CN211762305U - Variable concatenation aluminum alloy mould - Google Patents

Variable concatenation aluminum alloy mould Download PDF

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Publication number
CN211762305U
CN211762305U CN202020122527.2U CN202020122527U CN211762305U CN 211762305 U CN211762305 U CN 211762305U CN 202020122527 U CN202020122527 U CN 202020122527U CN 211762305 U CN211762305 U CN 211762305U
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aluminum alloy
wallboard
alloy die
die according
groove
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CN202020122527.2U
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代建兵
汪良奎
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Chongqing Perfect Technology Co ltd
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Chongqing Perfect Technology Co ltd
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Abstract

The utility model relates to a wallboard mould technical field specifically discloses a variable concatenation aluminum alloy mould, including two piece at least side forms, the side form sets up side by side, and the standing groove has all been opened at the both ends of side form, and the standing groove on two adjacent side form terminal surfaces forms the cooperation chamber, can dismantle in the cooperation intracavity and be connected with the mounting, the mounting can with cooperate the chamber block. The utility model discloses a standing groove that sets up on mounting and the side form for the side form is arranged the back, can utilize the mounting to fix two side forms, thereby can make a plurality of side forms form moulded die, utilizes the wallboard that the moulded die can the shaping thickness difference, has solved the problem that the wallboard mould can't make the wallboard of different thickness in a flexible way among the prior art.

