Rapid pore plate in-out bin mechanism with lifting basket
By designing a rapid perforated plate loading and unloading mechanism with a basket, and utilizing a locking platform and loading/unloading mechanism, combined with the design of a cam motor and cam, the automated storage and retrieval of the rapid perforated plate is achieved, solving the problem of inconvenience in storing and retrieving deep baskets, and improving operational convenience and efficiency.
Patent Information
- Application Number
- CN202520324295.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-02-27
AI Technical Summary
Existing rapid perforation plates are inconvenient to store and retrieve in deep baskets, affecting storage and retrieval efficiency.
The design includes a fast perforated plate loading and unloading mechanism with a basket, comprising a locking platform, loading and unloading mechanism, drive assembly, top plate assembly, and perforated plate assembly. Through the cooperation of a cam motor and cam, the fast perforated plate inside the basket is automatically removed and placed in.
It enables automated storage and retrieval of perforated plates, avoids the impact of deep baskets on storage and retrieval, and improves operational convenience and efficiency.
Smart Images

Figure CN223822536U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of automatic loading and unloading of perforated plates, specifically a mechanism for loading and unloading perforated plates with a basket. Background Technology
[0002] The main applications of high-speed orifice plates include flow measurement and flow rate control.
[0003] As a standard throttling device with a wide range of specifications, the quick-access orifice plate plays an important role in the field of fluid flow measurement, especially gas flow measurement, thanks to its simple structure and excellent adaptability.
[0004] When storing perforated plates, they are usually placed in a special basket for perforated plates. When taking them out, the perforated plates need to be taken out through the bottom of the basket. The basket is a storage item with a predetermined depth. When the depth is large, it is not convenient to store and take out the perforated plates. This is a problem that needs to be solved.
[0005] Therefore, in order to improve the efficiency and convenience of retrieving and storing the perforated plate in the basket, it is necessary to design an in-and-out mechanism to automatically place and retrieve the perforated plate from the basket, so as to avoid the deep basket affecting the storage and retrieval of the perforated plate. Summary of the Invention
[0006] Purpose of the utility model: To provide a rapid perforated plate loading and unloading mechanism with a basket, so as to solve the above-mentioned problems existing in the prior art.
[0007] Technical solution: A rapid perforated plate loading and unloading mechanism with a basket, comprising:
[0008] A housing, with a basket located above the housing;
[0009] Also includes:
[0010] A locking platform is installed on the top of the housing, and the locking platform is adapted to the basket;
[0011] The inbound / outbound mechanism is installed inside the housing and is designed as at least one set, including a drive assembly, and a top plate assembly and a perforated plate assembly mounted on the drive assembly;
[0012] The drive assembly includes a moving module, a cam motor mounted on the moving module, and a first cam and a second cam mounted on the output end of the cam motor;
[0013] The first cam abuts against the orifice plate assembly, and the second cam abuts against the top plate assembly;
[0014] The convex ends of the first cam and the second cam are not in the same direction.
[0015] This utility model adapts to the basket by designing a locking platform. The basket is inserted into the locking platform, and the quick-release plate inside the basket is taken out through the loading and unloading mechanism, while the external quick-release plate is put into the basket. This completes the automatic insertion and removal of the quick-release plate inside the basket, avoiding the interference of quick-release plate removal when the basket is too deep.
[0016] In a further embodiment, the locking platform includes:
[0017] A locking plate is installed on the housing;
[0018] The locking element is designed in at least one set and installed at the bottom of the locking plate. Each set consists of two pairs. Each pair includes a locking box connected to the locking plate, a locking tongue located inside the locking box and adapted to the locking box, and a linkage pin installed on the locking tongue and extending to the outside of the locking box.
[0019] The basket is connected by a locking platform designed for insertion.
[0020] In a further embodiment, the basket is designed in at least one set, each set including:
[0021] A base is provided on the locking platform, and a perforated plate latch is provided in the base. The bottom of the perforated plate latch has a pin hole that matches the linkage pin.
[0022] A baffle is installed on the base.
[0023] The top of the locking box and the bottom of the base are provided with slots for the movement of the linkage pin.
[0024] Springs are provided between the latch and the latch box, and between the latch and the base.
[0025] This application takes a basket design of 4 sets, an inbound / outbound mechanism design of 2 sets, and a locking fastener design of 4 sets as an example; the number of locking fasteners is equal to the number of baskets.
[0026] A basket is designed for placing the quick-release perforated plate.
[0027] In a further embodiment, the mobile module includes:
[0028] A movable slide rail is installed inside the housing, and a movable slider is adapted on the movable slide rail;
[0029] A movable rack is installed inside the housing;
[0030] A movable frame is mounted on the movable slide rail. A movable motor is mounted on the side of the movable frame. The output end of the movable motor is provided with a movable gear that meshes with the movable rack.
