CN118596290A - A mortar concrete component construction mold - Google Patents

A mortar concrete component construction mold Download PDF

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Publication number
CN118596290A
CN118596290A CN202410758056.7A CN202410758056A CN118596290A CN 118596290 A CN118596290 A CN 118596290A CN 202410758056 A CN202410758056 A CN 202410758056A CN 118596290 A CN118596290 A CN 118596290A
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China
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fixedly connected
concrete
main board
mold
component
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CN202410758056.7A
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Chinese (zh)
Inventor
高明
张勇
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Dayuan Investment Group Commercial Concrete Co ltd
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Dayuan Investment Group Commercial Concrete Co ltd
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Priority to CN202410758056.7A priority Critical patent/CN118596290A/en
Publication of CN118596290A publication Critical patent/CN118596290A/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
    • B28B1/00Producing shaped prefabricated articles from the material
    • B28B1/08Producing shaped prefabricated articles from the material by vibrating or jolting
    • B28B1/087Producing shaped prefabricated articles from the material by vibrating or jolting by means acting on the mould ; Fixation thereof to the mould
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B13/00Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
    • B28B13/02Feeding the unshaped material to moulds or apparatus for producing shaped articles
    • B28B13/0215Feeding the moulding material in measured quantities from a container or silo
    • B28B13/023Feeding the moulding material in measured quantities from a container or silo by using a feed box transferring the moulding material from a hopper to the moulding cavities
    • B28B13/0255Disposal of residual material, e.g. by means of the return stroke of the feed drawer
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B28WORKING CEMENT, CLAY, OR STONE
    • B28BSHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
    • B28B13/00Feeding the unshaped material to moulds or apparatus for producing shaped articles; Discharging shaped articles from such moulds or apparatus
    • B28B13/02Feeding the unshaped material to moulds or apparatus for producing shaped articles
    • B28B13/0295Treating the surface of the fed layer, e.g. removing material or equalization of the surface
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/91Use of waste materials as fillers for mortars or concrete

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  • Engineering & Computer Science (AREA)
  • Manufacturing & Machinery (AREA)
  • Chemical & Material Sciences (AREA)
  • Ceramic Engineering (AREA)
  • Mechanical Engineering (AREA)
  • On-Site Construction Work That Accompanies The Preparation And Application Of Concrete (AREA)

Abstract

本发明型涉及混凝土模具技术领域,且本发明公开了一种砂浆混凝土构件施工模具,包括主板,所述主板顶部前端开设有放置槽,所述放置槽内部设置有定模,所述主板顶部设置有混凝土处理机构,所述主板顶部设置有模具辅助机构,所述混凝土处理机构包括余料刮除收集组件和混凝土偏心振动组件,所述模具辅助机构包括动模移动组件和液压开模组件和顶起组件,余料刮除收集组件使得刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,保证了混凝土构件的成型质量,精确的控制定模内部的混凝土数量,混凝土偏心振动组件则是保证构件不会产生不必要的空洞,防止空洞对构件成品产生损坏,进一步提高了砂浆混凝土构件的成品质量。

The present invention relates to the technical field of concrete molds, and discloses a mortar concrete component construction mold, comprising a main board, a placement groove is provided at the top front end of the main board, a fixed mold is arranged inside the placement groove, a concrete processing mechanism is arranged on the top of the main board, and a mold auxiliary mechanism is arranged on the top of the main board. The concrete processing mechanism comprises a residual material scraping and collecting component and a concrete eccentric vibration component. The mold auxiliary mechanism comprises a movable mold moving component, a hydraulic mold opening component and a lifting component. The residual material scraping and collecting component makes the scraped concrete surface smoother, thereby enhancing the processing accuracy of concrete prefabricated components, ensuring the molding quality of concrete components, and accurately controlling the amount of concrete inside the fixed mold. The concrete eccentric vibration component ensures that the component will not produce unnecessary voids, prevents the voids from damaging the finished component, and further improves the finished product quality of the mortar concrete component.

Description

一种砂浆混凝土构件施工模具A mortar concrete component construction mold

技术领域Technical Field

本发明涉及混凝土模具技术领域,具体为一种砂浆混凝土构件施工模具。The invention relates to the technical field of concrete moulds, in particular to a mortar concrete component construction mould.

背景技术Background Art

砂浆混凝土构件是用砂浆混凝土制成的梁、板、柱、基础等构件,构件是结构组成零件的意思,另外有预制构件,只在工厂预先加工好的混凝土零件,比如混凝土下水管,比如混凝土电线杆,都是预制构件,预先加工好的构件,现场进行安装即可,在利用砂浆混凝土制造构件时往往会使用到一些模具来方便混凝土进行成型。Mortar concrete components are beams, slabs, columns, foundations and other components made of mortar concrete. Components refer to parts that make up the structure. There are also prefabricated components, which are concrete parts pre-processed in the factory, such as concrete sewer pipes and concrete telephone poles. These are all prefabricated components. Pre-processed components can be installed on site. When using mortar concrete to manufacture components, some molds are often used to facilitate the molding of concrete.

根据专利网公开的一种砂浆混凝土构件施工模具,(授权公告号为:CN210117920U)中所描“公开了一种砂浆混凝土构件施工模具,包括第一模板和第二模板,第一模板和第二模板之间开设有两个限位槽,同侧两个限位槽的内侧壁插接有限位板,将两个限位板插入到第一模板和第二模板的限位槽内,然后将插杆插入到通孔内,螺接第一螺母,使套环插入到通孔内,卡块插入到卡槽内,进而将两个限位板卡在限位槽内,通过卡槽对卡块进行限位,进而方便组装和拆卸,避免套环脱离通孔,增加连接稳定性,待第一模板、第二模板和两个限位板形成模具槽的形状后,将混凝土砂浆注入到模具槽内,为避免两个限位板因混凝土砂浆的重力导致变形,通过限位装置对其进行固定,避免两个限位板之间的距离改变。”According to a mortar concrete component construction mold disclosed on the patent website, (authorization announcement number: CN210117920U), "a mortar concrete component construction mold is disclosed, including a first template and a second template, two limit grooves are set between the first template and the second template, and the inner walls of the two limit grooves on the same side are plugged with limit plates, and the two limit plates are inserted into the limit grooves of the first template and the second template, and then the insertion rod is inserted into the through hole, and the first nut is screwed, so that the ring is inserted into the through hole, and the clamping block is inserted into the clamping slot, and then the two limit plates are clamped in the limit groove, and the clamping block is limited by the clamping slot, so as to facilitate assembly and disassembly, avoid the ring from detaching from the through hole, and increase the connection stability. After the first template, the second template and the two limit plates form the shape of the mold groove, concrete mortar is injected into the mold groove. In order to prevent the two limit plates from being deformed due to the gravity of the concrete mortar, they are fixed by a limit device to avoid the distance between the two limit plates from changing."

根据上述内容,认为存在以下缺陷:Based on the above, it is believed that the following defects exist:

该砂浆混凝土构件施工模具包括第一模板和第二模板,第一模板和第二模板之间开设有两个限位槽,同侧两个限位槽的内侧壁插接有限位板,通过模板对砂浆混凝土构件进行制作,但在通过模板制作的时候,无法保证砂浆混凝土的量,会造成原料的浪费,同时该装置的构件制作方式无法保证砂浆混凝土构件的制造精度,做出来的的砂浆混凝土构件的质量较差,整体成品率较低。The mortar concrete component construction mold includes a first template and a second template, two limit grooves are arranged between the first template and the second template, and the inner walls of the two limit grooves on the same side are inserted with limit plates. The mortar concrete component is manufactured through the template, but when the template is used for manufacturing, the amount of mortar concrete cannot be guaranteed, which will cause waste of raw materials. At the same time, the component manufacturing method of the device cannot guarantee the manufacturing accuracy of the mortar concrete component, and the quality of the manufactured mortar concrete component is poor, and the overall yield rate is low.

因此,设计实用性强和保证混凝土构件成品的质量优良的一种砂浆混凝土构件施工模具是很有必要的。Therefore, it is necessary to design a mortar concrete component construction mold that is highly practical and ensures the quality of the finished concrete component.

发明内容Summary of the invention

本发明的目的在于提供一种砂浆混凝土构件施工模具,以解决上述背景技术中提出的问题。The purpose of the present invention is to provide a mortar concrete component construction mold to solve the problems raised in the above background technology.

