Hot air drying device for non-fried instant noodles

By designing a hot air drying device for non-fried instant noodles with a rotating structure and a ramp structure, the problem of uneven drying of the noodles was solved, achieving uniform drying and stable movement, thus improving the drying effect and the stability of the device.

CN223925324UActive Publication Date: 2026-02-17HEZE YIHESHUN FOOD CO LTD
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Patent Information

Application Number
CN202520599257.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-17
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing instant noodle drying devices result in uneven drying of the noodles, affecting taste and shelf life.

Method used

Design a hot air drying device for non-fried instant noodles that includes a rotating structure and a ramp structure. The rotating plate drives the noodles to dry evenly, and the fan generates an upward airflow to accelerate the hot air flow and prevent the noodles from falling apart. The ramp structure stabilizes the movement of the casters.

Benefits of technology

This method achieves uniform drying of the dough, improves drying effect and efficiency, prevents the casters from slipping, and enhances the stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of instant noodle production and processing, and discloses a non-fried instant noodle hot air drying device which comprises a drying chamber, a hollow heat insulation box and a rotating structure, the drying chamber is a front wall face of the hollow heat insulation box and can be turned over and opened through a hinge, and the rotating structure is arranged in a cavity of the drying chamber and used for driving a noodle cake to rotate when the noodle cake is dried. The rotating structure comprises a fan, a ventilation groove, a rotating shaft, a butt-joint frame and a storage plate, the fan is rotationally connected to the bottom in a cavity of the drying chamber, a motor at the bottom of the drying chamber can drive the fan to rotate, the ventilation groove penetrates through the top wall face of the bottom plate, the top of the fan can make contact with the bottom of the bottom plate, and the rotating shaft is fixedly connected to the top of the fan; the rotating shaft can penetrate through the center of the bottom plate, the butt-joint frame is clamped to the wall face of the rotating shaft, the storage plate is fixedly connected to the wall face of the butt-joint frame, the top of the storage plate can be used for storing instant noodle cakes, and the rotating structure can drive the instant noodle cakes to be evenly dried through the rotating storage plate.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to instant noodle production and processing field, concretely relates to a non -fried instant noodle hot -blast drying device. BACKGROUND

[0002] The drying process of instant noodles is a key link in the production process, which directly affects the taste, rehydration and shelf life of noodles.

[0003] When drying instant noodles, each batch of noodles usually needs to be transported to the drying box for centralized drying. When drying noodles, the noodles are only placed in the drying box for drying. However, this may result in uneven drying of some noodles. Therefore, there is an urgent need for an instant noodle hot air drying device that can achieve uniform drying effect.

[0004] Therefore, the utility model is provided. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the basic idea of the technical solution of the utility model is:

[0006] A non-fried instant noodle hot air drying device, comprising:

[0007] The drying chamber is a hollow heat-insulating box with a front wall that can be opened by hinge flipping. A hot air blower is installed on the top of the drying chamber. Two pipes that can communicate with the cavity of the drying chamber are installed on both sides of the hot air blower. A support leg is installed at the bottom of the drying chamber. A motor is also installed at the bottom of the drying chamber. A bottom plate is fixedly connected in the cavity of the drying chamber. The bottom plate is a rectangular plate.

[0008] The rotating structure is arranged in the cavity of the drying chamber for rotating the noodles during drying. The rotating structure comprises: a fan, an air-permeable groove, a shaft, an adapter frame and a storage plate. The fan is rotatably connected to the bottom of the cavity of the drying chamber. The motor at the bottom of the drying chamber can drive the fan to rotate. The air-permeable groove is formed through the top wall of the bottom plate. The top of the fan can contact the bottom of the bottom plate. The shaft is fixedly connected to the top of the fan. The shaft can pass through the center of the bottom plate. The adapter frame is connected to the wall of the shaft. The storage plate is fixedly connected to the wall of the adapter frame. The top of the storage plate can place noodles.

