Dough kneading and conveying integrated machine

文档序号:1697822 发布日期:2019-12-13 浏览:49次 中文

阅读说明:本技术 和面输面一体机 (Dough kneading and conveying integrated machine ) 是由 杨建强 于 2018-06-06 设计创作,主要内容包括:本发明涉及食品加工设备技术领域,是一种和面和面团输送设备;包括机架、储料斗、动力装置、螺旋轴、输送管、供液系统,机架上安装可调速的动力装置和输送管,输送管一端上部和储料斗底部连通,输送管内有螺旋轴,螺旋轴一端穿过输送管,通过联轴器和动力装置连接,流量可调节的供液系统通过进液口和输送管连接,进液口连接在输送管上,位于进料口下游,输送管出料段连接锥形过渡段。本发明设备结构简单合理,模块化设计,易于拆卸清洗,安全卫生、效率高。(The invention relates to the technical field of food processing equipment, in particular to dough kneading and dough conveying equipment; the spiral shaft feeding device comprises a rack, a storage hopper, a power device, a spiral shaft, a conveying pipe and a liquid supply system, wherein the power device and the conveying pipe are arranged on the rack and can adjust speed, the upper part of one end of the conveying pipe is communicated with the bottom of the storage hopper, the spiral shaft is arranged in the conveying pipe, one end of the spiral shaft penetrates through the conveying pipe and is connected with the power device through a shaft coupling, the liquid supply system with adjustable flow rate passes through a liquid inlet and a conveying pipe, the liquid inlet is connected to the conveying pipe and located at. The device has the advantages of simple and reasonable structure, modular design, easy disassembly and cleaning, safety, sanitation and high efficiency.)

1. The utility model provides a defeated all-in-one of face of kneading dough, which comprises a frame, the storage hopper, power device, the screw axis, the conveyer pipe, the solution feed system, install conveyer pipe and adjustable speed's power device in its characterized in that frame, conveyer pipe one end upper portion trompil, storage hopper bottom and conveyer pipe trompil department are connected and are communicated with each other, there is the screw axis in the conveyer pipe, conveyer pipe is passed to screw axis one end, power device with adjustable rotational speed through coupling joint, adjustable flow's solution feed system passes through inlet and duct connections, the inlet is connected on the conveyer pipe, be located the feed inlet low reaches, the toper changeover portion is connected to conveyer pipe ejection of compact.

2. The dough kneading and conveying all-in-one machine as claimed in claim 1, wherein the screw shaft is located at the front section of the feed inlet, the screw blades are in the shape of the same width, and the screw blades located at the middle section and the rear section are in the shape of petals with variable widths or the combination of the same width and the petal shape.

3. the dough kneading and conveying all-in-one machine according to claim 1, wherein the vibrator is arranged at the lower part of the storage hopper, and the vibrator is arranged at the outer side or the inner side of the storage hopper.

Technical Field

The invention relates to the technical field of food processing, in particular to dough kneading and conveying equipment.

background

the screw shaft conveyor is mainly used for conveying granular materials, and only soft dough with connection toughness can be conveyed during dough conveying, so that the water content is low. Harder dough is difficult to feed into the screw shaft by gravity and self-connecting toughness to form continuous conveying. Other power devices are required to extrude the dough into the screw shaft. The equipment structure is complicated, and the disassembly and the cleaning are not easy.

Disclosure of Invention

The invention provides a dough making and conveying integrated device, which adopts a modular design, overcomes the defects of the existing device, simplifies the structure of the device while increasing the functions of the device, and effectively solves the problems of complex structure and difficult disassembly and cleaning of the device.

The technical scheme of the invention is realized by the following measures: a dough kneading and conveying integrated machine comprises a rack, a storage hopper, a power device, a spiral shaft, a conveying pipe and a liquid supply system. Install the power device of conveyer pipe and adjustable speed in the frame, conveyer pipe one end upper portion trompil, storage hopper bottom and conveyer pipe trompil department are connected and are communicated with each other, there is the screw axis in the conveyer pipe, the conveyer pipe is passed to screw axis one end, through the adjustable power device of coupling joint rotational speed, the adjustable liquid supply system of flow passes through inlet and duct connections, the inlet is connected on the conveyer pipe, be located feed inlet low reaches, the toper changeover portion is connected to conveyer pipe ejection of compact section, toper part and conveyer pipe are with screw thread, flange or fast-assembling articulate.

