CN112092160A - Length and width adjustable die in concrete brick production - Google Patents
Length and width adjustable die in concrete brick production Download PDFInfo
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- CN112092160A CN112092160A CN202010943380.8A CN202010943380A CN112092160A CN 112092160 A CN112092160 A CN 112092160A CN 202010943380 A CN202010943380 A CN 202010943380A CN 112092160 A CN112092160 A CN 112092160A
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- side edge
- fixing plate
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B28—WORKING CEMENT, CLAY, OR STONE
- B28B—SHAPING CLAY OR OTHER CERAMIC COMPOSITIONS; SHAPING SLAG; SHAPING MIXTURES CONTAINING CEMENTITIOUS MATERIAL, e.g. PLASTER
- B28B7/00—Moulds; Cores; Mandrels
- B28B7/02—Moulds with adjustable parts specially for modifying at will the dimensions or form of the moulded article
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Abstract
The invention provides a length and width adjustable die in concrete brick production, which comprises a first disc and a second disc which are coaxial, wherein the second disc is positioned in a first through hole formed in the center of the first disc, a plurality of second through holes communicated with the first through hole are formed in the first disc, a matching butt joint structure is arranged on the second disc, the corresponding matching butt joint structure on the second disc is butted with a corresponding second through hole in the first disc by rotating the second disc, and the length and width of the die enclosed by the second through hole and the matching butt joint structure are adjusted. The invention can realize the automatic switching of a plurality of moulds with different sizes, and the adjustable length and width of the formed mould has wider adjustment range.
Description
Technical Field
The invention belongs to the field of concrete production, and particularly relates to a length and width adjustable mold in concrete brick production.
Background
At present, when concrete bricks are produced, molds with different sizes are required to be developed for the concrete bricks with different sizes, and the sizes of the developed molds are fixed and cannot be randomly adjusted.
Disclosure of Invention
The invention provides a length and width adjustable mold in concrete brick production, which aims to solve the problem that the conventional mold for producing concrete bricks is fixed in size and cannot be randomly adjusted.
According to a first aspect of the embodiments of the present invention, there is provided a mold with adjustable length and width in concrete brick production, comprising a first disc and a second disc which are coaxial, wherein a circular first through hole is formed at a center position of the first disc, the second disc is located in the first through hole and has a radius smaller than that of the first through hole, the first disc is further provided with a second through hole communicated with the first through hole, the second through hole comprises a first side edge and a second side edge which are parallel to each other and a third side edge located between the first side edge and the second side edge, one end of the first side edge and one end of the second side edge respectively extend to be connected with a hole edge of the first through hole, the third side edge is respectively fixed to the other end of the first side edge and the second side edge perpendicularly, and a point of the third side edge located on one side of the center point of the third side edge and close to the first side edge is taken as a first point of the second through hole, a connecting line between the first point and the circle center of the first disc is parallel to the first side edge and the second side edge, the first side edge is shorter than the second side edge, the first side edge and the third side edge vertically extend downwards to form a first baffle plate and a second baffle plate respectively, a square groove is formed in the second side edge, the groove bottom of the square groove is parallel to the second side edge, sliding grooves are formed in the inner sides of the two groove edges parallel to the third side edge respectively, the two sliding grooves are arranged oppositely, a horizontal first sliding plate is clamped in the two sliding grooves and can horizontally move along the sliding grooves, and a third baffle plate vertically extends downwards from one side of the first sliding plate facing the first side edge;
the second disc is provided with an L-shaped groove surface formed by vertically cutting the outer side surface of the second disc, the L-shaped groove surface is provided with a matching butt joint structure, the matching butt joint structure comprises a first fixing plate, a second fixing plate and a third fixing plate, wherein the first fixing plate and the second fixing plate are respectively jointed and fixed with two groove surfaces of the L-shaped groove surface, one end of the first fixing plate and one end of the second fixing plate are vertically fixed, the other ends of the first fixing plate and the second fixing plate extend to be connected with the hole edge of the first through hole, two edges of a horizontal square third fixing plate are respectively fixedly attached to the first fixing plate and the second fixing plate, a first non-joint edge of the third fixing plate parallel to the second fixing plate extends to be connected with the edge of the first through hole and vertically extends downwards to form a fourth baffle plate, a magnet is arranged on a second non-joint edge of the third fixing plate, which is vertical to the second fixing plate;
