Receiving and conveying mechanism for internal mixing of silica gel raw materials
By designing a material receiving and conveying mechanism for silicone raw material mixing, and utilizing guide rails and drive motors to achieve automatic conveying of the receiving box, the difficulties of manual handling and pollution problems are solved, and the automation and protection effects of silicone processing are improved.
Patent Information
- Application Number
- CN202520499493.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-21
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-03-21
AI Technical Summary
In the current silicone processing, after the internal mixer discharges the material, the receiving box needs to be manually moved, which is labor-intensive, prone to contamination, and lacks effective cover protection, resulting in unsatisfactory performance.
A material receiving and conveying mechanism for silicone raw material mixing was designed. It uses a transverse guide rail and a drive motor to drive a material receiving trolley to realize automatic material conveying of the receiving box. It is also equipped with a sliding cover structure to prevent the cover from falling off, thereby reducing manual labor and improving the sealing effect.
It enables automatic conveying of material after discharge from the internal mixer, reducing manual handling and workload. The sliding cover structure ensures that the receiving box is not easily contaminated during transportation, thus improving the performance.
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Figure CN223878835U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to silica gel piece processing equipment technical field more specifically relates to a silica gel raw material mixing use material receiving and conveying mechanism. BACKGROUND
[0002] The silica gel protection piece of prior art needs to carry out closed type mixing to silica gel raw material when processing, and the raw material after mixing needs to be discharged from the discharge end of the mixing mill and then poured into the material receiving box placed behind to receive the material, then the material receiving box is manually carried to the discharge chamber of the factory building, and needs to be placed for a certain time before being carried to the open mill for mixing.
[0003] The material receiving box needs to be manually carried, which is labor-intensive and troublesome, and the use effect is not ideal. In order to ensure that the raw material in the material receiving box is not contaminated by dust and other substances, a cover is needed to be placed on top of the material receiving box. The existing material receiving box does not have a cover, but only uses a conventional flat plate to cover, which is easy to fall off during transportation and the use effect is not ideal. UTILITY MODEL CONTENT
[0004] The utility model discloses a kind of material receiving and conveying mechanisms for silica gel raw material mixing, which can directly transport the raw material received after mixing by mixing mill to the place where it needs to be placed, without manual carrying, greatly reducing the labor intensity, and the upper portion is provided with sliding cover, which can be covered after placing raw material, achieving covering, and the sliding cover is not easy to fall off from the material receiving box, with good covering effect and good use effect.
[0005] The utility model discloses a kind of material receiving and conveying mechanisms for silica gel raw material mixing, which can directly transport the raw material received after mixing by mixing mill to the place where it needs to be placed, without manual carrying, greatly reducing the labor intensity, and the upper portion is provided with sliding cover, which can be covered after placing raw material, achieving covering, and the sliding cover is not easy to fall off from the material receiving box, with good covering effect and good use effect.
[0006] A kind of material receiving and conveying mechanism for silica gel raw material mixing, including two lateral guide rails installed in the rear of mixing mill, horizontal rack is fixed on the ground between the two lateral guide rails, and the horizontal rack is parallel to the two lateral guide rails, the material receiving and conveying mechanism is placed above the two lateral guide rails, and the front and rear of the bottom of the material receiving and conveying mechanism are movably connected with wheels, the wheels are placed on the corresponding lateral guide rail, the upper portion of the lateral guide rail is in the annular groove formed on the outer side wall of the middle portion of the wheel, the bottom surface middle portion of the bottom plate of the material receiving and conveying mechanism is fixed with drive motor, the output shaft of the drive motor is fixed with drive gear, and the drive gear is engaged with the horizontal rack.
[0007] The top surface of the top plate of the material receiving and conveying mechanism is fixed with a plurality of positioning blocks, the material receiving box is placed above the top plate of the material receiving and conveying mechanism, the bottom surface of the bottom plate of the material receiving box is fixed with a plurality of positioning sleeves, the positioning blocks are inserted into the corresponding positioning sleeves, and the bottom surface of the lower supporting leg is pressed against the top surface of the top plate of the material receiving and conveying mechanism.
