Tool hopper

By combining multiple components, the tooling hopper solves the safety hazards and height inability of existing hoppers, improves stability and safety, reduces costs, and adapts to the transportation needs of various items.

CN223658395UActive Publication Date: 2025-12-12CHENGXI SHIPYARD
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Patent Information

Application Number
CN202422750792.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-12-12
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

Existing tooling hoppers suffer from inconsistent welding quality leading to safety hazards, inability to freely adjust height and pole density, resulting in limited transport of goods, increased welding costs, and increased risk of goods loss.

Method used

The device employs a multi-component design, including a base plate, telescopic pole frame, and connecting plate. Through threaded connections and bolt fixation, the height and pole density can be freely adjusted, ensuring the stability and safety of the device.

Benefits of technology

It improves the stability and safety of the device, reduces welding costs, meets the needs of transporting various items, and prevents items from slipping out and causing loss or injury to personnel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ship building, and discloses a tool hopper which comprises a bottom plate and a first telescopic rod frame, first threaded holes are formed in the two sides of the bottom plate, the inner walls of the first threaded holes are in threaded connection with first bolts, and the first threaded holes are in threaded connection with the first telescopic rod frame through the first bolts. According to the tool hopper, the bottom plate, the first telescopic rod frame, the first telescopic rod module, the first connecting plate, the second connecting plate, the second telescopic rod frame, the second telescopic rod module and the lifting lug ring are assembled, so that the tool hopper is formed by assembling various parts, and the parts are matched with one another; the whole stability of the device is improved due to the fact that the components are matched with one another, the components are constructed in a batch at the same time, the quality of the components is basically consistent, and the use safety of the device after being assembled is improved to a certain extent.
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Description

TECHNICAL FIELD

[0001] The utility model relates to shipbuilding technical field, concretely is a tool hopper. BACKGROUND

[0002] The tool hopper is a kind of equipment widely used in shipbuilding, its main role is to transport the materials needed for shipbuilding from ground to the destination in the sky, it can greatly improve the transportation efficiency of shipbuilding materials, quickly and accurately deliver materials to the designated position, can reduce the workload and risk of manual handling, reduce labor intensity, save time and improve construction efficiency.

[0003] Although the existing hopper can easily deliver all the materials needed for shipbuilding directly to the designated position and improve work efficiency, the existing tool hopper still has some drawbacks: first, the existing tool hopper is mostly manually welded, and the quality of the manually welded tool hopper depends entirely on the welding skills of the welder, so the manually welded tool hopper has a high safety risk;Second, the existing tool hopper cannot freely adjust the height, which makes the tool hopper can only hold materials within a fixed height each time, if you need to transport higher things, you need another specification hopper, which makes the site need to purchase or weld multiple types of hoppers to meet various needs, which undoubtedly increases the cost of shipbuilding;Third, the existing tool hopper can only weld fixed density vertical rods, which makes the hopper can only hold fixed volume of objects, once below this volume, it is easy to slip out from the gap between the vertical rods, causing loss of objects and personnel casualties. SUMMARY

[0004] (I) Technical problems solved

[0005] In view of the shortcomings of the prior art, the utility model provides a tool hopper, which has the advantages that the device is combined by multiple components, and the components are mutually adapted, increasing the stability and safety of the whole device, freely adjusting the height can adapt to more objects to meet the needs of the construction site, which makes it unnecessary to purchase other types of devices on site, reducing the construction cost, freely adjusting the density of vertical rods to hold multiple types of objects, preventing objects from slipping out of the gap between the fixed vertical rods, causing loss of objects and personnel casualties, etc., solving the problems that most of the existing devices are manually welded, the welding quality is uneven, the existing device has a high safety risk, the height of the existing device cannot be freely adjusted, the type of transported objects is single and cannot meet more needs of the site, multiple types of devices need to be purchased to increase the welding cost, and the vertical rods of the existing device are welded vertical rods, which are fixed density, causing some objects to slip out of the gap between the vertical rods, causing loss of objects and personnel casualties.

