Infrared support collecting device
By designing an infrared support collection device, and utilizing the coordinated movement of the flip plate and the material plate, the automated collection and orderly arrangement of infrared supports are achieved, solving the problem of slow collection speed in existing technologies and improving overall efficiency.
Patent Information
- Application Number
- CN202423142438.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-18
AI Technical Summary
In existing technologies, the collection and arrangement of infrared brackets is slow, resulting in low efficiency of manual operation and affecting subsequent automated processing.
An infrared bracket collecting device was designed, including a frame, a flip plate, a rotary drive mechanism, a material plate, and a pushing mechanism. The automatic collection and orderly arrangement of infrared brackets are achieved through the rotation of the flip plate and the sliding of the material plate.
This improved the speed of collecting and arranging infrared supports, enhanced overall efficiency, and ensured the smooth progress of subsequent automated processing.
Smart Images

Figure CN223591786U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to material collection technical field, especially in kind infrared support collection device. BACKGROUND
[0002] The infrared receiving head is an electronic component that can convert the received infrared light signal into an electrical signal, commonly used in remote control and other electronic devices. The infrared receiving head is usually composed of a bracket, an infrared receiver and a packaging layer. The infrared bracket is a base material for processing brackets, which is composed of multiple brackets. By punching or cutting the infrared bracket, multiple brackets can be processed. Before punching the infrared bracket, the end of the infrared bracket needs to be bent and shaped, that is, the top shielding of the infrared bracket needs to be bent and shaped to ensure that the subsequent infrared receiving head has good performance. The shaping device is a device for bending and shaping the end of the infrared bracket. The operator first sends the infrared bracket into the shaping device, then the shaping device bends and shapes the end of the infrared bracket, and finally the feeding device in the shaping device pushes the processed infrared bracket out of the discharge end of the shaping device. In the prior art, the operator will place the pushed out infrared bracket on the board one by one to complete the collection and arrangement of multiple infrared brackets. This manual collection and arrangement of the infrared bracket is slow and not conducive to improving the efficiency of the infrared bracket. SUMMARY
[0003] The utility model aims at at least solves one of the prior art technical problems. For this purpose, the utility model provides an infrared bracket collection device, which is beneficial to improve the efficiency of the infrared bracket.
[0004] The infrared support collecting device according to the embodiment of the utility model, including frame, the frame has the material pushing station on, the flap is equipped with cooperation groove on, the flap can rotatably be connected on the frame, the flap is used for with shaping equipment's discharge end correspondingly set up, to make the shaping equipment in the material feeding device can push into the cooperation groove in the infrared support, the flap is equipped in the right side of the material pushing station, rotary drive mechanism, rotary drive mechanism is equipped with on the frame, rotary drive mechanism is used for drive the flap rotates, to make the infrared support in the cooperation groove width direction can be parallel to up and down direction, the material board, the material board is equipped with on the left side of the flap, the material board is equipped with a plurality of containing groove, a plurality of containing groove is along the front and back direction distribution, a plurality of containing groove is all used for containing the infrared support, the material board can be slidably connected on the frame along the front and back direction, linear drive mechanism, linear drive mechanism is equipped with on the frame, linear drive mechanism can drive the material board moves from behind to front, to make a plurality of containing groove moves to the material pushing station place in turn, the material pushing mechanism, the material pushing mechanism is equipped with on the frame, the material pushing mechanism is used for the infrared support in the cooperation groove is pushed into the containing groove in the material pushing station place.
[0005] At least has following beneficial effect:
[0006] Under the action of the material feeding device in the shaping equipment, the infrared support that completes bending shaping will be pushed into the cooperation groove on the flap. After the infrared support moves into the cooperation groove, the rotary drive mechanism drives the flap to rotate, so that the width direction of the infrared support in the cooperation groove is parallel to the up and down direction. Then the material pushing mechanism pushes the infrared support in the cooperation groove into the containing groove on the material board at the material pushing station. After the infrared support in the cooperation groove is pushed into the containing groove on the material board, the rotary drive mechanism drives the flap to rotate and reset, so that the next infrared support can move into the cooperation groove on the flap, and at the same time, the linear drive mechanism drives the material board to move forward, so that the next containing groove can move to the material pushing station. Repeating the above process can make a plurality of infrared supports move into a plurality of containing grooves on the material board in turn, and make a plurality of infrared supports on the material board be arranged in order along the front and back direction. The infrared support collecting device can cooperate with the discharge speed of the shaping equipment to collect the processed infrared supports, and can arrange a plurality of infrared supports in order while collecting a plurality of infrared supports, thereby improving the collection and arrangement speed of the infrared supports, and further improving the collection efficiency of the infrared supports.
