Double-body rice huller convenient to operate

By arranging a slide rail assembly and a limit assembly in the double-body rice huller, the two control panels are brought closer together, the problem of inconvenient operation is solved, and the operating efficiency and equipment stability are improved.

CN223312110UActive Publication Date: 2025-09-09ZHEJIANG LIANGGONG MASCH TECH CO LTD
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Patent Information

Application Number
CN202422495009.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-09-09
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

The distance between the two control panels of the double-body rice huller is large, which makes operation inconvenient and requires the operator to walk back and forth.

Method used

A detachable connecting shell is provided in the double-body rice huller, and slide rail assemblies are respectively provided on the front side of the rice huller body and the front side of the connecting shell. A control panel is installed on the sliding shell. The two control panels are brought close together through the slide rail assembly and the limit assembly, and are buffered by a rubber buffer sheet.

Benefits of technology

The two control panels are brought close together, making it easier for operators to operate simultaneously, improving operational efficiency, reducing back-and-forth movement, and enhancing the stability and smoothness of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-body rice huller convenient to operate. The double-body rice huller comprises two symmetrically-arranged rice huller bodies and a connecting shell detachably arranged between the two rice huller bodies, and a control panel is arranged in the middle of the front side of each rice huller body. The double-body rice huller has the following advantages and effects that after the double-body rice huller is installed, the first sliding rail assembly is arranged on the front sides of the two rice huller bodies, and the second sliding rail assembly corresponding to the first sliding rail assembly is arranged on the front side of the connecting shell, so that the control panel can slide to the second sliding rail assembly from the first sliding rail assembly after sliding; therefore, the two sliding shells abut against each other when moving to the limit state in the direction close to the connecting shell, the two control panels are close to each other, and an operator can operate the two control panels conveniently.
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Description

Technical Field

[0001] The utility model relates to the technical field of rice hullers, in particular to a double-body rice huller which is easy to operate. Background Art

[0002] Rice processing is generally divided into cleaning, hulling, milling, grading, and finished product processing. Hulling is a grain processing equipment that removes the husks from the rice to make brown rice.

[0003] The twin-huller consists of two symmetrical hulling bodies and a connecting shell positioned between them. This symmetrical arrangement of the two hulling bodies improves mechanical stability during operation. Control panels are located on the front of each huller body. However, because the twin-huller consists of two hulling bodies and a connecting shell, the distance between the two control panels on the two hullers is large, forcing the operator to walk back and forth between them to operate both control panels, which is inconvenient. Utility Model Content

[0004] The utility model aims to provide a double-body rice huller which is easy to operate and has the effect of convenient operation.

[0005] The above technical purpose of the present invention is achieved through the following technical solutions: a double-body rice husker that is easy to operate, comprising two symmetrically arranged rice husker bodies and a connecting shell that is detachably arranged between the two rice husker bodies, a control panel is provided in the middle of the front side of the rice husker body, a first slide rail assembly is provided in the middle of the front side of the two rice husker bodies, a second slide rail assembly connecting the two first slide rail assemblies is provided on the front side of the connecting shell, a sliding shell that can be moved to the second slide rail assembly is slidably connected to the first slide rail assembly, the control panel is provided on the sliding shell, and a limit assembly for limiting or unlocking the movement of the sliding shell is provided between the sliding shell and the rice husker body, and when the sliding shell moves to the limit state in the direction close to the connecting shell, the two sliding shells touch each other.

[0006] By adopting the above technical solution, after the double-body rice huller is installed, a first slide rail assembly is set on the front side of the two rice huller bodies, and a second slide rail assembly corresponding to the first slide rail assembly is set on the front side of the connecting shell, so that the control panel can slide from the first slide rail assembly to the second slide rail assembly after sliding, thereby achieving the two sliding shells moving toward the direction close to the connecting shell to the extreme state and colliding with each other, and the two control panels are close to each other, which is convenient for the operator to operate the two control panels.