Description

Variable concatenation aluminum alloy mould
Technical Field
The utility model relates to a wallboard mould technical field, concretely relates to variable concatenation aluminum alloy mould.
Background
In the building industry, the wallboard is generally cast by a mold, the existing mold is mostly a whole set of mold, the whole quality of the existing mold is large, and the mold dismounting process is very inconvenient. In order to solve the problem of making things convenient for the dismouting mould, utility model patent that publication number is CN206913383 discloses a shaping car for producing wallboard, square base including the bottom be equipped with the pulley, the vertical two relative mounts that set up in both ends on the base, interval arrangement baffle and a set of moulded die in proper order between two mounts, the front of baffle and the vertical constant head tank that is equipped with of back both sides edge, the both sides wall of baffle is equipped with can be with two adjacent baffle articulated connecting pieces of each other, the moulded die comprises two the same shaping template, the shaping template is equipped with the hollow structure aluminium alloy that public groove or mother groove and both sides face are equipped with the boss for front or the back, the boss joint of aluminium alloy is in the constant head tank of baffle, arbitrary two baffles constitute hollow chamber of pouring with moulded die and base.
Although the mould on above-mentioned shaping car is convenient to be dismantled, the size of moulded die is the same for the wallboard size that makes is all unanimous, and a mould can only correspond a wallboard of production, and the wallboard pattern of current building is very much, all has the demand to the wallboard of unidimensional not in actual production, consequently the demand of the wallboard of different thickness of unable production of current wallboard mould.
SUMMERY OF THE UTILITY MODEL
The utility model provides a variable concatenation aluminum alloy mould to solve the problem that wallboard mould can't make the wallboard of different thickness in a flexible way among the prior art.
In order to achieve the above purpose, the technical scheme of the utility model is as follows: the utility model provides a variable concatenation aluminum alloy mould, includes two piece at least side forms, and the side form sets up side by side, and the standing groove has all been opened at the both ends of side form, and the standing groove on two adjacent side form terminal surfaces forms the cooperation chamber, and the cooperation intracavity can be dismantled and be connected with the mounting, the mounting can with cooperate the chamber block.
The principle of the technical scheme is as follows: because the two ends of the side die are provided with the placing grooves, when the two side dies are placed side by side, the placing grooves on the end surfaces of the two side dies form a matching cavity, when the fixing piece is connected in the matching cavity, the fixing piece can be clamped with the matching cavity, so that the fixing piece is clamped with the matching cavity when the fixing piece is fixedly connected in the matching cavity, the two adjacent side dies are relatively fixed and cannot relatively rotate, the size of the formed wallboard can be changed after the adjacent side dies are fixed, the side dies can be fixed into a whole by using the plurality of fixing pieces, and when the side surfaces connected into a whole are used for forming the wallboard, the wallboards with different thicknesses can be obtained; simultaneously, in this application, the mounting can be dismantled with the cooperation chamber and be connected, and is very convenient in the fixed of side form and dismantlement.
The beneficial effects of this technical scheme lie in:
1. can splice the wallboard that obtains different sizes in a flexible way: compare in prior art the size of forming die fixed for fashioned wallboard size equals all the time, can't satisfy the actual demand to not unidimensional wallboard. In this application, because quantity between two side forms can be adjusted according to actual need to make the fashioned wallboard thickness of side after utilizing a plurality of side forms to connect in this application can change, utilize the mould in this application can make the wallboard of different thickness, and the mounting that sets up between the adjacent side form has ensured the stability of connecting between two adjacent side forms, and the adjustment is nimble and the shaping is stable.
2. Convenient dismantlement: because the mounting that sets up between the adjacent side form in this application can provide spacing and fixed to two adjacent side forms, thereby make and to connect steadily between two adjacent side forms, make things convenient for the follow-up side form that utilizes after connecting to carry out the shaping of wallboard, and after accomplishing the wallboard shaping, only need to dismantle the mounting outside the cooperation chamber between two adjacent side forms, can demolish the mould fast, because the fixing between the adjacent baffle is eliminated, compare in the side drawing of patterns simultaneously with whole wallboard, can be in this application successively with the individual baffle drawing of patterns, can reach so fast, easily with the baffle drawing of patterns, the quality of baffle is less simultaneously, make the dismouting of mould lighter.
Furthermore, the fixing part comprises a locking rod and a clamping block fixedly connected to the locking rod, the length of the clamping block is smaller than that of the locking rod, and the clamping block can be clamped with the matching cavity.
Compare and set up the mounting into a monoblock cardboard, because the length of side form is longer, can cause the weight of cardboard great, the artifical dismouting mould of being not convenient for. The fixing part comprises a lock rod and a fixture block fixedly connected to the lock rod, the length of the fixture block is smaller than that of the lock rod, the fixture block can be clamped with the matching cavity, the fixture block is fixedly connected to the lock rod, when the lock rod is inserted into the matching cavity during use, the fixture block on the lock rod can enter the matching cavity between two adjacent side molds simultaneously, and the fixture block fixes the two adjacent side molds, so that the operation is convenient.
Furthermore, the number of fixture blocks is a plurality of, and the fixture blocks are evenly arranged along the axis direction of the locking rod.
The number of the clamping blocks is set to be a plurality, so that two adjacent side dies are supported and limited by the clamping blocks when being fixed, and the side dies are more stably fixed; meanwhile, a certain distance exists between the adjacent clamping blocks, so that the whole weight of the fixing piece is greatly reduced on the premise of ensuring that the two adjacent side molds are fixed, and the labor intensity of workers is reduced.
Furthermore, a protrusion is fixedly connected to one side face of the side die, and a notch matched with the protrusion is formed in the other side face of the side die.
