Material conveying port template, material conveying port template assembly and assembling method thereof
阅读说明:本技术 传料口模板、传料口模板组件及其组装方法 (Material conveying port template, material conveying port template assembly and assembling method thereof ) 是由 彭珣 吴代勇 于 2020-06-16 设计创作,主要内容包括:一种传料口模板,所述传料口模板包括第一支撑板和用于连接于所述第一支撑板的至少一第二支撑板,所述第一支撑板包括第一主体部和连接于所述第一主体部边缘的第一连接侧端,每一所述第二支撑板包括第二主体部和连接于所述第二主体部边缘的第二连接侧端和自由侧端,每一所述第二支撑板的所述第二连接侧端用于连接所述第一支撑板的所述第一连接侧端,每一所述第二支撑板的所述自由侧端和所述第一支撑板的所述第一连接侧端用于共同围设形成一开槽。本发明提供的传料口模板由多个支撑板连接而成,结构简单,易于批量加工,从而提高品质,降低成本。另,本发明还提供一种传料口模板组件及其组装方法。(The utility model provides a pass material mouth template, pass material mouth template include first backup pad and be used for connecting in an at least second backup pad of first backup pad, first backup pad include first main part and connect in the first connection side at first main part edge, each the second backup pad include the second main part and connect in the second at second main part edge is connected the side and is freely held, each the second backup pad the second connect the side and be used for connecting first backup pad the first connection side, each the second backup pad the free side with first backup pad the first connection side is used for enclosing jointly and establishes and form a fluting. The material transfer port template provided by the invention is formed by connecting a plurality of supporting plates, has a simple structure, and is easy to process in batches, so that the quality is improved, and the cost is reduced. In addition, the invention also provides a material conveying die plate component and an assembling method thereof.)
1. The utility model provides a pass material mouth template, its characterized in that pass material mouth template include first backup pad and be used for connecting in an at least second backup pad of first backup pad, first backup pad include first main part and connect in the first connection side of first main part edge, each the second backup pad include the second main part and connect in the second of second main part edge is connected the side and is freely the side, each the second backup pad the second is connected the side and is used for connecting first backup pad the first connection side, each the second backup pad free the side with first backup pad the first connection side is used for enclosing jointly and establishes and form a fluting.
2. The transfer port die plate of claim 1, wherein the number of the second support plates is one, the first connection side includes a first end and a second end opposite to the first end, the second connection side includes a third end and a fourth end opposite to the third end, the first connection side and the second connection side are connected to each other, the first end is flush with the third end, the second end protrudes from the fourth end, so that a portion of the first connection side protrudes from the second connection side, and the portion of the first connection side protruding from the second connection side is used to form the slot together with the free side.
3. The feed transfer port die plate of claim 1, wherein the number of the second support plates is two, two of the second support plates are spaced apart, the first connecting side end comprises a first end portion and a second end portion opposite to the first end portion, the second connecting side end comprises a third end portion and a fourth end portion opposite to the third end portion, the first end portion is flush with the third end portion of one of the second support plates, the second end portion is flush with the fourth end portion of the other of the second support plates, and a portion of the first connecting side end between the two of the second support plates is used to form the slot together with a free side end of each of the second support plates.
4. The transfer port die plate of claim 1, wherein the first connecting side end and the second connecting side end are provided with a plurality of connecting holes, the connecting holes cooperating with fasteners to connect the first connecting side end and the second connecting side end.
5. The transfer port die plate of claim 1, wherein the first support plate further comprises three first mounting lateral ends connected to the first main body portion edge, the three first mounting lateral ends and the first connecting lateral end being sequentially connected to surround the first main body portion edge, the second support plate further comprises two second mounting lateral ends connected to the second main body portion edge, the two second mounting lateral ends, the second connecting lateral end and the free lateral end being sequentially connected to surround the second main body portion edge.
6. The transfer port die plate of claim 5, wherein a plurality of fastening holes are provided through each of the first mounting side end, the second mounting side end and the free side end, the fastening holes cooperating with fasteners to fasten the transfer port die plate to other die plate members.
7. The transfer port die plate of claim 5, wherein said first connecting side end and said first mounting side end are perpendicular to said first main body portion, and said second connecting side end and said second mounting side end are perpendicular to said second main body portion.