[0007] The infrared support collecting device according to the embodiment of the utility model further comprises a first baffle, the first baffle is connected with the frame, and the area between the first baffle and the flap is used for moving the end of the infrared support. The first baffle is used for abutting against the end of the infrared support.
[0008] The infrared support collecting device according to the embodiment of the utility model, the rotary drive mechanism includes first linear drive piece, rack and pinion, the first linear drive piece is located on the frame, the rack is parallel to the front and back direction, the pinion is connected with the flap, the rack is engaged with the pinion, the first linear drive piece is used for driving the rack moves along the front and back direction, to make the rack drives the pinion rotates, and make the pinion drives the flap rotates.
[0009] The infrared support collecting device according to the embodiment of the utility model, the push mechanism includes second linear drive piece and push plate, the second linear drive piece is located on the frame, the output end of second linear drive piece is connected with the push plate, the second linear drive piece can drive the push plate moves from right to left, to make the push plate pushes the infrared support in the matching groove into the containing groove at the push station.
[0010] The infrared support collecting device according to the embodiment of the utility model, the push mechanism further includes connecting arm, the connecting arm is slidably connected on the frame along the left and right direction, the right end of the connecting arm is connected with the upper end of the push plate, the connecting arm is connected with the output end of the second linear drive piece.
[0011] The infrared support collecting device according to the embodiment of the utility model further includes auxiliary mechanism, the auxiliary mechanism is located on the frame, the auxiliary mechanism is used to make the infrared support in front of the push station inclines forward, to hinder the infrared support at the push station and the infrared support in front collides.
[0012] The infrared support collecting device according to the embodiment of the utility model, the auxiliary mechanism includes third linear drive piece, fourth linear drive piece and lever, the lever is parallel to the left and right direction, the third linear drive piece can drive the lever moves to the right, to make the lever moves to the rear of the infrared support in front of the push station, the fourth linear drive piece can drive the lever moves forward, to make the lever pushes the infrared support in front of the push station inclines forward.
[0013] The infrared support collecting device according to the embodiment of the utility model, the right end of the lever forms a pointed end, the pointed end is used to abut against the infrared support.
[0014] The infrared support collecting device according to the embodiment of the utility model further includes slide base, the slide base is slidably connected on the frame along the front and back direction, the slide base is connected with the output end of the linear drive mechanism, the material plate is detachably connected on the slide base.
[0015] The additional aspects and advantages of the present application will be given partly in the following description, and partly will become obvious from the following description, or will be understood by practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0016] The present application will be further described below in conjunction with the drawings and embodiments, wherein:
[0017] Figure 1 Structure schematic view of the infrared support in the vertical state of the embodiment of the present application;
[0018] Figure 2 Structure schematic view of the infrared support in the horizontal state of the embodiment of the present application;
[0019] Figure 3 Structure schematic view of the infrared support collecting device of the embodiment of the present application;
[0020] Figure 4 Structure schematic view of the rotary drive mechanism in the infrared support collecting device of the embodiment of the present application;
[0021] Figure 5 Structure schematic view of another view of the infrared support collecting device of the embodiment of the present application;
[0022] Figure 6 Structure schematic view of the material plate and the auxiliary mechanism in the infrared support collecting device of the embodiment of the present application;
[0023] Reference signs:
[0024] Rack 100; first baffle 110; sliding seat 120; material plate 130; accommodating groove 131; second baffle 140;
[0025] Rotary drive mechanism 200; first linear drive 210; rack 220; gear 230; flap 240; matching groove 241;
[0026] Pushing mechanism 300; second linear drive 310; connecting arm 320; push plate 330;
[0027] Auxiliary mechanism 400; third linear drive 410; fourth linear drive 420; push rod 430;
[0028] Linear drive mechanism 500. DETAILED DESCRIPTION
[0029] In the description of the present application, multiple means two or more. If there is a description of the first, the second is only used for distinguishing technical features for the purpose, and can not be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the relationship between the indicated technical features.
