Extrusion molding device for spicy strips
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUMADIAN HUIFENG FOOD TECH CO LTD
- Filing Date
- 2024-09-13
- Publication Date
- 2026-08-07
AI Technical Summary
[0005]为了克服大多数辣条的挤压成型装置,挤压作业难以持续进行,导致作业效率较低,需要消耗较多时间,且往往较难根据实际生产需求调节辣条成型形状的问题
[0016]1、相较于传统的辣条的挤压成型装置,需要先将原料倒入装置内,然后再进行挤压成型作业,挤压作业难以持续进行,导致作业效率较低,需要消耗较多时间,且成型模具形状大小固定,往往较难根据实际生产需求调节辣条成型形状,通过持续上料的方式,在挤压成型过程中持续进行上料作业,并根据实际加工需求灵活调节辣条原料成型形状,增强装置实用价值;
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Figure CN224597449U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of spicy strip production and processing technology, and in particular to an extrusion molding device for spicy strips. Background Technology
[0002] Spicy strips are a popular snack loved by many for their unique texture and spicy flavor. The production process involves extruding dough into shape and then deep-frying it in oil. Modern machinery is mostly used for processing during production.
[0003] Current extrusion molding equipment for spicy strips requires the raw materials to be fed into the equipment first, and then the extrusion molding operation is carried out. The extrusion operation is difficult to continue, resulting in low operating efficiency and a lot of time consumption. In addition, the shape and size of the molding die are fixed, making it difficult to adjust the shape of the spicy strips according to actual production needs, which affects the flexibility of the equipment.
[0004] Therefore, given the low operating efficiency and poor flexibility of existing spicy strip extrusion molding devices, a new spicy strip extrusion molding device can be designed. This device can continuously feed materials during the extrusion molding process and flexibly adjust the shape of the spicy strip raw materials according to actual processing needs, thereby enhancing the practical value of the device. Utility Model Content
[0005] To overcome the problems of most spicy strip extrusion molding devices, which make continuous extrusion difficult, resulting in low operating efficiency, high time consumption, and difficulty in adjusting the shape of the spicy strip according to actual production needs.
[0006] The technical solution of this utility model is as follows: a spicy strip extrusion molding device, comprising a base, a conveyor belt, a support assembly, a feeding tank, a connecting rod, a fixing ring block, a feeding pipe, a feeding hopper, a mounting ring block, a bottom plate, a molding hole, an extrusion assembly, a first support column, a first fixing plate, a first groove, a bidirectional adjusting screw, a motor, a fixing block, a blade, and a connecting assembly; a conveyor belt is provided on the inner side of the base, a support assembly is provided on the upper surface of the base, a feeding tank is provided above the conveyor belt, a connecting rod is provided on one side of the support assembly, a fixing ring block is provided on the outer side of the feeding tank, two sets of connecting rods are provided, the other end of the connecting rods is connected to the fixing ring block, a feeding pipe is provided on one side of the feeding tank, and a feeding port is provided at one end of the feeding pipe. The hopper has an outer mounting ring block on its outer side, with the inner side of the mounting ring block threadedly connected to the outer side of the feed tank. A base plate is provided on the bottom surface of the mounting ring block, with multiple sets of forming holes on one side. An extrusion assembly is installed inside the feed tank. A first support column is provided on the upper surface of the base, with a first fixing plate at one end. A first groove is provided on one side of the first fixing plate, with a bidirectional adjusting screw inside the groove. A motor is provided at one end of the first fixing plate, and a fixing block is provided on the outer side of the bidirectional adjusting screw. A blade is provided on one side of the fixing block, and the blade is in close contact with the bottom surface of the base plate. A connecting assembly is also provided on the upper surface of the base, connecting to the other side of the blade.