the center position of the second disc is fixedly connected with a motor, the motor drives the second disc to rotate around the vertical shaft, so that the corresponding matching butt joint structure on the second disk is rotated to butt joint with the second through hole on the first disk, at the moment, the first side edge in the second through hole is in seamless butt joint with the first fixing plate on the matching butt joint structure, and the second side edge is in seamless butt joint with the second fixing plate, the first side edge and the first fixing plate are positioned on the same straight line, the third side edge is parallel to the second fixing plate, the magnet on the third fixing plate faces the second side edge, and the third baffle plate moves towards the first side edge under the action of the magnet until the third baffle plate is attached to the magnet, so that a hollow square mold surrounded by the first baffle plate, the first fixing plate, the second baffle plate, the third baffle plate and the fourth baffle plate is formed;
a plurality of second through holes are formed in the first disc, the lengths of the first side edge and the second side edge of each second through hole are different, and the lengths of the third side edges are the same.
In an optional implementation manner, a plurality of identical L-shaped groove surfaces are formed in the second disc, notches of the L-shaped groove surfaces are arranged clockwise, and for the matched butt joint structures arranged on the L-shaped groove surfaces, on the premise that the first non-joint edges on the third fixing plate in each matched butt joint structure extend to be connected with the hole edges of the first through holes, the lengths of the first non-joint edges of the third fixing plate in each matched butt joint structure are different, the motor drives the second disc to rotate, the corresponding matched butt joint structure is in butt joint with the second through holes in the first disc, and therefore the length and the width of a hollow square die surrounded by the first baffle, the first fixing plate, the second baffle, the third baffle and the fourth baffle are adjusted.
In another alternative implementation, the motor rotates the second disk in a direction from the first side edge to the second side edge when a different mating interface structure is switched to interface with the second through hole.
In another optional implementation manner, after each second through hole is respectively butted with a corresponding different matching butt joint structure, for each second through hole, the sum of the lengths of the first side edge of the second through hole and the first fixing plate corresponding to the matching butt joint structure is subtracted by the length of the second non-attaching edge corresponding to the third fixing plate, so as to obtain the maximum value of the long edge of the mold which can be enclosed by the present patent.
In another alternative implementation mode, when the third baffle is attached to the magnet, part of the first sliding plate still clamps in the two sliding grooves.
In another optional implementation manner, the lower ends of the first baffle, the first fixing plate, the second baffle, the third baffle and the fourth baffle are located on the same horizontal plane.
The invention has the beneficial effects that:
according to the invention, by designing the first disc and the second disc, automatic switching of a plurality of moulds with different sizes can be realized, and the length and width of the mould formed by adjustment is wider in adjustment range.
Drawings
FIG. 1 is a top plan view of a first embodiment of a first disk in a length and width adjustable mold for the production of concrete blocks of the present invention;
FIG. 2 is a view A-A of the first disk of FIG. 1;
FIG. 3 is a perspective view of the square recess of the first disk of FIG. 1;
FIG. 4 is a top plan view of a first embodiment of a second disk in a mold having adjustable length and width for use in the production of concrete blocks in accordance with the present invention;
FIG. 5 is a view B-B of the second disk of FIG. 1;
FIG. 6 is a schematic view of the combination of the first disk of FIG. 1 and the second disk of FIG. 4;
FIG. 7 is a schematic view showing the positional relationship between the second disk and the first through hole in FIG. 1;
FIG. 8 is a top plan view of a second embodiment of the first disk in the adjustable length and width mold for the production of concrete blocks of the present invention;
FIG. 9 is a top plan view of a second embodiment of a second disk in a mold having adjustable length and width for use in the production of concrete blocks in accordance with the present invention;
fig. 10 is a schematic view of the combination of the first disk of fig. 8 and the second disk of fig. 9.