[0030] In the description of the utility model, unless otherwise explicitly limited, the words such as setting, installing, connecting should be understood broadly, and the skilled in the art can determine the specific meaning of the above words in the utility model in combination with the specific content of technical scheme.
[0031] Reference Figures 1 to 3 、 Figure 5 And Figure 6 According to the infrared bracket collecting device of the utility model embodiment, it comprises a rack 100, a flap 240, a rotary drive mechanism 200, a material plate 130, a linear drive mechanism 500 and a material pushing mechanism 300.
[0032] The rack 100 is provided with a material pushing station, the flap 240 is provided with a matching groove 241, the flap 240 is rotatably connected on the rack 100, the flap 240 is used for being correspondingly arranged with the discharge end of the shaping equipment, so that the feeding device in the shaping equipment can push the infrared bracket into the matching groove 241, and the flap 240 is arranged at the right side of the material pushing station. The rotary drive mechanism 200 is arranged on the rack 100, the rotary drive mechanism 200 is used to drive the flap 240 to rotate, so that the width direction of the infrared bracket in the matching groove 241 can be parallel to the up-down direction. The material plate 130 is arranged at the left side of the flap 240, the material plate 130 is provided with a plurality of containing grooves 131, the plurality of containing grooves 131 are distributed along the front-back direction, the plurality of containing grooves 131 are all used for containing the infrared bracket, and the material plate 130 is slidably connected on the rack 100 along the front-back direction. The linear drive mechanism 500 is arranged on the rack 100, the linear drive mechanism 500 can drive the material plate 130 to move from back to front, so that the plurality of containing grooves 131 are sequentially moved to the material pushing station. The material pushing mechanism 300 is arranged on the rack 100, and the material pushing mechanism 300 is used to push the infrared bracket in the matching groove 241 into the containing groove 131 at the material pushing station.
[0033] The infrared support collecting device is used in cooperation with the shaping equipment. It is to be explained that in the embodiment of the utility model, the material plate 130 is provided with a plurality of accommodating grooves 131 for accommodating the infrared supports, the length direction of the plurality of accommodating grooves 131 is parallel to the left-right direction, and the plurality of accommodating grooves 131 are distributed along the length direction of the material plate 130, so that the material plate 130 is used for collecting and arranging the plurality of infrared supports. In the prior art, after the shaping equipment completes the bending and shaping processing of the infrared supports, the feeding device in the shaping equipment pushes out the processed infrared supports from the discharge end of the shaping equipment, at this time, the operator sequentially and orderly places the pushed-out infrared supports in the plurality of accommodating grooves 131 on the material plate 130, so that the material plate 130 collects and arranges the plurality of infrared supports. Finally, the operator sends the material plate 130 and the plurality of infrared supports on the material plate 130 into the post-processing equipment for automatic processing of the infrared supports. It is not difficult to see that the operator needs to align the accommodating grooves 131 on the material plate 130 and sequentially place the plurality of infrared supports in the plurality of accommodating grooves 131, and this manual collection and arrangement of the infrared supports is slow, which not only helps to improve the collection efficiency of the infrared supports, but also may cause some accommodating grooves 131 to have no infrared supports due to manual errors, thereby affecting the automatic processing of the subsequent infrared supports.
[0034] The rack 100 is provided with a pushing station, and the pushing station is rotatably connected with a turning plate 240 on the right side of the pushing station, and the turning plate 240 is provided with a matching groove 241 for accommodating the infrared support. Figure 2 In the embodiment of the utility model, the infrared support pushed out from the discharge end of the shaping equipment is in a horizontal state, that is, the width direction of the infrared support pushed out from the discharge end of the shaping equipment is parallel to the front-rear direction. Figure 3 The turning plate 240 is matched with the discharge end of the shaping equipment, and in the embodiment of the utility model, the turning plate 240 is arranged on the left side of the discharge end of the shaping equipment, and the feeding device in the shaping equipment pushes out the infrared support from the discharge end of the shaping equipment from right to left. Before the turning plate 240 is not rotated, the turning plate 240 is in a horizontal state, so that the infrared support moving from right to left can be moved into the matching groove 241 on the turning plate 240.