为了解决上述技术问题,本发明提供如下技术方案:一种砂浆混凝土构件施工模具,包括主板,所述主板顶部前端开设有放置槽,所述放置槽内部设置有定模,所述主板底部固定连接有箱体,所述主板顶部设置有混凝土处理机构,所述主板顶部设置有模具辅助机构;In order to solve the above technical problems, the present invention provides the following technical solutions: a mortar concrete component construction mold, comprising a main board, a placement groove is provided at the top front end of the main board, a fixed mold is arranged inside the placement groove, a box is fixedly connected to the bottom of the main board, a concrete processing mechanism is arranged at the top of the main board, and a mold auxiliary mechanism is arranged at the top of the main board;

所述混凝土处理机构包括余料刮除收集组件和混凝土偏心振动组件,所述余料刮除收集组件设置于主板顶部前端,所述混凝土偏心振动组件设置于箱体背面;The concrete processing mechanism includes a residual material scraping and collecting component and a concrete eccentric vibration component, wherein the residual material scraping and collecting component is arranged at the front end of the top of the main board, and the concrete eccentric vibration component is arranged at the back of the box body;

所述模具辅助机构包括动模移动组件和液压开模组件和顶起组件,所述动模移动组件设置于主板顶部,所述液压开模组件设置于动模移动组件顶部,所述顶起组件设置于箱体内部。The mold auxiliary mechanism includes a movable mold moving component, a hydraulic mold opening component and a lifting component. The movable mold moving component is arranged on the top of the main board, the hydraulic mold opening component is arranged on the top of the movable mold moving component, and the lifting component is arranged inside the box.

根据上述技术方案,所述余料刮除收集组件包括固定块一,所述固定块一固定连接于主板顶部前端右侧,所述固定块一背面设置有固定块二,所述主板顶部前端左侧固定连接有固定块三,所述固定块三背面设置有固定块四,所述固定块一和固定块二之间转动连接有丝杆,所述固定块一和固定块二之间固定连接有导向杆,所述固定块三和固定块四之间转动连接有丝杆,所述固定块三和固定块四之间固定连接有导向杆,所述固定块一正面固定连接有电机支撑架,所述电机支撑架顶部设置有电机一,所述电机一背面转动连接有皮带轮一,所述皮带轮一转动连接于丝杆正面,所述固定块三正面转动连接有皮带轮二,所述皮带轮一和皮带轮二之间传动连接有传动皮带,所述丝杆和导向杆表面滑动连接有滑块,所述滑块左侧固定连接有连接柱,所述连接柱左侧固定连接有刮板,所述主板顶部后端开设有收集槽,所述收集槽底部固定连接有收集室,所述收集室内部设置有收集盒,在将砂浆混凝土倒入定模内部后,启动装置顶部的余料刮除收集组件余料刮除收集组件,电机一转动带动皮带轮一和丝杆转动,皮带轮一则是通过传动皮带带动皮带轮二同步进行转动,两侧的丝杆同步转动带动着表面的滑块前进,滑块通过左侧固定的刮板对定模顶部多余的砂浆混凝土进行刮除,将多余的混凝土推到收集盒内部进行收集,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,保证了混凝土构件的成型质量,精确的控制定模内部的混凝土数量,进一步提高成品率。According to the above technical scheme, the residual material scraping and collecting assembly includes a fixed block 1, the fixed block 1 is fixedly connected to the right side of the top front end of the mainboard, the fixed block 1 is provided with a fixed block 2 on the back side, the fixed block 3 is fixedly connected to the left side of the top front end of the mainboard, and the fixed block 3 is provided with a fixed block 4 on the back side. A screw rod is rotatably connected between the fixed block 1 and the fixed block 2, a guide rod is fixedly connected between the fixed block 1 and the fixed block 2, a screw rod is rotatably connected between the fixed block 3 and the fixed block 4, and a guide rod is fixedly connected between the fixed block 3 and the fixed block 4. The front side of the fixed block 1 is fixedly connected to a motor support frame, a motor 1 is provided on the top of the motor support frame, a pulley 1 is rotatably connected to the back side of the motor 1, the pulley 1 is rotatably connected to the front side of the screw rod, and the fixed block 3 is rotatably connected to the front side of the pulley, a transmission belt is transmitted between the pulley 1 and the pulley 2, a slider is slidably connected to the surface of the screw rod and the guide rod, and the left side of the slider is fixed A connecting column is connected, a scraper is fixedly connected to the left side of the connecting column, a collecting groove is opened at the rear end of the top of the main board, a collecting chamber is fixedly connected to the bottom of the collecting groove, and a collecting box is arranged inside the collecting chamber. After the mortar concrete is poured into the fixed mold, the residual material scraping and collecting component on the top of the device is started, and the motor rotates to drive the pulley 1 and the screw rod to rotate, and the pulley 1 drives the pulley 2 to rotate synchronously through the transmission belt, and the screw rods on both sides rotate synchronously to drive the slider on the surface to move forward, and the slider scrapes the excess mortar concrete on the top of the fixed mold through the scraper fixed on the left, and pushes the excess concrete into the collecting box for collection. The scraped concrete surface is smoother, thereby enhancing the processing accuracy of the concrete precast components, ensuring the molding quality of the concrete components, accurately controlling the amount of concrete inside the fixed mold, and further improving the yield rate.

根据上述技术方案,所述导向杆设置于丝杆外侧,所述滑块和连接柱设置有两组,所述余料刮除收集组件设置于定模左右两侧,所述皮带轮一转动连接于电机一背面输出端。According to the above technical solution, the guide rod is arranged on the outside of the screw rod, the slider and the connecting column are provided in two groups, the residual material scraping and collecting assembly is arranged on the left and right sides of the fixed mold, and the pulley is rotatably connected to the back output end of the motor.

根据上述技术方案,所述混凝土偏心振动组件包括固定板一,所述固定板一固定连接于箱体背面,所述固定板一顶部左右两侧均固定连接有固定板二,所述固定板二表面设置有限位柱一,所述限位柱一左侧固定连接有支架,所述支架内侧顶部固定连接有限位柱二,所述限位柱二表面套接有晃动块,所述晃动块正面开设有通孔,所述晃动块正面设置有偏心轮一,所述晃动块背面设置有偏心轮二,所述偏心轮一盒偏心轮二之间顶部固定连接有振动柱,所述偏心轮二背面设置有电机二,所述箱体背面开设有贯穿孔,所述晃动块顶部固定连接有连接支柱,所述连接支柱顶部远离晃动块的一端固定连接有振动板,在混凝土倒入定模的同时,箱体背面的电机二会开始工作,带动正面的偏心轮二转动,偏心轮二则是通过偏心轮一和振动柱转动带动晃动块在限位柱二表面上下移动,限位柱一和支架的设置则是为了保证晃动块在晃动时不会脱落,晃动块晃动带动顶部的连接支柱和连接支柱顶部的振动板进行振动,在加入混凝土的期间不断对定模内部的混凝土进行敲击,经过不断的敲击使得定模内部的混凝土抗压填满定模内部的所有空间,不会产生不必要的空洞,防止空洞对构件成品产生损坏,进一步提高了砂浆混凝土构件的成品质量。According to the above technical scheme, the concrete eccentric vibration assembly includes a fixing plate 1, which is fixedly connected to the back of the box body, and the fixing plate 2 is fixedly connected to the left and right sides of the top of the fixing plate 1. A limiting column 1 is arranged on the surface of the fixing plate 2, and a bracket is fixedly connected to the left side of the limiting column 1, and a limiting column 2 is fixedly connected to the top of the inner side of the bracket, and a shaking block is sleeved on the surface of the limiting column 2. A through hole is opened on the front of the shaking block, an eccentric wheel 1 is arranged on the front of the shaking block, and an eccentric wheel 2 is arranged on the back of the shaking block. A vibration column is fixedly connected to the top between the eccentric wheel 1 and the eccentric wheel 2, and a motor 2 is arranged on the back of the eccentric wheel 2. A through hole is opened on the back of the box body, and a connecting pillar is fixedly connected to the top of the shaking block. A vibration plate is fixedly connected to the end of the top away from the shaking block. When concrete is poured into the fixed mold, the motor 2 on the back of the box will start working to drive the eccentric wheel 2 on the front to rotate. The eccentric wheel 2 drives the shaking block to move up and down on the surface of the limiting column 2 through the rotation of the eccentric wheel 1 and the vibration column. The limiting column 1 and the bracket are set to ensure that the shaking block will not fall off when shaking. The shaking of the shaking block drives the top connecting pillar and the vibration plate on the top of the connecting pillar to vibrate. During the addition of concrete, the concrete inside the fixed mold is continuously knocked. After continuous knocking, the concrete inside the fixed mold is pressure-resistant and fills all the space inside the fixed mold. No unnecessary voids are generated, which prevents the voids from damaging the finished component, further improving the quality of the mortar concrete component.

根据上述技术方案,所述偏心轮二转动连接于电机二正面输出端,所述限位柱一贯穿于固定板二表面,所述限位柱一设置有四根,所述限位柱二设置有两根。According to the above technical solution, the eccentric wheel 2 is rotatably connected to the front output end of the motor 2, the limiting column 1 penetrates the surface of the fixed plate 2, the limiting column 1 is provided with four, and the limiting column 2 is provided with two.