Fixed connection is protruding on one side of side form, and set up on the other side of side form can with protruding complex notch, when utilizing the side form shaping wallboard, the one end of wallboard corresponds the shaping to the notch, and the other end shaping is protruding for in the construction stage, when splicing two wallboards, protruding and the notch between the adjacent wallboard form the tongue-and-groove structure, are favorable to promoting the stability that the wallboard is connected.
Furthermore, the side die is provided with a lightening groove which penetrates through the side die.
The weight reduction grooves penetrating through the side die are formed in the side die, so that the weight of the side die is reduced as much as possible on the premise of ensuring the sufficient strength of the side die, the labor intensity of workers in assembling and disassembling the side die is reduced, the material consumption of the side die is reduced, and the cost is saved.
Furthermore, one end of the lock rod is fixedly connected with a handle.
A handle is fixedly connected to one end of the lock rod, so that the lock rod can be conveniently inserted into or pulled out of the matching cavity through the handle when the side die is conveniently disassembled and assembled manually, the side die is rapidly disassembled and assembled, and the disassembling and assembling efficiency is improved; meanwhile, when the clamping block and the matching cavity are clamped and are not convenient to disassemble and assemble, the handle can be knocked to quickly knock the clamping block to the position or knock the matching cavity out.
Furthermore, a guide inclined plane is arranged on the clamping block which is close to one end of the lock rod, which is far away from the handle.
Set up the direction inclined plane on the fixture block of keeping away from handle one end near the locking lever, conveniently insert the locking lever in the cooperation chamber fast, and make fixture block and cooperation chamber reach the block state fast, promote the efficiency of die-filling.
Further, a plurality of side forms form the moulded die after passing through the fixture block is fixed, and two moulded dies are just to setting up, and the bottom of moulded die is equipped with the die block, and the both sides of moulded die are equipped with the baffle, and the outside of baffle is equipped with the backup pad, and die block, two moulded dies and two baffles form the upper end open-ended and pour the chamber.
A plurality of side forms link as an organic whole under the connection of a plurality of fixture blocks and form the moulded die, and in the actual operation in-process, can draw the size of control moulding die through the quantity of control side form to make the moulded die finally be used for pouring the chamber size of shaping wallboard can change, pour the chamber simultaneously and be upper end opening form, conveniently pour the wallboard material and pour the chamber and form the shaping wallboard, the backup pad that the baffle outside set up provides the support to the baffle, conveniently pour the chamber at shaping wallboard in-process dimensional stability.
Furthermore, the both ends of backup pad are protruded to the outside at baffle both ends, and the rotation is connected with the cardboard on the terminal surface of the outside of protrusion to the baffle in the backup pad, and it has the draw-in groove to open on the cardboard, fixedly connected with can with the bumping post of draw-in groove joint in the adjacent backup pad.
The backup pad is connected with the cardboard to rotating on the terminal surface in the outside of baffle protrusion, set up the draw-in groove on the cardboard, fixed connection bumping post in adjacent backup pad simultaneously, make the relative position with baffle and curb plate fixed back, when recycling the backup pad with the baffle fixed, rotate the cardboard, make the cardboard rotate the draw-in groove on the cardboard and the bumping post block in the adjacent backup pad, thereby the position is fixed between cardboard and the bumping post that makes, and then make and be fixed between two adjacent backup pads, further promote the stable fixed of pouring the chamber between two backup pads.
Furthermore, the quantity of draw-in groove is a plurality of, and the distance between the adjacent draw-in groove equals the width of curb plate.
Set up the quantity of draw-in groove into a plurality of, distance between the adjacent draw-in groove equals the width of curb plate to make the mould body when shaping unidimensional wallboard, can both utilize the cardboard to couple together two adjacent backup pad fixed connection, convenient operation.
Furthermore, weight reduction grooves are formed in the side die and the supporting plate.
The weight reduction grooves are formed in the side die and the supporting plate, so that the weight of each part is reduced as much as possible on the premise that each part has enough strength, the labor intensity of manual die assembly and disassembly is reduced, the amount of side die materials is reduced, particularly the amount of the side die materials is reduced, and the cost is saved.
Drawings
Fig. 1 is a schematic view illustrating a connection of a support plate, a partition plate, a bottom mold and a forming mold according to an embodiment of the present invention.
Fig. 2 is an exploded view of fig. 1.
Fig. 3 is the embodiment of the present invention discloses a schematic diagram that a plurality of cavities of pouring set up side by side.
Fig. 4 is a schematic view illustrating the connection between the locking bar and the latch according to the third embodiment.
FIG. 5 is a schematic view showing the connection of the lock bar and the detaching block in the fifth embodiment.
Detailed Description
The following is further detailed by way of specific embodiments:
reference numerals in the drawings of the specification include: the side die comprises a side die 1, a lock rod 2, a clamping block 3, a handle 4, a protrusion 5, a notch 6, a bottom die 7, a partition plate 8, a supporting plate 9, a pouring cavity 10, a pin 11, a clamping plate 12 and a splitting block 13.
Example one
The first embodiment is substantially as shown in figures 1, 2 and 3: the utility model provides a variable concatenation aluminum alloy mould, includes two side forms 1 that set up side by side, and the left and right both ends of side form 1 all open the standing groove that has vertical through side form 1, and two side forms 1 arrange the back, and the standing groove formation on the terminal surface that two side forms 1 just face and contact is upper and lower open-ended cooperation chamber, and in this embodiment, the transversal rectangle of personally submitting of cooperation chamber.
Referring to fig. 1 and 2, the fixing member is detachably connected to the matching cavity, and the fixing member includes a locking rod 2 and a fixture block 3 welded to the locking rod 2, wherein the cross section of the fixture block 3 is the same as that of the matching cavity, that is, the length and width of the cross section of the fixture block 3 are respectively equal to those of the cross section of the matching cavity, so that when the fixture block 3 is inserted into the matching cavity, the two side molds 1 can be fixed, and the two side molds 1 form a forming mold. The quantity of fixture block 3 is three on every locking lever 2, and three fixture block 3 evenly sets up along the axis direction of locking lever 2, and the top welding of locking lever 2 has handle 4, and it has the direction inclined plane to open on the bottom edge of bottom fixture block 3 for fixture block 3 can insert fast in the cooperation chamber.