[0031] The cam motor is mounted on the movable frame.
[0032] By designing a moving module to drive the top plate assembly and the perforated plate assembly, the perforated plate can be moved quickly to a predetermined position.
[0033] In a further embodiment, the top plate assembly includes:
[0034] A top plate slide rail is connected to a movable frame, and a top plate slider is adapted on the top plate slide rail;
[0035] The top plate frame is connected to the top plate slider and abuts against the second cam. The two ends of the top plate frame are provided with top plate wedges that are adapted to the latch tongue.
[0036] The top plate frame has slots for the movement of the perforated plate assembly;
[0037] By designing the top plate assembly with unlocking fasteners, the quick-release plate can be dropped.
[0038] In a further embodiment, the perforated plate assembly includes:
[0039] A tray slide rail is connected to a movable frame, and a tray slider is adapted on the tray slide rail;
[0040] The perforated plate tray is connected to the tray slider and abuts against the first cam.
[0041] The perforated plate tray is equipped with a perforated plate sensor.
[0042] The perforated plate assembly is designed to either hold the quick-release perforated plate that falls from the basket, or to lift the quick-release perforated plate back into the basket.
[0043] Beneficial effects: This utility model discloses a quick perforated plate loading and unloading mechanism with a basket. This utility model adapts the basket by designing a locking platform. The basket is inserted into the locking platform, and the quick perforated plate inside the basket is taken out and the external quick perforated plate is put into the basket through the loading and unloading mechanism. This completes the automatic loading and unloading of the quick perforated plate inside the basket, avoiding the problem of the quick perforated plate being affected when the basket is too deep. Attached Figure Description
[0044] Figure 1 This is a schematic diagram of the structure of this utility model.
[0045] Figure 2 This is a schematic diagram of the inbound / outbound mechanism of this utility model.
[0046] Figure 3 This is a schematic diagram of the locking platform structure of this utility model.
[0047] Figure 4 This is a schematic diagram of the basket structure of this utility model.
[0048] Figure 5 This is a schematic diagram of the cross-sectional structure of the basket of this utility model.
[0049] Figure 6 This is a cross-sectional structural diagram of the basket of this utility model when it is inserted into the locking platform.
[0050] The attached figures are labeled as follows:
[0051] 1. Shell;
[0052] 2. Loading / unloading mechanism; 211. Moving motor; 212. Moving rack; 213. Moving slide rail; 214. Moving frame; 215. Cam motor; 216. First cam; 217. Second cam;
[0053] 221. Top plate frame; 222. Top plate slider; 223. Top plate slide rail; 224. Top plate wedge;
[0054] 231. Perforated plate tray; 232. Tray slider; 233. Tray slide rail;
[0055] 3. Locking platform; 31. Locking plate; 32. Locking box; 33. Locking tongue; 34. Link pin;
[0056] 4. Basket; 41. Baffle; 42. Base; 43. Hole plate locking tongue. Detailed Implementation
[0057] This application relates to a rapid perforated plate loading and unloading mechanism with a basket, which will be explained in detail below through specific embodiments.
[0058] A rapid perforated plate loading / unloading mechanism with a basket, comprising:
[0059] Casing 1,
[0060] Basket 4, located above the housing 1, is designed in at least one set, each set including:
[0061] The base 42 is disposed on the locking platform 3. The base 42 is provided with a perforated plate locking tongue 43. The bottom of the perforated plate locking tongue 43 has a pin hole that is compatible with the linkage pin 34.
[0062] A baffle 41 is installed on the base 42, and the baffle 41 is provided with a handrail and a handle.
[0063] The top of the locking box 32 and the bottom of the base 42 are provided with grooves for the movement of the linkage pin 34.
[0064] Springs are provided between the latch tongue 33 and the latch box 32, and between the perforated plate latch tongue 43 and the base 42.
[0065] This application takes the design of 4 sets of basket 4, 2 sets of inbound / outbound mechanism 2, and 4 sets of locking fasteners as an example; the number of locking fasteners is equal to the number of basket 4.
[0066] The basket 4 is designed to place the quick-release perforated plate.
[0067] A locking platform 3 is installed on the top of the housing 1. The locking platform 3 is adapted to the basket 4. The locking platform 3 includes:
[0068] The locking plate 31 is installed on the housing 1;
[0069] The locking components are designed in at least one set and installed at the bottom of the locking plate 31. Each set consists of two pairs. Each pair includes a locking box 32 connected to the locking plate 31, a locking tongue 33 located inside the locking box 32 and adapted to the locking box 32, and a linkage pin 34 installed on the locking tongue 33 and extending to the outside of the locking box 32.