[0007] Preferably, a base is used to fix a support assembly, which supports a connecting rod. The connecting rod is used to fix a fixed ring block, which is used to fix the feeding tank. A base plate is installed at the bottom of the feeding tank using the mounting ring block. The raw material is poured into the feeding pipe using the feeding hopper and transported into the feeding tank through the feeding pipe. The extrusion assembly extrudes the raw material in the feeding tank, causing it to exit through the forming hole. A first fixed plate is fixed by a first support column, which defines the position of the first groove. A motor drives a bidirectional adjusting screw to rotate, adjusting the distance between the two sets of fixed blocks. The fixed blocks connect to and fix the blades, thereby displacing the connecting assembly and ensuring stable blade movement. This allows the two sets of blades to cut the raw material at the forming hole, causing it to fall onto the conveyor belt for transport. This enables continuous feeding and allows for flexible adjustment of the spicy strip raw material's forming shape according to actual processing needs, enhancing the device's practical value.
[0008] Preferably, the support assembly includes support rods and a top plate; the upper surface of the base is provided with support rods, and there are two sets of support rods, which are symmetrically arranged on both sides of the conveyor belt. One end of the support rod is provided with a top plate; the top plate is fixed by supporting the support rods, and the position of the extrusion assembly is fixed by the top plate.
[0009] Preferably, the feeding pipe is inclined at a certain angle to the feeding tank, and the feeding pipe and the feeding tank are interconnected; the raw materials poured into the feeding hopper are transported through the feeding pipe, thereby achieving the effect of continuously pouring the spicy strip raw materials into the feeding tank.
[0010] Preferably, the extrusion assembly includes an electric telescopic rod, a cylinder, and a pressure plate; the electric telescopic rod is provided on the bottom surface of the top plate, the cylinder is provided on the top surface, and the pressure plate is provided at one end of the electric telescopic rod; the electric telescopic rod is controlled to extend and retract by the cylinder, and the extension and retraction of the electric telescopic rod flexibly adjusts the placement height of the pressure plate.
[0011] Preferably, the cylinder and the electric telescopic rod are electrically connected to each other. The electric telescopic rod passes through the inside of the feed tank. The pressure plate is fitted and raised inside the feed tank. When the electric telescopic rod is extended to its limit, the pressure plate is pressed against the upper surface of the bottom plate. The cylinder drives the electric telescopic rod to extend and retract, thereby raising and lowering the pressure plate inside the feed tank, thereby squeezing the raw material in the feed tank and expelling the raw material through the forming hole.
[0012] Preferably, two sets of first support columns are provided, and the first support columns are located on the same side of the conveyor belt. The output end of the motor is connected to the bidirectional adjusting screw. The first fixed plate is supported and fixed by the first support columns, and the bidirectional adjusting screw is fixed by the first fixed plate. The motor drives the bidirectional adjusting screw to rotate, and the distance between the two sets of fixed blocks is flexibly adjusted by rotating the bidirectional adjusting screw, so that the blade can repeatedly perform raw material cutting operations on the bottom surface of the base plate.
[0013] Preferably, the connecting assembly includes a second support column, a second fixing plate, a second groove, and a slider; the upper surface of the base is provided with a second support column, one end of the second support column is provided with a second fixing plate, one side of the second fixing plate is provided with a second groove, the inner side of the second groove is provided with a slider, and the slider is connected to one side of the blade; the second fixing plate is supported and fixed by the second support column, the position of the second groove is defined by the second fixing plate, the sliding range of the slider is defined by the second groove, and the blade is fixedly connected by the slider, thereby ensuring stable movement of the blade.
[0014] Preferably, two sets of second support columns are provided. The second support columns are located on the other side of the conveyor belt. The length of the second groove is the same as the length of the first groove. The slider is fitted and slids inside the second groove. The position of the second support column is symmetrical to that of the first support column. The fixed block is moved in the first groove, which drives the blade to move, thereby driving the slider to slide in the second groove.