[0035] Reference Figure 1 , Figure 2 and Figure 4The rotary driving mechanism 200 is connected to the frame 100, and after the infrared support moves into the matching groove 241 on the turning plate 240, the rotary driving mechanism 200 drives the turning plate 240 to rotate, so that the width direction of the infrared support on the turning plate 240 is parallel to the up-down direction, that is, the infrared support and the turning plate 240 are kept in a vertical state. Specifically, after the infrared support moves into the matching groove 241 on the turning plate 240, the rotary driving mechanism 200 drives the turning plate 240 to rotate by 90°. The linear driving mechanism 500 is connected to the frame 100, and the output end of the linear driving mechanism 500 is connected to the material plate 130, and the linear driving mechanism 500 is used to drive the material plate 130 to move in the front-back direction. In the process of collecting and arranging the infrared supports, the linear driving mechanism 500 drives the material plate 130 to move from back to front, so that the plurality of accommodating grooves 131 on the material plate 130 can be sequentially moved to the pushing material station. The pushing material mechanism 300 is connected to the frame 100, and specifically, the pushing material mechanism 300 can push the infrared support in the matching groove 241 from right to left, so that the infrared support in the matching groove 241 can be moved from right to left into the accommodating groove 131 at the pushing material station. In the embodiment of the utility model, the left and right ends of the turning plate 240 are both hinged to the frame 100 through two hinge shafts, so as to realize the rotation of the turning plate 240, which will not be described further here.
[0036] It can be understood that, under the action of the feeding device in the shaping device, the infrared support that is bent and shaped will be pushed into the matching groove 241 on the turning plate 240. After the infrared support moves into the matching groove 241, the rotary driving mechanism 200 drives the turning plate 240 to rotate, so that the width direction of the infrared support in the matching groove 241 is parallel to the up-down direction. Then the pushing material mechanism 300 pushes the infrared support in the matching groove 241 into the accommodating groove 131 on the material plate 130 at the pushing material station. After the infrared support in the matching groove 241 is pushed into the accommodating groove 131 on the material plate 130, the rotary driving mechanism 200 drives the turning plate 240 to rotate and reset, so that the next infrared support can move into the matching groove 241 on the turning plate 240, and at the same time, the linear driving mechanism 500 drives the material plate 130 to move forward, so that the next accommodating groove 131 can move to the pushing material station. Repeating the above process can make the plurality of infrared supports be sequentially pushed into the plurality of accommodating grooves 131 on the material plate 130, and make the plurality of infrared supports on the material plate 130 be arranged in order in the front-back direction. The infrared support collecting device can cooperate with the discharging speed of the shaping device to collect the processed infrared supports, and can arrange the plurality of infrared supports in order while collecting the plurality of infrared supports, thereby improving the collecting and arranging speed of the infrared supports, and further improving the collecting efficiency of the infrared supports.
[0037] Reference Figure 4The infrared bracket collecting device further comprises a first baffle 110 connected with the rack 100, and a region between the first baffle 110 and the flap 240 is used for movement of the end of the infrared bracket, and the first baffle 110 is used for abutting against the end of the infrared bracket. It can be understood that the end of the infrared bracket moves in the region between the first baffle 110 and the flap 240 in the process of entering the matching groove 241 on the flap 240. The first baffle 110 can abut against the end of the infrared bracket to limit the infrared bracket from falling out of the matching groove 241. In the utility model, the bottom of the infrared bracket is inserted into the accommodating groove 131. Referring to Figure 1 and Figure 2 The end of the infrared bracket is the upper end of the infrared bracket, and the bottom of the infrared bracket is the lower end of the infrared bracket.
