Red bayberry kernel removing and rotary cutting device
By designing a rotary cutting device for pitting bayberries, the problems of low efficiency, inconsistent quality, and poor equipment adaptability of traditional manual pitting have been solved. This device achieves efficient pitting and automatic separation of pulp and pit, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520325296.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Traditional methods of pitting bayberries rely on manual labor, which is inefficient, difficult to meet the needs of large-scale production, and results in inconsistent quality. Manually separating the pulp from the pit is tedious and prone to cross-contamination. Existing equipment has limited functionality and poor adaptability.
A depitting and rotary cutting device for bayberries was designed, comprising a depitting section and a collection section. By utilizing components such as a depitting motor, a depitting actuating ring, and a depitting groove wheel to work together, the device achieves efficient depitting of bayberries and automatic separation and collection of the pulp from the pit. The position of the rotary cutting blade can be adjusted by a depitting adjustment knob to adapt to different characteristics of bayberries.
It improves pitting efficiency, realizes automatic separation and separate collection of pulp and pit, reduces manual sorting workload, ensures pitting quality and equipment flexibility, and adapts to the processing needs of different types of bayberries.
Smart Images

Figure CN223844894U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the processing technology field of waxberry, specifically is a waxberry kernel removing rotary cutting device. BACKGROUND
[0002] The traditional waxberry kernel removing mode mainly relies on manual operation, which not only consumes a large amount of labor cost, but also is extremely low in efficiency, and the manual kernel removing speed is slow, so it is difficult to meet the demand of large-scale production, and in the market environment where time is benefit, the development scale of the waxberry processing industry is greatly limited; at the same time, in the manual kernel removing process, due to individual operation difference, it is difficult to ensure the quality consistency of each waxberry kernel removal, and the kernel removal is not thorough or the pulp is easily damaged, which directly affects the quality of the waxberry processing product and reduces the competitiveness of the product in the market; in the aspect of pulp and kernel separation and collection, there is a lack of effective automation means in the past, and manual separation of pulp and kernel is not only tedious, but also easy to cause cross contamination and affect product hygiene quality; for processing enterprises, the additional manual sorting link increases the production cost and reduces the overall production efficiency; some existing waxberry kernel removing equipment is often single in function and lacks flexibility, and cannot adjust the corresponding parameters according to waxberries of different varieties and sizes, so that the adaptability to diversified waxberry raw materials is poor in the actual processing process, further limiting the application range and processing effect of the equipment.
[0003] Based on the above background, it has important practical significance to develop a high-efficiency, automatic pulp and kernel separation and flexible adjusting waxberry kernel removing rotary cutting device, which can effectively solve many problems faced by the current waxberry processing industry and promote the upgrading and development of the industry. CONTENT OF THE UTILITY MODEL
[0004] In view of the above technical problems, the utility model provides the following technical scheme; a waxberry kernel removing rotary cutting device, which comprises a supporting part, a kernel removing part for removing the inner kernel, and a collecting part for collecting the inner kernel rotatably arranged in the kernel removing part; the kernel removing part comprises a kernel removing sliding plate, a kernel removing rotary cutting motor adjustably arranged on the kernel removing sliding plate through a kernel removing adjusting knob, the kernel removing sliding plate is slidingly arranged on the supporting part, a kernel removing connecting rod is rotatably arranged on the kernel removing sliding plate, the other end of the kernel removing connecting rod is rotatably arranged on a kernel removing fixed disc, a kernel removing driving ring is fixedly arranged on the kernel removing fixed disc, the kernel removing driving ring is fixedly arranged on the output shaft of a kernel removing motor, the kernel removing driving ring is slidingly matched with a kernel removing grooved wheel, a kernel removing feeding roller is fixedly arranged on the kernel removing grooved wheel, and a plurality of conical feeding holes are arranged on the kernel removing feeding roller.
[0005] Further, the feeding hole penetrates the inner wall of the kernel removing feeding roller.