Detailed Description
In order to make the technical solutions in the embodiments of the present invention better understood and make the above objects, features and advantages of the embodiments of the present invention more comprehensible, the technical solutions in the embodiments of the present invention are described in further detail below with reference to the accompanying drawings.
In the description of the present invention, unless otherwise specified and limited, it is to be noted that the term "connected" is to be interpreted broadly, and may be, for example, a mechanical connection or an electrical connection, or a communication between two elements, or may be a direct connection or an indirect connection through an intermediate medium, and a specific meaning of the term may be understood by those skilled in the art according to specific situations.
The mold with adjustable length and width in the concrete brick production can comprise a first disc 1 and a second disc 3 which are coaxial, as shown in fig. 1, a circular first through hole 11 is formed in the center of the first disc 1, the second disc 3 is positioned in the first through hole 11, the radius of the second disc 3 is smaller than that of the first through hole 11, a second through hole 12 communicated with the first through hole 11 is further formed in the first disc 1, the second through hole 12 comprises a first side 13 and a second side 14 which are parallel to each other and a third side 15 positioned between the first side 13 and the second side 14, one end of the first side 13 and one end of the second side 14 extend to be connected with the hole edge of the first through hole 11 respectively, the third side 15 is fixed to the other end of the first side 13 and the second side 14 respectively, and one point of the third side 15, which is positioned on one side of the center of the third side 15 and is close to the first side 13, is taken as a first point of the second through hole 12, a connecting line between the first point and the center of the first disc 1 is parallel to the first side 13 and the second side 14, the first side 13 is shorter than the second side 14, as shown in fig. 2 and 3, the first side 13 and the third side 15 vertically extend downward to form a first baffle 16 and a second baffle 17, the second side 14 is internally provided with a square groove 18, the bottom of the square groove 18 is parallel to the second side 14, and the inner sides of the two groove sides parallel to the third side 15 are respectively provided with a sliding chute 19, the two sliding chutes 19 are arranged oppositely, a horizontal first sliding plate 20 is clamped in the two sliding chutes 19 and can horizontally move along the sliding chute 19, and a third baffle 21 vertically extends downward from one side of the first sliding plate 20 facing the first side 13.
Referring to fig. 4 and 5, the second disc 3 is provided with an L-shaped groove surface 31 formed by vertically cutting the outer side surface thereof, the L-shaped groove surface 31 is provided with a matching butt structure, the matching butt structure includes a first fixing plate 32, a second fixing plate 33 and a third fixing plate 34, wherein the first fixing plate 32 and the second fixing plate 33 are respectively attached and fixed to two groove surfaces of the L-shaped groove surface 31, one end of the first fixing plate 32 and one end of the second fixing plate 33 are vertically fixed, the other end of the first fixing plate 32 and the other end of the second fixing plate 33 both extend to be connected to the hole edge of the first through hole 11, two sides of the horizontal and square third fixing plate 34 are respectively attached and fixed to the first fixing plate 32 and the second fixing plate 33, a first non-attaching side of the third fixing plate 34 parallel to the second fixing plate 33 extends to be connected to the hole edge of the first through hole 11, and a fourth baffle 35 vertically extends downwards, a magnet 36 is disposed on a second non-contact edge of the third fixing plate 34 perpendicular to the second fixing plate 33.
