Rectangular glass fruit tray blanking mechanism
By designing the blanking mechanism of slide rods, trapezoidal frames, cross rods, straws, pistons, bases, belt conveyors and collection boxes, the problems of difficulty in removing and complex stacking of rectangular glass fruit plates after forming are solved, and a fast and safe blanking operation is achieved.
Patent Information
- Application Number
- CN202422857412.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-11-22
AI Technical Summary
After the rectangular glass fruit tray is formed, the auxiliary material extraction structure is lacking, and it is difficult to remove and fragile, requiring careful operation, which increases the blanking collection time.
A blanking mechanism including a slide rod, trapezoidal frame, crossbar, straw, piston, base, belt conveyor and collection box is designed to achieve rapid material pickup and stacking through suction cup adsorption and belt conveying.
The rapid removal and stacking of rectangular glass fruit trays is achieved, reducing operational complexity and labor time.
Smart Images

Figure CN223149713U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass product processing, and particularly relates to a blanking mechanism for a rectangular glass fruit plate. Background Art
[0002] The forming of glass must be carried out within a certain temperature range, which is a cooling process. Glass first changes from a viscous liquid state to a plastic state and then to a brittle solid state. The forming methods include blowing, drawing, pressing, etc. Among them, pressing forming is to pick up a mass of glass, cut it with scissors and let it fall into the female die, and then press it with the male die, mainly used for forming cups, plates, etc. For example, a rectangular glass fruit plate is formed in this way, but there are the following drawbacks in its blanking operation after forming:
[0003] First of all, for a rectangular glass fruit plate, after it is pressed and cooled to form, it needs to be taken out before blanking and collection. However, for a rectangular glass fruit plate that adheres to the inner wall of the mold, it is very inconvenient to take out, so a structure that is convenient and fast for taking materials is needed to assist the work;
[0004] Secondly, the rectangular glass fruit plate is relatively fragile and needs to be handled with care, which leads to the need to be extra careful during the blanking operation, and even more attention is needed when stacking them, resulting in a great increase in working hours. Content of the Utility Model
[0005] The purpose of the utility model is to provide a blanking mechanism for a rectangular glass fruit plate, which solves the problems that there is a lack of an auxiliary material taking structure after the rectangular glass fruit plate is formed, and it is necessary to be extra careful when the rectangular glass fruit plates are blanked and stacked, increasing the working hours required for blanking and collection, by setting a sliding rod, a trapezoidal frame, a cross bar, a suction pipe, a piston, a base, a belt conveyor, and a collection box.
[0006] To solve the above technical problems, the utility model is realized through the following technical solutions:
[0007] The utility model is a blanking mechanism for a rectangular glass fruit plate, including two bases, two trapezoidal frames and a collection box. A belt conveyor is arranged between the two bases. Chutes are opened on the upper end surfaces of the two bases, and a collection box is slidably arranged on the two bases above the belt conveyor;
[0008] Trapezoidal frames are slidably arranged on the two chutes. A vertically arranged sliding rod is fixed between the inner top surface and the inner bottom surface of each trapezoidal frame. Two cross bars are arranged between the sliding rods in the two trapezoidal frames, and two symmetrically and vertically distributed suction pipes are fixedly arranged outside the two cross bars. A piston is movably arranged in the suction pipe. A control rod is fixed to the upper end of the piston, and a suction cup is fixedly arranged through the bottom end of the suction pipe.
[0009] Further, both ends of the drum in the belt conveyor are connected to the opposite surfaces of the two bases. Rubber ribs are fixed on the belt in the belt conveyor at equidistant intervals, and the inclined surfaces of the rubber ribs face the direction of the trapezoidal frame.
[0010] Further, a connecting block is also fixed between the opposite surfaces of the two bases, and the connecting block is located beside the belt conveyor away from the trapezoidal frame. The bottom surfaces of the two bases are also jointly fixed with U-shaped connecting frames distributed at equidistant intervals. Symmetrically distributed rollers are fixed on the side edges of the bottoms of the two bases facing away from each other.
[0011] Further, an opening is provided on the bottom surface of the collection box, and symmetrically distributed sliders are fixed on the bottom surface of the collection box on both sides of the opening. The sliders are slidably arranged in the adjacent chutes.
[0012] Further, sleeves are fixed at both ends of each cross bar, and the two ends of the cross bar are respectively sleeved outside two sliding rods through the two sleeves.
[0013] Further, two slots are respectively formed on the outer peripheral surfaces of the two opposite straws. Two connecting rods are jointly fixed on the two control rods, and both ends of the connecting rods pass through the opposite slots on the two straws and extend into the straws to be fixed with the control rods.
