所述下框架2远离牵引组件一端预留出操作空间7,可将下钢带24进行拆除更换,且所述牵引组件中的下悬臂梁34受下拉杆33拉力可为下框架2提供牵拉力,保持下框架2的水平稳定性,避免受重力下斜,更换好上钢带14后,将拆卸的下等高垫6复位即可。When it is necessary to remove the lower steel belt 24, retain the lower contour pad 6 close to the side of the traction assembly and remove the remaining lower contour pads 6. At this time, an operating space 7 is reserved at the end of the lower frame 2 away from the traction assembly, and the lower steel belt 24 can be removed and replaced. The lower cantilever beam 34 in the traction assembly can provide a pulling force for the lower frame 2 under the pulling force of the lower pull rod 33, thereby maintaining the horizontal stability of the lower frame 2 and avoiding tilting downward due to gravity. After replacing the upper steel belt 14, the removed lower contour pad 6 can be reset.
综上所述,本实用新型提供的一种方便钢带更换的陶瓷辊压机机架结构具有如下技术效果:In summary, the ceramic roller press frame structure for convenient steel belt replacement provided by the utility model has the following technical effects:
1.所述上框架1与下框架2为分体结构,加工较为容易,且二者安装拆卸便捷;1. The upper frame 1 and the lower frame 2 are split structures, which are easy to process and convenient to install and disassemble;
2.所述上框架1与下框架2之间设置有上等高垫5和下等高垫6,可在更换上钢带14和/或下钢带24时拆除,为上钢带14和/或下钢带24的拆卸提供操作空间7;2. An upper height pad 5 and a lower height pad 6 are provided between the upper frame 1 and the lower frame 2, which can be removed when replacing the upper steel belt 14 and/or the lower steel belt 24, providing an operating space 7 for the removal of the upper steel belt 14 and/or the lower steel belt 24;
3.所述上框架1与下框架2上均设置有牵拉组件3,可在上等高垫5、 下等高垫6拆除时对上框架1与下框架2提供牵拉效果,稳定结构;3. The upper frame 1 and the lower frame 2 are both provided with a pulling assembly 3, which can provide a pulling effect on the upper frame 1 and the lower frame 2 when the upper height pad 5 and the lower height pad 6 are removed, thereby stabilizing the structure;
4.所述牵拉组件3采用悬臂梁及拉杆配合,提供支撑的稳定性。4. The pulling assembly 3 adopts a cantilever beam and a pull rod to provide support stability.
本实用新型方案所公开的技术手段不仅限于上述实施方式所公开的技术手段,还包括由以上技术特征任意组合所组成的技术方案。应当指出,对于本技术领域的普通技术人员来说,在不脱离本实用新型原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本实用新型的保护范围。The technical means disclosed in the solution of the utility model are not limited to the technical means disclosed in the above-mentioned implementation mode, but also include technical solutions composed of any combination of the above technical features. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the utility model, and these improvements and modifications are also regarded as the protection scope of the utility model.

