Dry brush mechanism for cleaning silkworm breeding device
By designing a dry brush mechanism for cleaning silkworm rearing equipment and using a mechanical and automated dry brushing method, the problem of existing cleaning equipment being unable to remove silkworm excrement and feed residue has been solved, achieving a highly efficient cleaning effect and improving the efficiency of factory-scale silkworm rearing.
Patent Information
- Application Number
- CN202423107704.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-16
AI Technical Summary
In factory-scale silkworm rearing, there is a lack of systematic cleaning equipment. Existing cleaning equipment is difficult to effectively remove silkworm excrement and feed residue, which affects the soaking and disinfection effect and has low cleaning efficiency.
Design a dry brushing mechanism for cleaning silkworm rearing equipment. The mechanism uses an automated mechanical method to dry brush the equipment with upper and lower dry brushes. Combined with a flipping component and a conveying mechanism, it can achieve continuous dry brushing to remove residue and prevent residue from adhering to the equipment and mixing with the soaking disinfectant solution.
It achieves efficient dry brushing of silkworm-rearing equipment, removing most of the residue, improving cleaning efficiency, avoiding residue adhesion and the impact of soaking in disinfectant, and ensuring the effectiveness of subsequent soaking and disinfection.
Smart Images

Figure CN223875604U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of factory silkworm breeding, and particularly relates to a dry brush mechanism for cleaning silkworm breeding appliances. BACKGROUND
[0002] The life of a silkworm lasts for more than 40 days, from egg to larva to baby to cocoon to moth. The baby silkworm just hatched from the egg is black, called 'ant silkworm', and has fine hair all over its body, which disappears after about two days. After the ant silkworm hatches, it is fed for a period of time and then begins to molt. The molting process takes about a day, called 'hibernation'. After molting once, the silkworm grows into a second instar larva. The silkworm molts four times and becomes a fifth instar silkworm before it starts to spin silk and form cocoons.
[0003] The traditional breeding method is a small workshop breeding method in a family style, which generally uses small bamboo baskets for feeding. This small bamboo basket has a simple structure, is easy to manufacture, can be hand-woven, and has low cost. The small workshop breeding method is a fully manual breeding method, from silkworm egg to cocoon harvesting, all through artificial operation, time-consuming and laborious, with very low breeding efficiency, and limited by seasonal conditions, it can only feed silkworms at specific times, and the annual output of cocoon is extremely low.
[0004] In order to make up for the shortcomings of the traditional workshop silkworm breeding, large-scale and factory silkworm breeding technology has emerged. In order to meet the requirements of large-scale silkworm breeding, special silkworm breeding appliances such as shelves, silkworm frames, cocoon cages, etc. need to be designed. Based on the appliances, silkworm breeding, silkworm transfer between different age breeding rooms, and feed feeding processes are realized. It can be seen that these appliances play an important role in factory silkworm breeding technology.
[0005] After the appliances are used for silkworm breeding, they will inevitably be left with residues such as feed and silkworm sand, and their surfaces will be full of bacteria. Therefore, they need to be thoroughly cleaned and disinfected before they can be used again. Therefore, in factory silkworm breeding technology, corresponding cleaning equipment or cleaning lines are often required. However, there is a lack of systematic cleaning equipment and cleaning lines in current factory silkworm breeding, which cannot realize continuous, fast and efficient appliance cleaning operation. In addition, the existing cleaning equipment often includes a flushing and soaking part. The residues in the appliances are first washed away by flushing, and then the bacteria on the surface of the appliances are killed by soaking. This cleaning method has obvious disadvantages: the silkworm sand and feed residues are small and soft, and are easy to stick to the surface of the appliances and difficult to wash off. At the same time, these adhered residues are also easy to mix into the soaking disinfectant during soaking, thereby affecting the soaking effect. SUMMARY
[0006] The utility model discloses a dry brush mechanism for cleaning silkworm rearing appliances, aiming at the defects in the prior art, a dry brush mechanism capable of continuously dry brushing appliances in a mechanical automatic mode is designed, which is provided with oppositely arranged upper and lower dry hair brushes, and the appliances are sequentially conveyed through the upper and lower dry hair brushes by a conveying mechanism, so that dry brushing of the appliances is realized, most of the residues in the appliances can be brushed off, residue adhesion and mixing into the soaking disinfectant are avoided, and meanwhile, the continuous automatic dry brushing mechanism can realize uninterrupted operation and effectively improve the dry brushing efficiency.