The center position of the second disc 3 is fixedly connected with a motor, the motor drives the second disc 3 to rotate around the vertical axis thereof, so as to rotate the corresponding matching butt-joint structure on the second disc 3 to butt-joint with the second through hole on the first disc 1, at this time, as shown in fig. 6, the first side edge of the second through hole 12 is in seamless butt-joint with the first fixing plate 32 on the matching butt-joint structure, the second side edge 14 is in seamless butt-joint with the second fixing plate 33 on the L-shaped groove surface, the first side edge 13 and the first fixing plate 32 are positioned on the same straight line, the third side edge 15 is parallel to the second fixing plate 33, the magnet on the third fixing plate 34 faces the second side edge 14, the third baffle plate 21 moves towards the first side edge 13 under the action of the magnet 36 until being attached to the magnet 36, and thus a first baffle plate 16, The first fixing plate 32, the second baffle plate 17, the third baffle plate 21 and the fourth baffle plate 35 form a hollow square mold.
In this embodiment, the radius of the second disc 3 is smaller than the radius of the first through hole 11, and the first non-bonded edge of the third fixing plate 34 parallel to the second fixing plate 33 extends to the edge of the first through hole 11, so that the L-shaped groove surface 31 formed on the second disc 3 can support the motor to drive the second disc 3 to rotate smoothly, and the first non-bonded edge of the third fixing plate 34 is prevented from being clamped by the first through hole 11 during rotation. The other ends of the first fixing plate 32 and the second fixing plate 33 extend to be connected with the hole edge of the first through hole 11, wherein the other end of the first fixing plate 32 extends to be connected with the hole edge of the first through hole 11 because the radius of the second disc 3 is smaller than that of the first through hole 11, so that the gap part between the second disc 3 and the first through hole 11 can be compensated, and the integrity of the whole periphery of the mold is ensured; the other end of the second fixing plate 33 extends to contact with the edge of the first through hole 11, so as to ensure the stability of the magnet 36 when it is attracted to the third baffle and moves horizontally. A sliding groove corresponding to the inner sliding groove of the groove edge corresponding to the square groove 18 can be further arranged on the second fixing plate 33, so that the first sliding plate slides out of the square groove and then continues to slide in the sliding groove of the second fixing plate 33. When the third baffle 21 in the second side edge 14 is engaged with the magnet 36, part of the first sliding plate 20 is still clamped in the two sliding grooves 19.
When only one second through hole 12 is provided in the first disc 1, since the shape of the second through hole 12 is fixed, therefore, in order to realize the switching of a plurality of moulds with different sizes, a plurality of identical L-shaped groove surfaces 31 are arranged on the second disc 3, the notches of the L-shaped groove surfaces are arranged along the clockwise direction, and aiming at the matching butt joint structure arranged on each L-shaped groove surface 31, on the premise of ensuring that the first non-attaching edge on the third fixing plate 34 in each matching butt joint structure extends to be connected with the hole edge of the first through hole 11, the lengths of the first non-attaching edges of the third fixing plates 34 in each matching butt joint structure are different, the motor drives the second disc 3 to rotate, the corresponding matching butt joint structure is butt jointed with the second through hole 12 on the first disc 1, thereby adjusting the length and width of the hollow square mold surrounded by the first baffle 16, the first fixing plate 32, the second baffle 17, the third baffle 21 and the fourth baffle 35.
As shown in fig. 7, in order to ensure that the first non-contact edge of the third fixing plate 34 in each matching and abutting structure extends to meet the hole edge of the first through hole 11, the length of the third fixing plate 34 inevitably decreases as the length of the first non-contact edge of the third fixing plate 34 increases, and the horizontal length of the first fixing plate 32 correspondingly used for enclosing one side of the mold increases, when the first fixing plate 32 in the matching and abutting structure abuts against the first side 13 of the second through hole 12 in the first disk 1, the length of the side of the enclosed mold where the first side 13 and the first fixing plate 32 are located increases. That is, when only one second through hole 12 is provided on the first disk 1, the length and width of the enclosed mold can be increased or decreased simultaneously by adjusting the matching abutting structure abutting against the second through hole 12.