根据上述技术方案,所述动模移动组件包括安装块,所述安装块固定连接于主板顶部左右两侧,所述安装块顶部开设有滑槽,所述主板顶部后端固定连接有动模支柱,所述动模支柱顶部固定连接有支板,所述支板顶部固定连接有动模,所述动模左右两侧固定连接有转动轴一,所述转动轴一右侧转动连接有连接臂,所述连接臂底部远离转动轴一的一端固定连接有滑动块,所述连接臂右侧固定连接有把手,动模可以通过拉动把手带动连接臂进行移动,可以在加料时将动模移至支板上进行放置,放置砂浆混凝土喷洒到动模顶部,保证了动模的干净整洁。According to the above technical scheme, the movable mold moving assembly includes a mounting block, the mounting block is fixedly connected to the left and right sides of the top of the main board, a sliding groove is opened on the top of the mounting block, the movable mold pillar is fixedly connected to the rear end of the top of the main board, the top of the movable mold pillar is fixedly connected to a support plate, the top of the support plate is fixedly connected to the movable mold, the left and right sides of the movable mold are fixedly connected to a rotating shaft 1, the right side of the rotating shaft 1 is rotatably connected to a connecting arm, the bottom end of the connecting arm away from the rotating shaft 1 is fixedly connected to a sliding block, and the right side of the connecting arm is fixedly connected to a handle, the movable mold can be moved by pulling the handle to drive the connecting arm, and the movable mold can be moved to the support plate for placement when adding materials, and the mortar concrete is sprayed on the top of the movable mold, thereby ensuring that the movable mold is clean and tidy.

根据上述技术方案,所述液压开模组件包括动模支撑柱,所述动模支撑柱固定连接于动模顶部四角,所述动模支撑柱顶部固定连接有顶板,所述顶板顶部中心设置有液压缸,所述液压缸底部固定连接有液压伸缩柱,所述顶板底部左右两侧固定连接有固定座,所述固定座底部固定连接有转动座,所述转动座背面转动连接有转动杆,所述转动座底部转动连接有联动臂一,所述联动臂一底部转动连接有联动臂二,所述联动臂一和联动臂二左侧转动连接有联动臂三,所述联动臂三左侧远离联动臂一和联动臂二的一端转动连接有转动轴三,所述联动臂三左侧设置有滑动板,所述滑动板左右两侧均转动连接有转动轴三,所述滑动板套接于液压伸缩柱表面,当混凝土加注完毕后,通过动模移动组件将动模移动到定模顶部,启动液压缸带动底部的组件进行下降,通过联动臂一和联动臂二和联动臂三的联动使动模下降的速率保持稳定,放置模具合膜错位,后期开模时同样启动液压缸带动液压伸缩柱升起,通过联动臂一和联动臂二和联动臂三带动滑动板移动,使开模工作稳定的进行,防止因为开模过快导致构件受到磕碰受损,进一步提高装置的产品成品制造效率。According to the above technical scheme, the hydraulic mold opening assembly includes a movable mold support column, the movable mold support column is fixedly connected to the four corners of the top of the movable mold, the top of the movable mold support column is fixedly connected to a top plate, a hydraulic cylinder is arranged at the top center of the top plate, the bottom of the hydraulic cylinder is fixedly connected to a hydraulic telescopic column, the left and right sides of the bottom of the top plate are fixedly connected to a fixed seat, the bottom of the fixed seat is fixedly connected to a rotating seat, the back of the rotating seat is rotatably connected to a rotating rod, the bottom of the rotating seat is rotatably connected to a linkage arm 1, the bottom of the linkage arm 1 is rotatably connected to a linkage arm 2, the left side of the linkage arm 1 and the linkage arm 2 is rotatably connected to a linkage arm 3, and the left end of the linkage arm 3 away from the linkage arm 1 and the linkage arm 2 is rotatably connected to a rotating shaft Third, a sliding plate is arranged on the left side of the linkage arm three, and the left and right sides of the sliding plate are rotatably connected with the rotating shaft three, and the sliding plate is sleeved on the surface of the hydraulic telescopic column. When the concrete is filled, the movable mold is moved to the top of the fixed mold through the movable mold moving assembly, and the hydraulic cylinder is started to drive the bottom assembly to descend. The linkage of the linkage arm one, the linkage arm two and the linkage arm three keeps the descending rate of the movable mold stable, and the mold is placed in a misaligned position. When the mold is opened later, the hydraulic cylinder is also started to drive the hydraulic telescopic column to rise, and the sliding plate is driven to move by the linkage arm one, the linkage arm two and the linkage arm three, so that the mold opening work can be carried out stably, and the components can be prevented from being damaged by collision due to too fast mold opening, thereby further improving the product manufacturing efficiency of the device.

根据上述技术方案,所述顶起组件包括气缸,所述气缸固定连接于箱体底部,所述气缸顶部固定连接有气动伸缩杆,所述气动伸缩杆顶部固定连接有底板,所述底板顶部左右两侧固定连接有推动杆,所述推动杆顶部固定连接有推板,所述底板顶部固定连接有电推杆,所述电推杆顶部固定连接有连接垫,所述连接垫顶部固定连接有伸缩柱,所述伸缩柱表面设置有弹簧,所述伸缩柱顶部固定连接有橡胶垫,所述橡胶垫顶部固定连接有顶针底座,所述顶针底座顶部固定连接有顶针,所述定模内部底部开设有顶出槽,所述顶出槽顶部设置有模具底板,所述模具底板表面开设有顶针顶出孔,脱模时,启动箱体底部的气缸,带动气动伸缩杆对底板顶部的推动杆和推板进行顶起,将模具底板和其顶部的成品构件进行一次顶出,进行初步脱模,在初步脱模的同时,启动电推杆,将连接垫和伸缩柱顶起,将顶部的顶针顶出,通过顶针顶出孔对构件进行二次顶出,使得构件完全脱离模具,脱模效率高,且脱模时不会损坏到构件本体。According to the above technical solution, the lifting assembly includes a cylinder, the cylinder is fixedly connected to the bottom of the box, the top of the cylinder is fixedly connected to a pneumatic telescopic rod, the top of the pneumatic telescopic rod is fixedly connected to a bottom plate, the left and right sides of the top of the bottom plate are fixedly connected to push rods, the top of the push rod is fixedly connected to a push plate, the top of the bottom plate is fixedly connected to an electric push rod, the top of the electric push rod is fixedly connected to a connecting pad, the top of the connecting pad is fixedly connected to a telescopic column, a spring is provided on the surface of the telescopic column, the top of the telescopic column is fixedly connected to a rubber pad, the top of the rubber pad is fixedly connected to an ejector base, and the top of the ejector base An ejector is fixedly connected, an ejection groove is provided at the bottom of the fixed mold, a mold bottom plate is provided at the top of the ejection groove, and an ejector hole is provided on the surface of the mold bottom plate. When demoulding, the cylinder at the bottom of the box body is started to drive the pneumatic telescopic rod to lift the push rod and the push plate on the top of the bottom plate, and the mold bottom plate and the finished component on the top are ejected once, and preliminary demoulding is performed. At the same time of preliminary demoulding, the electric push rod is started to lift the connecting pad and the telescopic column, and the top ejector is ejected, and the component is ejected for a second time through the ejector ejection hole, so that the component is completely separated from the mold, the demoulding efficiency is high, and the component body will not be damaged during demoulding.

根据上述技术方案,所述转动轴一和连接臂和滑动块均设置有三组,所述联动臂一和联动臂二和联动臂三均设置有三组,所述电推杆设置于推动杆内侧,所述气缸和气动伸缩杆设置有四组,所述电推杆设置有四组,所述顶针顶出孔开设有四组,所述推板和振动板均设置于模具底板底部,所述顶针贯穿于顶针顶出孔内部。According to the above technical solution, the rotating shaft 1, the connecting arm and the sliding block are each provided with three groups, the linkage arm 1, the linkage arm 2 and the linkage arm 3 are each provided with three groups, the electric push rod is arranged on the inner side of the push rod, the cylinder and the pneumatic telescopic rod are provided with four groups, the electric push rod is provided with four groups, the ejector pin ejection hole is opened with four groups, the push plate and the vibration plate are both provided at the bottom of the mold bottom plate, and the ejector pin passes through the ejector pin ejection hole.

根据上述技术方案,所述主板顶部前端开设有放置槽,所述主板底部固定连接有箱体,所述箱体底部四角固定连接有箱体,所述主板底部后端固定连接有支撑脚二,所述箱体正面设置有箱门,所述箱体内部四角固定连接有主板支撑柱,所述放置槽内部设置有定模,所述定模内部底部开设有顶出槽。According to the above technical solution, a placement groove is provided at the front end of the top of the mainboard, the bottom of the mainboard is fixedly connected to a box body, the four corners of the bottom of the box body are fixedly connected to the box body, the rear end of the bottom of the mainboard is fixedly connected to two supporting feet, a box door is provided at the front of the box body, the four corners of the box body are fixedly connected to the mainboard support columns, a fixed mold is provided inside the placement groove, and an ejection groove is provided at the bottom of the fixed mold.