[0007] In order to solve the above technical problems, the following technical scheme is adopted:
[0008] A dry brush mechanism for cleaning silkworm rearing appliances, characterized by comprising a dry brush rack, a dry brush cavity and a dry hair brush group, the dry hair brush group comprising upper and lower dry hair brushes, and the upper and lower dry hair brushes cooperating to dry brush the appliances.
[0009] Further, the dry hair brush group is provided with 1-16 groups.
[0010] Further, the upper dry hair brush is connected with an upper dry hair brush motor, and is driven to rotate by the upper dry hair brush motor; and the lower dry hair brush is connected with a lower dry hair brush motor, and is driven to rotate by the lower dry hair brush motor.
[0011] Further, the dry brush cavity comprises a dry brush upper cavity and a dry brush lower cavity.
[0012] Further, the dry brush upper cavity is enclosed by a left piece one, a left front piece one, a left rear piece one, a left-right piece one, a right front piece one, a right rear piece one, a right piece one and a top piece one.
[0013] Further, the dry brush lower cavity is enclosed by a left piece two, a left front piece two, a left rear piece two, a left-right piece two, a right front piece two, a right rear piece two and a right piece two.
[0014] Further, the dry brush lower cavity is provided with an auger machine, which is used for receiving and discharging the brushed-off residues.
[0015] Further, the dry brush mechanism further comprises a turnover assembly, the turnover assembly comprising a turnover motor, a divider and a turnover clamp rod, the turnover motor being connected with the divider, and the turnover clamp rod being connected and driven by the divider, and the turnover clamp rod driving the appliances to turn over.
[0016] Further, the turnover clamp rod comprises a first clamp rod group and a second clamp rod group, which are arranged on two sides and cyclically drive the appliances to turn over; the first clamp rod group comprises a first upper clamp rod and a second lower clamp rod matched with each other, and the second clamp rod group comprises a second upper clamp rod and a second lower clamp rod matched with each other.
[0017] Further, the dry brush mechanism is further provided with a dry brush chain assembly, which is used for conveying the appliances through the dry brush mechanism.
[0018] With the above technical scheme, the following beneficial effects are achieved:
[0019] The dry brushing mechanism capable of continuously dry brushing the appliances in a mechanical automatic manner is designed, which is provided with the upper dry brushing brush and the lower dry brushing brush arranged oppositely, and the appliances are sequentially conveyed through the upper dry brushing brush and the lower dry brushing brush by the conveying mechanism, so that the dry brushing of the appliances is realized, most of the residues in the appliances can be brushed off, and the problem that the residues are adhered and mixed into the soaking disinfectant is avoided; meanwhile, the continuous automatic dry brushing mechanism can realize uninterrupted operation, and the dry brushing efficiency is effectively improved.