The first disc 1 is provided with a plurality of second through holes 12, the third sides 15 have the same length, and the first sides 13 and the second sides 14 of the second through holes 12 have different lengths, so that the length adjustment range of the enclosing die can be further expanded. After each second through hole 12 is respectively butted with a corresponding different matching butting structure (each second through hole has a unique corresponding matching butting structure, and the matching butting structures corresponding to the second through holes are different), for each second through hole 12, the sum of the lengths of the first side 13 of the second through hole 12 and the first fixing plate 32 of the corresponding mating structure, the length of the second non-joint edge corresponding to the third fixing plate 34 is subtracted to obtain the maximum value of the long edge of the mold which can be enclosed by the patent, the length of the first side 13 of each second through hole 12 is gradually increased, and the shorter the length of the first non-contact side of the third fixing plate 34 in the matching and butting structure corresponding to the second through hole 12 with the larger first side 13 (that is, the smaller the difference obtained by subtracting the length of the second non-contact side of the third fixing plate 34 from the length of the first fixing plate 32 in the corresponding matching and butting structure). Since the length of the first non-contact side of the third fixing plate 34 in the matching butt joint structure is longer and correspondingly the length of the second non-contact side of the third fixing plate 34 is subtracted from the length of the first fixing plate 32 in order to ensure that the first non-contact side of the third fixing plate 34 parallel to the second fixing plate 33 extends to contact with the hole side of the first through hole 11, the larger the difference is, as can be seen from fig. 7, when the difference is increased by a set distance, the length increase distance of the first non-contact side of the third fixing plate 34 is correspondingly greater, that is, when the length and width of the enclosed mold are adjusted by the matching butt joint structure, the adjustable unit distance of the width of the mold is greater, and the adjustable unit distance of the length of the mold is extremely short.
According to the invention, the plurality of second through holes are formed in the first disc, so that the lengths of the first side edge and the second side edge of each second through hole are different, the length of the third side edge is the same, and after each second through hole is respectively butted with the corresponding different matched butting structures, for each second through hole, the maximum value of the long edge of the mold which can be enclosed is obtained by subtracting the length of the second non-joint edge of the corresponding third fixing plate from the sum of the lengths of the first side edge of the second through hole and the first fixing plate of the corresponding matched butting structure, so that the adjustment of the corresponding width or length of the mold can be independently realized under the condition that the length or width of the mold is constant, and the adjustable unit distance of the length of the mold can be improved. It should be noted that: for each second through hole 12, a connecting line between a first point of the second through hole 12 and the center of the first disk 1 is taken as a first connecting line of the second through hole 12, the distance between the first connecting line of each second through hole 12 and the first side 13 thereof is equal, and the second side 14 of each second through hole 12 is located on the clockwise side of the first side 13 thereof.
In addition, the invention can also comprise a controller, and after receiving the length and width requirements of the corresponding die, the controller controls the motor to rotate so as to drive the corresponding matching butt joint structure on the second disc 3 to rotate to butt joint with the second through hole 12 on the first disc 1. When the device is used, a user inputs the required length and width of the mold to a controller, the length and width of the mold can be one of the lengths and widths of the molds which can be formed by the device, and after the controller receives the length and width requirement, the controller controls the motor to rotate so as to drive the corresponding matching butt joint structure on the second disc 3 to rotate to butt joint with the second through hole 12 on the first disc 1. When different matching butt joint structures are switched to be in butt joint with the second through hole, the motor drives the second circular disc to rotate along the direction from the first side edge to the second side edge (for example, the clockwise direction in fig. 6), so that when the concrete brick of the specification completes mass production, and the mass production of the concrete brick of the next specification is started, as shown in fig. 6, when the second circular disc 3 rotates along the clockwise direction, the magnet 36 can push the first sliding plate to slide towards the square groove 18 until the first sliding plate completely slides into the square groove 18, so that the next matching butt joint structure can be conveniently in butt joint with the second through hole 12.