[0009] As a preferred embodiment of the utility model, the fan is in the form of a fan blade, the shaft is in the form of a cylinder, the air-permeable groove is in the form of a rectangular slot, a plurality of identical air-permeable grooves are arranged in an annular array on the top of the bottom plate, the adapter frame is in the form of a concave block, a rectangular rod is fixedly connected to the top of each side of the adapter frame, the storage plate is in the form of a hollow rectangular box with an open top, the storage plates are symmetrically arranged on both sides of the adapter frame, a plurality of rectangular slots are uniformly formed through the inner wall of the cavity of the storage plate, and a plurality of sets of symmetric storage plates and adapter frames are vertically and parallelly arranged on the wall of the shaft.

[0010] As a preferred embodiment of the utility model, the rotating structure further comprises a butt joint block, a butt joint groove, a lock groove, a limiting groove, a sliding plate, a limiting block and a lock block, the butt joint block is fixedly connected to the arc surface of the rotating shaft, the butt joint groove is opened on the front wall surface of the rotating shaft, the lock groove is opened on the wall surface of the rotating shaft in each butt joint groove, the limiting groove is symmetrically opened on the two side wall surfaces of the butt joint frame, the sliding plate is slidingly connected in the opening at the top of the butt joint frame, the limiting block is symmetrically fixedly connected to the two side wall surfaces of the sliding plate, and the lock block is fixedly connected to the bottom of the rear wall surface of the sliding plate.

[0011] As a preferred embodiment of the utility model, the butt joint groove is a rectangular opening, the lock groove is a cylindrical groove, the lock groove can be adapted to the size of the lock block, the sliding plate is a rectangular plate, and the symmetric limiting grooves can be adapted to the vertical sliding of the symmetric limiting blocks.

[0012] As a preferred embodiment of the utility model, the rotating connection further comprises an adjusting rod, a push rod, a connecting column and a universal wheel, the adjusting rod is rotatably connected in the cavity of each storage plate, the push rod is threadedly connected to the arc surface of the adjusting rod, the connecting column is fixedly connected to the rear wall surface of each upper and lower adjacent storage plate, and the universal wheel is symmetrically rotatably connected to the bottom of each storage plate at the lowermost position.

[0013] As a preferred embodiment of the utility model, the adjusting rod is in the shape of a worm, the push rod is in the shape of a rectangular rod, the adjusting rod can pass through the wall surface of the push rod and be threadedly connected to the push rod, and the connecting column is in the shape of a rectangular rod.

[0014] As a preferred embodiment of the utility model, the front wall surface of the drying chamber is provided with a slope structure at the bottom, the slope structure comprises a guide slope, a guide rod and a guide groove, the guide slope is fixedly connected to the bottom of the front wall surface of the drying chamber, the guide slope is in the shape of a right-angled triangular block, the guide rod is symmetrically fixedly connected to the inclined surface of the guide slope, and the guide groove is symmetrically opened on the inclined surface of the guide rod.

[0015] As a preferred embodiment of the utility model, the guide rod is in the shape of a rectangular rod, the guide groove can be adapted to the size of the bottom of the universal wheel, and the symmetric guide grooves are located between the symmetric guide rods.

[0016] Compared with the prior art, the utility model has the following beneficial effects:

[0017] 1. Through the setting of the rotating structure, the instant noodles can be uniformly dried by the rotating placing plate, the rotating structure can prevent the noodles from loosening due to collision during rotation by setting the push rod, and the fan can blow upward during rotation to increase the flow rate of the hot air in the drying chamber cavity and increase the contact area of each noodle, thereby improving the drying effect of the device.

[0018] 2. By setting the slope structure, the problem of side slipping of the universal wheel when moving on the guide slope is effectively prevented by guiding the universal wheel through the guide slot and guide rod, so that the universal wheel moves more stably.

[0019] The specific embodiments of the present application will be further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0020] In the drawings:

[0021] Figure 1 is a perspective view of the present application;

[0022] Figure 2 is a perspective view of the structure inside the drying chamber of the present application;

[0023] Figure 3 is an exploded view of the bottom plate and fan of the present application;

[0024] Figure 4 is an exploded view of the rotating shaft and butt joint frame of the present application;

[0025] Figure 5 is an exploded view of the placing plate wall structure of the present application.