[0020] The through-type dry brushing can brush off the residues adhered to the surface of the appliances, the preliminary brushing and cleaning of the appliances are realized, most of the residues on the surface of the appliances are removed, and the problems that the residues are difficult to be brushed off by direct wet brushing and some residues are adhered to the surface of the appliances when meeting water are avoided. BRIEF DESCRIPTION OF DRAWINGS
[0021] The utility model will be further described in connection with the drawings:
[0022] Figure 1 It is a schematic view of the dry brushing mechanism of the utility model;
[0023] Figure 2 It is a schematic view of the dry brushing mechanism of the utility model; Figure 1 It is a schematic view of the structure in the direction A;
[0024] Figure 3 It is a schematic view of the dry brushing mechanism of the utility model; Figure 1 It is a schematic view of the structure in the direction B;
[0025] Figure 4 It is a schematic view of the structure of the conveying mechanism;
[0026] Figure 5 It is a schematic view of the dry brushing mechanism of the utility model; Figure 4 It is a schematic view of the structure in the direction A;
[0027] Figure 6 It is a schematic view of the structure of the lower cavity of the dry brushing;
[0028] Figure 7 It is a schematic view of the dry brushing mechanism of the utility model; Figure 6 It is a schematic view of the structure in the direction A;
[0029] Figure 8 It is a schematic view of the dry brushing mechanism of the utility model; Figure 6 It is a schematic view of the structure in the direction B;
[0030] Figure 9 It is a schematic view of the structure of the upper cavity of the dry brushing;
[0031] Figure 10 It is a schematic view of the dry brushing mechanism of the utility model; Figure 9 It is a schematic view of the structure in the direction A;
[0032] Figure 11Structure diagram of the wet brush cavity;
[0033] Figure 12 Structure diagram of the wet brush cavity; Figure 11 Structure diagram of the wet brush cavity;
[0034] Figure 13 Structure diagram of the wet brush cavity;
[0035] Figure 14 Structure diagram of the wet brush cavity; Figure 13 Structure diagram of the wet brush cavity;
[0036] Figure 15 Structure diagram of the wet brush cavity.
[0037] The figure marks are: dry brush mechanism 1, dry brush rack 11, dry brush lower cavity 12, left piece two 121, left front piece two 122, left rear piece two 123, left and right piece two 124, right front piece two 125, right rear piece two 126, right piece two 127, flip avoidance box 128, dry brush upper cavity 13 left piece one 131, left front piece one 132, left rear piece one 133, left and right piece one 134, right front piece one 135, right rear piece one 136, top piece one 137, right piece one 138, partition piece 139, air suction box one 1310, auger machine 14, dry hair brush group 15, upper dry hair brush 151, lower dry hair brush 152, upper dry hair brush motor 153, lower dry hair brush motor 154, flip assembly 16, flip motor 161, divider 162, flip clamp rod 163, output shaft 164, first clamp rod group 1631, first upper clamp rod 16311, first lower clamp rod 16312, second clamp rod group 1632, second upper clamp rod 16321, second lower clamp rod 16322, connecting plate 1633, wet brush mechanism 2, wet brush rack 21, wet brush cavity 22, left piece three 221, left front piece three 222, left rear piece three 223, top piece three 224, left and right piece three 225, right front piece three 226, right rear piece three 227, right piece three 228, left bottom piece three 229, right bottom piece 2210, air suction box three 2211, drain pipe 23, wet hair brush group 24, spraying assembly 25, middle section 3, appliance 4, dry brush chain assembly 5, dry brush gear 51, dry brush chain 52, dry brush tension gear 53, transmission gear 54, transmission chain 55, transmission tension gear 56, wet brush chain assembly 6, wet brush gear 61, wet brush chain 62, wet brush tension gear 63, dry and wet drive assembly 7. DETAILED DESCRIPTION
[0038] The utility model aims at providing a dry brush mechanism for cleaning silkworm rearing appliance, design the dry brush mechanism that can brush the appliance in mechanical automation mode continuously, it is provided with the upper dry hair brush and lower dry hair brush of opposite setting, by conveying mechanism in turn conveying appliance through the upper dry hair brush and lower dry hair brush, thereby realize the dry brush of appliance, can brush off the most of residue in the appliance and avoid, avoid the problem that residue sticks and mixes into soak disinfectant, simultaneously, the dry brush mechanism of this continuous automation can realize uninterrupted operation, effectively promote dry brush efficiency.
[0039] The technical scheme of the utility model will be described in detail in combination with specific embodiments.
[0040] Embodiment 1
[0041] The dry brush mechanism of the utility model is part of dry-wet brush unit, and the dry-wet brush unit comprises a dry brush mechanism 1, a wet brush mechanism 2 and a conveying mechanism; the dry brush mechanism 1 is used for dry brushing the appliance 4; the wet brush mechanism 2 is used for wet brushing the appliance 4; the conveying mechanism is connected to the dry brush mechanism 1 and the wet brush mechanism 2 and is used for conveying the appliance 4 through the dry brush mechanism 1 and the wet brush mechanism 2. When passing through the dry brush mechanism 1, the appliance 4 is dry brushed, and most of the residues in the appliance 4 and on the surface of the appliance 4 are brushed off; when passing through the wet brush mechanism 2, the appliance 4 is wet brushed while being sprayed, and the remaining residues in the appliance 4 and on the surface of the appliance 4 are washed away, thereby avoiding the problem that the residues stick and mix into the soak disinfectant; simultaneously, the continuous and automatic dry-wet brush unit can realize uninterrupted operation and effectively improve the dry-wet brush efficiency.