[0008] The upper outer side wall of the left and right side plates of the material receiving box is fixed with front and rear extending side support beams, and the upper part of the rear wall plate of the material receiving box is fixed with a left and right extending rear transverse plate, the rear ends of the two side support beams are shaped or fixed at the left and right parts of the front wall surface of the rear transverse plate, and the top surface of the rear transverse plate is higher than the top surface of the material receiving box.
[0009] The top surface of the two side support beams near the left side wall or the right side wall of the material receiving box is shaped with downward extending insertion grooves, the front ends of the insertion grooves extend out of the front end surface of the side support beam, the middle part of the side wall of the insertion groove at the outer side is shaped with a guide groove, the top plate of the sliding cover is pressed against the top surface of the material receiving box, the left and right end bottom surfaces of the top plate of the sliding cover are shaped with downward extending side guide plates, the side guide plates are inserted into the corresponding insertion grooves, the middle part of the side guide plate is shaped with a middle guide part, the middle guide part is inserted into the corresponding guide groove, and the rear wall surface of the top plate of the sliding cover is pressed against the upper part of the front wall surface of the rear transverse plate.
[0010] The front part of the top plate of the sliding cover is shaped with a downward extending front extension plate part, the rear wall surface of the front extension plate part is pressed against the front wall surface of the material receiving box, the middle part of the front wall surface of the front extension plate part is movably connected with a rotating piece through a hinge shaft, the middle part of the top surface of the limiting block is shaped with left and right extending limiting clamping grooves, the left and right end of the limiting clamping grooves extends out of the left and right side walls of the limiting block, and the lower part of the rotating piece is inserted into the limiting clamping groove.
[0011] The protruding effect of the utility model is:
[0012] It can directly convey the material processed by the internal mixer to the required placement position without manual carrying, greatly reduces the manual labor, and is provided with the sliding cover, the sliding cover can be covered after the material is placed, covering is realized, the sliding cover is not easy to fall off from the material receiving box, the covering effect is good, and the use effect is good. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is a partial structure schematic view of the utility model;
[0014] Figure 2 is Figure 1 a partial enlarged view of
[0015] Figure 3 is an angle changing partial structure schematic view of the utility model. CONCRETE EMBODIMENT
[0016] Embodiment, see as Figures 1 to 3As shown, a kind of silica gel raw material mixing with material receiving and conveying mechanism, including two lateral rails 10 installed at the rear of mixer, the ground between the two lateral rails 10 is fixed with lateral rack 11, the two lateral rails 10 and the lateral rack 11 one end at the rear of corresponding mixer, the other end extends to the material receiving chamber;
[0017] Lateral rack 11 is parallel to the two lateral rails 10, material receiving and moving trolley 20 is above the two lateral rails 10, the front and rear of the top of material receiving and moving trolley 20 are fixed with side baffle 25, left and right are provided with transmission shaft, the both ends of transmission shaft are movably connected on the two side baffles 25 by bearing, the front and rear of transmission shaft are fixed with wheel 21, wheel 21 is placed on corresponding lateral rail 10, the upper part of lateral rail 10 is in the annular groove formed on the lateral wall of the middle part of wheel 21, the middle part of the bottom of the bottom plate of material receiving and moving trolley 20 is fixed with drive motor 22, the output shaft of drive motor 22 is fixed with drive gear 23, drive gear 23 is engaged with lateral rack 11;The bottom of the bottom plate of material receiving and moving trolley 20 is also fixed with controller and lithium battery, lithium battery and drive motor 22 are electrically connected with controller by electric connection line, WiFi wireless module is installed on the control circuit board of controller, which is wirelessly connected with corresponding control host of factory building, that is, WiFi wireless module is also installed on the control circuit in corresponding control host in factory building, so that wireless transmission of control signal of control host and controller can be realized, which is the known structure and control mode, and will not be described here in detail.Material receiving and moving trolley 20 needs to be charged or directly replace lithium battery after a certain period of use.