Claims (10)

  1. 一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:包括:A ceramic roller press frame structure for convenient steel belt replacement, characterized in that it includes:
    上框架(1),所述上框架(1)内设置有上辊组;An upper frame (1), wherein an upper roller group is arranged in the upper frame (1);
    下框架(2),所述下框架(2)内设置有下辊组,所述下框架(2)与上框架(1)可拆卸连接;A lower frame (2), wherein a lower roller group is arranged in the lower frame (2), and the lower frame (2) is detachably connected to the upper frame (1);
    预埋底架(4),所述预埋底架(4)用于为所述下框架(2)提供支撑力;A pre-buried base frame (4), wherein the pre-buried base frame (4) is used to provide support force for the lower frame (2);
    牵拉组件(3),用于连接上框架(1)与下框架(2)、下框架(2)与预埋底架(4);A pulling assembly (3) is used to connect the upper frame (1) and the lower frame (2), and the lower frame (2) and the embedded base frame (4);
    至少两个上等高垫(5),所述上等高垫(5)设置于所述上框架(1)与下框架(2)之间;At least two upper height pads (5), wherein the upper height pads (5) are arranged between the upper frame (1) and the lower frame (2);
    至少两个下等高垫(6),所述下等高垫(6)设置于下框架(2)与预埋底架(4)之间;At least two lower contour pads (6), wherein the lower contour pads (6) are arranged between the lower frame (2) and the embedded base frame (4);
    其中,当更换所述上辊组中的上钢带(14)和/或下辊组中的下钢带(24)时,保留靠近所述牵拉组件(3)一侧的至少一个所述上等高垫(5)和/或下等高垫(6),移除剩余所述上等高垫(5)和/或下等高垫(6),所述上框架(1)和/或下框架(2)通过牵拉组件(3)牵拉作用,将上框架(1)、下框架(2)、预埋底架(4)三者保持相对位置不变,以用于为上钢带(14)和/或下钢带(24)更换提供操作空间(7)。When replacing the upper steel belt (14) in the upper roller group and/or the lower steel belt (24) in the lower roller group, at least one of the upper contour pads (5) and/or the lower contour pads (6) close to the pulling assembly (3) is retained, and the remaining upper contour pads (5) and/or the lower contour pads (6) are removed. The upper frame (1) and/or the lower frame (2) are pulled by the pulling assembly (3) to keep the relative positions of the upper frame (1), the lower frame (2) and the embedded base frame (4) unchanged, so as to provide an operating space (7) for replacing the upper steel belt (14) and/or the lower steel belt (24).
  2. 根据权利要求1所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述牵拉组件(3)包括:The frame structure of a ceramic roller press for facilitating steel strip replacement according to claim 1 is characterized in that: the pulling assembly (3) comprises:
    上悬臂梁(32),所述上悬臂梁(32)用于固定所述上框架(1);An upper cantilever beam (32), the upper cantilever beam (32) being used to fix the upper frame (1);
    上拉杆(31),所述上拉杆(31)用于支撑上悬臂梁(32);An upper pull rod (31), the upper pull rod (31) being used to support an upper cantilever beam (32);
    下悬臂梁(34),所述下悬臂梁(34)用于固定所述下框架(2);A lower cantilever beam (34), wherein the lower cantilever beam (34) is used to fix the lower frame (2);
    下拉杆(33);所述下拉杆(33)用于支撑下悬臂梁(34)。A lower pull rod (33); the lower pull rod (33) is used to support the lower cantilever beam (34).
  3. 根据权利要求2所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述上悬臂梁(32)与上拉杆(31)垂直连接,所述下悬臂梁(34)与下拉杆(33)垂直连接。According to the frame structure of a ceramic roller press for facilitating steel strip replacement as described in claim 2, it is characterized in that the upper cantilever beam (32) is vertically connected to the upper pull rod (31), and the lower cantilever beam (34) is vertically connected to the lower pull rod (33).
  4. 根据权利要求2或3所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述上悬臂梁(32)与上拉杆(31)均设置至少有两个,所述上悬臂梁(32)均安装于上框架(1)的同一侧面。According to a ceramic roller press frame structure that facilitates steel strip replacement as described in claim 2 or 3, it is characterized in that: there are at least two upper cantilever beams (32) and upper pull rods (31), and the upper cantilever beams (32) are installed on the same side of the upper frame (1).
  5. 根据权利要求4所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述下悬臂梁(34)设置有至少两个,所述下拉杆(33)数量为下悬臂梁(34)数量的二倍,每个所述下悬臂梁(34)上连接有两个下拉杆(33),所述下悬臂梁(34)均安装于下框架(2)的同一侧面。According to claim 4, a ceramic roller press frame structure that facilitates steel strip replacement is characterized in that: there are at least two lower cantilever beams (34), the number of the lower pull rods (33) is twice the number of the lower cantilever beams (34), each of the lower cantilever beams (34) is connected to two lower pull rods (33), and the lower cantilever beams (34) are all installed on the same side of the lower frame (2).
  6. 根据权利要求5所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述上拉杆(31)底端固定于位于同一个下悬臂梁(34)上的两个下拉杆(33)之间。According to the ceramic roller press frame structure for convenient steel strip replacement as described in claim 5, it is characterized in that the bottom end of the upper pull rod (31) is fixed between two lower pull rods (33) located on the same lower cantilever beam (34).