[0070] The locking platform 3 is designed to connect the basket 4.
[0071] The in-and-out mechanism 2 is installed inside the housing 1, and at least one set is designed, including a drive assembly, and a top plate assembly and a perforated plate assembly installed on the drive assembly;
[0072] The drive assembly includes a moving module, a cam motor 215 mounted on the moving module, and a first cam 216 and a second cam 217 mounted on the output end of the cam motor 215.
[0073] The first cam 216 abuts against the orifice plate assembly, and the second cam 217 abuts against the top plate assembly;
[0074] The convex ends of the first cam 216 and the second cam 217 are not in the same direction. The most common way is that the first cam 216 and the second cam 217 are designed in opposite directions.
[0075] This utility model adapts the locking platform 3 to the basket 4, inserts the basket 4 into the locking platform 3, and uses the in-and-out mechanism 2 to take out the quick-release plate inside the basket 4 and put the external quick-release plate into the basket 4, thereby completing the automatic insertion and removal of the quick-release plate inside the basket 4, avoiding the problem of the quick-release plate being affected when the basket 4 is too deep.
[0076] When the basket 4 is inserted into the locking platform 3, the locking tongue 43 of the perforated plate is inserted into the linkage pin 34, and the locking tongue 33 of the lock and the locking tongue 43 of the perforated plate are linked.
[0077] Taking the first cam 216 and the second cam 217 as an example of reverse design;
[0078] When the protrusion of the second cam 217 is at its highest point, the top plate wedge 224 of the top plate frame 221 reaches the position where it abuts against the latch tongue 33.
[0079] When the quick-release plate is removed, the first cam 216 and the second cam 217 rotate in one direction for a full revolution. During the rotation, the first cam 216 and the second cam 217 drive the plate assembly and the top plate assembly to move respectively. The top plate assembly abuts against the latch tongue 33, causing the plate latch tongue 43 to release its limit on the quick-release plate. At this time, the quick-release plate falls onto the plate assembly, completing the removal of the quick-release plate.
[0080] When inserting the quick-release plate, the first cam 216 and the second cam 217 rotate in one direction to the designated position and then rotate in the opposite direction to retract the plate assembly. The first cam 216 drives the plate assembly to move, causing the quick-release plate to abut against the plate locking tongue 43. The quick-release plate continues to rise until it rises above the plate locking tongue 43, completing the insertion of the quick-release plate.
[0081] The mobile module includes:
[0082] A movable slide rail 213 is installed inside the housing 1, and a movable slider is adapted on the movable slide rail 213;
[0083] The movable rack 212 is installed inside the housing 1;
[0084] A movable frame 214 is mounted on the movable slide rail 213. A movable motor 211 is mounted on the side of the movable frame 214. The output end of the movable motor 211 is provided with a movable gear that meshes with the movable rack 212.
[0085] The cam motor 215 is mounted on the movable frame 214.
[0086] By designing a moving module to drive the top plate assembly and the perforated plate assembly, the perforated plate can be moved quickly to a predetermined position.
[0087] The top plate assembly includes:
[0088] The top plate slide rail 223 is connected to the movable frame 214, and the top plate slide rail 223 is equipped with a top plate slider 222.
[0089] The top plate frame 221 is connected to the top plate slider 222 and abuts against the second cam 217. The top plate frame 221 has top plate wedges 224 at both ends that are adapted to the latch tongue 33.
[0090] The top plate frame 221 has a slot for the perforated plate assembly to move.
[0091] By designing the top plate assembly with unlocking fasteners, the quick-release plate can be dropped.
[0092] The orifice plate assembly includes:
[0093] The tray slide rail 233 is connected to the movable frame 214, and the tray slide rail 233 is equipped with a tray slider 232.
[0094] The perforated plate tray 231 is connected to the tray slider 232 and abuts against the first cam 216.
[0095] The perforated plate tray 231 is equipped with a perforated plate sensor;
[0096] The perforated plate assembly is designed to either hold the quick-release perforated plate that falls from the basket 4, or to push the quick-release perforated plate into the basket 4.
[0097] Working principle description: When working, insert the basket 4 into the locking platform 3, and insert the locking tongue 43 of the perforated plate into the linkage pin 34. At this time, the locking tongue 33 of the locking plate and the locking tongue 43 of the perforated plate are linked.
[0098] The position of the top plate assembly and the perforated plate assembly is adjusted by moving the module. The moving motor 211 drives the moving gear to rotate, which in turn drives the moving frame 214 to move along the moving slide rail 213 to complete the position adjustment.