[0015] The beneficial effects of this utility model are:
[0016] 1. Compared to traditional spicy strip extrusion molding equipment, which requires pouring raw materials into the device before extrusion molding, making continuous extrusion difficult and resulting in low efficiency and high time consumption, and with fixed mold shape and size, it is often difficult to adjust the shape of the spicy strip according to actual production needs, this device uses continuous feeding to continuously feed materials during the extrusion molding process and flexibly adjust the shape of the spicy strip raw materials according to actual processing needs, thus enhancing the practical value of the device.
[0017] 2. Before the molding operation, select the appropriate shape and size of the molding hole according to the processing requirements, fix the bottom plate by installing the ring block, and rotate the ring block at the bottom of the feeding tank to install the bottom plate at the bottom of the feeding tank. This allows for flexible adjustment of the shape of the spicy strip extrusion molding. The raw material is poured into the feeding pipe through the feeding hopper and then transported to the feeding tank through the feeding pipe. This solves the problem of low operating efficiency and poor flexibility of most spicy strip extrusion molding devices, and enhances the flexibility of the device.
[0018] 3. The first fixed plate is supported and fixed by the first support column, and the position of the bidirectional adjusting screw is fixed by the first groove. The bidirectional adjusting screw is driven by the motor to rotate. Rotating the bidirectional adjusting screw adjusts the distance between the two sets of fixed blocks, so that the two sets of blades are combined. The blades cut the raw material under the bottom plate, so that the raw material falls onto the conveyor belt. The conveyor belt transports the formed raw material. Attached Figure Description
[0019] Figure 1 The diagram shown is a three-dimensional structural schematic of an extrusion molding device for spicy strips according to this utility model.
[0020] Figure 2 The diagram shown is a three-dimensional structural schematic of the support component of an extrusion molding device for spicy strips according to this utility model.
[0021] Figure 3 The diagram shows a three-dimensional structure of the base plate and forming hole of an extrusion molding device for spicy strips according to this utility model.
[0022] Figure 4 The diagram shown is a three-dimensional structural schematic of the extrusion assembly of an extrusion molding device for spicy strips according to this utility model.
[0023] Figure 5 The diagram shows a three-dimensional structure of the bidirectional adjusting screw and blade of the extrusion molding device for spicy strips according to this utility model.
[0024] Figure 6 The diagram shown is a three-dimensional structural schematic of the connecting components of an extrusion molding device for spicy strips according to this utility model.
[0025] Explanation of reference numerals in the attached drawings: 1. Base; 2. Conveyor belt; 301. Support rod; 302. Top plate; 4. Feed tank; 401. Connecting rod; 402. Fixing ring block; 403. Feed pipe; 404. Feed hopper; 501. Mounting ring block; 502. Base plate; 503. Forming hole; 601. Electric telescopic rod; 602. Cylinder; 603. Pressure plate; 701. First support column; 702. First fixing plate; 703. First groove; 704. Bidirectional adjusting screw; 705. Motor; 706. Fixing block; 8. Blade; 801. Second support column; 802. Second fixing plate; 803. Second groove; 804. Slider. Detailed Implementation
[0026] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0027] Please see Figures 1-6 This utility model provides an embodiment of a spicy strip extrusion molding device, comprising a base 1, a conveyor belt 2, a support assembly, a feeding tank 4, a connecting rod 401, a fixing ring block 402, a feeding pipe 403, a feeding hopper 404, a mounting ring block 501, a bottom plate 502, a molding hole 503, an extrusion assembly, a first support column 701, a first fixing plate 702, a first groove 703, a bidirectional adjusting screw 704, a motor 705, a fixing block 706, a blade 8, and a connecting assembly; the conveyor belt 2 is arranged inside the base 1, the support assembly is arranged on the upper surface of the base 1, the feeding tank 4 is arranged above the conveyor belt 2, the connecting rod 401 is arranged on one side of the support assembly, the fixing ring block 402 is arranged on the outer side of the feeding tank 4, two sets of connecting rods 401 are arranged, the other end of the connecting rod 401 is connected to the fixing ring block 402, the feeding pipe 403 is arranged on one side of the feeding tank 4, and one end of the feeding pipe 403 is provided with an inlet... The hopper 404 and the feed tank 4 are provided with an installation ring block 501 on the outside. The inner side of the installation ring block 501 is threadedly connected to the outer side of the feed tank 4. The bottom surface of the installation ring block 501 is provided with a base plate 502. A forming hole 503 is opened on one side of the base plate 502. Multiple sets of forming holes 503 are opened. An extrusion assembly is provided inside the feed tank 4. A first support column 701 is provided on the upper surface of the base 1. A first fixing plate 702 is provided at one end of the first support column 701. A first groove 703 is opened on one side of the first fixing plate 702. A bidirectional adjusting screw 704 is provided inside the first groove 703. A motor 705 is provided at one end of the first fixing plate 702. A fixing block 706 is provided on the outside of the bidirectional adjusting screw 704. A blade 8 is provided on one side of the fixing block 706. The blade 8 is close to the bottom surface of the base plate 502. A connecting assembly is also provided on the upper surface of the base 1. The connecting assembly is connected to the other side of the blade 8.