[0014] Further, a limiting groove is also formed on any one of the bases, and a limiting strip is slidably arranged above the limiting groove. A limiting block is fixed at the bottom of the limiting strip, and the limiting block is slidably arranged in the limiting groove. The length of the limiting block is less than that of the limiting strip. One end of the limiting strip close to the collection box contacts the tail of the collection box.
[0015] The utility model has the following beneficial effects:
[0016] By arranging the sliding rod, trapezoidal frame, cross bar, straw, and piston, the utility model solves the problem that there is a lack of an auxiliary material taking structure after the rectangular glass fruit plate is formed. First, according to the user's height and working position, etc., any appropriate cross bar is selected and held, so that the sleeve at its end slides down along the sliding rod in the trapezoidal frame until the suction cup at the bottom of the straw contacts the rectangular glass fruit plate in the mold. Then, any one of the connecting rods is pulled up, so that the control rod moves upward, and the piston moves upward, thereby forming negative pressure in the suction cup, making it firmly adsorb on the surface of the rectangular glass fruit plate. Subsequently, the cross bar moves upward until the rectangular glass fruit plate is driven to move upward, so that the rectangular glass fruit plate leaves the mold, completing the rapid material taking operation. When discharging, the connecting rod is moved downward, and the normal pressure can be quickly restored to achieve discharging.
[0017] The utility model solves the problems that when rectangular glass fruit plates are fed and stacked, extra care is needed and the working hours required for feeding and collection are increased by setting a base, a belt conveyor and a collection box; the taken-out rectangular glass fruit plates are placed on the belt conveyor and leaned against the rubber ribs, and as the belt conveyor conveys, they slowly enter the collection box for collection. With continuous feeding and dropping, under the continuous conveyance of the belt conveyor, they are stacked in the collection box. Description of the Drawings
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below.
[0019] Figure 1 It is a three-dimensional view of a feeding mechanism for rectangular glass fruit plates;
[0020] Figure 2 It is Figure 1 a structural diagram from another perspective;
[0021] Figure 3 It is a bottom view of a feeding mechanism for rectangular glass fruit plates;
[0022] Figure 4 It is a connection diagram of a cross bar and a straw;
[0023] Figure 5 It is a cross-sectional view of a straw;
[0024] Figure 6 It is a structural diagram of a base and its attached components;
[0025] Figure 7 It is a bottom view of a collection box;
[0026] Figure 8 It is a structural diagram of a limiting strip.
[0027] Reference Signs:
[0028] 1. Base; 101. Connecting block; 102. Chute; 103. Roller; 104. Connecting frame; 105. Belt conveyor; 1051. Rubber rib; 106. Limiting groove; 2. Trapezoidal frame; 201. Slide bar; 202. Cross bar; 2021. Sleeve; 203. Straw; 2031. Slotted opening; 2032. Connecting rod; 2033. Piston; 2034. Control rod; 204. Suction cup; 3. Collection box; 301. Opening; 302. Slide block; 4. Limiting strip; 401. Limiting block. Detailed Embodiments
[0029] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model.
[0030] Please refer to Figure 1-8 As shown in the figure, the utility model relates to a blanking mechanism for a rectangular glass fruit plate, which comprises two bases 1, two trapezoidal frames 2 and a collection box 3. A belt conveyor 105 is arranged between the two bases 1. Chutes 102 are opened on the upper end surfaces of the two bases 1, and a collection box 3 is slidably arranged on the two bases 1 above the belt conveyor 105;
[0031] The two bases 1 serve as carriers, and a belt conveyor 105 is arranged between them to assist in blanking and transporting the rectangular glass fruit plate for collection. A collection box 3 is slidably arranged above it to collect and stack the rectangular glass fruit plates transported by the belt conveyor 105;
[0032] Trapezoidal frames 2 are slidably arranged on the two chutes 102. A vertically arranged sliding rod 201 is fixed between the inner top surface and the inner bottom surface of each trapezoidal frame 2. Two cross bars 202 are arranged between the sliding rods 201 in the two trapezoidal frames 2. Two symmetrically and vertically distributed suction pipes 203 are fixedly arranged outside the two cross bars 202. A piston 2033 is movably arranged in the suction pipe 203. A control rod 2034 is fixed to the upper end of the piston 2033. The bottom end of the suction pipe 203 is fixedly penetrated with a suction cup 204;
[0033] The sliding rod 201 is installed by using the trapezoidal frame 2, and the cross bar 202 is arranged between the sliding rods 201. The cross bar 202 can be lifted along the sliding rod 201 through a sleeve 2021, so as to adapt to different die heights for material taking. The suction pipes 203 are fixedly arranged outside the cross bar 202. The suction cup 204 contacts the rectangular glass fruit plate, and then with the upward movement of the control rod 2034, the piston 2033 is driven to move upward, so that the inside of the suction cup 204 is in negative pressure, and the rectangular glass fruit plate is sucked up, which is convenient for taking the rectangular glass fruit plate.