The following is further optimization or/and improvement of the technical scheme of the invention:

The spiral shaft is positioned at the front section of the feed inlet, the spiral blades are in the shape of equal width, and the spiral blades positioned at the middle section and the rear section are in the shape of petals with variable width or the combination of the shape of equal width and the shape of petals.

The feed end of the conveying pipe and the pipe body have the same diameter, or the feed end of the conveying pipe is made into a reducing diameter, and the diameter is smaller than the diameter of the middle pipe body.

The vibrator is installed to storage hopper lower part, and the vibrator is installed in the storage hopper outside or inboard.

The end part of the conveying pipe close to the feeding hole is provided with a thrust ball bearing, and the screw shaft is in clearance fit with the coupling and the thrust ball bearing.

The device has simple and reasonable structure, modular design and easy disassembly and cleaning. Flour is placed in the storage hopper, the speed-adjustable power device drives the screw shaft to rotate through the coupler, and the flour enters the conveying pipe from the feeding hole in the lower portion of the storage hopper and is conveyed to the downstream under the power action of the screw shaft. The liquid required by dough kneading is input into the conveying pipe through the liquid inlet by the liquid supply system with adjustable flow, is stirred, mixed and stirred by the blades of the spiral shaft and moves towards the downstream discharge port. The centrum transition section at the discharge port forms resistance to the material, thereby being beneficial to compaction of the material and uniform mixing and stirring. The well kneaded dough is discharged from the discharge hole, and the discharge hole can be connected with the feed inlets of other processing equipment. The softness and hardness of the dough and the conveying speed are adjusted by adjusting the flow of the liquid supply system and the rotating speed of the power device. After the equipment is used, the conical transition section is disassembled, and the screw shaft can be conveniently taken out for cleaning. The dough kneading and conveying all-in-one machine is simple to operate, easy to disassemble and clean, safe, sanitary and high in efficiency, and not only can be used for kneading and conveying dough, but also can be used for stirring and conveying other similar materials.

Drawings

FIG. 1 is a schematic sectional view of the preferred embodiment of the present invention in a front view.

Fig. 2 is a top view partially in section of fig. 1.

Fig. 3 is a partial cross-sectional structural view of the right side of fig. 1.

The codes in the figures are respectively: the device comprises a storage hopper 1, a vibrator 2, a power device 3, a rack 4, a coupler 5, a conveying pipe 6, a spiral shaft 7, a conical transition section 8, a discharge port 9, a liquid inlet 10, a liquid supply system 11 and a feed inlet 12.

Detailed Description

The present invention is not limited by the following examples, and specific embodiments may be determined according to the technical solutions and practical situations of the present invention.

In the present invention, for convenience of description, the description of the relative positional relationship of the components is described according to the layout pattern of fig. 1 of the specification, such as: the positional relationship of front, rear, upper, lower, left, right, etc. is determined in accordance with the layout direction of fig. 1 of the specification.

the invention is further described with reference to the following examples and figures:

As shown in attached figures 1 and 2, the dough kneading and flour conveying all-in-one machine comprises a storage hopper 1, a vibrator 2, a power device 3, a rack 4, a coupler 5, a conveying pipe 6, a spiral shaft 7, a conical transition section 8, a discharge port 9, a liquid inlet 10, a liquid supply system 11 and a feed port 12, wherein the power device 3 and the conveying pipe 6 are fixed on the rack 4, the upper part of the left side of the conveying pipe 6 is communicated with the bottom of the storage hopper 1, the feed port 12 is arranged at the communicated part, the vibrator 2 is installed at the lower part of the storage hopper 1, the spiral shaft 7 is arranged in the conveying pipe 6, one end of the spiral shaft 7 penetrates through the conveying pipe 6 and is connected with the power device 3 through the coupler 5, the liquid supply system 11 with adjustable flow is connected with the conveying pipe 6 through the liquid inlet 10, the liquid.

The dough kneading and conveying all-in-one machine can be further optimized or/and improved according to actual needs:

As shown in figures 1, 2 and 3 of the drawings,

The left feeding end of the conveying pipe 6 is made into a reducing diameter, and the diameter is smaller than that of the middle pipe body. The left helical blade of the helical shaft 7 is in a shape of equal width, and the width of the helical blade at the middle and the right is changed to be in a petal shape.

The above technical features constitute the best embodiment of the present invention, which has strong adaptability and best implementation effect, and unnecessary technical features can be increased or decreased according to actual needs to meet the requirements of different situations.

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