[0038] Referring to Figure 3 and Figure 4 The rotating driving mechanism 200 comprises a first linear driving piece 210, a rack 220 and a gear 230, the first linear driving piece 210 is arranged on the rack 100, the rack 220 is parallel to the front-back direction, the gear 230 is connected with the flap 240, the rack 220 is engaged with the gear 230, and the first linear driving piece 210 is used for driving the rack 220 to move along the front-back direction, so that the rack 220 drives the gear 230 to rotate, and the gear 230 drives the flap 240 to rotate. It can be understood that after the feeding device in the shaping equipment pushes the infrared bracket into the matching groove 241 on the flap 240, the first linear driving piece 210 drives the rack 220 to move backward, so that the gear 230 rotates and drives the flap 240 to rotate by 90°, and then the infrared bracket in the matching groove 241 can be kept in a vertical state. After the infrared bracket in the matching groove 241 is pushed into the accommodating groove 131 on the material plate 130 by the pushing mechanism 300, the first linear driving piece 210 drives the rack 220 to move forward, so that the flap 240 rotates by 90° and resets, so that the next infrared bracket can enter the matching groove 241 on the flap 240. The first linear driving piece 210 can be a first air cylinder, which will not be described further herein. As an embodiment of the utility model, the rack 100 is provided with a second baffle 140, the second baffle 140 is used for abutting against the flap 240, so that the flap 240 can be kept in a vertical state. As an embodiment of the utility model, the rack 100 is provided with a third stopper, the third stopper is used for abutting against the flap 240, so that the flap 240 is kept in a horizontal state.
[0039] Referring to Figure 3 and Figure 5The pushing mechanism 300 comprises a second linear driving member 310 and a pushing plate 330. The second linear driving member 310 is arranged on the rack 100, and the output end of the second linear driving member 310 is connected with the pushing plate 330. The second linear driving member 310 can drive the pushing plate 330 to move from right to left, so that the pushing plate 330 pushes the infrared support in the matching groove 241 into the containing groove 131 at the pushing station. The pushing mechanism 300 further comprises a connecting arm 320, which is slidably connected with the rack 100 in the left-right direction. The right end of the connecting arm 320 is connected with the upper end of the pushing plate 330, and the connecting arm 320 is connected with the output end of the second linear driving member 310. It can be understood that the connecting arm 320 and the pushing plate 330 jointly form an L-shaped structure. During the process that the feeding device in the shaping device pushes the infrared support into the matching groove 241 on the turning plate 240, the second linear driving member 310 drives the connecting arm 320 and the pushing plate 330 to move to the right, so that the connecting arm 320 and the pushing plate 330 move above the turning plate 240. After the turning plate 240 rotates by 90°, the infrared support in the matching groove 241 is located to the left of the pushing plate 330. Then the second linear driving member 310 drives the connecting arm 320 and the pushing plate 330 to move to the left, and the pushing plate 330 can push the infrared support in the matching groove 241 into the pushing plate 130 at the pushing station. In the embodiment of the utility model, the second linear driving member 310 is a second air cylinder, and the piston rod of the second air cylinder is connected with the connecting arm 320, which will not be described further herein.
[0040] With reference to Figure 5 And Figure 6 The auxiliary mechanism 400 is arranged on the rack 100, and is used for inclining the infrared support in front of the pushing station forward, so as to prevent the infrared support in the pushing station from colliding with the infrared support in front. It can be understood that, after the infrared support is pushed into the containing groove 131, the infrared support will swing forward and backward in the containing groove 131 due to the gap between the infrared support and the inner side wall of the containing groove 131. During the process that the pushing mechanism 300 pushes the infrared support in the matching groove 241 into the containing groove 131 at the pushing station, the auxiliary mechanism 400 can incline the infrared support in the containing groove 131 in front of the pushing station forward, so as to prevent the infrared support in front of the pushing station from colliding with the infrared support in the pushing station, and enable the pushing mechanism 300 to smoothly push the infrared support into the containing groove 131 at the pushing station.
[0041] With reference to Figure 6, the auxiliary mechanism 400 comprises a third linear driving member 410, a fourth linear driving member 420 and a poking rod 430, the poking rod 430 is parallel to the left-right direction, the third linear driving member 410 can drive the poking rod 430 to move rightwards so as to move the poking rod 430 to the rear of the infrared bracket in front of the pushing station, and the fourth linear driving member 420 can drive the poking rod 430 to move forwards so as to push the infrared bracket in front of the pushing station to incline forwards. It can be understood that, after the pushing mechanism 300 pushes the infrared bracket into the accommodating groove 131 at the pushing station, the linear driving mechanism 500 drives the material plate 130 to move forwards, so that the next accommodating groove 131 moves to the pushing station, then the third linear driving member 410 drives the poking rod 430 to move rightwards to the upper side of the material plate 130, so that the poking rod 430 moves to the rear of the infrared bracket in front of the pushing station. Then the fourth linear driving mechanism 500 drives the poking rod 430 to move forwards, the poking rod 430 pushes the infrared bracket in front of the pushing station forwards, so that the infrared bracket in front of the pushing station inclines forwards, so that the next infrared bracket can smoothly enter the accommodating groove 131 at the pushing station.