[0006] (ii) Technical Solution

[0007] To achieve the above shipbuilding purposes, the utility model provides the following technical scheme: a tooling hopper, including bottom plate, the both sides of bottom plate are equipped with first threaded hole, the inner wall of first threaded hole is equipped with first bolt, first threaded hole is equipped with first telescopic link frame through first bolt, the inner wall of first telescopic frame module is equipped with first telescopic link module, the front of first telescopic frame module is equipped with first connecting plate and second connecting plate from top to bottom in turn, first telescopic frame module is equipped with second telescopic link frame through first connecting plate, the inner wall of second telescopic link frame is equipped with second telescopic link module.

[0008] Preferably, the both sides of the first telescopic link module are provided with second threaded holes, the inner walls of the second threaded holes are threadedly connected with second bolts, the second threaded holes are threadedly connected with lifting lug rings through the second bolts, the second telescopic link frame is installed on the first telescopic link frame through the second connecting plate, the front of the second telescopic link frame is provided with a third threaded hole, the inner wall of the third threaded hole is threadedly connected with a third bolt, and the third threaded hole is threadedly connected with the bottom plate through the third bolt.

[0009] Preferably, the first telescopic link frame includes a first sliding groove plate, the top of the first sliding groove plate is provided with a first sliding groove, the inner wall of the first sliding groove is slidably connected with the first telescopic link module, the first sliding groove plate is installed with a second sliding groove plate through the first telescopic link module, and the top of the second sliding groove plate is provided with a second sliding groove.

[0010] Preferably, the first telescopic link module is installed on the inner wall of the second sliding groove, the front of the first sliding groove plate is provided with a fourth threaded hole, the inner wall of the fourth threaded hole is threadedly connected with a fourth bolt, the fourth threaded hole is threadedly connected with the second connecting plate through the fourth bolt, the front of the second connecting plate is provided with a fifth threaded hole, the inner wall of the fifth threaded hole is threadedly connected with a fifth bolt, and the fifth threaded hole is threadedly connected with the second telescopic link frame through the fifth bolt.

[0011] Preferably, the front of the second sliding groove plate is provided with a sixth threaded hole, the inner wall of the sixth threaded hole is threadedly connected with a sixth bolt, the sixth threaded hole is threadedly connected with the first connecting plate through the sixth bolt, the front of the first connecting plate is provided with a seventh threaded hole, the inner wall of the seventh threaded hole is threadedly connected with a seventh bolt, and the seventh threaded hole is threadedly connected with the second telescopic link frame through the seventh bolt.

[0012] Preferably, the first telescopic rod module comprises a first straight rod, the bottom of the first straight rod is fixedly connected with a first sliding tenon, the first sliding tenon and the first sliding groove are matched with each other, the side surface of the first straight rod is provided with a third sliding groove, the inner wall of the third sliding groove is slidably connected with a first threaded rod, and the surface of the first threaded rod is threadedly connected with a first threaded fastening ring.

[0013] Preferably, one end of the first threaded rod is fixedly connected with a second straight rod, the top of the first straight rod is provided with a first hole, the first hole and the second straight rod are matched with each other, the top of the second straight rod is fixedly connected with a second threaded rod, the surface of the second threaded rod is provided with a first threaded rod sleeve, the top of the first threaded rod sleeve is fixedly connected with a first rotary disc, and the top of the first rotary disc is fixedly connected with a first rotary handle.

[0014] Preferably, the second telescopic rod frame comprises a third sliding groove plate, the top of the third sliding groove plate is provided with a fourth sliding groove, the inner wall of the fourth sliding groove is provided with a second telescopic rod module, the third sliding groove plate is installed with a fourth sliding groove plate through the second telescopic rod module, and the top of the fourth sliding groove plate is provided with a fifth sliding groove.

[0015] Preferably, the second telescopic rod module comprises a third straight rod, the bottom of the third straight rod is fixedly connected with a second sliding tenon, the second sliding tenon and the fourth sliding groove are matched with each other, the side surface of the third straight rod is provided with a sixth sliding groove, the inner wall of the sixth sliding groove is provided with a third threaded rod, and the surface of the third threaded rod is threadedly connected with a second threaded fastening ring.