[0034] The two ends of the roller in the belt conveyor 105 are connected to the opposite surfaces of the two bases 1. Rubber ribs 1051 are fixed on the belt in the belt conveyor 105 at equal intervals, and the inclined surfaces of the rubber ribs 1051 face the direction of the trapezoidal frame 2;
[0035] The driving part in the belt conveyor 105 is omitted. Rubber ribs 1051 are arranged on the conveyor belt. After taking the rectangular glass fruit plate, it is placed along the inclined surface of the rubber rib 1051 and enters the collection box 3 as the belt conveyor 105 runs.
[0036] A connecting block 101 is also fixed between the opposite surfaces of the two bases 1, and the connecting block 101 is located beside the belt conveyor 105 away from the trapezoidal frame 2. A U-shaped and equally spaced connecting frame 104 is also fixed to the bottom surfaces of the two bases 1. Symmetrically distributed rollers 103 are fixed to the side edges of the bottoms of the two bases 1 facing away from each other;
[0037] The stability between the bases 1 is enhanced by the connecting block 101. In cooperation with the connecting frame 104 connected at the bottoms of the two bases 1, the structure is made more stable to avoid shaking. The base 1 can move on the ground through the rollers 103.
[0038] An opening 301 is provided on the bottom surface of the collection box 3, and symmetrically distributed sliders 302 are fixed to the bottom surface of the collection box 3 on both sides of the opening 301. The sliders 302 are slidably disposed in the adjacent chute 102.
[0039] The opening 301 is used for allowing the rubber ribs 1051 and the rectangular glass fruit plate to enter the collection box 3. The length of the rectangular glass fruit plate is slightly greater than the width of the belt conveyor 105. The collection box 3 slides through the sliders 302 in the chute 102 to maintain position limitation and prevent deviation.
[0040] Sleeves 2021 are fixed to both ends of each cross bar 202, and both ends of the cross bar 202 are respectively sleeved on two slide bars 201 through the two sleeves 2021.
[0041] The cross bar 202 is sleeved on the slide bar 201 through the sleeve 2021, enabling it to stably lift and change the height of the straw 203 and its bottom suction cup 204.
[0042] Two slots 2031 are provided on the outer peripheral surfaces of the two straws 203 facing each other. Two connecting rods 2032 are fixed to the two control rods 2034 together. The two ends of the connecting rod 2032 pass through the opposite slots 2031 on the two straws 203 and extend into the straws 203 to be fixed to the control rods 2034.
[0043] The slots 2031 provide a certain lifting space for the connecting rod 2032 to avoid movement interference. When the connecting rod 2032 lifts or lowers, the control rod 2034 is driven to lift or lower accordingly.
[0044] A limiting slot 106 is further provided on any one of the bases 1, and a limiting bar 4 is slidably disposed above the limiting slot 106. A limiting block 401 is fixed to the bottom of the limiting bar 4, and the limiting block 401 is slidably disposed in the limiting slot 106. The length of the limiting block 401 is less than the length of the limiting bar 4. One end of the limiting bar 4 close to the collection box 3 contacts the tail of the collection box 3.
[0045] After the position of the collection box 3 is limited, the limiting block 401 at the bottom of the limiting bar 4 is inserted into the limiting slot 106 until the end of the limiting bar 4 contacts the tail of the collection box 3, preventing the collection box 3 from moving backward.