[0042] As Figure 4 With Figure 5As shown, the conveying mechanism comprises a dry brush chain assembly 5, a wet brush chain assembly 6 and a dry-wet driving assembly 7, the dry brush chain assembly 5 is installed in the dry brush mechanism 1 and is used for conveying the appliance 4 through the dry brush mechanism 1, the wet brush chain assembly 6 is installed in the wet brush mechanism 2 and is used for conveying the appliance 4 through the wet brush mechanism 2, and the dry brush chain assembly 5 and the wet brush chain assembly 6 are drivingly connected with each other, specifically: the dry brush chain assembly 5 comprises dry brush gears 51 arranged at two ends and a dry brush chain 52 connected between the dry brush gears 51, and the two dry brush gears 51 at the same end are drivingly connected through a gear shaft; the wet brush chain assembly 6 comprises wet brush gears 61 arranged at two ends and a wet brush chain 62 connected between the wet brush gears 61, and the two wet brush gears 61 at the same end are drivingly connected through a gear shaft; the dry brush gear 51 at the rear end is connected with the wet brush gear 61 at the front end for driving, and both are connected with a transmission gear 54, the transmission gear 54 is connected with the dry brush gear 51 or the wet brush gear 61 through a gear shaft, and a transmission chain 55 is connected between the two transmission gears 54; the dry-wet driving assembly 7 is connected with the wet brush gear 61 at the rear end, and drives the wet brush chain assembly 6 to run after being started, and then synchronously drives the dry brush chain assembly 5 through the transmission of the transmission gear 54 and the transmission chain 55. The conveying mechanism of the utility model realizes the dry-wet brushing of the appliance 4 during conveying, and achieves continuous and automatic dry-wet brushing operation; in order to ensure the consistency of the dry brush chain assembly 5 and the wet brush chain assembly 6, the two are drivingly connected, one drives the other to run, and the synchronous running of the two helps to stabilize the conveying and reduce the failure. In addition, the driving connection of the two can reduce a set of dry-wet driving assembly 7 and reduce the cost.
[0043] The dry brush chain assembly 5 comprises two dry brush tension gears 53 connected with the dry brush chain 52, and the tension force is increased by changing the running path of the dry brush chain 52; the wet brush chain assembly 6 comprises a wet brush tension gear 63 connected with the wet brush chain 62, and the tension force is increased by changing the running path of the wet brush chain 62. The transmission chain 55 is also connected with a transmission tension gear 56, and the tension force is increased by changing the running path of the transmission chain 55. The rear end of the dry brush chain assembly 5 and the front end of the wet brush chain assembly 6 respectively extend out of the dry brush mechanism 1 and the wet brush mechanism 2, and therefore an intermediate section 3 is arranged between the dry brush mechanism 1 and the wet brush mechanism 2, and corresponding components are installed in the intermediate section.
[0044] As Figure 1 With Figure 2As shown, the dry brush mechanism 1 comprises a dry brush frame 11, a dry brush cavity and a dry brush group 15, the dry brush frame 11 is used to support the whole dry brush mechanism 1, so that it is stably placed. The dry brush cavity comprises a dry brush lower cavity 12 and a dry brush upper cavity 13, the dry brush group 15 is installed in the dry brush upper cavity 13, which is sequentially provided with 4 groups in the conveying direction, and 1-16 groups can be adaptively arranged according to specific cleaning requirements; the dry brush group 15 comprises an upper dry brush 151 and a lower dry brush 152, the upper dry brush 151 and the lower dry brush 152 cooperate with the upper and lower brush apparatus 4. The upper dry brush 151 is connected with an upper dry brush motor 153, which is driven to rotate, the lower dry brush 152 is connected with a lower dry brush motor 154, which is driven to rotate, both of which rotate at a certain speed, so as to realize the through type dry brushing. The through type dry brushing of the utility model can brush the residues attached to the surface of the apparatus 4, realize the preliminary brushing and cleaning of the apparatus 4, remove most of the residues on the surface of the apparatus 4, and avoid the problems that it is difficult to brush clean directly and some residues adhere to the surface of the apparatus 4 when meeting water.