[0028] Please see Figure 2In this embodiment, the support assembly includes a support rod 301 and a top plate 302; the upper surface of the base 1 is provided with a support rod 301, and two sets of support rods 301 are provided. The support rods 301 are symmetrically arranged on both sides of the conveyor belt 2. One end of the support rod 301 is provided with a top plate 302. The top plate 302 is fixed by the support rod 301 and the top plate 302 is used to fix the position of the extrusion assembly; the feeding pipe 403 is inclined at a certain angle to the feeding tank 4. The feeding pipe 403 and the feeding tank 4 are interconnected. The raw materials poured into the feeding hopper 404 are transported through the feeding pipe 403, thereby achieving the effect of continuously pouring the spicy strip raw materials into the feeding tank 4.
[0029] Please see Figures 3-4 In this embodiment, the extrusion assembly includes an electric telescopic rod 601, a cylinder 602, and a pressure plate 603. The electric telescopic rod 601 is provided on the bottom surface of the top plate 302, and the cylinder 602 is provided on the top surface. The pressure plate 603 is provided at one end of the electric telescopic rod 601. The cylinder 602 controls the extension and retraction of the electric telescopic rod 601. The extension and retraction of the electric telescopic rod 601 flexibly adjusts the placement height of the pressure plate 603, and the pressure plate 603 is used to extrude the raw material in the feed tank 4. The cylinder 602 and the electric telescopic rod 601 are electrically connected to each other. The electric telescopic rod 601 passes through the interior of the feed tank 4. The pressure plate 603 is fitted and raised and lowered inside the feed tank 4. When the electric telescopic rod 601 is extended to its limit, the pressure plate 603 is pressed tightly against the upper surface of the bottom plate 502. The cylinder 602 drives the electric telescopic rod 601 to extend and retract, thereby causing the pressure plate 603 to rise and fall inside the feed tank 4, thereby causing the pressure plate 603 to extrude the raw material in the feed tank 4, and causing the raw material to be formed and discharged through the forming hole 503.