[0007] The utility model is further configured as follows: the first slide rail assembly includes a first upper slide rail detachably connected to the front side of the rice husker body by bolts, and a first lower slide rail detachably connected to the front side of the rice husker body by bolts; the second slide rail assembly includes a second upper slide rail detachably connected to the front side of the rice husker body by bolts, and a second lower slide rail detachably connected to the front side of the rice husker body by bolts; the cross-sections of the first upper slide rail, the first lower slide rail, the second upper slide rail, and the second lower rail are all "convex" shaped, the first upper slide rail corresponds to the second upper slide rail, the first lower rail corresponds to the second lower rail, and the rear side of the sliding shell is provided with a laterally inserted first slide rail assembly or the second slide rail assembly.

[0008] By adopting the above technical solution, the first slide rail assembly includes a first upper slide rail and a first lower slide rail, and the second slide rail assembly includes a second upper slide rail and a second lower slide rail, and the cross-sections of the first upper slide rail, the first lower slide rail, the second upper slide rail, and the second lower slide rail are all "convex" shaped, and a sliding groove is provided on the rear side of the sliding shell, which is laterally inserted into the first slide rail assembly or the second slide rail assembly, thereby realizing the sliding connection of the sliding shell and enabling the sliding shell to slide from the first slide rail assembly to the second slide rail assembly.

[0009] The utility model is further configured as follows: the limiting assembly includes two locking knob bolts threadedly connected to the two ends of the sliding shell, the sliding shell is provided with a recessed groove corresponding to the locking knob bolts, the rice hulling machine body is provided with a first limiting hole for the two locking knob bolts to be embedded in the first slide rail assembly of the sliding shell, and the front side of the rice hulling machine body is provided with a second limiting hole for the two second locking knob bolts to be embedded in when the slide rail shell moves toward the direction close to the connecting shell to the limit state.

[0010] By adopting the above technical solution, when the sliding housing moves toward the connecting housing to the limit state, the two second locking knob bolts are embedded in the second limit hole, thereby fixing the sliding housing, so that the two sliding housings conflict with each other in the limit state.

[0011] The utility model is further configured as follows: a rubber buffer sheet is embedded in one end of the two sliding housings that are close to each other.

[0012] By adopting the above technical solution and providing the rubber buffer sheet, the sliding housings can be buffered during the collision process when moving in the direction of approaching each other.

[0013] The utility model is further configured as follows: a first notch is provided at one end of the two first upper slide rails close to each other, and first embedded blocks embedded in the two first notches are provided at both ends of the two second upper slide rails; a second notch is provided at one end of the two first lower slide rails close to each other, and second embedded blocks embedded in the two second notches are provided at both ends of the two second lower slide rails.

[0014] By adopting the above technical solution, by setting the first notch and the first embedded block, and by setting the second notch and the second embedded block, the connection smoothness between the first slide rail assembly and the second slide rail assembly is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a structural diagram of the utility model;

[0016] Figure 2 yes Figure 1 A partial enlarged view of point A in the figure.

[0017] Figure markings: 1. Rice hulling machine body; 11. First limiting hole; 12. Second limiting hole; 2. Connecting shell; 3. Control panel; 4. First slide rail assembly; 41. First upper slide rail; 411. First notch; 42. First lower slide rail; 421. Second notch; 5. Second slide rail assembly; 51. Second upper slide rail; 511. First embedded block; 52. Second lower slide rail; 521. Second embedded block; 6. Sliding shell; 61. Rubber buffer sheet; 7. Limiting assembly; 71. Locking knob bolt. DETAILED DESCRIPTION

[0018] The present invention will be described in further detail below with reference to the accompanying drawings.

[0019] Embodiment: A double-body rice huller that is easy to operate, such as Figure 1 As shown, it includes two symmetrically arranged rice hulling bodies 1, a connecting shell 2 detachably arranged between the two rice hulling bodies 1, and a control panel 3 is arranged in the middle of the front side of the rice hulling body 1.