[0042] After the pushing mechanism 300 pushes the next infrared bracket into the accommodating groove 131 at the pushing station, the third linear driving member 410 drives the poking rod 430 to move leftwards away from the upper side of the material plate 130, the fourth linear driving member 420 drives the poking rod 430 to move backwards to reset, then the linear driving mechanism 500 drives the material plate 130 to move forwards, so that the next accommodating groove 131 moves to the pushing station. In the embodiment of the utility model, the third linear driving member 410 and the fourth linear driving member 420 are respectively a third cylinder and a fourth cylinder, the cylinder body of the fourth cylinder is connected with the rack 100, the piston rod of the fourth cylinder is connected with the cylinder body of the third cylinder, and the piston rod of the third cylinder is connected with the left end of the poking rod 430, which will not be further described here. As an embodiment of the utility model, the right end of the poking rod 430 is formed with a pointed end, and the pointed end is used for abutting against the infrared bracket. It can be understood that the pointed end of the right end of the poking rod 430 can abut against the infrared bracket, and the outer wall of the pointed end has a guiding effect, so that the poking rod 430 can smoothly move rightwards to the rear of the infrared bracket in front of the pushing station.
[0043] Reference Figure 5 and Figure 6The infrared support collecting device further comprises a sliding seat 120 connected to the rack 100 in a sliding manner along the front-rear direction, the sliding seat 120 is connected to the output end of the linear driving mechanism 500, and the material plate 130 is detachably connected to the sliding seat 120. It can be understood that the material plate 130 is connected to the rack 100 in a sliding manner along the front-rear direction through the sliding seat 120. When the plurality of accommodation grooves 131 on the material plate 130 all accommodate the infrared supports, the operator can detach the material plate 130 from the sliding seat 120 and replace it with an empty material plate 130, so that the infrared support collecting device can continue to collect and arrange the plurality of infrared supports. After the operator removes the material plate 130 and the plurality of infrared supports on the material plate 130 from the sliding seat 120, the material plate 130 and the plurality of infrared supports on the material plate 130 can be sent into subsequent automatic equipment for subsequent infrared support processing. As an embodiment of the present application, a plurality of first magnets are arranged on the sliding seat 120, a plurality of second magnets are arranged on the bottom of the material plate 130, the plurality of first magnets and the plurality of second magnets can be magnetically attracted to each other, so that the material plate 130 can be detachably connected to the sliding seat 120, which will not be described further here.
[0044] In the embodiment of the present application, the linear driving mechanism 500 is a common screw nut driving mechanism, the screw rod in the screw nut driving mechanism is parallel to the front-rear direction, and the screw nut driving mechanism can drive the sliding seat 120 to move forward by a certain step each time, so that the plurality of accommodation grooves 131 on the material plate 130 can be moved forward in sequence to the material pushing station. The screw nut driving mechanism is a common driving mechanism, which will not be described further here. In the embodiment of the present application, the infrared support collecting device comprises a plurality of material plates 130, the plurality of material plates 130 are detachably connected to the sliding seat 120, and the plurality of material plates 130 are distributed along the front-rear direction. As an embodiment of the present application, the side of the material plate 130 facing the turning plate 240 is provided with a guide inclined surface for abutting against the infrared support. It can be understood that the guide inclined surface can abut against the infrared support pushed by the material pushing mechanism 300, and the guide inclined surface plays a guiding role on the infrared support moving to the left, so that the material pushing mechanism 300 can smoothly push the infrared support into the accommodation groove 131 at the material pushing station.
[0045] The technical features of the above-described embodiments can be combined in any manner, and to make the description concise, not all possible combinations of the technical features in the above-described embodiments are described, however, as long as the combinations of the technical features do not exist contradictions, they should be considered as the scope of the present application.
[0046] Of course, the present application is not limited to the above-described embodiments, and those skilled in the art can make equivalent modifications or replacements without departing from the spirit of the present application, and these equivalent modifications or replacements are all included in the scope defined by the claims of the present application.