  7. 根据权利要求5所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述预埋底架(4)数量与下悬臂梁(34)数量一致,位于同一个所述下悬臂梁(34)上的两个下拉杆(33)固定于同一个预埋底架(4)上。According to claim 5, a ceramic roller press frame structure that facilitates steel strip replacement is characterized in that the number of the embedded base frames (4) is consistent with the number of lower cantilever beams (34), and the two lower pull rods (33) located on the same lower cantilever beam (34) are fixed on the same embedded base frame (4).
  8. 根据权利要求1所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述上等高垫(5)的数量优选为四个,所述下等高垫(6)的数量优选为四个。According to the ceramic roller press frame structure for convenient steel strip replacement as described in claim 1, it is characterized in that the number of the upper contour pads (5) is preferably four, and the number of the lower contour pads (6) is preferably four.
  9. 根据权利要求8所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:更换上钢带(14)和/或下钢带(24)时,所述上等高垫(5)保留的数量为两个,所述下等高垫(6)保留的数量为两个,且保留的两个上等高垫(5)及下等高垫(6)均靠近牵拉组件(3)。According to a ceramic roller press frame structure that facilitates steel belt replacement as described in claim 8, it is characterized in that: when replacing the upper steel belt (14) and/or the lower steel belt (24), the number of the upper contour pads (5) retained is two, the number of the lower contour pads (6) retained is two, and the two retained upper contour pads (5) and lower contour pads (6) are both close to the pulling assembly (3).
  10. 根据权利要求1或8或9所述的一种方便钢带更换的陶瓷辊压机机架结构,其特征在于:所述上等高垫(5)和下等高垫(6)可以是铁垫或木垫。According to the ceramic roller press frame structure for convenient steel strip replacement as described in claim 1, 8 or 9, it is characterized in that the upper contour pad (5) and the lower contour pad (6) can be iron pads or wooden pads.
PCT/CN2022/141040 2022-11-08 2022-12-22 Ceramic roller press frame structure facilitating replacement of steel belts WO2024098521A1 (en)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3641752C1 (en) * 1986-12-06 1988-01-14 Siempelkamp Gmbh & Co Device for replacing the steel belts of double-belt presses
RU2068339C1 (en) * 1989-02-14 1996-10-27 СИ ЭС АР Лимитед Device and method for continuous manufacture of wood particle boards
CN2796875Y (en) * 2005-02-21 2006-07-19 郑红专 Composite machine frame of mill
CN202848543U (en) * 2012-10-16 2013-04-03 佛山市松川机械设备有限公司 Cantilever type mechanism capable of fast changing conveying belt
CN109291218A (en) * 2018-10-15 2019-02-01 广东科达洁能股份有限公司 A kind of full-automatic lifting formula roll squeezer
CN211711835U (en) * 2019-12-30 2020-10-20 昆山文斌机械科技有限公司 Quick replacing mechanism for conveying belt
CN216610173U (en) * 2021-12-13 2022-05-27 科达制造股份有限公司 Rolling system

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3641752C1 (en) * 1986-12-06 1988-01-14 Siempelkamp Gmbh & Co Device for replacing the steel belts of double-belt presses
RU2068339C1 (en) * 1989-02-14 1996-10-27 СИ ЭС АР Лимитед Device and method for continuous manufacture of wood particle boards
CN2796875Y (en) * 2005-02-21 2006-07-19 郑红专 Composite machine frame of mill
CN202848543U (en) * 2012-10-16 2013-04-03 佛山市松川机械设备有限公司 Cantilever type mechanism capable of fast changing conveying belt
CN109291218A (en) * 2018-10-15 2019-02-01 广东科达洁能股份有限公司 A kind of full-automatic lifting formula roll squeezer
CN211711835U (en) * 2019-12-30 2020-10-20 昆山文斌机械科技有限公司 Quick replacing mechanism for conveying belt
CN216610173U (en) * 2021-12-13 2022-05-27 科达制造股份有限公司 Rolling system

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