Shao mai machine mechanism skin plastic module
Technical Field
The utility model relates to a shao mai equipment technical field, concretely relates to shao mai mechanism skin plastic module.
Background
Shaomai is a famous Chinese snack, also called shaomai, shomi, xiaomai, plum, shaomai, and ludwingtou, is a wheaten food snack whose top end is fluffy and folded like a flower, and is steamed by a steamer with scalded dough as wrapper and stuffing. Is like pomegranate, white and crystal, has thin and fragrant stuffing. The soil grows in China and has a long history. In Jiangsu, Zhejiang, Guangdong and Guangxi, it is called Shao Mai, and in Beijing, etc., it is called Shao Mai. To meet the increasing demand, production plants for producing shaomai are emerging on the market. But the finished product produced by the existing equipment has poor appearance and insufficient layering, thereby influencing the sale.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a shao mai mechanism skin plastic module to solve the problem of mentioning in the background art. In order to achieve the above object, the utility model provides a following technical scheme: a wheat burning machine skin shaping module comprises a guide wheel, wherein the guide wheel is arranged on a fixed block, the fixed block is connected with one end of a guide rod, the guide rod penetrates through a sliding shaft seat to be connected with a push rod block, the sliding shaft seat is fixed on an installation plate, the push rod block is connected with a driving block, and the driving block is connected with a forming die;
forming die includes the lower mould, the mould is connected to the lower mould top, it becomes the die cavity to go up to constitute between mould and the lower mould, become die cavity internally mounted have the carousel, the lower mould is connected to the carousel bearing, open at the lower mould middle part has a top export, top export and the inside intercommunication in die cavity, ejection mechanism is installed to ejection mouth inside, it has anchor clamps to articulate on the carousel, anchor clamps are located and become die cavity inside, it has drain hole and plastic mouth to open at last mould middle part, the plastic mouth distributes along the drain hole circumference to communicate each other, the drain hole can be followed to the anchor clamps upper end and the motion of plastic mouth is pressed from both sides tightly, the drive block is connected in the carousel meshing.
Preferably, the circumference of the rotating disc is provided with driven teeth, the side edge of the driving block is provided with driving teeth, and the driven teeth are meshed with the driving teeth.
Preferably, forming die is equipped with two, connects through the connecting plate between two forming die, the drive block is located between two forming die, the drive block is equipped with two, meshes two forming die's carousel respectively, the connecting plate bottom is fixed in on the mounting panel.
Preferably, the ejection mechanism comprises a top support, the top support is located inside the top outlet and can move up and down along the top outlet, the bottom of the top support is connected with the upper end of the discharging guide rod, the lower end of the discharging guide rod penetrates through the lower die to be connected with the discharging guide block, a return spring is sleeved at the lower end of the discharging guide rod, and the return spring is located between the lower die and the discharging guide block.
Preferably, the ejection mechanisms corresponding to the two forming molds are connected through a discharge guide block, and the two discharge guide rods are respectively fixed at two ends of the discharge guide block.
Preferably, the guide rods are arranged in two and distributed in parallel, and the forming cavity is of a hexagonal structure.
The utility model discloses a technological effect and advantage: this device design is compact, can carry out the plastic to the shao mai through inside anchor clamps, and the outward appearance more has the stereovision, and production efficiency is high.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a cross-sectional view taken along the line C-C of FIG. 1;
FIG. 3 is a schematic view of the upper mold structure of the wrapper cutter;
FIG. 4 is a schematic view of the lower die structure of the wrapper cutter.
In the figure: 1-guide wheel, 2-fixed block, 3-guide rod, 4-sliding shaft seat, 5-push rod block, 6-mounting plate, 7-driving block, 8-lower die, 9-upper die, 10-forming cavity, 11-rotary table, 12-top outlet, 13-clamp, 14-discharge port, 15-shaping port, 16-connecting plate, 17-top holder, 18-discharge guide rod, 19-discharge guide block, 20-reset spring, 21-upper dough sheet cutter die and 22-lower dough sheet cutter die.
Detailed Description
In order to make the technical means, the creative features, the objectives and the functions of the present invention easily understood and appreciated, the present invention will be further described with reference to the specific drawings, and in the description of the present invention, unless otherwise specified or limited, the terms "mounted," connected "and" connected "should be understood broadly, and for example, the terms" fixed connection, "detachable connection," integral connection, mechanical connection, and electrical connection may be used; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements.