[0026] In the drawings: 20, drying chamber; 21, hot air blower; 22, bottom plate; 23, guide slope; 24, guide rod; 25, guide slot; 30, fan; 31, air permeable slot; 32, rotating shaft; 33, butt joint block; 34, butt joint slot; 35, lock slot; 40, butt joint frame; 41, limit slot; 42, sliding plate; 43, limit block; 44, lock block; 45, placing plate; 46, adjusting rod; 47, push rod; 48, connecting column; 49, universal wheel. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments will be described clearly and completely below with reference to the drawings in the embodiments of the present application, and the following embodiments are used to illustrate the present application.

[0028] As Figure 1 and Figure 2As shown in the figure, a non-fried instant noodles hot air drying device, comprising: a drying chamber 20, the drying chamber 20 is a hollow heat insulation box with a front wall surface that can be opened by a hinge, a hot air machine 21 is installed on the top of the drying chamber 20, two sides of the hot air machine 21 are respectively installed with a pipeline that can be connected with the cavity of the drying chamber 20, a supporting leg is installed on the bottom of the drying chamber 20, a motor is also installed on the bottom of the drying chamber 20, a bottom plate 22 is fixedly connected in the cavity of the drying chamber 20, the bottom plate 22 is a rectangular plate, the motor and the hot air machine 21 are both electrically connected with the corresponding power supply, which is the existing technology, so it is not described here.

[0029] As shown in the figure, Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , a rotating structure, the rotating structure is arranged in the cavity of the drying chamber 20 for rotating when drying the biscuits, the rotating structure comprises: a fan 30, a ventilation groove 31, a rotating shaft 32, an adapter frame 40 and a storage plate 45, the fan 30 is rotatably connected to the bottom of the cavity of the drying chamber 20, the motor at the bottom of the drying chamber 20 can drive the fan 30 to rotate, the ventilation groove 31 is formed through the top wall surface of the bottom plate 22, the top of the fan 30 can be in contact with the bottom of the bottom plate 22, the rotating shaft 32 is fixedly connected to the top of the fan 30, the rotating shaft 32 can pass through the center of the bottom plate 22, the adapter frame 40 is clamped to the wall surface of the rotating shaft 32, the storage plate 45 is fixedly connected to the wall surface of the adapter frame 40, and the top of the storage plate 45 can place the biscuits.

[0030] As shown in the figure, Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the fan 30 is in the shape of a fan blade, the rotating shaft 32 is in the shape of a cylinder, the air-permeable groove 31 is in the shape of a rectangular groove, the top of the bottom plate 22 is provided with a plurality of the same air-permeable grooves 31 in an annular array, the docking frame 40 is in the shape of a concave block, the two side top rear wall surfaces of the docking frame 40 are respectively fixedly connected with a rectangular rod, the object placing plate 45 is in the shape of a hollow rectangular box with an open top, the object placing plate 45 is symmetrically arranged on the two sides of the docking frame 40, a plurality of rectangular grooves are uniformly and perpendicularly provided in the cavity inner wall surface of the object placing plate 45, the wall surface of the rotating shaft 32 is provided with a plurality of groups of symmetric object placing plates 45 and docking frames 40 arranged in parallel, the rotating structure further comprises a docking block 33, a docking groove 34, a locking groove 35, a limiting groove 41, a sliding plate 42, a limiting block 43 and a locking block 44, the docking block 33 is fixedly connected to the curved surface of the rotating shaft 32, the docking groove 34 is provided in the front wall surface of the rotating shaft 32, the locking groove 35 is provided in the wall surface of the rotating shaft 32 in each docking groove 34, the limiting groove 41 is symmetrically provided in the two side wall surfaces of the docking frame 40, the sliding plate 42 is slidingly connected in the top opening of the docking frame 40, the limiting block 43 is symmetrically fixedly connected to the two side wall surfaces of the sliding plate 42, and the locking block 44 is fixedly connected to the bottom of the rear wall surface of the sliding plate 42. The number of the docking block 33, the docking groove 34 and the locking groove 35 is consistent with the number of each group of symmetric object placing plates 45, the docking groove 34 is in the shape of a rectangular opening, the locking groove 35 is in the shape of a cylindrical groove, the locking groove 35 can be adapted to the size of the locking block 44, the sliding plate 42 is in the shape of a rectangular plate, the symmetric limiting grooves 41 can be adapted to the vertical sliding of the symmetric limiting blocks 43, the wall surface of each docking frame 40 is respectively provided with the same limiting groove 41, sliding plate 42, limiting block 43 and locking block 44, the rotating connection further comprises an adjusting rod 46, a push rod 47, a connecting column 48 and a universal wheel 49, the adjusting rod 46 is rotatably connected in the cavity of each object placing plate 45, the push rod 47 is threadedly connected to the curved surface of the adjusting rod 46, the connecting column 48 is fixedly connected to the rear wall surface of each upper and lower adjacent object placing plate 45, and the universal wheel 49 is rotatably connected to the bottom of each object placing plate 45 at the lowermost side. The adjusting rod 46 is in the shape of a worm, the push rod 47 is in the shape of a rectangular rod, the adjusting rod 46 can pass through the wall surface of the push rod 47 and be threadedly connected with the push rod 47, and the connecting column 48 is in the shape of a rectangular rod.