与现有技术相比,本发明所达到的有益效果是:Compared with the prior art, the beneficial effects achieved by the present invention are:

1、本发明,通过设置有余料刮除收集组件,在将砂浆混凝土倒入定模内部后,启动装置顶部的余料刮除收集组件余料刮除收集组件,电机一转动带动皮带轮一和丝杆转动,皮带轮一则是通过传动皮带带动皮带轮二同步进行转动,两侧的丝杆同步转动带动着表面的滑块前进,滑块通过左侧固定的刮板对定模顶部多余的砂浆混凝土进行刮除,将多余的混凝土推到收集盒内部进行收集,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,保证了混凝土构件的成型质量,精确的控制定模内部的混凝土数量,进一步提高成品率。1. The present invention is provided with a residual material scraping and collecting component. After the mortar concrete is poured into the fixed mold, the residual material scraping and collecting component on the top of the device is started, and the motor 1 rotates to drive the pulley 1 and the screw rod to rotate. The pulley 1 drives the pulley 2 to rotate synchronously through the transmission belt. The screw rods on both sides rotate synchronously to drive the slider on the surface to move forward. The slider scrapes the excess mortar concrete on the top of the fixed mold through the scraper fixed on the left, and pushes the excess concrete into the collection box for collection. The scraped concrete surface is smoother, thereby enhancing the processing accuracy of the concrete precast components, ensuring the molding quality of the concrete components, accurately controlling the amount of concrete inside the fixed mold, and further improving the yield rate.

2、本发明,通过设置有收集盒,被刮板刮除的混凝土会掉落到收集盒内部,收集后的收集盒可以从收集室内部抽出,对内部的砂浆混凝土进行二次利用,极大的减少了砂浆混凝土的消耗,减少原料的损耗,提高装置的工作质量。2. The present invention is provided with a collecting box, so that the concrete scraped by the scraper will fall into the collecting box. The collecting box after collection can be drawn out from the collecting chamber to reuse the mortar concrete inside, which greatly reduces the consumption of mortar concrete, reduces the loss of raw materials, and improves the working quality of the device.

3、本发明,通过设置有混凝土偏心振动组件,在混凝土倒入定模的同时,箱体背面的电机二会开始工作,带动正面的偏心轮二转动,偏心轮二则是通过偏心轮一和振动柱转动带动晃动块在限位柱二表面上下移动,限位柱一和支架的设置则是为了保证晃动块在晃动时不会脱落,晃动块晃动带动顶部的连接支柱和连接支柱顶部的振动板进行振动,在加入混凝土的期间不断对定模内部的混凝土进行敲击,经过不断的敲击使得定模内部的混凝土抗压填满定模内部的所有空间,不会产生不必要的空洞,防止空洞对构件成品产生损坏,进一步提高了砂浆混凝土构件的成品质量。3. The present invention is provided with a concrete eccentric vibration assembly. When concrete is poured into the fixed mold, the second motor on the back of the box body starts to work, driving the second eccentric wheel on the front side to rotate. The second eccentric wheel drives the shaking block to move up and down on the surface of the second limiting column through the rotation of the first eccentric wheel and the vibration column. The limiting column and the bracket are provided to ensure that the shaking block does not fall off when shaking. The shaking of the shaking block drives the top connecting pillar and the vibration plate on the top of the connecting pillar to vibrate. The concrete inside the fixed mold is continuously knocked during the addition of concrete. After continuous knocking, the concrete inside the fixed mold is compressed to fill all the space inside the fixed mold without generating unnecessary voids, thereby preventing the voids from damaging the finished component and further improving the quality of the finished mortar concrete component.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

附图用来提供对本发明的进一步理解,并且构成说明书的一部分,与本发明的实施例一起用于解释本发明,并不构成对本发明的限制。在附图中:The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

图1是本发明的整体正面示意图;FIG1 is an overall front schematic diagram of the present invention;

图2是本发明的背面示意图;Fig. 2 is a schematic diagram of the back side of the present invention;

图3是本发明的背面顶部示意图;FIG3 is a schematic diagram of the back top of the present invention;

图4是本发明的余料刮除收集组件示意图;FIG4 is a schematic diagram of a residual material scraping and collecting assembly of the present invention;

图5是本发明的混凝土振动组件示意图;FIG5 is a schematic diagram of a concrete vibration assembly of the present invention;

图6是本发明的混凝土偏心振动组件分离视图示意图;FIG6 is a schematic diagram of a separated view of an eccentric vibration assembly of a concrete according to the present invention;

图7是本发明的动模移动组件示意图;7 is a schematic diagram of a movable mold moving assembly of the present invention;

图8是本发明的液压开模组件示意图;FIG8 is a schematic diagram of a hydraulic mold opening assembly of the present invention;

图9是本发明的顶起组件分离视图示意图;FIG9 is a schematic diagram of a separated view of a jacking assembly of the present invention;

图10是本发明的箱体内部分离视图示意图。FIG. 10 is a schematic diagram of a separated view of the interior of the housing of the present invention.

图中:1、主板;2、放置槽;3、箱体;31、主板支撑柱;4、箱门;5、支撑脚一;6、支撑脚二;7、混凝土处理机构;71、余料刮除收集组件;711、固定块一;7111、固定块二;712、固定块三;7121、固定块四;713、丝杆;714、导向杆;715、电机支撑架;716、电机一;717、皮带轮一;718、皮带轮二;719、传动皮带;7101、滑块;7102、连接柱;7103、刮板;7104、收集槽;7105、收集室;7106、收集盒;72、混凝土偏心振动组件;721、固定板一;722、固定板二;723、限位柱一;724、支架;725、限位柱二;726、晃动块;727、通孔;728、偏心轮一;729、偏心轮二;7201、振动柱;7202、电机二;7203、贯穿孔;7204、连接支柱;7205、振动板;8、模具辅助机构;81、动模移动组件;811、安装块;812、滑槽;813、动模支柱;814、支板;815、动模;816、转动轴一;817、连接臂;818、滑动块;819、把手;82、液压开模组件;821、动模支撑柱;822、顶板;823、液压缸;824、液压伸缩柱;825、固定座;826、转动座;827、转动杆;828、联动臂一;829、联动臂二;8201、联动臂三;8202、转动轴三;8203、滑动板;83、顶起组件;831、气缸;832、气动伸缩杆;833、底板;834、推动杆;835、推板;836、电推杆;837、连接垫;838、伸缩柱;839、弹簧;8301、橡胶垫;8302、顶针底座;8303、顶针;8304、模具底板;8305、顶针顶出孔;9、定模;91、顶出槽。In the figure: 1, main board; 2, placement slot; 3, box body; 31, main board support column; 4, box door; 5, support foot 1; 6, support foot 2; 7, concrete processing mechanism; 71, residual material scraping and collecting assembly; 711, fixed block 1; 7111, fixed block 2; 712, fixed block 3; 7121, fixed block 4; 713, screw rod; 714, guide rod; 715, motor support frame; 716, motor 1; 717, pulley 1; 718, pulley 2; 719, transmission belt; 7101, slider ; 7102, connecting column; 7103, scraper; 7104, collecting trough; 7105, collecting chamber; 7106, collecting box; 72, concrete eccentric vibration assembly; 721, fixing plate 1; 722, fixing plate 2; 723, limiting column 1; 724, bracket; 725, limiting column 2; 726, shaking block; 727, through hole; 728, eccentric wheel 1; 729, eccentric wheel 2; 7201, vibration column; 7202, motor 2; 7203, through hole; 7204, connecting pillar; 720 5. Vibrating plate; 8. Mold auxiliary mechanism; 81. Moving mold moving assembly; 811. Mounting block; 812. Slide; 813. Moving mold pillar; 814. Support plate; 815. Moving mold; 816. Rotating shaft 1; 817. Connecting arm; 818. Sliding block; 819. Handle; 82. Hydraulic mold opening assembly; 821. Moving mold support column; 822. Top plate; 823. Hydraulic cylinder; 824. Hydraulic telescopic column; 825. Fixed seat; 826. Rotating seat; 827. Rotating rod; 828. Linkage arm 1; 8 29. Linkage arm two; 8201. Linkage arm three; 8202. Rotation axis three; 8203. Sliding plate; 83. Ejection assembly; 831. Cylinder; 832. Pneumatic telescopic rod; 833. Bottom plate; 834. Push rod; 835. Push plate; 836. Electric push rod; 837. Connecting pad; 838. Telescopic column; 839. Spring; 8301. Rubber pad; 8302. Ejector base; 8303. Ejector; 8304. Mold bottom plate; 8305. Ejector ejection hole; 9. Fixed mold; 91. Ejector groove.