[0018] The top of the top plate of material receiving and moving trolley 20 is fixed with a plurality of positioning blocks 24, material receiving box 30 (the material receiving box 30 of the embodiment is a plastic box) is placed above the top plate of material receiving and moving trolley 20, the bottom of the bottom plate of material receiving box 30 is fixed with a plurality of positioning sleeves 31, positioning block 24 is inserted into corresponding positioning sleeve 31, the bottom of the bottom of the four corners of the bottom plate of material receiving box 30 is fixed with lower supporting leg 32, the bottom of lower supporting leg 32 is pressed against the top of the top plate of material receiving and moving trolley 20.
[0019] The positioning block 24 is a circular truncated cone column with small top outer diameter and large bottom outer diameter, the inner side wall of the positioning sleeve 31 is a tapered wall surface, the upper part of which has small inner diameter and the lower part has large inner diameter, the positioning block 24 is inserted into the corresponding positioning sleeve 31, and the outer side wall thereof is pressed against the inner side wall of the positioning sleeve 31.
[0020] The positioning block 24 is a circular truncated cone column, and the inner side wall of the positioning sleeve 31 is a tapered wall surface. Such structure makes the positioning block 24 can be conveniently inserted into the corresponding positioning sleeve 31 when the material receiving box 30 is placed, and facilitates installation and positioning.
[0021] Further, the outer side wall of the left and right side plates of the material receiving box 30 is fixed with a holding part 33.
[0022] Further, the front and rear of the bottom plate of the material receiving moving trolley 20 is fixed with a side baffle 25, the bottom surface of the left and right ends of the side baffle 25 is fixed with an induction blocking plate 26, the outer side of the left or right end of the two transverse guide rails 10 is fixed with a connecting seat 1, the front and rear corresponding two connecting seats 1 is respectively fixed with an infrared receiver 2 and an infrared emitter 3, the infrared emitter 3 irradiates infrared rays to the receiving end of the infrared receiver 2, and the induction blocking plate 26 corresponds to the corresponding infrared receiver 2 and infrared emitter 3.
[0023] Further, the upper outer side wall of the left and right side plates of the material receiving box 30 is fixed with a front and rear extending side support beam 34, the upper part of the rear wall plate of the material receiving box 30 is fixed with a left and right extending rear transverse plate 35, the rear end of the two side support beams 34 is shaped or fixed at the left and right parts of the front wall surface of the rear transverse plate 35, and the top surface of the rear transverse plate 35 is higher than the top surface of the material receiving box 30.
[0024] Further, the top surface of the two side support beams 34 near the left or right side wall of the material receiving box 30 is shaped with a downward extending insertion slot, the front end of the insertion slot extends out of the front end surface of the side support beam 34, the middle part of the side wall of the outer side of the insertion slot is shaped with a guide groove, the top plate of the sliding cover 36 is pressed against the top surface of the material receiving box 30, the left and right ends of the bottom surface of the top plate of the sliding cover 36 is shaped with a downward extending side guide plate 361, the side guide plate 361 is inserted into the corresponding insertion slot, the middle part of the outer side wall of the side guide plate 361 is shaped with a middle guide part 362, the middle guide part 362 is inserted into the corresponding guide groove, and the rear wall surface of the top plate of the sliding cover 36 is pressed against the upper front wall surface of the rear transverse plate 35.
[0025] The rear wall surface of the top plate of the sliding cover 36 is fixed with an elastic sealing layer 4, and the elastic sealing layer 4 is pressed against the upper front wall surface of the rear transverse plate 35.