[0020] like Figure 1 and Figure 2 As shown, a first slide rail assembly 4 is provided in the middle of the front side of the two rice hulling bodies 1, and a second slide rail assembly 5 is provided on the front side of the connecting housing 2, connecting the two first slide rail assemblies 4. A sliding housing 6 that can be moved to the second slide rail assembly 5 is slidably connected to the first slide rail assembly 4. The control panel 3 is provided on the sliding housing 6. A limit assembly 7 is provided between the sliding housing 6 and the rice hulling body 1 to limit or unlock the movement of the sliding housing 6. When the sliding housing 6 moves to the extreme state in the direction close to the connecting housing 2, the two sliding housings 6 touch each other. At the same time, a rubber buffer sheet 61 is embedded in the end of the two sliding housings 6 that is close to each other. The part of the signal line connecting the control panel 3 that passes through the rice hulling body 1 can move with the movement of the sliding housing 6.

[0021] like Figure 1 and Figure 2As shown, the first slide rail assembly 4 includes a first upper slide rail 41 detachably connected to the front side of the rice husker body 1 by bolts, and a first lower slide rail 42 detachably connected to the front side of the rice husker body 1 by bolts; the second slide rail assembly 5 includes a second upper slide rail 51 detachably connected to the front side of the rice husker by bolts, and a second lower slide rail 52 detachably connected to the front side of the rice husker body 1 by bolts; the cross-sections of the first upper slide rail 41, the first lower slide rail 42, the second upper slide rail 51, and the second lower slide rail 52 are all "convex" shaped, the first upper slide rail 41 and the second upper slide rail 51 correspond to each other, and the first lower slide rail 42 and the second lower slide rail 52 correspond to each other, and the rear side of the sliding housing 6 is provided with a horizontal insertion on the first slide rail assembly 4 or the second slide rail assembly 5.

[0022] like Figure 1 and Figure 2 As shown, at the same time, a first notch 411 is provided at one end of the two first upper slide rails 41 that are close to each other, and a first embedded block 511 embedded in the two first notches 411 is provided at both ends of the two second upper slide rails 51; a second notch 421 is provided at one end of the two first lower slide rails 42 that are close to each other, and a second embedded block 521 embedded in the two second notches 421 is provided at both ends of the two second lower slide rails 52.

[0023] like Figure 1 and Figure 2 As shown, the limiting assembly 7 includes two locking knob bolts 71 threadedly connected to the two ends of the sliding shell 6, and the sliding shell 6 is provided with a recessed groove corresponding to the locking knob bolt 71. The rice hulling machine body 1 is provided with a first limiting hole 11 for the two locking knob bolts 71 to be embedded in the first slide rail assembly 4 when the sliding shell 6 is in the first slide rail assembly 4, and the front side of the rice hulling machine body 1 is provided with a second limiting hole 12 for the two second locking knob bolts 71 to be embedded in when the slide rail shell moves toward the limit state close to the connecting shell 2.

[0024] Implementation effect: After the double-body rice huller is installed, a first slide rail assembly 4 is set on the front side of the two rice huller bodies 1, and a second slide rail assembly 5 corresponding to the first slide rail assembly 4 is set on the front side of the connecting shell 2, so that the control panel 3 can slide from the first slide rail assembly 4 to the second slide rail assembly 5 after sliding, so that the two sliding shells 6 collide with each other when they move toward the direction close to the connecting shell 2 to the extreme state, and the two control panels 3 are close to each other, which is convenient for the operator to operate the two control panels 3.

[0025] The first slide rail assembly 4 includes a first upper slide rail 41 and a first lower slide rail 42, and the second slide rail assembly 5 includes a second upper slide rail 51 and a second lower slide rail 52. The cross-sections of the first upper slide rail 41, the first lower slide rail 42, the second upper slide rail 51, and the second lower slide rail 52 are all in a "convex" shape. A sliding groove is provided on the rear side of the sliding housing 6, which is laterally inserted into the first slide rail assembly 4 or the second slide rail assembly 5, thereby realizing the sliding connection of the sliding housing 6 and enabling the sliding housing 6 to slide from the first slide rail assembly 4 to the second slide rail assembly 5.