具体实施方式DETAILED DESCRIPTION

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。The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

本发明提供以下技术方案:The present invention provides the following technical solutions:

实施例一Embodiment 1

请参阅图1-6,本发明提供技术方案:一种砂浆混凝土构件施工模具,包括主板1,主板1顶部前端开设有放置槽2,放置槽2内部设置有定模9,主板1底部固定连接有箱体3,主板1顶部设置有混凝土处理机构7,主板1顶部设置有模具辅助机构8;Please refer to Figures 1-6. The present invention provides a technical solution: a mortar concrete component construction mold, including a main board 1, a placement groove 2 is opened at the top front end of the main board 1, a fixed mold 9 is arranged inside the placement groove 2, a box body 3 is fixedly connected to the bottom of the main board 1, a concrete processing mechanism 7 is arranged on the top of the main board 1, and a mold auxiliary mechanism 8 is arranged on the top of the main board 1;

混凝土处理机构7包括余料刮除收集组件71和混凝土偏心振动组件72,余料刮除收集组件71设置于主板1顶部前端,混凝土偏心振动组件72设置于箱体3背面;The concrete processing mechanism 7 includes a residual material scraping and collecting component 71 and a concrete eccentric vibration component 72. The residual material scraping and collecting component 71 is arranged at the top front end of the main board 1, and the concrete eccentric vibration component 72 is arranged at the back of the box body 3;

模具辅助机构8包括动模移动组件81和液压开模组件82和顶起组件83,动模移动组件81设置于主板1顶部,液压开模组件82设置于动模移动组件81顶部,顶起组件83设置于箱体3内部;The mold auxiliary mechanism 8 includes a movable mold moving component 81, a hydraulic mold opening component 82, and a lifting component 83. The movable mold moving component 81 is arranged on the top of the main board 1, the hydraulic mold opening component 82 is arranged on the top of the movable mold moving component 81, and the lifting component 83 is arranged inside the box 3;

余料刮除收集组件71包括固定块一711,固定块一711固定连接于主板1顶部前端右侧,固定块一711背面设置有固定块二7111,主板1顶部前端左侧固定连接有固定块三712,固定块三712背面设置有固定块四7121,固定块一711和固定块二7111之间转动连接有丝杆713,固定块一711和固定块二7111之间固定连接有导向杆714,固定块三712和固定块四7121之间转动连接有丝杆713,固定块三712和固定块四7121之间固定连接有导向杆714,固定块一711正面固定连接有电机支撑架715,电机支撑架715顶部设置有电机一716,电机一716背面转动连接有皮带轮一717,皮带轮一717转动连接于丝杆713正面,固定块三712正面转动连接有皮带轮二718,皮带轮一717和皮带轮二718之间传动连接有传动皮带719,丝杆713和导向杆714表面滑动连接有滑块7101,滑块7101左侧固定连接有连接柱7102,连接柱7102左侧固定连接有刮板7103,主板1顶部后端开设有收集槽7104,收集槽7104底部固定连接有收集室7105,收集室7105内部设置有收集盒7106,在将砂浆混凝土倒入定模9内部后,启动装置顶部的余料刮除收集组件余料刮除收集组件71,电机一716转动带动皮带轮一717和丝杆713转动,皮带轮一717则是通过传动皮带719带动皮带轮二718同步进行转动,两侧的丝杆713同步转动带动着表面的滑块7101前进,滑块7101通过左侧固定的刮板7103对定模9顶部多余的砂浆混凝土进行刮除,将多余的混凝土推到收集盒7106内部进行收集,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,保证了混凝土构件的成型质量,精确的控制定模9内部的混凝土数量,进一步提高成品率;The scraping and collecting assembly 71 for scraping off the residual material includes a fixing block 1 711, which is fixedly connected to the right side of the top front end of the main board 1, a fixing block 2 7111 is arranged on the back of the fixing block 1 711, a fixing block 3 712 is fixedly connected to the left side of the top front end of the main board 1, a fixing block 4 7121 is arranged on the back of the fixing block 3 712, a screw rod 713 is rotatably connected between the fixing block 1 711 and the fixing block 2 7111, a guide rod 714 is fixedly connected between the fixing block 1 711 and the fixing block 2 7111, a screw rod 713 is rotatably connected between the fixing block 3 712 and the fixing block 4 7121, and a fixing block 713 is fixedly connected between the fixing block 1 711 and the fixing block 2 7111. A guide rod 714 is fixedly connected between the fixed block 3 712 and the fixed block 4 7121, a motor support frame 715 is fixedly connected to the front of the fixed block 1 711, a motor 1 716 is arranged on the top of the motor support frame 715, a pulley 1 717 is rotatably connected to the back of the motor 1 716, the pulley 1 717 is rotatably connected to the front of the screw rod 713, a pulley 2 718 is rotatably connected to the front of the fixed block 3 712, a transmission belt 719 is transmission-connected between the pulley 1 717 and the pulley 2 718, a slider 7101 is slidably connected to the surface of the screw rod 713 and the guide rod 714, and the slider 710 1 is fixedly connected to the left side of the connecting column 7102, and the left side of the connecting column 7102 is fixedly connected to the scraper 7103. A collecting groove 7104 is provided at the top rear end of the main board 1, and a collecting chamber 7105 is fixedly connected to the bottom of the collecting groove 7104. A collecting box 7106 is arranged inside the collecting chamber 7105. After the mortar concrete is poured into the fixed mold 9, the scraper collecting assembly 71 on the top of the device is started, and the motor 716 rotates to drive the pulley 717 and the screw rod 713 to rotate. The pulley 717 drives the pulley 2 718 to rotate synchronously through the transmission belt 719. The screw rods 713 on both sides rotate synchronously to drive the slider 7101 on the surface to move forward. The slider 7101 scrapes off the excess mortar concrete on the top of the fixed mold 9 through the scraper 7103 fixed on the left, and pushes the excess concrete into the collecting box 7106 for collection. The scraped concrete surface is smoother, thereby enhancing the processing accuracy of the precast concrete components, ensuring the molding quality of the concrete components, accurately controlling the amount of concrete inside the fixed mold 9, and further improving the yield rate;

导向杆714设置于丝杆713外侧,滑块7101和连接柱7102设置有两组,余料刮除收集组件71设置于定模9左右两侧,皮带轮一717转动连接于电机一716背面输出端;The guide rod 714 is arranged outside the screw rod 713, two groups of sliders 7101 and connecting columns 7102 are arranged, the residual material scraping and collecting assembly 71 is arranged on the left and right sides of the fixed mold 9, and the pulley 717 is rotatably connected to the output end of the back of the motor 716;

混凝土偏心振动组件72包括固定板一721,固定板一721固定连接于箱体3背面,固定板一721顶部左右两侧均固定连接有固定板二722,固定板二722表面设置有限位柱一723,限位柱一723左侧固定连接有支架724,支架724内侧顶部固定连接有限位柱二725,限位柱二725表面套接有晃动块726,晃动块726正面开设有通孔727,晃动块726正面设置有偏心轮一728,晃动块726背面设置有偏心轮二729,偏心轮一728盒偏心轮二729之间顶部固定连接有振动柱7201,偏心轮二729背面设置有电机二7202,箱体3背面开设有贯穿孔7203,晃动块726顶部固定连接有连接支柱7204,连接支柱7204顶部远离晃动块726的一端固定连接有振动板7205,在混凝土倒入定模9的同时,箱体3背面的电机二7202会开始工作,带动正面的偏心轮二729转动,偏心轮二729则是通过偏心轮一728和振动柱7201转动带动晃动块726在限位柱二725表面上下移动,限位柱一723和支架724的设置则是为了保证晃动块726在晃动时不会脱落,晃动块726晃动带动顶部的连接支柱7204和连接支柱7204顶部的振动板7205进行振动,在加入混凝土的期间不断对定模9内部的混凝土进行敲击,经过不断的敲击使得定模9内部的混凝土抗压填满定模9内部的所有空间,不会产生不必要的空洞,防止空洞对构件成品产生损坏,进一步提高了砂浆混凝土构件的成品质量;The concrete eccentric vibration assembly 72 includes a fixing plate 1 721, which is fixedly connected to the back of the box body 3, and the fixing plate 2 722 is fixedly connected to the left and right sides of the top of the fixing plate 1 721. The surface of the fixing plate 2 722 is provided with a limiting column 1 723, and the left side of the limiting column 1 723 is fixedly connected to a bracket 724. The inner top of the bracket 724 is fixedly connected to the limiting column 2 725, and the surface of the limiting column 2 725 is sleeved with a shaking block 726. The shaking block 72 A through hole 727 is provided on the front of the box 726, an eccentric wheel 1 728 is provided on the front of the shaking block 726, and an eccentric wheel 2 729 is provided on the back of the shaking block 726. A vibration column 7201 is fixedly connected to the top between the eccentric wheel 1 728 and the eccentric wheel 2 729, and a motor 2 7202 is provided on the back of the eccentric wheel 2 729. A through hole 7203 is provided on the back of the box 3, and a connecting pillar 7204 is fixedly connected to the top of the shaking block 726, and the top of the connecting pillar 7204 is away from One end of the shaking block 726 is fixedly connected with a vibration plate 7205. When concrete is poured into the fixed mold 9, the second motor 7202 on the back of the box body 3 will start working, driving the second eccentric wheel 729 on the front to rotate. The second eccentric wheel 729 drives the shaking block 726 to move up and down on the surface of the second limiting column 725 through the rotation of the eccentric wheel 1 728 and the vibration column 7201. The setting of the limiting column 1 723 and the bracket 724 is to ensure that the shaking block 726 will not fall off during shaking. The shaking of the shaking block 726 drives the top connecting pillar 7204 and the vibration plate 7205 on the top of the connecting pillar 7204 to vibrate, and the concrete inside the fixed mold 9 is continuously knocked during the addition of concrete. After continuous knocking, the concrete inside the fixed mold 9 is compressed to fill all the space inside the fixed mold 9, and no unnecessary voids are generated, which prevents the voids from damaging the finished component, and further improves the finished product quality of the mortar concrete component.