Combine figure 1 and figure 2, one side middle part integrated into one piece of side form 1 has arch 5, opposite side middle part is opened have with protruding 5 complex notch 6, when making utilize 1 shaping wallboard of side form, the one end tip of wallboard forms protruding 5 and other end tip forms notch 6, thereby when making the polylith wallboard at the last wall concatenation, protruding 5 and notch 6 on the tip of adjacent wallboard cooperate, thereby make the connection between the adjacent wallboard be the tongue-and-groove cooperation, be favorable to promoting the stable connection between the adjacent wallboard.
With reference to fig. 1 and 2, the side mold 1 in the scheme is used for being spliced with a bottom mold 7 and a partition plate 8 to form a pouring cavity 10 with an opening at the upper end; the concrete connection mode takes the splicing of two side molds 1 as an example: the four side molds 1 are spliced into two forming molds in pairs, the front and the back of the two forming molds are arranged oppositely, the bottom mold 7 is clamped with the bottoms of the side molds 1, the left and the right sides of the forming molds are respectively provided with a partition plate 8, the outer sides of the partition plates 8 are provided with a support plate 9, and the support plate 9 supports the partition plates 8, so that the bottom mold 7, the two partition plates 8 and the two casting cavities 10 with openings at the upper ends of the forming molds are formed; preceding of backup pad 9, back both ends bulge to the front end and the rear end of baffle 8 respectively, the front end and the rear end of backup pad 9 all are through thread tightening mode fixedly connected with pin 11, it is connected with cardboard 12 to rotate on the pin 11, it has the draw-in groove to open on the cardboard 12, simultaneously the front end of backup pad 9 and rear end all through screw fixedly connected with can with the bumping post of draw-in groove joint, combine figure 3, after a plurality of chambeies of pouring 10 set up side by side, when cardboard 12 on the adjacent backup pad 9 rotates, draw-in groove on the cardboard 12 can rotate with the bumping post block on the adjacent backup pad 9, thereby make two adjacent backup pad 9 reciprocal anchorages, so that it is fixed with the chamber 10 of pouring between two adjacent backup pads 9, guarantee the stable shaping of pouring intracavity wallboard. In this embodiment, the movable distance value of the clamping plate 12 in the axial direction of the pin 11 is greater than the two times of the thickness of the clamping plate 12, so that two clamping plates 12 can be placed on the same pin 11 at the same time, and when the clamping plate 12 rotates to the catch post on the adjacent supporting plate 9, the pin 11 can be used as the catch post, thereby simplifying the overall structure of the mold.
With reference to fig. 1, 2 and 3, the support plate 9 and the side mold 1 are provided with lightening grooves, so that the weight of each component is reduced as much as possible on the premise that each component has enough strength, and the labor intensity of manual die assembly and disassembly is reduced.
The specific implementation process is as follows:
firstly, two side moulds 1 are placed side by side, then the locking rod 2 is pushed into a matching cavity formed by the placing grooves at the end parts of the two side moulds 1, the clamping block 3 is matched with the matching cavity, the two side moulds 1 are fixed by the clamping block 3 to form a forming mould, and then a plurality of forming moulds are assembled in the same mode for standby.
Just to placing two moulded moulds, and die block 7 on the bottom joint of moulded mould, then place baffle 8 in the both sides of moulded mould, and set up backup pad 9 in the outside of baffle 8 and support, make die block 7, two moulded moulds and two baffle 8 form upper end open-ended and pour chamber 10, rotate cardboard 12 at last and carry out the block on the bumping post on the adjacent backup pad 9, make and pour chamber 10 and can be stably fixed, pour into the wallboard material in pouring chamber 10 this moment, thereby utilize and pour the fixed wallboard of chamber 10 shaping size.
After the wallboard is formed, the clamping plate 12 is rotated to enable the fixed connection effect of the adjacent supporting frames to disappear, then the locking rod 2 is knocked out of the matching cavity, the clamping block 3 is enabled to be protruded out of the matching cavity, the fixed connection relation of the side die 1 is enabled to disappear, the supporting plate 9, the partition plate 8, the side die 1 and the bottom die 7 can be sequentially detached at the moment, and therefore the wallboard is formed once.
Example two
The difference between the second embodiment and the first embodiment is that: in this embodiment, the quantity of side form 1 is three in the moulded die, four or more for utilize the moulded die, the cavity 10 of pouring that baffle 8 and die block 7 formed is compared in the width increase of pouring cavity 10 in embodiment one, thereby make the wallboard thickness that final shaping obtained in this embodiment increase, through setting up the different quantity of side form 1 in the moulded die, can correspond the wallboard that obtains the thickness difference, in order to satisfy the demand to different thickness wallboards in the market, also make aluminium alloy mould shaping wallboard more have the flexibility in this embodiment.
Simultaneously, the quantity correspondence of draw-in groove on the cardboard 12 in this embodiment can set up to two, three or a plurality ofly, and the distance between the adjacent draw-in groove equals the width of side form 1 to when making the quantity of side form 1 on the moulded die change, same cardboard 12 still can be fixed with pouring chamber 10 between the backup pad 9.
EXAMPLE III
The difference between this embodiment and the first embodiment is that the specific number of the card blocks 3 in this embodiment is five.
Example four
The difference between this embodiment and the first embodiment is that the specific number of the blocks 3 in this embodiment is seven.
EXAMPLE five
The difference between this embodiment and the third embodiment is that in this embodiment, the fixture block 3 includes two equal-sized splitting blocks 13, the two splitting blocks 13 are welded to two sides of the lock rod 2, and the splitting blocks 13 located at two sides of the lock rod are arranged in a staggered manner.
The above description is only an example of the present invention, and the detailed technical solutions and/or characteristics known in the solutions are not described too much here. It should be noted that, for those skilled in the art, without departing from the technical solution of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent. The scope of the claims of the present application shall be determined by the contents of the claims, and the description of the embodiments and the like in the specification shall be used to explain the contents of the claims.