[0026] The front part of the top plate of the sliding cover 36 is shaped with a downward extending front extending plate part 37, the rear wall surface of the front extending plate part 37 is pressed against the front wall surface of the material receiving box 30, the middle part of the front wall surface of the front extending plate part 37 is movably connected with a rotating piece 371 through a hinge shaft, the middle part of the top surface of the limiting block 38 fixed with a left and right extending limiting clamping groove 381, the left and right ends of the limiting clamping groove 381 extends out of the left and right side walls of the limiting block 38, the lower part of the rotating piece 371 is inserted into the limiting clamping groove 381, and the front wall surface of the middle part of the front extending plate part 37 is fixed with a front holding part above.
[0027] All the electric appliances of the embodiment are electrically connected with the control host through the electric connecting line, and are controlled to run through the control host, which will not be described in detail here.
[0028] In use, the induction blocking plate 26 at the left part of the material receiving moving trolley 20 is between the corresponding infrared receiver 2 and infrared emitter 3 at the left end, and blocks the infrared radiation of the infrared emitter 3 from reaching the receiving end of the corresponding infrared receiver 2. At this time, it indicates that the material receiving moving trolley 20 is behind the internal mixer. When the internal mixer pours the mixed raw materials, it will pour into the material receiving box 30. Then, the sliding cover 36 is manually slid onto the material receiving box 30 along the two side support beams 34, and is covered, then the rotating piece 371 is rotated so that the lower part of the rotating piece 371 is inserted into the limiting clamping groove 381, and the clamping cover is completed. Then, the driving motor 22 is operated to move the material receiving moving trolley 20 to the discharging chamber (wherein the operator also has a remote controller which is wirelessly connected with the controller of the material receiving moving trolley 20, and can control the movement of the material receiving moving trolley 20 through the remote controller, which is a conventional control structure and manner, which will not be described in detail here).
[0029] Until the induction blocking plate 26 at the right part of the material receiving moving trolley 20 is between the corresponding infrared receiver 2 and infrared emitter 3 at the right end, and blocks the infrared radiation of the infrared emitter 3 from reaching the receiving end of the corresponding infrared receiver 2, indicating that it has been moved into position. At this time, the control host controls the driving motor 22 to stop running, then the material receiving box 30 can be lifted by the crane and carried to the corresponding placement position in the discharging chamber.
[0030] The embodiment makes it convenient to carry materials, greatly reduces the amount of manual labor, and has good use effect.
Claims
1. A material receiving and conveying mechanism for the batch mixing of silica gel raw materials, comprising two lateral guide rails (10) installed at the rear of a batch mixer, characterized in that: The ground between the two transverse rails (10) is fixed with a transverse rack (11) which is parallel to the two transverse rails (10), the receiving and moving trolley (20) is above the two transverse rails (10), the front and rear of the bottom of the receiving and moving trolley (20) are movably connected with wheels (21), the wheels (21) are placed on the corresponding transverse rails (10), the upper part of the transverse rail (10) is in the annular groove formed on the outer side wall of the middle part of the wheel (21), the middle part of the bottom surface of the bottom plate of the receiving and moving trolley (20) is fixed with a driving motor (22), the output shaft of the driving motor (22) is fixed with a driving gear (23), the driving gear (23) is engaged with the transverse rack (11); The top surface of the top plate of the receiving and moving trolley (20) is fixed with a plurality of positioning blocks (24), the receiving box (30) is placed above the top plate of the receiving and moving trolley (20), the bottom surface of the bottom plate of the receiving box (30) is fixed with a plurality of positioning sleeves (31), the positioning block (24) is inserted into the corresponding positioning sleeve (31), the bottom surface of the bottom plate of the receiving box (30) is fixed with a lower supporting leg (32) at the four corners, and the bottom surface of the lower supporting leg (32) is pressed against the top surface of the top plate of the receiving and moving trolley (20).