偏心轮二729转动连接于电机二7202正面输出端,限位柱一723贯穿于固定板二722表面,限位柱一723设置有四根,限位柱二725设置有两根。The eccentric wheel 2 729 is rotatably connected to the front output end of the motor 2 7202 , and the limiting column 1 723 penetrates the surface of the fixing plate 2 722 . There are four limiting columns 1 723 and two limiting columns 2 725 .

实施例二Embodiment 2

请参阅图1-10,并在实施例一的基础上,进一步得到动模移动组件81包括安装块811,安装块811固定连接于主板1顶部左右两侧,安装块811顶部开设有滑槽812,主板1顶部后端固定连接有动模支柱813,动模支柱813顶部固定连接有支板814,支板814顶部固定连接有动模815,动模815左右两侧固定连接有转动轴一816,转动轴一816右侧转动连接有连接臂817,连接臂817底部远离转动轴一816的一端固定连接有滑动块818,连接臂817右侧固定连接有把手819,动模815可以通过拉动把手819带动连接臂817进行移动,可以在加料时将动模815移至支板814上进行放置,放置砂浆混凝土喷洒到动模815顶部,保证了动模815的干净整洁;Please refer to Figures 1-10, and on the basis of the first embodiment, it is further obtained that the movable mold moving component 81 includes a mounting block 811, the mounting block 811 is fixedly connected to the left and right sides of the top of the main board 1, a slide groove 812 is opened on the top of the mounting block 811, a movable mold pillar 813 is fixedly connected to the rear end of the top of the main board 1, a support plate 814 is fixedly connected to the top of the movable mold pillar 813, a movable mold 815 is fixedly connected to the top of the support plate 814, a rotating shaft 816 is fixedly connected to the left and right sides of the movable mold 815, a connecting arm 817 is rotatably connected to the right side of the rotating shaft 816, a sliding block 818 is fixedly connected to the end of the bottom of the connecting arm 817 away from the rotating shaft 816, a handle 819 is fixedly connected to the right side of the connecting arm 817, the movable mold 815 can be moved by pulling the handle 819 to drive the connecting arm 817, and the movable mold 815 can be moved to the support plate 814 for placement when adding materials, and the mortar concrete is sprayed on the top of the movable mold 815, so as to ensure that the movable mold 815 is clean and tidy;

液压开模组件82包括动模支撑柱821,动模支撑柱821固定连接于动模815顶部四角,动模支撑柱821顶部固定连接有顶板822,顶板822顶部中心设置有液压缸823,液压缸823底部固定连接有液压伸缩柱824,顶板822底部左右两侧固定连接有固定座825,固定座825底部固定连接有转动座826,转动座826背面转动连接有转动杆827,转动座826底部转动连接有联动臂一828,联动臂一828底部转动连接有联动臂二829,联动臂一828和联动臂二829左侧转动连接有联动臂三8201,联动臂三8201左侧远离联动臂一828和联动臂二829的一端转动连接有转动轴三8202,联动臂三8201左侧设置有滑动板8203,滑动板8203左右两侧均转动连接有转动轴三8202,滑动板8203套接于液压伸缩柱824表面,当混凝土加注完毕后,通过动模移动组件81将动模815移动到定模9顶部,启动液压缸823带动底部的组件进行下降,通过联动臂一828和联动臂二829和联动臂三8201的联动使动模815下降的速率保持稳定,放置模具合膜错位,后期开模时同样启动液压缸823带动液压伸缩柱824升起,通过联动臂一828和联动臂二829和联动臂三8201带动滑动板8203移动,使开模工作稳定的进行,防止因为开模过快导致构件受到磕碰受损,进一步提高装置的产品成品制造效率;The hydraulic mold opening assembly 82 includes a movable mold support column 821, which is fixedly connected to the four corners of the top of the movable mold 815. The top of the movable mold support column 821 is fixedly connected to a top plate 822. A hydraulic cylinder 823 is arranged at the top center of the top plate 822. The bottom of the hydraulic cylinder 823 is fixedly connected to a hydraulic telescopic column 824. The left and right sides of the bottom of the top plate 822 are fixedly connected to a fixed seat 825. The bottom of the fixed seat 825 is fixedly connected to a rotating seat 826. The back of the rotating seat 826 is rotatably connected to a rotating rod 827. The bottom of the rotating seat 826 is rotatably connected to a linkage arm 1 828. The bottom of the linkage arm 1 828 is rotatably connected to a linkage arm 2 829. The linkage arm 1 828 and the linkage arm 2 829 are rotatably connected to a linkage arm 3 8201 on the left side. The left end of the linkage arm 3 8201 away from the linkage arm 1 828 and the linkage arm 2 829 is rotatably connected to a rotating shaft 3 8202. A sliding plate 8203 is arranged on the left side of the arm three 8201, and the sliding plate 8203 is rotatably connected with the rotating shaft three 8202 on both sides. The sliding plate 8203 is sleeved on the surface of the hydraulic telescopic column 824. When the concrete is filled, the movable mold 815 is moved to the top of the fixed mold 9 through the movable mold moving component 81, and the hydraulic cylinder 823 is started to drive the bottom component to descend. The linkage of the linkage arm one 828, the linkage arm two 829 and the linkage arm three 8201 keeps the descending rate of the movable mold 815 stable, and the mold is placed in the mold dislocation. When the mold is opened later, the hydraulic cylinder 823 is also started to drive the hydraulic telescopic column 824 to rise, and the sliding plate 8203 is driven to move through the linkage arm one 828, the linkage arm two 829 and the linkage arm three 8201, so that the mold opening work can be carried out stably, and the components can be prevented from being damaged by collision due to too fast mold opening, so as to further improve the product manufacturing efficiency of the device;

顶起组件83包括气缸831,气缸831固定连接于箱体3底部,气缸831顶部固定连接有气动伸缩杆832,气动伸缩杆832顶部固定连接有底板833,底板833顶部左右两侧固定连接有推动杆834,推动杆834顶部固定连接有推板835,底板833顶部固定连接有电推杆836,电推杆836顶部固定连接有连接垫837,连接垫837顶部固定连接有伸缩柱838,伸缩柱838表面设置有弹簧839,伸缩柱838顶部固定连接有橡胶垫8301,橡胶垫8301顶部固定连接有顶针底座8302,顶针底座8302顶部固定连接有顶针8303,定模9内部底部开设有顶出槽91,顶出槽91顶部设置有模具底板8304,模具底板8304表面开设有顶针顶出孔8305,脱模时,启动箱体3底部的气缸831,带动气动伸缩杆832对底板833顶部的推动杆834和推板835进行顶起,将模具底板8304和其顶部的成品构件进行一次顶出,进行初步脱模,在初步脱模的同时,启动电推杆836,将连接垫837和伸缩柱838顶起,将顶部的顶针8303顶出,通过顶针顶出孔8305对构件进行二次顶出,使得构件完全脱离模具,脱模效率高,且脱模时不会损坏到构件本体;The lifting assembly 83 includes a cylinder 831, which is fixedly connected to the bottom of the box body 3, a pneumatic telescopic rod 832 is fixedly connected to the top of the cylinder 831, a bottom plate 833 is fixedly connected to the top of the pneumatic telescopic rod 832, a push rod 834 is fixedly connected to the left and right sides of the top of the bottom plate 833, a push plate 835 is fixedly connected to the top of the push rod 834, an electric push rod 836 is fixedly connected to the top of the bottom plate 833, a connecting pad 837 is fixedly connected to the top of the electric push rod 836, a telescopic column 838 is fixedly connected to the top of the connecting pad 837, a spring 839 is provided on the surface of the telescopic column 838, a rubber pad 8301 is fixedly connected to the top of the telescopic column 838, a thimble base 8302 is fixedly connected to the top of the rubber pad 8301, and a thimble base 8302 is fixedly connected to the top of the thimble base 8302. Needle 8303, an ejection groove 91 is provided at the bottom of the fixed mold 9, a mold bottom plate 8304 is provided at the top of the ejection groove 91, and an ejection pin ejection hole 8305 is provided on the surface of the mold bottom plate 8304. When demoulding, the cylinder 831 at the bottom of the box body 3 is started to drive the pneumatic telescopic rod 832 to lift the push rod 834 and the push plate 835 at the top of the bottom plate 833, and the mold bottom plate 8304 and the finished component on the top thereof are ejected once, and preliminary demoulding is performed. At the same time of preliminary demoulding, the electric push rod 836 is started to lift the connection pad 837 and the telescopic column 838, and the top ejector pin 8303 is ejected, and the component is ejected twice through the ejector pin ejection hole 8305, so that the component is completely separated from the mold, the demoulding efficiency is high, and the component body will not be damaged during demoulding;