[0006] Further, the de-nucleation feeding roller is rotationally arranged with a collecting part, the collecting part comprises a collecting screw rotationally arranged in the de-nucleation feeding roller, and the collecting screw is fixedly arranged on an output shaft of a collecting motor.
[0007] Further, the de-nucleation feeding roller is rotationally arranged on a supporting part, the supporting part comprises a supporting shell rotationally matched with the de-nucleation feeding roller, and the supporting shell is fixedly arranged on a supporting bottom plate.
[0008] Further, the supporting bottom plate is slidably arranged with a supporting collecting box one and a supporting collecting box two, and the supporting collecting box one is arranged at the bottom of the supporting shell.
[0009] Further, the de-nucleation feeding roller is rotationally arranged on a supporting part, the supporting part comprises a supporting shell rotationally matched with the de-nucleation feeding roller, and the supporting shell is fixedly arranged on a supporting bottom plate.
[0010] The beneficial effects of the present application compared with the prior art are: 1. The present application can efficiently de-nucleate; through the cooperative operation of the de-nucleation motor, the de-nucleation actuating ring, the de-nucleation groove wheel and other components, the intermittent rotation of the de-nucleation feeding roller is realized, so that the waxberries can fall into the feeding holes one by one and be accurately positioned below the de-nucleation rotary cutting motor, and the rotary cutting blades of the de-nucleation rotary cutting motor are rotated at high speed, so that the waxberries are quickly de-nucleated and rotary cut, the de-nucleation efficiency is greatly improved, and compared with manual de-nucleation, a large number of waxberries can be processed in a short time.
[0011] 2. The present application can separate and collect the pulp and the core; the collecting part is designed, the collecting screw is rotated by the collecting motor, the waxberry core falling into the de-nucleation feeding roller is taken out from the end face and falls into the supporting collecting box two, and at the same time, the waxberry pulp after de-nucleation falls into the supporting collecting box one from the discharge port, so that the automatic separation and separate collection of the pulp and the core are realized, the workload of subsequent manual sorting is reduced, and the production convenience and hygiene are improved.
[0012] 3. The present application can be flexibly adjusted; the de-nucleation rotary cutting motor is adjustably arranged on the de-nucleation sliding plate through the de-nucleation adjusting knob, the position of the de-nucleation rotary cutting motor can be adjusted according to the size, variety and other different characteristics of the waxberries by rotating the de-nucleation adjusting knob and adjusting the de-nucleation adjusting frame connected by threads, so that the rotary cutting blades can stably and accurately act on the waxberries in the de-nucleation process, the quality and success rate of de-nucleation are improved, and the adaptability of the device to different types of waxberries is enhanced. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a whole structure schematic view of the present application.
[0014] Figure 2 It is a whole structure front view angle schematic view of the present application.
[0015] Figure 3The whole structure side view angle schematic view of the utility model.
[0016] Figure 4 The partial structure section view of the kernel removing part of the utility model Figure 1 .
[0017] Figure 5 The partial structure section view of the kernel removing part of the utility model Figure 2 .
[0018] Figure 6 The partial structure schematic view of the kernel removing part of the utility model Figure 1 .
[0019] Figure 7 The partial structure schematic view of the kernel removing part of the utility model Figure 2 .
[0020] Figure 8 The partial structure schematic view of the supporting part of the utility model.
[0021] Fig. 1 - kernel removing part; 2 - collecting part; 3 - supporting part; 101 - kernel removing slide plate; 102 - kernel removing rotary cutting motor; 103 - kernel removing adjusting frame; 104 - kernel removing adjusting knob; 105 - kernel removing connecting rod; 106 - kernel removing pushing ring; 107 - kernel removing motor; 108 - kernel removing grooved wheel; 109 - kernel removing feeding roller; 110 - kernel removing fixing disc; 201 - collecting spiral; 202 - collecting motor; 301 - supporting shell; 302 - supporting shell; 303 - supporting bottom plate; 304 - supporting collecting box one; 305 - supporting collecting box two. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the utility model will be apparently and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor fall within the protection scope of the utility model.