Claims (10)

1. The utility model provides a variable concatenation aluminum alloy mould which characterized in that: including two piece at least side forms, the side form sets up side by side, the standing groove has all been opened at the both ends of side form, and the standing groove on two adjacent side form terminal surfaces forms the cooperation chamber, can dismantle in the cooperation chamber and be connected with the mounting, the mounting can with cooperation chamber block.
2. The variable splicing aluminum alloy die according to claim 1, wherein: the fixing piece comprises a locking rod and a clamping block fixedly connected to the locking rod, the length of the clamping block is smaller than that of the locking rod, and the clamping block can be clamped with the matching cavity.
3. The variable splicing aluminum alloy die as claimed in claim 2, wherein: the number of the clamping blocks is a plurality, and the clamping blocks are uniformly distributed along the axis direction of the locking rod.
4. The variable splicing aluminum alloy die according to claim 3, wherein: the side surface of one side of the side die is fixedly connected with a bulge, and the side surface of the other side is provided with a notch matched with the bulge.
5. The variable splicing aluminum alloy die according to claim 4, wherein: one end of the lock rod is fixedly connected with a handle.
6. The variable splicing aluminum alloy die according to claim 5, wherein: the fixture block close to one end of the lock rod far away from the handle is provided with a guide inclined plane.
7. The variable splicing aluminum alloy die according to any one of claims 2 to 6, wherein: the side dies form forming dies after being fixed through the clamping blocks, the two forming dies are arranged oppositely, bottom dies are arranged at the bottoms of the forming dies, baffle plates are arranged on two sides of each forming die, supporting plates are arranged on the outer sides of the baffle plates, and the bottom dies, the two forming dies and the two baffle plates form pouring cavities with upper end openings.
8. The variable splicing aluminum alloy die according to claim 7, wherein: the both ends of backup pad are protruded to the outside of baffle, rotate on the terminal surface that protrudes the outside of baffle in the backup pad and be connected with the cardboard, it has the draw-in groove to open on the cardboard, fixedly connected with can with the bumping post of draw-in groove joint in the adjacent backup pad.
9. The variable splicing aluminum alloy die according to claim 8, wherein: the quantity of draw-in groove is a plurality of, and the distance between the adjacent draw-in groove equals the width of curb plate.
10. The variable splicing aluminum alloy die according to claim 9, wherein: and weight reduction grooves are formed in the side die and the supporting plate.
CN202020122527.2U 2020-01-19 2020-01-19 Variable concatenation aluminum alloy mould Active CN211762305U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020122527.2U CN211762305U (en) 2020-01-19 2020-01-19 Variable concatenation aluminum alloy mould

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020122527.2U CN211762305U (en) 2020-01-19 2020-01-19 Variable concatenation aluminum alloy mould

Publications (1)

Publication Number Publication Date
CN211762305U true CN211762305U (en) 2020-10-27

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