转动轴一816和连接臂817和滑动块818均设置有三组,联动臂一828和联动臂二829和联动臂三8201均设置有三组,电推杆836设置于推动杆834内侧,气缸831和气动伸缩杆832设置有四组,电推杆836设置有四组,顶针顶出孔8305开设有四组,推板835和振动板7205均设置于模具底板8304底部,顶针8303贯穿于顶针顶出孔8305内部;The rotating shaft 1 816, the connecting arm 817 and the sliding block 818 are all provided with three groups, the linkage arm 1 828, the linkage arm 2 829 and the linkage arm 3 8201 are all provided with three groups, the electric push rod 836 is provided inside the push rod 834, the cylinder 831 and the pneumatic telescopic rod 832 are provided with four groups, the electric push rod 836 is provided with four groups, the ejector pin ejection hole 8305 is provided with four groups, the push plate 835 and the vibration plate 7205 are both provided at the bottom of the mold bottom plate 8304, and the ejector pin 8303 runs through the ejector pin ejection hole 8305;

主板1顶部前端开设有放置槽2,主板1底部固定连接有箱体3,箱体3底部四角固定连接有箱体3,主板1底部后端固定连接有支撑脚二6,箱体3正面设置有箱门4,箱体3内部四角固定连接有主板支撑柱31,放置槽2内部设置有定模9,定模9内部底部开设有顶出槽91。A placement slot 2 is provided at the front end of the top of the mainboard 1, a box body 3 is fixedly connected to the bottom of the mainboard 1, the four corners of the bottom of the box body 3 are fixedly connected to the box body 3, a supporting foot 6 is fixedly connected to the rear end of the bottom of the mainboard 1, a box door 4 is provided on the front of the box body 3, and mainboard support columns 31 are fixedly connected to the four corners of the box body 3, a fixed mold 9 is provided inside the placement slot 2, and an ejection slot 91 is provided at the bottom of the fixed mold 9.

在实际操作过程中,当此装置使用时,先对动模815移动到后端,动模815可以通过拉动把手819带动连接臂817进行移动,可以在加料时将动模815移至支板814上进行放置,放置砂浆混凝土喷洒到动模815顶部,保证了动模815的干净整洁,接下来将砂浆混凝土倒入定模9内部后,启动装置顶部的余料刮除收集组件余料刮除收集组件71,电机一716转动带动皮带轮一717和丝杆713转动,皮带轮一717则是通过传动皮带719带动皮带轮二718同步进行转动,两侧的丝杆713同步转动带动着表面的滑块7101前进,滑块7101通过左侧固定的刮板7103对定模9顶部多余的砂浆混凝土进行刮除,将多余的混凝土推到收集盒7106内部进行收集,刮除后的混凝土表面更加平整,进而增强了混凝土预制构件的加工精度,被刮板7103刮除的混凝土会掉落到收集盒7106内部,收集后的收集盒7106可以从收集室7105内部抽出,对内部的砂浆混凝土进行二次利用,极大的减少了砂浆混凝土的消耗,减少原料的损耗,在混凝土倒入定模9的同时,箱体3背面的电机二7202会开始工作,带动正面的偏心轮二729转动,偏心轮二729则是通过偏心轮一728和振动柱7201转动带动晃动块726在限位柱二725表面上下移动,限位柱一723和支架724的设置则是为了保证晃动块726在晃动时不会脱落,晃动块726晃动带动顶部的连接支柱7204和连接支柱7204顶部的振动板7205进行振动,在加入混凝土的期间不断对定模9内部的混凝土进行敲击,经过不断的敲击使得定模9内部的混凝土抗压填满定模9内部的所有空间,不会产生不必要的空洞,防止空洞对构件成品产生损坏,进一步提高了砂浆混凝土构件的成品质量,当混凝土加注完毕后,通过动模移动组件81将动模815移动到定模9顶部,启动液压缸823带动底部的组件进行下降,通过联动臂一828和联动臂二829和联动臂三8201的联动使动模815下降的速率保持稳定,放置模具合膜错位,后期开模时同样启动液压缸823带动液压伸缩柱824升起,通过联动臂一828和联动臂二829和联动臂三8201带动滑动板8203移动,使开模工作稳定的进行,防止因为开模过快导致构件受到磕碰受损,进一步提高装置的产品成品制造效率,脱模时,启动箱体3底部的气缸831,带动气动伸缩杆832对底板833顶部的推动杆834和推板835进行顶起,将模具底板8304和其顶部的成品构件进行一次顶出,进行初步脱模,在初步脱模的同时,启动电推杆836,将连接垫837和伸缩柱838顶起,将顶部的顶针8303顶出,通过顶针顶出孔8305对构件进行二次顶出,使得构件完全脱离模具,脱模效率高,且脱模时不会损坏到构件本体,进一步提高了装置的成品率,制造出质量高的砂浆混凝土构件。In actual operation, when this device is used, the movable mold 815 is first moved to the rear end. The movable mold 815 can be moved by pulling the handle 819 to drive the connecting arm 817 to move. When adding materials, the movable mold 815 can be moved to the support plate 814 for placement, and the mortar concrete is sprayed on the top of the movable mold 815 to ensure that the movable mold 815 is clean and tidy. Next, after the mortar concrete is poured into the fixed mold 9, the residual material scraping and collecting component 71 on the top of the device is started, and the motor 716 rotates to drive the pulley 1 717 and the screw rod 713 to rotate. The pulley 1 717 drives the pulley 2 718 to rotate synchronously through the transmission belt 719. The screw rods 713 on both sides rotate synchronously to drive the slider 7101 on the surface to move forward. The slider 7101 scrapes off the excess mortar concrete on the top of the fixed mold 9 through the scraper 7103 fixed on the left, and the excess mortar concrete is removed. The remaining concrete is pushed into the collecting box 7106 for collection. The surface of the scraped concrete is smoother, thereby enhancing the processing accuracy of the precast concrete components. The concrete scraped by the scraper 7103 will fall into the collecting box 7106. The collected collecting box 7106 can be drawn out from the collecting chamber 7105 to reuse the mortar concrete inside, which greatly reduces the consumption of mortar concrete and reduces the loss of raw materials. While the concrete is poured into the fixed mold 9, the motor 2 7202 on the back of the box 3 will start working, driving the eccentric wheel 2 729 on the front to rotate. The eccentric wheel 2 729 drives the shaking block 726 to move up and down on the surface of the limiting column 2 725 through the rotation of the eccentric wheel 1 728 and the vibration column 7201. The setting of the limiting column 1 723 and the bracket 724 is to ensure that the shaking block 726 will not fall off during shaking. The top connecting pillar 7204 and the vibration plate 7205 on the top of the connecting pillar 7204 are driven to vibrate, and the concrete inside the fixed mold 9 is continuously knocked during the addition of concrete. After continuous knocking, the concrete inside the fixed mold 9 is compressed to fill all the space inside the fixed mold 9, and no unnecessary voids are generated, thereby preventing the voids from damaging the finished component, thereby further improving the quality of the finished mortar concrete component. When the concrete is filled, the movable mold 815 is moved to the top of the fixed mold 9 through the movable mold moving assembly 81, and the hydraulic cylinder 823 is started to drive the bottom assembly to descend. The linkage of the linkage arm 1 828, the linkage arm 2 829 and the linkage arm 3 8201 keeps the descending rate of the movable mold 815 stable to prevent the mold from being misaligned. When the mold is opened in the later stage, the hydraulic cylinder 823 is also started to drive the hydraulic telescopic column 824 to rise, and the linkage arm 1 828 and the linkage arm 3 are used to move the movable mold 815 to the top of the fixed mold 9. The movable arm 2 829 and the linkage arm 3 8201 drive the sliding plate 8203 to move, so that the mold opening work can be carried out stably, and the components can be prevented from being damaged by bumps due to too fast mold opening, so as to further improve the product manufacturing efficiency of the device. When demoulding, the cylinder 831 at the bottom of the box body 3 is started to drive the pneumatic telescopic rod 832 to lift the push rod 834 and the push plate 835 on the top of the bottom plate 833, and the mold bottom plate 8304 and the finished component on its top are ejected once, and preliminary demoulding is carried out. At the same time of preliminary demoulding, the electric push rod 836 is started to lift the connecting pad 837 and the telescopic column 838, and the top ejector 8303 is ejected, and the component is ejected for a second time through the ejector ejection hole 8305, so that the component is completely separated from the mold, the demoulding efficiency is high, and the component body will not be damaged during demoulding, which further improves the yield rate of the device and manufactures high-quality mortar concrete components.