When the third baffle 21 is attached to the magnet 36, part of the first sliding plate 20 is still clamped in the two sliding grooves 19, thereby ensuring the stability of the forming die. The lower ends of the first baffle plate 16, the first fixing plate 32, the second baffle plate 17, the third baffle plate 21 and the fourth baffle plate 35 are positioned on the same horizontal plane, the height between the lower ends of the first baffle plate 16, the first fixing plate 32, the second baffle plate 17, the third baffle plate 21 and the fourth baffle plate 35 and the lower end of the second disc 3 is used as the height of a formed mould, and when concrete bricks are produced, corresponding amount of concrete can be input into the mould according to actual conditions, so that the concrete bricks with corresponding heights can be formed under the condition that the length and the width of the mould are constant.
According to the embodiment, the first disc and the second disc are designed, so that automatic switching of a plurality of moulds with different sizes can be realized, and the length and width of the formed mould can be adjusted in a wide range.
In addition, in order to further increase the length and width adjustment range of the mold, as shown in fig. 8 to 10, the difference between this embodiment and the embodiment shown in fig. 1 to 7 is that a third through hole 22 is further opened on the first disk 3, the third through hole 22 comprises a first side and a second side parallel to each other and a third side between the first side and the second side, one end of the first side edge and one end of the second side edge respectively extend to be connected with the hole edge of the first through hole, the third side edge is respectively and vertically fixed with the other end of the first side edge and the second side edge, the connecting line of the central point of the third side edge and the first disc 1 is parallel to the first side edge and the second side edge, the first side edge is equal to the second side edge in length, and the first baffle, the second baffle and the third baffle extend downwards from the first side edge, the third side edge and the second side edge respectively.
A linear fourth fixing plate 37 tangent to the second disc 3 is disposed on the outer side of the second disc 3, a fourth baffle plate vertically extends downward from the fourth fixing plate 37, and two ends of the fourth fixing plate 37 respectively extend in opposite directions to be connected to the hole edge of the first through hole 11, the fourth fixing plate 37 and the corresponding fourth baffle plate form a matching butt structure, when the third through hole 22 on the first disc 1 is in butt joint with the matching butt structure, two ends of the fourth fixing plate 37 are in seamless butt joint with the first side edge 13 and the second side edge 14 on the third through hole 22, the fourth fixing plate 37 is parallel to the third side edge 15 of the third through hole 22, and thus a hollow square mold surrounded by the first baffle plate, the second baffle plate, the third baffle plate and the fourth baffle plate is formed.
For an L-shaped groove surface on the second disc 3, two groove surfaces of the L-shaped groove surface respectively extend vertically downward to form a first fixing plate and a fourth baffle plate, the first fixing plate and the fourth baffle plate respectively extend to the hole sides of the first through holes 11 in the corresponding directions to be connected, the first fixing plate and the fourth baffle plate form a matching butt joint structure, when one of the second through holes 12 on the first disc 1 is in butt joint with the matching butt joint structure, the free end of the first fixing plate is in seamless butt joint with the first side edge 13 on the second through hole 12, the fourth baffle plate is parallel to the third side edge 15 of the second through hole 12, and the free end of the fourth baffle plate is in seamless joint with the second side edge 14 of the second through hole 12, so that a hollow square mold surrounded by the first baffle plate, the first fixing plate, the second baffle plate, the third baffle plate and the fourth baffle plate is formed.
In addition, the shape of each L-shaped groove surface on the first disc 1 can be the same, so that the length and width adjusting range and the unit adjusting length of the die can be adjusted. In order to take out the concrete bricks from the mould after the concrete bricks are formed, the motor can also be connected with an electric telescopic rod which can stretch up and down, and after the concrete bricks are formed, the electric telescopic rod is extended upwards so that the concrete bricks in the mould are moved out from the lower part of the mould.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the invention following, in general, the principles of the invention and including such departures from the present disclosure as come within known or customary practice within the art to which the invention pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims.
It will be understood that the invention is not limited to the precise arrangements described above and shown in the drawings and that various modifications and changes may be made without departing from the scope thereof. The scope of the invention is to be controlled solely by the appended claims.