8. A method of assembling a lifter die plate assembly, comprising the steps of:
providing two supporting keels and at least two floor formworks connected to the supporting keels, wherein the side surfaces of the floor formworks are arranged at intervals to form an opening;
providing a feed transfer port die plate according to any one of claims 1 to 7, and sequentially fixing a first support plate and a second support plate in the feed transfer port die plate in the opening, thereby forming the slot in the opening;
providing a material conveying aluminum box, fixing the material conveying aluminum box on one side of the open slot, wherein a material conveying space is defined in the material conveying aluminum box, and the material conveying space is communicated with the open slot; and
and arranging a plurality of supporting columns on one side of the supporting keel, which is far away from the material conveying aluminum box, so as to obtain the material conveying die plate assembly.
9. A material transfer port template assembly is characterized by comprising a material transfer port template, a plurality of floor templates, two supporting keels, a plurality of supporting columns and a material transfer aluminum box, wherein the material transfer port template and the floor templates are mutually connected to form a floor plate, the floor plate is fixed between the two supporting keels, and the supporting columns are arranged below the supporting keels to support the supporting keels and the floor plate;
the material transfer port template comprises a first supporting plate and at least one second supporting plate connected to the first supporting plate, the first supporting plate comprises a first main body part and a first connecting side end connected to the edge of the first main body part, each second supporting plate comprises a second main body part and a second connecting side end and a free side end connected to the edge of the second main body part, the second connecting side end of each second supporting plate is connected with the first connecting side end of the first supporting plate, and the free side end of each second supporting plate and the first connecting side end of the first supporting plate are jointly encircled to form a slot;
the material conveying aluminum box is defined with a material conveying space, the material conveying aluminum box is fixed on one side of the groove, and the material conveying space is communicated with the groove.
10. The pollination die plate assembly of claim 9, wherein the first support plate further includes a first mounting side end attached to an edge of the first body portion, the second support plate further includes a second mounting side end attached to an edge of the second body portion, the first and second mounting side ends being attached to the support grid and the floor template.
Technical Field
The invention relates to a material transfer port template, a material transfer port template assembly and an assembling method thereof.
Background
In the construction of the aluminum formwork, materials such as the formwork, accessories and tools need to be delivered from low to high, so that a material conveying port needs to be arranged on each floor, the materials are delivered upwards by a downstair constructor through the material conveying port, and the materials are lifted upwards by an upstairs constructor to finish the interlayer delivery of the materials.
Disclosure of Invention
The invention aims to provide a material conveying port template with a simple structure.
In addition, it is necessary to provide a feed die plate assembly.
In addition, it is necessary to provide a method for assembling the above-mentioned feed die plate assembly.
The utility model provides a pass material mouth template, pass material mouth template include first backup pad and be used for connecting in an at least second backup pad of first backup pad, first backup pad include first main part and connect in the first connection side at first main part edge, each the second backup pad include the second main part and connect in the second at second main part edge is connected the side and is freely held, each the second backup pad the second connect the side and be used for connecting first backup pad the first connection side, each the second backup pad the free side with first backup pad the first connection side is used for enclosing jointly and establishes and form a fluting.
Furthermore, the number of the second supporting plates is one, the first connecting side end includes a first end portion and a second end portion opposite to the first end portion, the second connecting side end includes a third end portion and a fourth end portion opposite to the third end portion, the first connecting side end and the second connecting side end are connected with each other, the first end portion is flush with the third end portion, the second end portion protrudes from the fourth end portion, so that part of the first connecting side end protrudes from the second connecting side end, and the part of the first connecting side end protruding from the second connecting side end is used for enclosing the slot together with the free side end.
Furthermore, the number of the second supporting plates is two, the two second supporting plates are arranged at intervals, the first connecting side end comprises a first end portion and a second end portion opposite to the first end portion, the second connecting side end comprises a third end portion and a fourth end portion opposite to the third end portion, the first end portion is flush with the third end portion of one of the second supporting plates, the second end portion is flush with the fourth end portion of the other second supporting plate, and the portion, located between the two second supporting plates, of the first connecting side end is used for being surrounded with the free side end of each second supporting plate to form the slot.
Furthermore, the first connecting side end and the second connecting side end are provided with a plurality of connecting holes, and the connecting holes are matched with fasteners to connect the first connecting side end and the second connecting side end.
Further, the first support plate further comprises three first mounting side ends connected to the edge of the first main body portion, the three first mounting side ends and the first connecting side end are sequentially connected to surround the edge of the first main body portion, the second support plate further comprises two second mounting side ends connected to the edge of the second main body portion, and the two second mounting side ends, the second connecting side end and the free side end are sequentially connected to surround the edge of the second main body portion.
Furthermore, a plurality of fixing holes are formed in the first installation side end, the second installation side end and the free side end in a penetrating mode, and the fixing holes are matched with fasteners to fix the material transfer port formwork on other formwork components.