[0023] As shown in Figures 1 to 8 A waxberry kernel removing rotary cutting device, comprising a kernel removing part 1, a collecting part 2 and a supporting part 3; the kernel removing part 1 is used for removing the inner kernel of waxberry, the kernel removing part 1 is rotationally provided with the collecting part 2 for collecting the inner kernel of waxberry; and the kernel removing part 1 is rotationally arranged on the supporting part 3.
[0024] As shown in Figures 1 to 8As shown, the nucleation part 1 includes a nucleation slide 101, a nucleation rotary cutting motor 102, a nucleation adjusting frame 103, a nucleation adjusting knob 104, a nucleation connecting rod 105, a nucleation toggle ring 106, a nucleation motor 107, a nucleation grooved wheel 108, a nucleation feeding roller 109, a nucleation fixing disc 110; the nucleation slide 101 is provided with the nucleation rotary cutting motor 102 which is adjustable through the nucleation adjusting knob 104, and a rotary cutting blade is arranged on the output shaft of the nucleation rotary cutting motor 102; the nucleation adjusting frame 103 is threadedly connected to the nucleation adjusting knob 104, and the nucleation adjusting frame 103 fixes the position of the nucleation rotary cutting motor 102 through the nucleation adjusting knob 104; the nucleation slide 101 is slidingly arranged on the supporting shell 301; the nucleation connecting rod 105 is rotatably arranged on the nucleation slide 101, and the other end of the nucleation connecting rod 105 is rotatably arranged on the nucleation fixing disc 110; the nucleation fixing disc 110 is fixedly provided with the nucleation toggle ring 106, and the nucleation toggle ring 106 is fixedly arranged on the output shaft of the nucleation motor 107; the nucleation toggle ring 106 is in sliding cooperation with the nucleation grooved wheel 108; the nucleation grooved wheel 108 is fixedly provided with the nucleation feeding roller 109, and a plurality of tapered feeding holes are arranged on the nucleation feeding roller 109; the feeding holes penetrate through the inner wall of the nucleation feeding roller 109.
[0025] As shown in Figures 1 to 8 , the nucleation feeding roller 109 is rotatably arranged in the collecting part 2, and the collecting part 2 includes a collecting spiral 201 and a collecting motor 202; the collecting spiral 201 is rotatably arranged in the nucleation feeding roller 109, and the collecting spiral 201 is fixedly arranged on the output shaft of the collecting motor 202; and the collecting motor 202 is fixedly arranged on the supporting bottom plate 303.
[0026] As shown in Figures 1 to 8 , the nucleation feeding roller 109 is rotatably arranged on the supporting part 3, and the supporting part 3 includes a supporting shell 301, a supporting shell 302, a supporting bottom plate 303, a supporting collecting box one 304, and a supporting collecting box two 305; the supporting shell 301 is in rotary cooperation with the nucleation feeding roller 109, and the supporting shell 301 is fixedly arranged on the supporting bottom plate 303; the upper surface of the supporting shell 301 is provided with a feeding groove, and the lower surface of the supporting shell 301 is provided with a discharging port; the supporting bottom plate 303 is slidingly provided with the supporting collecting box one 304 and the supporting collecting box two 305; the supporting collecting box one 304 is arranged at the bottom of the supporting shell 301; the end of the nucleation feeding roller 109 is provided with the supporting shell 302; and the supporting shell 302 is provided below the supporting collecting box two 305.