[0045] As shown in the figure, Figure 9 With Figure 10 As shown, the dry brush upper cavity 13 is installed and fixed through the dry brush frame 11, which is used to install the dry brush group 15 and the dry brush chain assembly 5, the dry brush upper cavity 13 is divided into a front section and a rear section, the front section is open, and the rear section is not open but is provided with openings at both ends for the apparatus 4 to enter and exit. The dry brush upper cavity 13 is formed by surrounding the left piece one 131, the left front piece one 132, the left rear piece one 133, the left and right piece one 134, the right front piece one 135, the right rear piece one 136, the right piece one 138 and the top piece one 137, forming a stable and firm dry brush upper cavity 13, which is isolated from the outside world to avoid residue leakage; the rear section is provided with two front and rear partitions 139, and an air extraction box one 1310 is arranged on the top piece one 137, and the dry brush upper cavity 13 can also be provided with a maintenance door, which can be opened to facilitate the maintenance of the internal components.
[0046] As shown in the figure, Figures 6 to 8 As shown, the dry brush lower cavity 12 and the dry brush upper cavity 13 are in communication with each other, and the lower end is connected with an auger machine 14, which is in the shape of a funnel, used to guide the residues to fall into the auger machine 14; the dry brush lower cavity 12 is formed by surrounding the left piece two 121, the left front piece two 122, the left rear piece two 123, the left and right piece two 124, the right front piece two 125, the right rear piece two 126 and the right piece two 127, forming a stable and firm dry brush lower cavity 12, which is isolated from the outside world to avoid residue leakage; the opening at the bottom of the dry brush lower cavity 12 is matched with the auger machine 14, so that the residues can fall into the auger machine 14. The bottom of the dry brush lower cavity 12 is also provided with a turnover avoidance box 128.
[0047] The auger machine 14 is used for receiving and discharging the residual material brushed off, and includes an auger motor and an auger, the auger is driven to rotate by the auger motor, so as to gradually push the residual material to the discharge port. The discharge port of the utility model is arranged at the middle position of the auger machine 14, in order to adapt to the setting position, the auger is divided into a front segment auger and a rear segment auger, the spiral directions of the front segment auger and the rear segment auger are opposite, and both spiral towards the discharge port, so that the average pushing distance of the residual material can be shortened, and the efficiency can be improved. After the appliance 4 is dry brushed, residual material is inevitably brushed off and falls into the auger machine 14, under the action of the auger machine 14, the residual material is discharged, the collection and treatment of the residual material are realized, and the residual material is prevented from remaining in the dry brushing mechanism 1.
[0048] As Figure 1 With Figure 2 shown, the wet brushing mechanism 2 includes a wet brushing rack 21, a wet brushing cavity 22, a wet brush group 24 and a spraying assembly 25, the wet brushing rack 21 is used for supporting the whole wet brushing mechanism 2, so that the wet brushing mechanism 2 is stably placed. The wet brush group 24 is installed in the wet brushing cavity 22, and four groups are sequentially arranged in the conveying direction, and according to specific cleaning requirements, 1-16 groups can be adaptively arranged; the wet brush group 24 includes an upper wet brush (not marked in the figure, and the structure is the same as that of the upper dry brush 151) and a lower wet brush (not marked in the figure, and the structure is the same as that of the lower dry brush 152), the upper wet brush and the lower wet brush cooperate with the wet appliance 4; the spraying assembly 25 includes upper and lower spraying heads arranged oppositely, can respectively spray the upper surface and the lower surface of the appliance 4, fully spray each position of the appliance 4, eliminate the spraying dead angle, further improve the wet brushing effect, and improve the cleanliness of the appliance 4 after wet brushing. The upper wet brush is connected with an upper wet brush motor, and is driven to rotate by the upper wet brush motor; the lower wet brush is connected with a lower wet brush motor, and is driven to rotate by the lower wet brush motor; both rotate at a certain speed, so as to realize the through type wet brushing. The through type wet brushing of the utility model can brush and sweep the appliance 4, deeply brush and sweep the appliance 4, remove the residual material adhered to the surface of the appliance 4 which is difficult to wash off, cooperate with the dry brushing mechanism 1, and achieve the purpose of quickly and completely brushing and washing the appliance 4.