[0016] Preferably, one end of the third threaded rod is fixedly connected with a fourth straight rod, the top of the third straight rod is provided with a second hole, the second hole and the third straight rod are matched with each other, the top of the fourth straight rod is fixedly connected with a fourth threaded rod, the surface of the fourth threaded rod is threadedly connected with a second threaded rod sleeve, the top of the second threaded rod sleeve is fixedly connected with a second rotary disc, and the top of the second rotary disc is fixedly connected with a second rotary handle.

[0017] (Three) beneficial effects

[0018] Compared with the prior art, the utility model provides a tooling hopper has the following beneficial effects:

[0019] 1. The tooling hopper, through the assembly between the bottom plate, the first telescopic rod frame, the first telescopic rod module, the first connecting plate, the second connecting plate, the second telescopic rod frame, the second telescopic rod module and the lifting lug, the device is assembled by a plurality of components, and the components are mutually adapted, which increases the stability of the device as a whole, and because the components are adapted, the components are built at the same time, so that the quality of the components is basically consistent, which also increases the safety of the device after assembly.

[0020] 2. The tooling hopper, through the use of the first telescopic rod module and the second telescopic rod module, the device can freely move in the vertical direction, so that the device can freely adjust the height, and after adjusting the height to the required height, the height can be fixed, so that the device can actively adapt to various types of goods, which meets the demand of building site lifting of various types of goods, and because the device can freely adjust the height, the site does not need to purchase various types of devices, which reduces the cost of shipbuilding on site to a certain extent.

[0021] 3. The tooling hopper, through the use of the first telescopic rod frame and the second telescopic rod frame, the first telescopic rod module and the second telescopic rod module on the device can move parallelly on the first telescopic rod frame and the second telescopic rod frame respectively, which also makes the device can freely adjust the density between the vertical rods, so as to actively adapt to various goods, by freely changing the density of the vertical rods, some small goods can also be blocked in the device, which to a certain extent prevents small goods from sliding out of the vertical rod gap and causing damage to goods and personnel casualties. BRIEF DESCRIPTION OF DRAWINGS

[0022] Fig. 1 A tooling hopper structure schematic diagram is proposed for the utility model;

[0023] Fig. 2 A tooling hopper structure schematic diagram is proposed for the utility model;

[0024] Fig. 3 A first telescopic rod frame structure schematic diagram is proposed for the utility model;

[0025] Fig. 4 A first telescopic rod module structure schematic diagram is proposed for the utility model;

[0026] Fig. 5 A second telescopic rod frame structure schematic diagram is proposed for the utility model;

[0027] Fig. 6 A second telescopic rod module structure schematic diagram is proposed for the utility model;

[0028] In the figure: 1, the base plate; 2, the first telescopic rod frame; 201, the first sliding groove plate; 202, the second sliding groove plate; 3, the first telescopic rod module; 301, the first straight rod; 302, the first sliding tenon; 303, the first threaded rod; 304, the first threaded fastening ring; 305, the second straight rod; 306, the second threaded rod; 307, the first threaded rod sleeve; 308, the first rotary disc; 309, the first rotary handle; 4, the first connecting plate; 5, the second connecting plate; 6, the second telescopic rod frame; 601, the third sliding groove plate; 602, the fourth sliding groove plate; 7, the second telescopic rod module; 701, the third straight rod; 702, the second sliding tenon; 703, the third threaded rod; 704, the second threaded fastening ring; 705, the fourth straight rod; 706, the fourth threaded rod; 707, the second threaded rod sleeve; 708, the second rotary disc; 709, the second rotary handle; 8, the lifting lug. DETAILED DESCRIPTION

[0029] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.