[0027] As shown in Figures 1 to 8As shown, the utility model discloses a red bayberry core rotary cutting device, and its working principle is as follows: the red bayberry to be processed is put into the feeding slot on the supporting shell 301, the core removing motor 107 is started, the core removing motor 107 drives the core removing driving ring 106 to rotate, the core removing driving ring 106 drives the core removing fixed disc 110 to rotate, the core removing fixed disc 110 drives the core removing slide plate 101 to slide through the core removing connecting rod 105, the core removing driving ring 106 drives the core removing groove wheel 108 to rotate intermittently while rotating, the core removing groove wheel 108 drives the core removing feeding roller 109 to rotate intermittently, when the core removing feeding roller 109 rotates intermittently, the red bayberry in the supporting shell 301 falls into the conical feeding hole of the core removing feeding roller 109 under the action of gravity, when the core removing feeding roller 109 rotates to the next position, the feeding hole with the red bayberry is directly below the core removing rotary cutting motor 102, at this time, the core removing connecting rod 105 drives the core removing slide plate 101 to move towards the core removing feeding roller 109, in this process, the core removing rotary cutting motor 102 drives the rotary cutting blade arranged at the end to rotate, and the red bayberry in the feeding hole is subjected to core removing rotary cutting, under the extrusion of the blade, the red bayberry core falls into the core removing feeding roller 109, and the red bayberry pulp is in the feeding hole, when the core removing feeding roller 109 continues to rotate to the next position, the pulp in the feeding hole falls into the supporting collecting box one 304 from the discharge port under the action of gravity and is collected, the collecting motor 202 is started, the collecting motor 202 rotates, drives the collecting spiral 201 to rotate, the core removing feeding roller 109 is arranged on the end face of the core removing feeding roller 109, the red bayberry core falls into the supporting collecting box two 305 from the supporting shell 302 and is collected, and the core removing rotary cutting work on the red bayberry is completed.
Claims
1. A device for the coreless rotary cutting of arbutus berries, comprising a support portion (3), characterized in that: The application relates to a kernel removing device, which comprises a kernel removing part (1) for removing kernels, a collecting part (2) for collecting kernels being rotatably arranged in the kernel removing part (1); the kernel removing part (1) comprises a kernel removing slide plate (101), a kernel removing rotary cutting motor (102) being adjustably arranged on the kernel removing slide plate (101) through a kernel removing adjusting knob (104), the kernel removing slide plate (101) being slidingly arranged on a supporting part (3), a kernel removing connecting rod (105) being rotatably arranged on the kernel removing slide plate (101), the other end of the kernel removing connecting rod (105) being rotatably arranged on a kernel removing fixing disc (110), a kernel removing pushing ring (106) being fixedly arranged on the kernel removing fixing disc (110), the kernel removing pushing ring (106) being fixedly arranged on an output shaft of a kernel removing motor (107), the kernel removing pushing ring (106) being slidingly matched with a kernel removing grooved wheel (108), a kernel removing feeding roller (109) being fixedly arranged on the kernel removing grooved wheel (108), a plurality of taper-shaped feeding holes being arranged on the kernel removing feeding roller (109).
2. The arbutus fruit coring and spiral cutting device according to claim 1, characterized in that: The feeding hole penetrates the inner wall of the kernel removing feeding roller (109).
3. The arbutus fruit coring and spiral cutting device according to claim 2, characterized in that: The kernel removing feeding roller (109) is rotatably arranged with the collecting part (2), the collecting part (2) comprises a collecting spiral (201) being rotatably arranged in the kernel removing feeding roller (109), the collecting spiral (201) being fixedly arranged on an output shaft of a collecting motor (202).
4. The arbutus fruit coring and spiral cutting device according to claim 3, characterized in that: The kernel removing feeding roller (109) is rotatably arranged on the supporting part (3), the supporting part (3) comprises a supporting shell (301) being rotatably matched with the kernel removing feeding roller (109), the supporting shell (301) being fixedly arranged on a supporting bottom plate (303).
5. The arbutus fruit coring and spiral cutting device according to claim 4, characterized in that: The supporting bottom plate (303) is slidingly arranged with a supporting collecting box one (304) and a supporting collecting box two (305), the supporting collecting box one (304) being arranged at the bottom of the supporting shell (301).
6. The arbutus fruit coring and spiral cutting device according to claim 5, characterized in that: The kernel removing feeding roller (109) is arranged with a supporting shell (302) at the end, the supporting shell (302) being arranged below the supporting collecting box two (305).