[0031] In specific use, the required dry noodles are placed in the cavity of each storage plate 45, and then the adjusting rod 46 is rotated to control the push rod 47 to move in the cavity of the storage plate 45, and the push rod 47 is attached to the wall of the noodles. Then, all the storage plates 45 are pushed to the top of the bottom plate 22 in the cavity of the drying chamber 20, and then the symmetric rectangular rods on the rear wall of the docking frame 40 are clamped and aligned at the docking groove 34 on the wall of the rotating shaft 32, and the sliding plate 42 is slid into the corresponding docking groove 34 and the locking block 44 is inserted into the locking slot 35 to fix the position of the docking frame 40. Each docking frame 40 is connected to the flush docking groove 34 in this way, and after the storage plate 45 and the wall of the rotating shaft 32 are fixed, the front wall of the drying chamber 20 is closed and the power is turned on. When the power is turned on, the motor drives the fan 30 to rotate slowly, and the hot air machine 21 can generate hot air and guide it into the cavity of the drying chamber 20 through one side of the pipeline, and the hot air machine 21 can suck the air in the cavity of the drying chamber 20 through the other side of the pipeline. When the fan 30 rotates, it will generate wind upward and drive the rotating shaft 32 to rotate synchronously, and when the rotating shaft 32 rotates, it will drive all the storage plates 45 to rotate around the rotating shaft 32 through the docking frame 40. When the storage plate 45 rotates, the universal wheel 49 will roll on the top of the bottom plate 22. The fan 30 generates wind that can pass upward from the rectangular slot at the bottom of the storage plate 45. After the noodles in the cavity of the storage plate 45 are dried, the power is turned off and the front wall of the drying chamber 20 is opened. Then, the sliding plate 42 at each rotating shaft 32 is pushed upward to separate the locking block 44 from the locking slot 35 to unlock the position of the storage plate 45. Then, the unlocked storage plate 45 is pushed out of the cavity of the drying chamber 20 and the next batch of required dry noodles is replaced.

[0032] As described above, by setting the rotating structure, the noodles can be evenly dried by the rotating storage plate 45, and the rotating structure can prevent the noodles from loosening due to collision during rotation by setting the push rod 47. The fan 30 can generate upward wind during rotation, thereby increasing the flow rate of hot air in the cavity of the drying chamber 20 and increasing the contact area of each noodle, thereby improving the drying effect of the device.

[0033] As shown in Figure 1 and Figure 2 , the front wall of the drying chamber 20 is provided with a slope structure, which includes a guide slope 23, a guide rod 24 and a guide groove 25. The guide slope 23 is fixedly connected to the bottom of the front wall of the drying chamber 20, and the guide slope 23 is in the shape of a right triangle. The guide rod 24 is symmetrically fixedly connected to the inclined surface of the guide slope 23, and the guide groove 25 is symmetrically provided on the inclined surface of the guide rod 24. The guide rod 24 is in the shape of a rectangle, and the guide groove 25 can fit the size of the bottom of the universal wheel 49. The symmetric guide grooves 25 are located between the symmetric guide rods 24.