Example 1
As shown in fig. 1 and 2, the shapping module for machine-made shapping of shavings comprises a guide wheel 1, wherein the guide wheel 1 is mounted on a fixed block 2, the fixed block 2 is connected with one end of a guide rod 3, the guide rod 3 passes through a sliding shaft seat 4 to be connected with a push rod block 5, the sliding shaft seat 4 is fixed on a mounting plate 6, the push rod block 5 is connected with a driving block 7, and the driving block 7 is connected with a forming die;
forming die includes lower mould 8, mould 9 is connected to 8 tops of lower mould, it becomes die cavity 10 to constitute between last mould 9 and the lower mould 8, become die cavity 10 internally mounted has carousel 11, carousel 11 bearing connection lower mould 8, 8 middle parts of lower mould open there is top export 12, top export 12 and the inside intercommunication in die cavity 10, top export 12 internally mounted has ejection mechanism, it has anchor clamps 13 to articulate on the carousel 11, anchor clamps 13 are located and become die cavity 10 inside, it has drain hole 14 and plastic mouth 15 to open at 9 middle parts of the mould, plastic mouth 15 distributes along 14 circumferences of drain hole to communicate each other, anchor clamps 13 upper end can be followed drain hole 14 and the 15 motion of plastic mouth and pressed from both sides tightly, driving block 7 is connected in 11 meshing of carousel.
Example 2
As shown in fig. 1 and 2, the shapping module for machine-made shapping of shavings comprises a guide wheel 1, wherein the guide wheel 1 is mounted on a fixed block 2, the fixed block 2 is connected with one end of a guide rod 3, the guide rod 3 passes through a sliding shaft seat 4 to be connected with a push rod block 5, the sliding shaft seat 4 is fixed on a mounting plate 6, the push rod block 5 is connected with a driving block 7, and the driving block 7 is connected with a forming die;
forming die includes lower mould 8, mould 9 is connected to 8 tops of lower mould, it becomes die cavity 10 to constitute between last mould 9 and the lower mould 8, become die cavity 10 internally mounted has carousel 11, carousel 11 bearing connection lower mould 8, 8 middle parts of lower mould open there is top export 12, top export 12 and the inside intercommunication in die cavity 10, top export 12 internally mounted has ejection mechanism, it has anchor clamps 13 to articulate on the carousel 11, anchor clamps 13 are located and become die cavity 10 inside, it has drain hole 14 and plastic mouth 15 to open at 9 middle parts of the mould, plastic mouth 15 distributes along 14 circumferences of drain hole to communicate each other, anchor clamps 13 upper end can be followed drain hole 14 and the 15 motion of plastic mouth and pressed from both sides tightly, driving block 7 is connected in 11 meshing of carousel.
Preferably, the circumference of the rotating disk 11 is provided with driven teeth, and the side edge of the driving block 7 is provided with driving teeth, and the driven teeth are engaged with the driving teeth.
Preferably, the number of the forming molds is two, the two forming molds are connected through a connecting plate 16, the driving block 7 is located between the two forming molds, the number of the driving blocks 7 is two, the driving blocks are respectively engaged with the turntables 11 of the two forming molds, and the bottom of the connecting plate 16 is fixed on the mounting plate 6.
Preferably, the ejection mechanism comprises a top support 17, the top support 17 is located inside the top outlet 12 and can move up and down along the top outlet 12, the bottom of the top support 17 is connected with the upper end of a discharge guide rod 18, the lower end of the discharge guide rod 18 penetrates through the lower die 8 and is connected with a discharge guide block 19, a return spring 20 is sleeved at the lower end of the discharge guide rod 18, and the return spring 20 is located between the lower die 8 and the discharge guide block 19.
Preferably, the ejection mechanisms corresponding to the two molding dies are connected through a discharge guide block 19, and the two discharge guide rods 18 are respectively fixed at two ends of the discharge guide block 19.
Preferably, the number of the guide rods 3 is two, and the guide rods are distributed in parallel, and the forming cavity 10 is in a hexagonal structure.
The utility model discloses process flow and theory of operation do: the dough sheet is pressed downwards by matching the upper dough sheet cutter die 21 and the lower dough sheet cutter die 22 shown in fig. 3 and 4 to be made into a corresponding shape or round dough sheets are placed on the material discharging opening 14 and the shaping opening 15 of the upper die 9, the dough sheets are pressed into the forming cavity 10 by an external punch mechanism, the dough sheets are guided by the material discharging opening 14 and the shaping opening 15 to form folds or are overlapped in the forming cavity 10 and are positioned on the top support 17, after stuffing is injected through an external stuffing supplying mechanism, the guide wheel 1 is driven by an external closing-up guide rail to drive the push rod block 5 to drive the driving block 7 to move forwards, the driving block 7 drives the turntable 11 to rotate, meanwhile, the clamp 13 arranged on the turntable 11 moves along with the dough sheets to close and shape along the material discharging opening 14 and the shaping opening 15, after shaping is finished, the external upper pushing mechanism pushes the discharging guide block 19 to move upwards, the discharging guide block 19 drives the discharging guide rod 18 and the top support 17 to move upwards, the clamp 13 is moved outwards, the product is pushed out of the die, the plate is clamped and loaded by other mechanisms, and finally the clamp 13 is restored to the most position to prepare for next closing and shaping.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications and variations can be made in the embodiments or in part of the technical features of the embodiments without departing from the spirit and the scope of the invention.