Claims (6)
1. A length and width adjustable die in concrete brick production is characterized by comprising a first disc and a second disc which are coaxial, wherein a circular first through hole is formed in the center of the first disc, the second disc is positioned in the first through hole, the radius of the second disc is smaller than that of the first through hole, a second through hole communicated with the first through hole is further formed in the first disc, the second through hole comprises a first side edge, a second side edge and a third side edge, the first side edge and the second side edge are parallel to each other, the third side edge is positioned between the first side edge and the second side edge, one end of the first side edge and one end of the second side edge extend to be connected with the hole edge of the first through hole respectively, the third side edge is vertically fixed with the other end of the first side edge and the other end of the second side edge, and one point, positioned on one side of the center point of the third side edge and close to the first side edge, of the third side edge is used, a connecting line between the first point and the circle center of the first disc is parallel to the first side edge and the second side edge, the first side edge is shorter than the second side edge, the first side edge and the third side edge vertically extend downwards to form a first baffle plate and a second baffle plate respectively, a square groove is formed in the second side edge, the groove bottom of the square groove is parallel to the second side edge, sliding grooves are formed in the inner sides of the two groove edges parallel to the third side edge respectively, the two sliding grooves are arranged oppositely, a horizontal first sliding plate is clamped in the two sliding grooves and can horizontally move along the sliding grooves, and a third baffle plate vertically extends downwards from one side of the first sliding plate facing the first side edge;
the second disc is provided with an L-shaped groove surface formed by vertically cutting the outer side surface of the second disc, the L-shaped groove is provided with a matching butt joint structure, the matching butt joint structure comprises a first fixing plate, a second fixing plate and a third fixing plate, wherein the first fixing plate and the second fixing plate are respectively jointed and fixed with two groove surfaces of the L-shaped groove surface, one end of the first fixing plate and one end of the second fixing plate are vertically fixed, the other ends of the first fixing plate and the second fixing plate extend to be connected with the hole edge of the first through hole, two edges of a horizontal square third fixing plate are respectively fixedly attached to the first fixing plate and the second fixing plate, a first non-joint edge of the third fixing plate parallel to the second fixing plate extends to be connected with the edge of the first through hole and vertically extends downwards to form a fourth baffle plate, a magnet is arranged on a second non-joint edge of the third fixing plate, which is vertical to the second fixing plate;
the center position of the second disc is fixedly connected with a motor, the motor drives the second disc to rotate around the vertical shaft, so that the corresponding matching butt joint structure on the second disk is rotated to butt joint with the second through hole on the first disk, at the moment, the first side edge in the second through hole is in seamless butt joint with the first fixing plate on the matching butt joint structure, and the second side edge is in seamless butt joint with the second fixing plate, the first side edge and the first fixing plate are positioned on the same straight line, the third side edge is parallel to the second fixing plate, the magnet on the third fixing plate faces the second side edge, and the third baffle plate moves towards the first side edge under the action of the magnet until the third baffle plate is attached to the magnet, so that a hollow square mold surrounded by the first baffle plate, the first fixing plate, the second baffle plate, the third baffle plate and the fourth baffle plate is formed;
a plurality of second through holes are formed in the first disc, the lengths of the first side edge and the second side edge of each second through hole are different, and the lengths of the third side edges are the same.
2. The mold with the adjustable length and width in the concrete brick production process according to claim 1, wherein a plurality of identical L-shaped groove surfaces are formed in the second disc, notches of the L-shaped groove surfaces are arranged in the clockwise direction, and for the matched butt joint structures arranged on the L-shaped groove surfaces, on the premise that the fact that the first non-joint edges on the third fixing plates in the matched butt joint structures extend to be connected with the hole edges of the first through holes is guaranteed, the lengths of the first non-joint edges of the third fixing plates in the matched butt joint structures are different, the motor drives the second disc to rotate, the corresponding matched butt joint structures are in butt joint with the second through holes in the first disc, and therefore the length and width of the hollow square mold surrounded by the first baffle, the first fixing plates, the second baffle, the third baffle and the fourth baffle are adjusted.