[0034] In specific use, after the biscuits in the cavities of the placing plates 45 are dried, the universal wheels 49 are rolled along the guide grooves 25 downward and can slide along the guide grooves 25 into the cavity of the drying chamber 20;

[0035] In conclusion, the problem that the universal wheels 49 slide sideways when moving along the slope of the guide slope 23 is effectively prevented by guiding the universal wheels 49 along the guide grooves 25 and the guide rods 24, so that the universal wheels 49 move more stably.

[0036] Working principle: the biscuits to be dried are placed in the cavities of the placing plates 45, then the adjusting rods 46 are rotated to control the push rods 47 to move in the cavities of the placing plates 45, and the push rods 47 are attached to the walls of the biscuits, then all the placing plates 45 are pushed to the top of the bottom plate 22 in the cavity of the drying chamber 20 by the universal wheels 49, then the symmetrical rectangular rods on the rear wall of the abutting frame 40 are clamped and aligned at the abutting grooves 34 on the wall of the rotating shaft 32, the sliding plates 42 are slid into the corresponding abutting grooves 34 and drive the locking blocks 44 to be inserted into the locking grooves 35 to fix the position of the abutting frame 40, each abutting frame 40 is abutted with the flush abutting grooves 34 in this way, after the placing plates 45 and the wall of the rotating shaft 32 are fixed, the front wall of the drying chamber 20 is closed and the power supply is started, when the power supply is started, the motor drives the fan 30 to rotate slowly, and the hot air machine 21 can generate hot air and guide the hot air into the cavity of the drying chamber 20 through one side of the pipeline, and the hot air machine 21 can suck the air in the cavity of the drying chamber 20 through the other side of the pipeline, when the fan 30 rotates, the wind blowing upward is generated and the rotating shaft 32 rotates synchronously, when the rotating shaft 32 rotates, all the placing plates 45 are rotated with the rotating shaft 32 as the center through the abutting frame 40, when the placing plates 45 rotate, the universal wheels 49 roll on the top of the bottom plate 22, and the wind generated by the fan 30 can pass through the rectangular grooves on the bottom of the placing plates 45 upward.

[0037] It can be understood that the present application is described by some embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the present application. In addition, under the guidance of the present application, these features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the present application. Therefore, the present application is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the scope of protection of the present application.

Claims

1. A non-fried instant noodle hot-air drying apparatus, characterized by, The utility model relates to a kind of face biscuit drying machine, including: Drying chamber (20), drying chamber (20) is hollow heat-insulated box, the top of drying chamber (20) is equipped with hot air machine (21), the two sides of hot air machine (21) are equipped with pipeline respectively, the bottom of drying chamber (20) is equipped with support leg, the bottom of drying chamber (20) is also equipped with motor, the cavity of drying chamber (20) is also fixedly connected with bottom plate (22), bottom plate (22) is rectangular plate; Rotating structure, rotating structure is arranged in the cavity of drying chamber (20) for rotating when driving face biscuit to dry, rotating structure includes: fan (30), air-permeable groove (31), rotating shaft (32), butt joint frame (40) and storage plate (45), fan (30) is rotatably connected in the cavity of drying chamber (20) bottom, the motor of drying chamber (20) bottom can drive fan (30) rotation, air-permeable groove (31) is passed through and is equipped on the top wall surface of bottom plate (22), the top of fan (30) can be in contact with bottom plate (22) bottom, rotating shaft (32) is fixedly connected at the top of fan (30), rotating shaft (32) can pass through from the center of bottom plate (22), butt joint frame (40) is connected in the wall surface of rotating shaft (32), storage plate (45) is fixedly connected in the wall surface of butt joint frame (40), the top of storage plate (45) can place face biscuit.