[0049] As Figure 11 With Figure 12As shown, the wet brush chamber 22 is installed and fixed by the wet brush frame 21. It is used to install the wet brush assembly 24, the spray assembly 25 and the wet brush chain assembly 6. The wet brush chamber 22 is divided into a front section and a rear section. The front section is not open, but it has openings at both ends for the utensils 4 to enter and exit. The rear section is open. The wet brush chamber 22 is formed by the left plate 3 221, the left front plate 3 222, the left rear plate 3 223, the left and right plates 3 225, the right front plate 3 226, the right rear plate 3 227, the right plate 3 228, the top plate 3 224, the left bottom plate 3 229 and the right bottom plate 2210, forming a stable and solid wet brush chamber 22, which is isolated from the outside world to prevent residue and washing water from leaking out. The top plate 3 224 is provided with an exhaust box 3 2211, and the left bottom plate 3 229 is inclined downward to form a funnel-shaped structure, and a drain pipe 23 is connected to the bottom for drainage. After wet brushing, water inevitably drips down, which is collected and drained through drain pipe 23. The wet brushing chamber 22 can also be equipped with an inspection door, which can be opened for easy maintenance of internal components.
[0050] The wet brushing mechanism 2 also includes a cutting fan (not shown in the figure) for blowing air onto the appliance 4 to dry the appliance 4 and blow away any residue that has not been removed. The dried appliance 4 has only a small amount of water stains, which not only prevents water stains from dripping onto the parts, but also prevents water stains from mixing into the diluted soaking disinfectant.
[0051] Example 2
[0052] The silkworm frame in apparatus 4 is a frame structure with an inner cavity. It is difficult to remove the residue inside by simply dry brushing; therefore, the silkworm frame needs to be turned upside down. Figure 1 and Figure 2 As shown, the dry brushing mechanism 1 is equipped with a flipping component 16, which is positioned before the dry brush assembly 15. The silkworm frame is flipped first, and then the flipped silkworm frame is dry brushed. Figures 13 to 15As shown, the overturning assembly 16 comprises an overturning motor 161, a divider 162 and an overturning clamp rod 163, the overturning motor 161 is connected to the divider 162, the divider 162 is connected with an output rotating shaft 164, the overturning clamp rod 163 is connected through the output rotating shaft 164, so as to drive the overturning clamp rod 163 to overturn, and then drive the cocoon frame in the overturning clamp rod 163 to overturn. Before being sent to the dry brushing, the overturning assembly 16 overturns the cocoon frame, the overturning clamp rod 163 is used for limiting and driving the cocoon frame to overturn, has the function of preventing falling, and the overturning motor 161 is used for driving the overturning clamp rod 163 to overturn, so as to realize overturning the cocoon frame; the divider 162 controls the angle of each overturning to be 180 degrees, so that the cocoon frame is overturned from the front face upward to the front face downward, on the one hand, part of the residues in the cocoon frame can be directly poured out to the auger 14, on the other hand, the residues in the cocoon frame can fall after being brushed, so as to improve the brushing effect of the cocoon frame, and avoid that the residues after brushing still accumulate in the cocoon frame due to not overturning the cocoon frame. In addition, a proximity switch can be arranged, which is used for indicating whether the overturning clamp rod 163 overturns 180 degrees.