[0030] Please see Figures 5-6In this embodiment, two sets of first support columns 701 are provided. The first support columns 701 are located on the same side of the conveyor belt 2. The output end of the motor 705 is connected to the bidirectional adjusting screw 704. The first fixed plate 702 is supported and fixed by the first support columns 701. The bidirectional adjusting screw 704 is fixed by the first fixed plate 702. The motor 705 drives the bidirectional adjusting screw 704 to rotate. Rotating the bidirectional adjusting screw 704 flexibly adjusts the distance between the two sets of fixed blocks 706, so that the blade 8 repeatedly performs raw material cutting operations on the bottom surface of the base plate 502. The connecting assembly includes a second support column 801, a second fixed plate 802, a second groove 803, and a slider 804. The upper surface of the base 1 is provided with a second support column 801. One end of the second support column 801 is provided with a second fixed plate 802. A second groove is opened on one side of the second fixed plate 802. The second groove 803 has a slider 804 on its inner side. The slider 804 is connected to one side of the blade 8. The second fixed plate 802 is supported and fixed by the second support column 801. The position of the second groove 803 is defined by the second fixed plate 802, and the sliding range of the slider 804 is defined by the second groove 803. The slider 804 is used to fix and connect the blade 8, thereby ensuring the stable movement of the blade 8. There are two sets of second support columns 801. The second support columns 801 are set on the other side of the conveyor belt 2. The length of the second groove 803 is the same as the length of the first groove 703. The slider 804 is fitted and slides inside the second groove 803. The position of the second support column 801 is symmetrical with the first support column 701. The fixed block 706 moves in the first groove 703, which drives the blade 8 to move, thereby driving the slider 804 to slide in the second groove 803.
[0031] Before the molding operation, the base 1 is used to fix the support rod 301, the support rod 301 supports and fix the top plate 302, the connecting rod 401 is used to fix and connect the fixing ring block 402, the fixing ring block 4 is fixed and fix the feed tank 4, the ring block 501 is rotated and installed at the bottom of the feed tank 4, the bottom plate 502 is installed on the feed tank 4, the raw material is poured into the feed hopper 404, and the raw material is transported to the feed tank 4 from the feed pipe 403;
[0032] During the molding process, the cylinder 602 drives the electric telescopic rod 601 to extend and retract. The extended electric telescopic rod 601 moves the pressure plate 603 downward, and the pressure plate 603 squeezes the raw material in the feed tank 4, so that the raw material is discharged through the molding hole 503.
[0033] After the molding process, the first fixed plate 702 is supported and fixed by the first support column 701. The bidirectional adjusting screw 704 in the first groove 703 is rotated by the motor 705. The bidirectional adjusting screw 704 is rotated to adjust the distance between the two sets of fixed blocks 706. The second fixed plate 802 is supported and fixed by the second support column 801, thereby driving the slider 804 to move synchronously in the second groove 803, so that the two sets of blades 8 are combined, cutting the raw material under the base plate 502 and dropping it onto the conveyor belt 2. The conveyor belt 2 is used to transport the molded raw material.
[0034] Through the above steps, by setting the base 1 to fix the support assembly, the support assembly supports and fixes the connecting rod 401, the connecting rod 401 is fixedly connected to the fixing ring block 402, the fixing ring block 402 is used to fix the feed tank 4, the mounting ring block 501 is used to install the base plate 502, and the base plate 502 is installed at the bottom of the feed tank 4. The feed hopper 404 is used to pour the raw material into the feed pipe 403, and the feed pipe 403 is used to transport the raw material into the feed tank 4. The extrusion assembly is used to extrude the raw material in the feed tank 4, so that the raw material passes through the forming hole 50. 3. The material is discharged. The first fixed plate 702 is supported and fixed by the first support column 701. The position of the first groove 703 is defined by the first fixed plate 702. The motor 705 drives the bidirectional adjusting screw 704 to rotate. The bidirectional adjusting screw 704 adjusts the distance between the two sets of fixed blocks 706. The fixed blocks 706 are used to connect and fix the blade 8, thereby driving the connecting component to move and ensuring the stable movement of the blade 8. The two sets of blades 8 are combined to cut the material at the forming hole 503, so that the material falls onto the conveyor belt 2 for conveying.
[0035] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present invention.