2. The hot-air drying device for non-fried instant noodles according to claim 1, characterized in that, The fan (30) is leaf-shaped, the rotating shaft (32) is cylindrical, the air-permeable groove (31) is rectangular slot, a plurality of same air-permeable grooves (31) are arranged in the top of bottom plate (22) in annular array, the butt joint frame (40) is concave-shaped block, a rectangular rod is fixedly connected to the top rear wall surface of both sides of butt joint frame (40), the storage plate (45) is hollow rectangular box with open top, the storage plate (45) is symmetrically arranged on both sides of butt joint frame (40), a plurality of rectangular slots are uniformly passed through and are equipped in the cavity wall surface of storage plate (45), the wall surface of rotating shaft (32) is vertically parallel to a plurality of symmetric storage plates (45) and butt joint frames (40).

3. The hot air drying device for non-fried instant noodles according to claim 1, characterized in that, The rotating structure further includes butt joint block (33), butt joint groove (34), lock groove (35), limit groove (41), sliding plate (42), limit block (43) and lock block (44), butt joint block (33) is fixedly connected to the cambered surface of rotating shaft (32), butt joint groove (34) is equipped on the front wall surface of rotating shaft (32), lock groove (35) is equipped on the wall surface of rotating shaft (32) in each butt joint groove (34), limit groove (41) is symmetrically equipped on the wall surface of both sides of butt joint frame (40), sliding plate (42) is slidingly connected in the top opening of butt joint frame (40), limit block (43) is symmetrically fixedly connected to the wall surface of both sides of sliding plate (42), lock block (44) is fixedly connected to the bottom of rear wall surface of sliding plate (42), the number of butt joint block (33), butt joint groove (34) and lock groove (35) is consistent with the number of each symmetric storage plate (45).

4. The hot-air drying device for non-fried instant noodles according to claim 3, characterized in that, The butt joint groove (34) is a rectangular opening, the lock groove (35) is a cylindrical groove, the lock groove (35) can be matched with the size of the lock block (44), the sliding plate (42) is a rectangular plate, the symmetrical limiting groove (41) can be matched with the vertical sliding of the symmetrical limiting block (43), and the wall surface of each butt joint frame (40) is respectively provided with the same limiting groove (41), sliding plate (42), limiting block (43) and lock block (44).

5. The hot-air drying device for non-fried instant noodles according to claim 3, characterized in that, The rotating connection further comprises an adjusting rod (46), a push rod (47), a connecting column (48) and a universal wheel (49), the adjusting rod (46) is rotatably connected in the cavity of each storage plate (45), the push rod (47) is threadedly connected on the arc surface of the adjusting rod (46), the connecting column (48) is fixedly connected on the rear wall surface of each upper and lower adjacent storage plate (45), and the universal wheel (49) is rotatably connected on the bottom of each storage plate (45) at the lowermost part.

6. The hot-air drying device for non-fried instant noodles according to claim 5, wherein The adjusting rod (46) is in the shape of a worm, the push rod (47) is in the shape of a rectangular rod, the adjusting rod (46) can pass through the wall surface of the push rod (47) and be threadedly connected with the push rod (47), and the connecting column (48) is in the shape of a rectangular rod.

7. The hot-air drying device for non-fried instant noodles according to claim 1, characterized in that, The front wall surface of the drying chamber (20) is provided with a slope structure at the bottom, the slope structure comprises a guide slope (23), a guide rod (24) and a guide groove (25), the guide slope (23) is fixedly connected to the bottom of the front wall surface of the drying chamber (20), the guide slope (23) is in the shape of a right triangle, the guide rod (24) is fixedly connected to the inclined surface of the guide slope (23) in a symmetrical manner, and the guide groove (25) is symmetrically formed in the inclined surface of the guide rod (24).

8. The hot-air drying device for non-fried instant noodles according to claim 7, characterized in that, The guide rod (24) is in the shape of a rectangular rod, the guide groove (25) can be matched with the size of the bottom of the universal wheel (49), and the symmetrical guide grooves (25) are located between the symmetrical guide rods (24).