[0026] When the sliding housing 6 moves toward the connection housing 2 to its limit position, the two second locking knob bolts 71 engage with the second limiting holes 12, thereby securing the sliding housing 6 and causing the two sliding housings 6 to collide in the limit position. The provision of the rubber buffer sheet 61 cushions the collision during the movement of the sliding housings 6 toward each other. The provision of the first notch 411, the first insert 511, and the second notch 421, the second insert 521, improves the smoothness of the connection between the first slide rail assembly 4 and the second slide rail assembly 5.

[0027] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed. However, as long as they are within the scope of the claims of the present invention, they are protected by patent law.

Claims

1. A double-body rice huller that is easy to operate, comprising two symmetrically arranged rice hulling bodies (1), a connecting shell (2) detachably arranged between the two rice hulling bodies (1), a control panel (3) being arranged in the middle of the front side of the rice hulling body (1), and characterized in that: A first slide rail assembly (4) is provided in the middle of the front side of the two rice hulling machine bodies (1); a second slide rail assembly (5) connecting the two first slide rail assemblies (4) is provided on the front side of the connecting shell (2); a sliding shell (6) that can be moved to the second slide rail assembly (5) is slidably connected to the first slide rail assembly (4); the control panel (3) is provided on the sliding shell (6); a limit assembly (7) for limiting or unlocking the movement of the sliding shell (6) is provided between the sliding shell (6) and the rice hulling machine body (1); when the sliding shell (6) moves to a limit state in a direction close to the connecting shell (2), the two sliding shells (6) touch each other.

2. The double-body rice huller that is easy to operate according to claim 1, characterized in that: The first slide rail assembly (4) comprises a first upper slide rail (41) detachably connected to the front side of the rice husker body (1) by bolts, and a first lower slide rail (42) detachably connected to the front side of the rice husker body (1) by bolts; the second slide rail assembly (5) comprises a second upper slide rail (51) detachably connected to the front side of the rice husker body (1) by bolts, and a second lower slide rail (52) detachably connected to the front side of the rice husker body (1) by bolts; the cross-sections of the first upper slide rail (41), the first lower slide rail (42), the second upper slide rail (51), and the second lower slide rail (52) are all in a "convex" shape; the first upper slide rail (41) corresponds to the second upper slide rail (51), and the first lower slide rail (42) corresponds to the second lower slide rail (52); and the rear side of the sliding housing (6) is provided with a mechanism for transversely plugging into the first slide rail assembly (4) or the second slide rail assembly (5).

3. The double-body rice huller that is easy to operate according to claim 2, characterized in that: The limiting assembly (7) includes two locking knob bolts (71) threadedly connected to the two ends of the sliding housing (6); the sliding housing (6) is provided with a recessed groove corresponding to the locking knob bolts (71); the rice hulling machine body (1) is provided with a first limiting hole (11) for the two locking knob bolts (71) to be embedded in the sliding housing (6) on the first slide rail assembly (4); and the front side of the rice hulling machine body (1) is provided with a second limiting hole (12) for the two second locking knob bolts (71) to be embedded in when the slide rail housing moves toward the direction close to the connecting housing (2) to the limit state.

4. The double-body rice huller easy to operate according to claim 3, characterized in that: A rubber buffer sheet (61) is embedded in one end of the two sliding housings (6) that are close to each other.

5. The double-body rice huller that is easy to operate according to claim 2, characterized in that: A first notch (411) is provided at one end of the two first upper slide rails (41) close to each other, and first embedded blocks (511) embedded in the two first notches (411) are provided at both ends of the two second upper slide rails (51); a second notch (421) is provided at one end of the two first lower slide rails (42) close to each other, and second embedded blocks (521) embedded in the two second notches (421) are provided at both ends of the two second lower slide rails (52).