[0099] After the position is adjusted, taking the first cam 216 and the second cam 217 as an example of reverse design;
[0100] When the quick-release plate is removed, the first cam 216 and the second cam 217 rotate a full circle in one direction. During the rotation, the first cam 216 abuts against the plate tray 231, causing the plate tray 231 to rise. The second cam 217 abuts against the top plate frame 221, causing the top plate frame 221 to rise. When rising, the top plate wedge 224 abuts against the latch tongue 33, causing the latch tongue 33 to retract, which drives the linkage pin 34 to move, causing the plate latch tongue 43 to retract, unlocking the quick-release plate in the basket 4. At this time, the quick-release plate falls onto the plate tray 231, completing the removal of the quick-release plate.
[0101] When the quick-release plate is inserted, the first cam 216 and the second cam 217 rotate in one direction to a designated position (less than one revolution), and then rotate in the opposite direction to retract the plate tray 231. During the movement, the first cam 216 drives the plate tray 231 to move, so that the quick-release plate on the plate tray 231 abuts against the plate locking tongue 43. The quick-release plate continues to rise until it rises above the plate locking tongue 43, where it is locked by the plate locking tongue 43. Then, the first cam 216 and the second cam 217 rotate in the opposite direction to retract the plate tray 231, completing the insertion of the quick-release plate.
[0102] When the quick-release plate is inserted, because the first cam 216 and the second cam 217 do not rotate a full revolution, the top plate wedge 224 of the top plate bracket 221 does not reach the position of abutting the latch tongue 33. At this time, the plate latch will not be driven by the latch tongue 33.
[0103] The preferred embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the specific details of the above embodiments. Within the scope of the technical concept of the present invention, various equivalent transformations can be made to the technical solutions of the present invention, and all such equivalent transformations fall within the protection scope of the present invention.
Claims
1. A rapid perforated plate loading / unloading mechanism with a basket, comprising: Housing (1), basket (4) located above the housing (1); Its characteristic is that it further includes: A locking platform (3) is installed on the top of the housing (1), and the locking platform (3) is adapted to the basket (4); The in-and-out mechanism (2) is installed inside the housing (1) and is designed in at least one form, including a drive assembly, and a top plate assembly and a perforated plate assembly mounted on the drive assembly; The drive assembly includes a moving module, a cam motor (215) mounted on the moving module, and a first cam (216) and a second cam (217) mounted on the output end of the cam motor (215). The first cam (216) abuts against the orifice plate assembly, and the second cam (217) abuts against the top plate assembly; The protrusions of the first cam (216) and the second cam (217) are not in the same direction.
2. The rapid perforated plate loading and unloading mechanism with a basket according to claim 1, characterized in that: The locking platform (3) includes: A locking plate (31) is installed on the housing (1); The locking components are designed in at least one set and installed at the bottom of the locking plate (31). Each set consists of two pairs, each pair including a locking box (32) connected to the locking plate (31), a locking tongue (33) located inside the locking box (32) and adapted to the locking box (32), and a linkage pin (34) installed on the locking tongue (33) and extending to the outside of the locking box (32).
3. The rapid perforated plate loading and unloading mechanism with a basket according to claim 2, characterized in that: The basket (4) is designed in at least one set, each set including: The base (42) is provided on the locking platform (3). The base (42) is provided with a perforated plate latch (43). The bottom of the perforated plate latch (43) has a pin hole that is compatible with the linkage pin (34). A baffle (41) is installed on the base (42).
4. The rapid perforated plate loading and unloading mechanism with a basket according to claim 1, characterized in that: The mobile module includes: A movable slide rail (213) is installed inside the housing (1), and a movable slider is adapted on the movable slide rail (213); A movable rack (212) is installed inside the housing (1); A movable frame (214) is mounted on the movable slide rail (213). A movable motor (211) is mounted on the side of the movable frame (214). The output end of the movable motor (211) is provided with a movable gear that meshes with the movable rack (212). The cam motor (215) is mounted on the movable frame (214).
5. The rapid perforated plate loading and unloading mechanism with a basket according to claim 1, characterized in that: The top plate assembly includes: The top plate slide rail (223) is connected to the movable frame (214), and the top plate slide rail (223) is equipped with a top plate slider (222). The top plate frame (221) is connected to the top plate slider (222) and abuts against the second cam (217). The top plate frame (221) has top plate wedges (224) at both ends that are adapted to the latch tongue (33).
6. The rapid perforated plate loading and unloading mechanism with a basket according to claim 1, characterized in that: The orifice plate assembly includes: A tray slide rail (233) is connected to a movable frame (214), and a tray slider (232) is adapted on the tray slide rail (233). The perforated plate tray (231) is connected to the tray slider (232) and abuts against the first cam (216).