[0030] Please refer to Figs. 1-2 A tool hopper shown in the figure, including the base plate 1, the first threaded hole is set up on both sides of the base plate 1, the inner wall of the first threaded hole is connected with the first bolt by thread, the first threaded hole is connected with the first telescopic rod frame 2 by thread through the first bolt, the inner wall of the first telescopic frame module 2 is equipped with the first telescopic rod module 3, the front of the first telescopic frame module 2 is sequentially equipped with the first connecting plate 4 and the second connecting plate 5 from top to bottom, the second telescopic rod frame 6 is installed through the first connecting plate 4, the inner wall of the second telescopic rod frame 6 is equipped with the second telescopic rod module 7, the second threaded hole is set up on both sides of the first telescopic rod module 3, the inner wall of the second threaded hole is connected with the second bolt by thread, the second threaded hole is connected with the lifting lug 8 by thread through the second bolt, the second telescopic rod frame 6 is installed through the second connecting plate 5, the front of the second telescopic rod frame 6 is equipped with the third threaded hole, the inner wall of the third threaded hole is connected with the third bolt by thread, the third threaded hole is connected with the base plate 1 by thread through the third bolt.

[0031] Put the first telescopic rod frame 2 and the second telescopic rod frame 6 on the bottom plate 1, put the first bolt through the first telescopic rod frame 2 into the first threaded hole on the bottom plate 1, and then put the third bolt into the third threaded hole on the second telescopic rod frame 6 and continue to rotate until it is screwed into the bottom plate 1, slide the first telescopic rod module 3 into the first telescopic rod frame 2, slide the second telescopic rod module 7 into the second telescopic rod frame 6, put the lifting lug 8 on the first telescopic rod frame 2, then put the second bolt through the lifting lug 8 and screw it into the first telescopic rod frame 2, then install the first connecting plate 4 between the first telescopic rod frame 2 and the second telescopic rod frame 6, and also put the second connecting plate 5 between the first telescopic rod frame 2 and the second telescopic rod frame 6 to complete the installation.

[0032] In use, the first telescopic rod module 3 and the second telescopic rod module 7 change the density between the vertical rods by moving in the first telescopic rod frame 2 and the second telescopic rod frame 6 respectively, then adjust the height of the first telescopic rod module 3 and the second telescopic rod module 7 as needed, fix the height after determining the height, then connect the first telescopic rod frame 2 and the second telescopic rod frame 6 with the first bolt and the third bolt to the bottom plate 1, then use the first connecting plate 4 and the second connecting plate 5 to connect the first telescopic rod frame 2 and the second telescopic rod frame 6 to each other, finally put the goods into it, and then use the steel wire to pass through the lifting lug 8 to lift the whole device, complete the process.

[0033] Through the assembly between the bottom plate 1, the first telescopic rod frame 2, the first telescopic rod module 3, the first connecting plate 4, the second connecting plate 5, the second telescopic rod frame 6, the second telescopic rod module 7 and the lifting lug 8, the device is assembled by a variety of components, and the components are mutually adapted to each other, which increases the stability of the whole device. Because the components are adapted to each other, the components are built at the same time, which makes the quality of the components consistent, which also increases the safety of the device after assembly to a certain extent.

[0034] As Figs. 3-4As shown, the first telescopic rod frame 2 comprises a first sliding groove plate 201, the top of the first sliding groove plate 201 is provided with a first sliding groove, the inner wall of the first sliding groove is slidably connected with the first telescopic rod module 3, the first sliding groove plate 201 is provided with a second sliding groove plate 202 through the first telescopic rod module 3, the top of the second sliding groove plate 202 is provided with a second sliding groove, the inner wall of the second sliding groove is provided with the first telescopic rod module 3, the front of the first sliding groove plate 201 is provided with a fourth threaded hole, the inner wall of the fourth threaded hole is threadedly connected with a fourth bolt, the fourth threaded hole is threadedly connected with a second connecting plate 5 through the fourth bolt, the front of the second connecting plate 5 is provided with a fifth threaded hole, the inner wall of the fifth threaded hole is threadedly connected with a fifth bolt, the fifth threaded hole is threadedly connected with a second telescopic rod frame 6 through the fifth bolt, the front of the second sliding groove plate 202 is provided with a sixth threaded hole, the inner wall of the sixth threaded hole is threadedly connected with a sixth bolt, the sixth threaded hole is threadedly connected with a first connecting plate 4 through the sixth bolt, the front of the first connecting plate 4 is provided with a seventh threaded hole, the inner wall of the seventh threaded hole is threadedly connected with a seventh bolt, and the seventh threaded hole is threadedly connected with the second telescopic rod frame 6 through the seventh bolt.