Claims
1. An extrusion molding device for spicy strips, comprising a base (1) and a conveyor belt (2); characterized in that: It also includes a support assembly, a feed tank (4), a connecting rod (401), a fixing ring block (402), a feed pipe (403), a feed hopper (404), a mounting ring block (501), a base plate (502), a forming hole (503), an extrusion assembly, a first support column (701), a first fixing plate (702), a first groove (703), a bidirectional adjusting screw (704), a motor (705), a fixing block (706), a blade (8), and a connecting assembly; a conveyor belt (2) is provided on the inner side of the base (1). The upper surface of the base (1) is provided with a support assembly, and a feed tank (4) is provided above the conveyor belt (2). A connecting rod (401) is provided on one side of the support assembly, and a fixing ring block (402) is provided on the outside of the feed tank (4). Two sets of connecting rods (401) are provided, and the other end of the connecting rods (401) is connected to the fixing ring block (402). A feed pipe (403) is provided on one side of the feed tank (4), and a feed hopper (404) is provided at one end of the feed pipe (403). The outside of the feed tank (4) is... An mounting ring (501) is provided, the inner side of which is threadedly connected to the outer side of the feed tank (4). A base plate (502) is provided on the bottom surface of the mounting ring (501), and a forming hole (503) is provided on one side of the base plate (502). Multiple sets of forming holes (503) are provided. An extrusion assembly is provided inside the feed tank (4). A first support column (701) is provided on the upper surface of the base (1), and a first fixing plate (702) is provided at one end of the first support column (701). A first groove (703) is provided on one side of (702), and a bidirectional adjusting screw (704) is provided inside the first groove (703). A motor (705) is provided at one end of the first fixed plate (702), and a fixing block (706) is provided on the outside of the bidirectional adjusting screw (704). A blade (8) is provided on one side of the fixing block (706), and the blade (8) is in close contact with the bottom surface of the base plate (502). A connecting component is also provided on the upper surface of the base (1), and the connecting component is connected to the other side of the blade (8).
2. The extrusion molding device for spicy strips according to claim 1, characterized in that: The support assembly includes a support rod (301) and a top plate (302); the upper surface of the base (1) is provided with a support rod (301), and there are two sets of support rods (301). The support rods (301) are symmetrically arranged on both sides of the conveyor belt (2), and a top plate (302) is provided at one end of the support rod (301).
3. The extrusion molding device for spicy strips according to claim 2, characterized in that: The feed pipe (403) is inclined at a certain angle to the feed tank (4), and the feed pipe (403) and the feed tank (4) are interconnected.
4. The extrusion molding device for spicy strips according to claim 2, characterized in that: The extrusion assembly includes an electric telescopic rod (601), a cylinder (602), and a pressure plate (603); the bottom surface of the top plate (302) is provided with an electric telescopic rod (601), the top surface is provided with a cylinder (602), and one end of the electric telescopic rod (601) is provided with a pressure plate (603).
5. The extrusion molding device for spicy strips according to claim 4, characterized in that: The cylinder (602) and the electric telescopic rod (601) are electrically connected to each other. The electric telescopic rod (601) passes through the inside of the feed tank (4). The pressure plate (603) is fitted and lifted inside the feed tank (4). When the electric telescopic rod (601) is extended to its limit, the pressure plate (603) is tightly attached to the upper surface of the base plate (502).
6. The extrusion molding device for spicy strips according to claim 5, characterized in that: Two sets of first support columns (701) are provided. The first support columns (701) are located on the same side of the conveyor belt (2). The output end of the motor (705) is connected to the bidirectional adjusting screw (704).
7. The extrusion molding device for spicy strips according to claim 6, characterized in that: The connecting assembly includes a second support column (801), a second fixing plate (802), a second groove (803), and a slider (804); the upper surface of the base (1) is provided with the second support column (801), one end of the second support column (801) is provided with the second fixing plate (802), one side of the second fixing plate (802) is provided with the second groove (803), the inner side of the second groove (803) is provided with the slider (804), and the slider (804) is connected to one side of the blade (8).
8. The extrusion molding device for spicy strips according to claim 7, characterized in that: Two sets of second support columns (801) are provided. The second support columns (801) are located on the other side of the conveyor belt (2). The length of the second groove (803) is the same as the length of the first groove (703). The slider (804) is fitted and slides inside the second groove (803).