需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

最后应说明的是:以上所述仅为本发明的优选实施例而已,并不用于限制本发明,尽管参照前述实施例对本发明进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims (10)

1. The utility model provides a mortar concrete member construction mould, includes mainboard (1), its characterized in that: the front end of the top of the main board (1) is provided with a placing groove (2), a fixed die (9) is arranged in the placing groove (2), the bottom of the main board (1) is fixedly connected with a box body (3), the top of the main board (1) is provided with a concrete treatment mechanism (7), and the top of the main board (1) is provided with a die auxiliary mechanism (8);
The concrete treatment mechanism (7) comprises a residual material scraping and collecting assembly (71) and a concrete eccentric vibration assembly (72), wherein the residual material scraping and collecting assembly (71) is arranged at the front end of the top of the main board (1), and the concrete eccentric vibration assembly (72) is arranged at the back of the box body (3);
The die auxiliary mechanism (8) comprises a movable die moving assembly (81), a hydraulic die opening assembly (82) and a jacking assembly (83), wherein the movable die moving assembly (81) is arranged at the top of the main board (1), the hydraulic die opening assembly (82) is arranged at the top of the movable die moving assembly (81), and the jacking assembly (83) is arranged inside the box body (3).
2. A mortar concrete member construction mold according to claim 1, wherein: the residue scraping and collecting assembly (71) comprises a first fixing block (711), the first fixing block (711) is fixedly connected to the right side of the front end of the top of the main board (1), a second fixing block (7111) is arranged on the back of the first fixing block (711), a third fixing block (712) is fixedly connected to the left side of the front end of the top of the main board (1), a fourth fixing block (7121) is arranged on the back of the third fixing block (712), a screw rod (713) is rotationally connected between the first fixing block (711) and the second fixing block (7111), a guide rod (714) is rotationally connected between the first fixing block (711) and the second fixing block (7111), a screw rod (713) is rotationally connected between the third fixing block (712) and the fourth fixing block (7121), a guide rod (714) is fixedly connected between the third fixing block (712) and the fourth fixing block (7121), a motor support frame (715) is fixedly connected to the front of the first fixing block (711), a motor (716) is arranged on the top of the motor support frame (715), a belt pulley (716) is rotationally connected to the first fixing block (712) and the second fixing block (7121) is rotationally connected to the front surface (717), the novel belt conveyor is characterized in that a transmission belt (719) is connected between the belt pulley I (717) and the belt pulley II (718), a sliding block (7101) is connected to the surfaces of the screw rod (713) and the guide rod (714) in a sliding mode, a connecting column (7102) is fixedly connected to the left side of the sliding block (7101), a scraping plate (7103) is fixedly connected to the left side of the connecting column (7102), a collecting groove (7104) is formed in the rear end of the top of the main board (1), a collecting chamber (7105) is fixedly connected to the bottom of the collecting groove (7104), and a collecting box (7106) is arranged inside the collecting chamber (7105).
3. A mortar concrete member construction mold according to claim 2, wherein: the guide rod (714) is arranged on the outer side of the screw rod (713), the sliding block (7101) and the connecting column (7102) are provided with two groups, the residual material scraping and collecting assembly (71) is arranged on the left side and the right side of the fixed die (9), and the belt pulley I (717) is rotationally connected to the back output end of the motor I (716).
4. A mortar concrete member construction mold according to claim 3, wherein: the concrete eccentric vibration assembly (72) comprises a first fixed plate (721), the first fixed plate (721) is fixedly connected to the back of the box body (3), the left side and the right side of the top of the first fixed plate (721) are fixedly connected with a second fixed plate (722), a first limiting column (723) is arranged on the surface of the second fixed plate (722), a support (724) is fixedly connected to the left side of the first limiting column (723), a second limiting column (725) is fixedly connected to the inner side top of the support (724), a shaking block (726) is sleeved on the surface of the second limiting column (725), a through hole (727) is formed in the front of the shaking block (726), an eccentric wheel first (728) is arranged on the front of the shaking block (726), a vibrating column (7201) is fixedly connected to the top of the first eccentric wheel (728) and the second eccentric wheel (729), a second motor (7202) is arranged on the back of the second eccentric wheel, a through hole (03) is formed in the back of the box body (724), and one end of the shaking block (7205) is far away from the first shaking block (7204).
5. The mortar concrete member construction mold according to claim 4, wherein: the eccentric wheel II (729) is rotationally connected to the front output end of the motor II (7202), the limiting post I (723) penetrates through the surface of the fixing plate II (722), the limiting post I (723) is provided with four limiting posts, and the limiting post II (725) is provided with two limiting posts.
6. The mortar concrete member construction mold according to claim 5, wherein: the movable mould moving assembly (81) comprises a mounting block (811), the mounting block (811) is fixedly connected to the left side and the right side of the top of the main board (1), a sliding groove (812) is formed in the top of the mounting block (811), a movable mould support column (813) is fixedly connected to the rear end of the top of the main board (1), a support plate (814) is fixedly connected to the top of the movable mould support column (813), a movable mould (815) is fixedly connected to the top of the support plate (814), a first rotating shaft (816) is fixedly connected to the left side and the right side of the movable mould (815), a connecting arm (817) is connected to the right side of the first rotating shaft (816) in a rotating mode, a sliding block (818) is fixedly connected to one end of the bottom of the connecting arm (817) away from the first rotating shaft (816), and a handle (819) is fixedly connected to the right side of the connecting arm (817).
7. The mortar concrete member construction mold according to claim 6, wherein: the hydraulic pressure die opening assembly (82) includes movable mould support column (821), movable mould support column (821) fixedly connected with in movable mould (815) top four corners, movable mould support column (821) top fixedly connected with roof (822), roof (822) top center is provided with pneumatic cylinder (823), pneumatic cylinder (823) bottom fixedly connected with hydraulic telescoping column (824), roof (822) bottom left and right sides fixedly connected with fixing base (825), fixing base (825) bottom fixedly connected with rotation seat (826), rotation seat (826) back rotates and is connected with dwang (827), rotation seat (826) bottom rotates and is connected with link arm one (828), link arm one (828) bottom rotates and is connected with link arm two (829), link arm one (828) and link arm two (829) left side rotation are connected with link arm three (8201), link arm three (8201) left side is kept away from link arm one (828) and arm two (829) one end rotation and is connected with axis of rotation three (8202), link arm three (8203) are connected with three (8202) rotation plates (8203), link arm three (8203) are connected with sliding plate (8203) rotation, three side (8203) are connected with sliding plate (8202).
8. The mortar concrete member construction mold according to claim 7, wherein: the jacking component (83) comprises an air cylinder (831), the air cylinder (831) is fixedly connected to the bottom of the box body (3), an air cylinder (831) top fixedly connected with an air movable telescopic rod (832), an air movable telescopic rod (832) top fixedly connected with a bottom plate (833), push rods (834) are fixedly connected to the left side and the right side of the top of the bottom plate (833), push rods (834) top fixedly connected with push plates (835), electric push rods (836) are fixedly connected to the top of the bottom plate (833), connecting pads (837) are fixedly connected to the top of the electric push rods (836), a spring (839) is arranged on the surface of the telescopic column (838), rubber pads (8301) are fixedly connected to the top of the telescopic column (838), ejector pin bases (8302) are fixedly connected to the top of the bottom plate (8303), ejector pins (8303) are arranged at the inner bottom of the bottom plate (839), ejector pins (8304) are arranged on the surface of the bottom plate (8304), and ejector pins (8304) are arranged on the surface of the bottom plate (8304).
9. The mortar concrete member construction mold according to claim 8, wherein: the rotary shaft I (816) and the connecting arm (817) and the sliding block (818) are all provided with three groups, the first linkage arm (828) and the second linkage arm (829) and the third linkage arm (8201) are all provided with three groups, the electric push rod (836) is arranged on the inner side of the push rod (834), the cylinder (831) and the pneumatic telescopic rod (832) are provided with four groups, the electric push rod (836) is provided with four groups, the ejector pin ejection hole (8305) is provided with four groups, the push plate (835) and the vibrating plate (7205) are all arranged at the bottom of the die bottom plate (8304), and the ejector pin (8303) penetrates through the ejector pin ejection hole (8305).
10. The mortar concrete member construction mold according to claim 9, wherein: the novel automatic lifting device is characterized in that a holding groove (2) is formed in the front end of the top of the main board (1), a box body (3) is fixedly connected to the bottom of the main board (1), a box body (3) is fixedly connected to four corners of the bottom of the box body (3), a supporting leg II (6) is fixedly connected to the rear end of the bottom of the main board (1), a box door (4) is arranged on the front surface of the box body (3), a main board supporting column (31) is fixedly connected to four corners of the inside of the box body (3), a fixed die (9) is arranged inside the holding groove (2), and an ejection groove (91) is formed in the bottom of the inside of the fixed die (9).
CN202410758056.7A 2024-06-13 2024-06-13 A mortar concrete component construction mold Pending CN118596290A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118789762A (en) * 2024-09-11 2024-10-18 江苏环东电气有限公司 A mold for the production of cooling fans for new energy dry-type transformers

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN118789762A (en) * 2024-09-11 2024-10-18 江苏环东电气有限公司 A mold for the production of cooling fans for new energy dry-type transformers

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