[0035] The first sliding groove and the first sliding groove plate 201 are integrally formed, the first telescopic rod module 3 is slid into the first sliding groove, the second sliding groove plate 202 and the second sliding groove are integrally formed, the second sliding groove plate 202 is slid onto the first telescopic rod module 3 through the second sliding groove, then the second connecting plate 5 is placed between the first sliding groove plate 201 and the second telescopic rod frame 6, then the fourth bolt is passed through the second connecting plate 5 and screwed onto the first sliding groove plate 201, then the fifth bolt is screwed into the fifth threaded hole on the second connecting plate 5 and continues to be screwed until it is screwed into the second telescopic rod frame 6, then the first connecting plate 4 is placed between the second sliding groove plate 202 and the second telescopic rod frame 6, the sixth bolt is passed through the first connecting plate 4 and screwed into the second sliding groove plate 202, and the seventh bolt is screwed into the seventh threaded hole on the first connecting plate 4 and screwed into the second telescopic rod frame 6 to complete the installation.

[0036] In use, the first telescopic rod module 3 is slid into the first sliding groove plate 201 along the first sliding groove of the first sliding groove plate 201, then the second sliding groove plate 202 is slid onto the first telescopic rod module 3 through the second sliding groove, then the number of subsequent sliding into the first sliding groove plate 201 and the second sliding groove plate 202 is determined according to the type and size of the transported goods, so as to change the density between the vertical rods, after determining the required number of first telescopic rod modules 3, the first telescopic rod modules 3 are fixed, and the process operation is completed.

[0037] Through the use of the first telescopic rod frame 2, the first telescopic rod module 3 on the device can move parallel on the first telescopic rod frame 2, which also enables the device to freely adapt the density between the vertical rods, thereby positively adapting to various articles. By freely changing the density of the vertical rods, some small articles can also be blocked in the device, which to some extent eliminates the damage to articles and the occurrence of personnel casualties caused by small articles sliding out of the vertical rod gap.

[0038] The first telescopic rod module 3 comprises a first straight rod 301, the bottom of the first straight rod 301 is fixedly connected with a first sliding tenon 302, the first sliding tenon 302 and a first sliding groove are mutually adapted, a third sliding groove is formed in the side surface of the first straight rod 301, a first threaded rod 303 is slidably connected to the inner wall of the third sliding groove, a first threaded fastening ring 304 is threadedly connected to the surface of the first threaded rod 303, one end of the first threaded rod 303 is fixedly connected with a second straight rod 305, a first hole is formed in the top of the first straight rod 301, the first hole and the second straight rod 305 are mutually adapted, the top of the second straight rod 305 is fixedly connected with a second threaded rod 306, a first threaded rod sleeve 307 is arranged on the surface of the second threaded rod 306, the top of the first threaded rod sleeve 307 is fixedly connected with a first turntable 308, the top of the first turntable 308 is fixedly connected with a first handle 309.

[0039] The first sliding tenon 302 and the first straight rod 301 are integrally formed, the third sliding groove, the first hole and the first straight rod 301 are integrally formed, the first threaded rod 303 is integrally connected with the second straight rod 305, the first threaded fastening ring 304 is screwed onto the first threaded rod 303, the second threaded rod 306 is integrally connected with the second straight rod 305, the first threaded rod sleeve 307 is integrally connected with the first turntable 308, and the first handle 309 is welded on the first turntable 308. The first threaded rod sleeve 307 is screwed onto the second threaded rod 306 on the second straight rod 305, and the installation is completed.