2. The raw material feeding and conveying mechanism for the silicagel raw material banburying according to claim 1, characterized in that: The positioning block (24) is a circular truncated cone column with a small top outer diameter and a large bottom outer diameter, the inner side wall of the positioning sleeve (31) is a tapered wall surface with a small upper inner diameter and a large lower inner diameter, and the positioning block (24) is inserted into the corresponding positioning sleeve (31) with the outer side wall pressed against the inner side wall of the positioning sleeve (31).
3. The raw material feeding and conveying mechanism for the silicagel raw material banburying according to claim 1, characterized in that: The outer side walls of the left and right side plates of the receiving box (30) are fixed with holding portions (33).
4. The raw material feeding and conveying mechanism for the compacting of silica gel according to claim 1, characterized in that: The front and rear of the bottom plate of the receiving and moving trolley (20) are fixed with side baffles (25), the bottom surfaces of the left and right ends of the side baffles (25) are fixed with sensing blocking plates (26), the outer sides of the left ends or the right ends of the two transverse rails (10) are fixed with connecting seats (1), the infrared receivers (2) and the infrared emitters (3) are respectively fixed on the corresponding two connecting seats (1), the infrared emitter (3) irradiates infrared rays to the receiving end of the infrared receiver (2), and the sensing blocking plate (26) corresponds to the corresponding infrared receiver (2) and infrared emitter (3).
5. The raw material feeding and conveying mechanism for the compacting of silica gel according to claim 1, characterized in that: The upper outer side walls of the left and right side plates of the receiving box (30) are fixed with front and rear extending side supporting beams (34), the upper part of the rear wall plate of the receiving box (30) is fixed with a left and right extending rear transverse plate (35), the rear ends of the two side supporting beams (34) are formed or fixed at the left and right parts of the front wall surface of the rear transverse plate (35), and the top surface of the rear transverse plate (35) is higher than the top surface of the receiving box (30).
6. The raw material feeding and conveying mechanism for the compacting of silica gel according to claim 5, characterized in that: The two side support beams (34) are formed with downward extending insertion slots near the top surface of the left or right side wall of the receiving box (30), the front end of the insertion slot extends out of the front end surface of the side support beam (34), the middle part of the side wall of the outer side of the insertion slot is formed with a guide slot, the top plate of the sliding cover (36) is pressed against the top surface of the receiving box (30), the left and right ends of the bottom surface of the top plate of the sliding cover (36) are formed with downward extending side guide plates (361), the side guide plates (361) are inserted into the corresponding insertion slots, the middle part of the outer side wall of the side guide plates (361) is formed with an intermediate guide part (362), the intermediate guide part (362) is inserted into the corresponding guide slot, and the rear wall surface of the top plate of the sliding cover (36) is pressed against the upper front wall surface of the rear transverse plate (35).
7. The raw material feeding and conveying mechanism for the compacting of silica gel according to claim 6, characterized in that: The rear wall surface of the top plate of the sliding cover (36) is fixed with an elastic sealing layer (4), and the elastic sealing layer (4) is pressed against the upper front wall surface of the rear transverse plate (35).
8. The raw material feeding and conveying mechanism for the compacting of silica gel according to claim 6, characterized in that: The front part of the bottom surface of the top plate of the sliding cover (36) is formed with a downward extending front extension plate part (37), the rear wall surface of the front extension plate part (37) is pressed against the front wall surface of the receiving box (30), the middle part of the front wall surface of the front extension plate part (37) is movably connected with a rotating piece (371) through a hinge shaft, the middle part of the top surface of the front wall surface of the receiving box (30) is fixed with a limiting block (38), the middle part of the top surface of the limiting block (38) is formed with left and right extending limiting clamping grooves (381), the left and right ends of the limiting clamping grooves (381) extend out of the left and right side walls of the limiting block (38), the lower part of the rotating piece (371) is inserted into the limiting clamping grooves (381), and the front wall surface of the middle part of the front extension plate part (37) is fixed with a front holding part above.