[0046] The specific working principle of the present utility model is as follows: First, move the present utility model to the required location. First, arbitrarily select a suitable cross bar 202 and hold it, so that the sleeve 2021 at its end slides down along the slide bar 201 in the trapezoidal frame 2 until the suction cup 204 at the bottom of the straw 203 contacts the rectangular glass fruit plate in the mold. Pull up any connecting rod 2032 to move the control rod 2034 upward, and the piston 2033 moves upward to form negative pressure in the suction cup 204, making it firmly adsorb on the surface of the rectangular glass fruit plate. Subsequently, the cross bar 202 moves upward until the rectangular glass fruit plate is driven to move upward, causing the rectangular glass fruit plate to leave the mold and completing the rapid material taking operation;
[0047] Subsequently, the trapezoidal frame 2 moves in the chute 102 until the rectangular glass fruit plate is located above the belt conveyor 105. After taking the rectangular glass fruit plate, place it along the inclined surface of the rubber rib 1051 and enter the collection box 3 as the belt conveyor 105 operates; It is necessary to slide the collection box 3 through the slider 302 in the chute 102 in advance to make it located above the belt conveyor 105. After the position of the collection box 3 is determined, insert the limit block 401 at the bottom of the limit bar 4 into the limit groove 106 until the end of the limit bar 4 contacts the tail of the collection box 3 to prevent the collection box 3 from moving backward; The rectangular glass fruit plate is conveyed by the belt conveyor 105 and slowly enters the collection box 3 for collection. With continuous material taking and blanking, under the continuous conveyance of the belt conveyor 105, stacking occurs in the collection box 3.
[0048] The above are only the preferred embodiments of the present utility model and do not limit the present utility model. Any modification to the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, or improvement made shall fall within the protection scope of the present utility model.
Claims
1. A rectangular glass fruit plate blanking mechanism, comprising two bases (1), two trapezoidal frames (2) and a collection box (3), characterized in that: A belt conveyor (105) is arranged between the two bases (1). Chutes (102) are formed on the upper end faces of the two bases (1), and a collection box (3) is slidably arranged on the two bases (1) above the belt conveyor (105). Trapezoidal frames (2) are slidably arranged on the two chutes (102). A vertically arranged sliding rod (201) is fixed between the inner top surface and the inner bottom surface of each trapezoidal frame (2). Two cross bars (202) are arranged between the sliding rods (201) in the two trapezoidal frames (2). Two symmetrically and vertically distributed suction pipes (203) are fixedly arranged outside the two cross bars (202). A piston (2033) is movably arranged in the suction pipe (203). A control rod (2034) is fixed to the upper end of the piston (2033). The bottom end of the suction pipe (203) is fixedly penetrated with a suction cup (204).
2. The blanking mechanism of a rectangular glass fruit tray according to claim 1, characterized in that: The two ends of the roller in the belt conveyor (105) are connected to the opposite faces of the two bases (1). Rubber ribs (1051) are fixedly arranged at equal intervals on the belt in the belt conveyor (105), and the inclined surface of the rubber rib (1051) faces the direction of the trapezoidal frame (2).
3. A blanking mechanism for a rectangular glass fruit plate according to claim 1, characterized in that: A connecting block (101) is also fixed between the opposite faces of the two bases (1), and the connecting block (101) is located beside the belt conveyor (105) away from the trapezoidal frame (2). U-shaped connecting frames (104) are fixedly arranged at equal intervals and commonly fixed to the bottom surfaces of the two bases (1). Symmetrically distributed rollers (103) are fixed to the side edges of the bottoms of the two bases (1) facing away from each other.
4. A blanking mechanism for a rectangular glass fruit plate according to claim 1, characterized in that: An opening (301) is formed in the bottom surface of the collection box (3), and symmetrically distributed sliders (302) are fixed to the bottom surface of the collection box (3) on both sides of the opening (301). The sliders (302) are slidably arranged in the adjacent chutes (102).
5. A blanking mechanism for a rectangular glass fruit plate according to claim 1, characterized in that: Sleeves (2021) are fixed to both ends of each cross bar (202), and the two ends of the cross bar (202) are respectively sleeved outside the two sliding rods (201) through the two sleeves (2021).
6. The blanking mechanism of a rectangular glass fruit plate according to claim 1, characterized in that: Two slots (2031) are formed on the outer peripheral surfaces of the two opposite suction pipes (203). Two connecting rods (2032) are fixedly arranged on the two control rods (2034). The two ends of the connecting rod (2032) pass through the opposite slots (2031) on the two suction pipes (203) and extend into the suction pipes (203) to be fixed to the control rods (2034).
7. A blanking mechanism for a rectangular glass fruit plate according to claim 1, characterized in that: A limiting groove (106) is also formed in any one of the bases (1), and a limiting strip (4) is slidably arranged above the limiting groove (106). A limiting block (401) is fixed to the bottom of the limiting strip (4), and the limiting block (401) is slidably arranged in the limiting groove (106). The length of the limiting block (401) is less than the length of the limiting strip (4). The end of the limiting strip (4) close to the collection box (3) contacts the tail of the collection box (3).