Further, the first connecting side end and the first mounting side end are perpendicular to the first main body portion, and the second connecting side end and the second mounting side end are perpendicular to the second main body portion.
A method of assembling a lifter die plate assembly comprising the steps of:
providing two support keels and connecting in support keel's at least two floor templates, the side interval of floor template sets up in order to form an opening.
Providing the material transfer port template, and fixing the first support plate and the second support plate in the material transfer port template in the opening in sequence, so as to form the slot in the opening.
And providing a material conveying aluminum box, fixing the material conveying aluminum box on one side of the groove, defining a material conveying space in the material conveying aluminum box, and communicating the material conveying space with the groove. And
and arranging a plurality of supporting columns on one side of the supporting keel, which is far away from the material conveying aluminum box, so as to obtain the material conveying die plate assembly.
A material transfer port template assembly comprises a material transfer port template, a plurality of floor templates, two support keels, a plurality of support columns and a material transfer aluminum box, wherein the material transfer port template and the floor templates are connected with one another to form a floor plate, the floor plate is fixed between the two support keels, and the support columns are arranged below the support keels to support the support keels and the floor plate;
the material transfer port template comprises a first supporting plate and at least one second supporting plate connected to the first supporting plate, the first supporting plate comprises a first main body part and a first connecting side end connected to the edge of the first main body part, each second supporting plate comprises a second main body part and a second connecting side end and a free side end connected to the edge of the second main body part, the second connecting side end of each second supporting plate is connected with the first connecting side end of the first supporting plate, and the free side end of each second supporting plate and the first connecting side end of the first supporting plate are jointly encircled to form a slot;
the material conveying aluminum box is defined with a material conveying space, the material conveying aluminum box is fixed on one side of the groove, and the material conveying space is communicated with the groove.
Further, the first supporting plate further comprises a first mounting side end connected to the edge of the first main body portion, the second supporting plate further comprises a second mounting side end connected to the edge of the second main body portion, and the first mounting side end and the second mounting side end are connected to the supporting keel and the floor formwork.
The material transfer port template provided by the invention is formed by connecting a plurality of supporting plates, has a simple structure, and is easy to process in batches, so that the quality is improved, and the cost is reduced.
Drawings
Fig. 1 is a schematic structural diagram of a material transfer port template according to an embodiment of the present invention.
Fig. 2 is a top view of the transfer port die plate shown in fig. 1.
Fig. 3 is a schematic structural view of a feed transfer port template according to another embodiment of the present invention.
Fig. 4 is a top view of the feed transfer port die plate shown in fig. 3.
Fig. 5A to 5D are schematic views illustrating an assembly of the material transfer port assembly according to the present invention.
Description of the main elements
Material
First
First
Second
Free side end 23
Second
Open
Fixing
Connecting hole 50
Opening 301
Material conveying
Material passing die
Length L1, L2, C1
Widths W1, W2, C2
Height H
Inner diameter R
The following detailed description of the invention will be further described in conjunction with the above description of the drawings.
Detailed Description
The technical scheme of the invention is clearly and completely described in the following by combining the drawings of the specific embodiment. It is to be understood that the described embodiments are merely exemplary of the invention, and not restrictive of the full scope of the invention. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
Referring to fig. 1 and 2 together, an embodiment of the invention provides a material transfer
In this embodiment, the number of the second supporting
In the present embodiment, the first
In this embodiment, the length L1 (i.e., the distance between the
Referring to fig. 3 and 4, in another embodiment of the present invention, the number of the
In another embodiment of the present invention, the length L1 of the
In other embodiments of the present invention, the number of the
In this embodiment, the
In the present embodiment, the first connecting
In the present embodiment, the inner diameters R of the connection hole 50 and the fixing
In this embodiment, the material of the material transfer
In this embodiment, the surfaces of the
Referring to fig. 5A to 5D, the present invention provides an assembling method of a material passing
s1, providing two supporting
in the present embodiment, step S1 includes the steps of:
s10, providing two parallel supporting keels 200 and at least two
s11, arranging the side surfaces of one
and S12, respectively connecting the side surfaces of the rest of the
S2, providing the material conveying
s3, providing a material conveying
and S4, arranging a plurality of supporting
Referring to fig. 5D, the present invention further provides a material transfer
The material conveying
In addition, those skilled in the art should recognize that the foregoing embodiments are illustrative only, and not limiting, and that appropriate changes and modifications can be made without departing from the spirit and scope of the invention as defined by the appended claims.
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