Claims
1. An infrared cradle collection device, characterized by, The utility model relates to a kind of infrared support conveying device, including: Rack (100), the rack (100) has push material station on it; Turnover plate (240), the turnover plate (240) is equipped with cooperation groove (241), the turnover plate (240) is rotatably connected on the rack (100), the turnover plate (240) is used to be correspondingly arranged with the discharge end of shaping equipment, so that the feeding device in the shaping equipment can push infrared support into the cooperation groove (241), the turnover plate (240) is located at the right side of the push material station; Rotary drive mechanism (200), the rotary drive mechanism (200) is equipped on the rack (100), the rotary drive mechanism (200) is used to drive the turnover plate (240) rotation, so that the width direction of the infrared support in the cooperation groove (241) can be parallel to up and down direction; Material plate (130), the material plate (130) is equipped on the left side of the turnover plate (240), the material plate (130) is equipped with multiple accommodating grooves (131), multiple accommodating grooves (131) are distributed along front and back direction, multiple accommodating grooves (131) are used for accommodating the infrared support, the material plate (130) is slidably connected on the rack (100) along front and back direction; Linear drive mechanism (500), the linear drive mechanism (500) is equipped on the rack (100), the linear drive mechanism (500) can drive the material plate (130) to move from back to front, so that multiple accommodating grooves (131) are sequentially moved to the push material station; Push material mechanism (300), the push material mechanism (300) is equipped on the rack (100), and the push material mechanism (300) is used to push the infrared support in the cooperation groove (241) into the accommodating groove (131) in the push material station.
2. The infrared cradle collection device of claim 1, wherein: It further includes first baffle (110), the first baffle (110) is connected with the rack (100), the area between the first baffle (110) and the turnover plate (240) is used for the end of the infrared support to move, and the first baffle (110) is used to abut with the end of the infrared support.
3. The infrared cradle collection device of claim 1, wherein: The rotary drive mechanism (200) includes first linear drive piece (210), rack (220) and gear (230), the first linear drive piece (210) is equipped on the rack (100), the rack (220) is parallel to front and back direction, the gear (230) is connected with the turnover plate (240), the rack (220) is engaged with the gear (230), and the first linear drive piece (210) is used to drive the rack (220) to move along front and back direction, so that the rack (220) drives the gear (230) rotation, and the gear (230) drives the turnover plate (240) rotation.
4. The infrared cradle collection device of claim 1, wherein: The pushing mechanism (300) comprises a second linear driving member (310) and a pushing plate (330), the second linear driving member (310) is arranged on the rack (100), the output end of the second linear driving member (310) is connected with the pushing plate (330), and the second linear driving member (310) can drive the pushing plate (330) to move from right to left, so that the pushing plate (330) pushes the infrared support in the matching groove (241) into the containing groove (131) at the pushing station.
5. The infrared cradle collection device of claim 4, wherein: The pushing mechanism (300) further comprises a connecting arm (320), the connecting arm (320) is slidably connected on the rack (100) in the left-right direction, the right end of the connecting arm (320) is connected with the upper end of the pushing plate (330), and the connecting arm (320) is connected with the output end of the second linear driving member (310).
6. The infrared cradle collection device of claim 1, wherein: Further comprising an auxiliary mechanism (400), the auxiliary mechanism (400) is arranged on the rack (100), and the auxiliary mechanism (400) is used for inclining the infrared support in front of the pushing station forward, so as to hinder the infrared support at the pushing station from colliding with the infrared support in front.
7. The infrared cradle collection device of claim 6, wherein: The auxiliary mechanism (400) comprises a third linear driving member (410), a fourth linear driving member (420) and a pushing rod (430), the pushing rod (430) is parallel to the left-right direction, the third linear driving member (410) can drive the pushing rod (430) to move rightward, so that the pushing rod (430) moves to the rear of the infrared support in front of the pushing station, and the fourth linear driving member (420) can drive the pushing rod (430) to move forward, so that the pushing rod (430) inclines the infrared support in front of the pushing station forward.
8. The infrared cradle collection device of claim 7, wherein: The right end of the pushing rod (430) is formed with a pointed end, and the pointed end is used for abutting against the infrared support.
9. The infrared cradle collection device of claim 1, wherein: Further comprising a sliding seat (120), the sliding seat (120) is slidably connected on the rack (100) in the front-rear direction, the output end of the linear driving mechanism (500) is connected with the sliding seat (120), and the material plate (130) is detachably connected on the sliding seat (120).