[0053] The overturning clamp rod 163 comprises a first clamp rod group 1631, a second clamp rod group 1632 and a connecting plate 1633 between the first clamp rod group 1631 and the second clamp rod group 1632, the first clamp rod group 1631 and the second clamp rod group 1632 are separately arranged on the two sides of the connecting plate 1633 and drive the cocoon frame to overturn circularly; the first clamp rod group 1631 comprises a first upper clamp rod 16311 and a first lower clamp rod 16312 matched with each other, and the second clamp rod group 1632 comprises a second upper clamp rod 16321 and a second lower clamp rod 16322 matched with each other. The first clamp rod group 1631 and the second clamp rod group 1632 are arranged on the same straight line and oppositely arranged, and the positions of the two are transposed every 180 degrees, that is, the cocoon frame is overturned from the front to the back, and the other clamp rod group is overturned to the front and can feed the next cocoon frame, and the above overturning action is repeated, so as to realize the cocoon frame overturning circularly and reciprocally, the structure is simple and the design is ingenious; each clamp rod group is composed of a corresponding upper clamp rod and a lower clamp rod, and the two are matched with other components of the overturning assembly 16 to form a surrounding space with a limiting function, so as to prevent the cocoon frame from falling during overturning.
[0054] The overturning clamp rod 163 is provided with two groups and is symmetrically arranged, which is used for balancing and limiting the cocoon frame during overturning, improving the stability, and the two groups of overturning clamp rods 163 are arranged between the dry brushing chains 52, avoiding mutual interference with the dry brushing chains 52. According to the actual working condition, the overturning clamp rod 163 can be provided with 1-8 groups.
[0055] The above is only a specific embodiment of the present application, but the technical features of the present application are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the present application to solve the basically same technical problem and realize the basically same technical effect is covered in the protection scope of the present application.
Claims
1. A dry brushing mechanism for cleaning a silkworm rearing apparatus, characterized by: The dry brushing mechanism comprises a dry brushing rack, a dry brushing cavity and a dry brushing set, the dry brushing set comprises an upper dry brushing and a lower dry brushing, the upper dry brushing and the lower dry brushing cooperate to dry the brushing appliance; the dry brushing mechanism further comprises a turnover assembly, the turnover assembly comprises a turnover motor, a divider and a turnover clamp rod, the turnover motor is connected to the divider, the divider is connected to and drives the turnover clamp rod, and the turnover clamp rod drives the appliance to turn over.
2. A dry brushing mechanism for cleaning silkworm rearing apparatus according to claim 1, wherein: The dry brushing set is provided with 1-16 sets.
3. A dry brushing mechanism for cleaning sericultural instruments according to claim 1, characterized in that: The upper dry brushing is connected to an upper dry brushing motor, and is driven to rotate by the upper dry brushing motor; the lower dry brushing is connected to a lower dry brushing motor, and is driven to rotate by the lower dry brushing motor.
4. A dry brushing mechanism for cleaning sericultural instruments according to claim 1, characterized in that: The dry brushing cavity comprises an upper dry brushing cavity and a lower dry brushing cavity.
5. A dry brushing mechanism for cleaning sericultural instruments according to claim 4, wherein: The upper dry brushing cavity is enclosed by a left piece one, a left front piece one, a left rear piece one, a left-right piece one, a right front piece one, a right rear piece one, a right piece one and a top piece one.
6. A dry brushing mechanism for cleaning sericultural instruments according to claim 4, wherein: The lower dry brushing cavity is enclosed by a left piece two, a left front piece two, a left rear piece two, a left-right piece two, a right front piece two, a right rear piece two and a right piece two.
7. A dry brushing mechanism for cleaning sericultural instruments according to claim 4, wherein: The lower dry brushing cavity is provided with a screw conveyor, which is used to receive and discharge the residual material falling from the brushing.
8. A dry brushing mechanism for cleaning sericultural instruments according to claim 1, characterized in that: The dry brushing mechanism is further provided with a dry brushing chain assembly, which is used to convey the appliance through the dry brushing mechanism.
9. A dry brushing mechanism for cleaning sericultural instruments according to claim 1, characterized in that: The turnover clamp rod comprises a first clamp rod set and a second clamp rod set, which are arranged on both sides and cyclically drive the appliance to turn over; the first clamp rod set comprises a first upper clamp rod and a second lower clamp rod which cooperate with each other, and the second clamp rod set comprises a second upper clamp rod and a second lower clamp rod which cooperate with each other.