3. The concrete brick production adjustable length and width mold of claim 2, wherein the motor rotates the second disc in a direction from the first side edge to the second side edge when switching different mating structures into mating with the second through hole.
4. The mold with the adjustable length and width in the concrete brick production process according to claim 1, wherein after each second through hole is in butt joint with a corresponding different matching butt joint structure, for each second through hole, the maximum value of the long side of the mold, which can be enclosed by the patent, is obtained by subtracting the length of the second non-joint side corresponding to the third fixing plate from the sum of the lengths of the first side edge of the second through hole and the first fixing plate corresponding to the matching butt joint structure.
5. The mold for producing concrete bricks, according to claim 1, wherein when the third baffle plate is engaged with the magnet, a portion of the first sliding plate is still clamped in the two sliding grooves.
6. The mold for producing concrete bricks, according to claim 1, wherein the lower ends of the first baffle plate, the first fixing plate, the second baffle plate, the third baffle plate and the fourth baffle plate are located on the same horizontal plane.
Priority Applications (1)
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CN202010943380.8A CN112092160A (en) | 2020-09-09 | 2020-09-09 | Length and width adjustable die in concrete brick production |
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CN202010943380.8A CN112092160A (en) | 2020-09-09 | 2020-09-09 | Length and width adjustable die in concrete brick production |
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CN112092160A true CN112092160A (en) | 2020-12-18 |
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CN202010943380.8A Pending CN112092160A (en) | 2020-09-09 | 2020-09-09 | Length and width adjustable die in concrete brick production |
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CN (1) | CN112092160A (en) |
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FR2658226A1 (en) * | 1990-02-15 | 1991-08-16 | Hochtief Ag Hoch Tiefbauten | FORMING CORE FOR MANUFACTURING PREFABRICATED GARAGES OR SIMILAR CELLS. |
US20080084001A1 (en) * | 2006-08-21 | 2008-04-10 | Dan Jensen | Form assembly for use in constructing pier pads |
CN101342756A (en) * | 2004-07-27 | 2009-01-14 | 邱则有 | Polyhedron component molding mould |
CN103658617A (en) * | 2013-11-26 | 2014-03-26 | 潘高峰 | Rotary casting device |
CN104589464A (en) * | 2015-01-30 | 2015-05-06 | 国家电网公司 | Concrete cushion block making device |
CN107486928A (en) * | 2017-09-13 | 2017-12-19 | 胡云模 | Building materials are molded moulding box |
CN209794075U (en) * | 2018-12-29 | 2019-12-17 | 周兆弟 | square pile die combination with adjustable die cavity size |
CN210282667U (en) * | 2019-04-18 | 2020-04-10 | 江苏广兴集团建筑装配科技有限公司 | Mold for laminated plate |
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2020
- 2020-09-09 CN CN202010943380.8A patent/CN112092160A/en active Pending
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
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FR2658226A1 (en) * | 1990-02-15 | 1991-08-16 | Hochtief Ag Hoch Tiefbauten | FORMING CORE FOR MANUFACTURING PREFABRICATED GARAGES OR SIMILAR CELLS. |
CN101342756A (en) * | 2004-07-27 | 2009-01-14 | 邱则有 | Polyhedron component molding mould |
US20080084001A1 (en) * | 2006-08-21 | 2008-04-10 | Dan Jensen | Form assembly for use in constructing pier pads |
CN103658617A (en) * | 2013-11-26 | 2014-03-26 | 潘高峰 | Rotary casting device |
CN104589464A (en) * | 2015-01-30 | 2015-05-06 | 国家电网公司 | Concrete cushion block making device |
CN107486928A (en) * | 2017-09-13 | 2017-12-19 | 胡云模 | Building materials are molded moulding box |
CN209794075U (en) * | 2018-12-29 | 2019-12-17 | 周兆弟 | square pile die combination with adjustable die cavity size |
CN210282667U (en) * | 2019-04-18 | 2020-04-10 | 江苏广兴集团建筑装配科技有限公司 | Mold for laminated plate |
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