[0040] In use, the second straight rod 305 is first inserted into the first straight rod 301 through the first hole of the first straight rod 301, then adjusted to an appropriate height, and then the first threaded fastening ring 304 is screwed onto the first threaded rod 303 on the second straight rod 305 so that the first threaded fastening ring 304 is tightly fixed on the first straight rod 301, and then the first handle 309 is rotated to drive the first threaded rod sleeve 307 to rotate on the surface of the second threaded rod 306 on the second straight rod 305 until it is clamped on the first telescopic rod frame 2 to be fixed, and the process operation is completed.

[0041] Through the use of the first telescopic rod module 3, the device can freely move in the vertical direction, which allows the device to freely adjust the height, and after adjusting the height to the desired height, the height can be fixed, so that the device can actively adapt to various types of goods, which meets the needs of building site hoisting various types of goods, and at the same time, the device can freely adjust the height, so that the site does not need to purchase various types of devices, which to some extent reduces the cost of shipbuilding on site.

[0042] As shown in Figs. 4-5 The second telescopic rod frame 6 includes a third sliding groove plate 601, and the top of the third sliding groove plate 601 is provided with a fourth sliding groove. The inner wall of the fourth sliding groove is provided with a second telescopic rod module 7, and the third sliding groove plate 601 is provided with a fourth sliding groove plate 602 through the second telescopic rod module 7. The top of the fourth sliding groove plate 602 is provided with a fifth sliding groove.

[0043] The fourth sliding groove and the third sliding groove plate 601 are integrally formed, and the second telescopic rod module 7 is slid into the fourth sliding groove of the third sliding groove plate 601. The fifth sliding groove and the fourth sliding groove plate 602 are integrally formed, and the fourth sliding groove plate 602 is slid onto the second telescopic rod module 7 through the fifth sliding groove to complete the installation.

[0044] In use, the first second telescopic rod module 7 is first slid into the third sliding groove plate 601 through the fourth sliding groove on the third sliding groove plate 601, and then the fourth sliding groove plate 602 is slid onto the second telescopic rod module 7 through the fifth sliding groove. Then, according to the specific needs of the site, determine the number of second telescopic rod modules 7 needed in the future, slide the corresponding number of second telescopic rod modules 7 between the third sliding groove plate 601 and the fourth sliding groove plate 602 according to the same method as above, and fix them, complete the process operation.

[0045] Through the use of the second telescopic rod frame 6, the second telescopic rod module 7 on the device can move parallelly on the second telescopic rod frame 6, which allows the device to freely adjust the density between the vertical rods, thereby actively adapting to various goods. By freely changing the density of the vertical rods, some small goods can also be blocked in the device, which to some extent prevents small goods from sliding out of the vertical rod gap and causing damage to goods and personnel casualties.

[0046] The second telescopic rod module 7 comprises a third straight rod 701, the bottom of the third straight rod 701 is fixedly connected with a second sliding tenon 702, the second sliding tenon 702 and a fourth sliding groove are matched with each other, a sixth sliding groove is arranged on the side surface of the third straight rod 701, a third threaded rod 703 is arranged on the inner wall of the sixth sliding groove, a second threaded fastening ring 704 is threadedly connected to the surface of the third threaded rod 703, one end of the third threaded rod 703 is fixedly connected with a fourth straight rod 705, a second hole is arranged on the top of the third straight rod 701, the second hole and the third straight rod 701 are matched with each other, the top of the fourth straight rod 705 is fixedly connected with a fourth threaded rod 706, a second threaded rod sleeve 707 is threadedly connected to the surface of the fourth threaded rod 706, the top of the second threaded rod sleeve 707 is fixedly connected with a second rotating disc 708, and the top of the second rotating disc 708 is fixedly connected with a second rotating handle 709.

[0047] The second sliding tenon 702 and the third straight rod 701 are integrally formed, the sixth sliding groove, the second hole and the third straight rod 701 are integrally formed, the third threaded rod 703, the fourth threaded rod 706 and the fourth straight rod 705 are integrally connected, the second threaded fastening ring 704 is screwed onto the third threaded rod 703, the second threaded rod sleeve 707 and the fourth straight rod 705 are integrally connected, the second threaded rod sleeve 707 and the second rotating disc 708 are integrally connected, and the second rotating handle 709 is welded to the second rotating disc 708.

[0048] In use, the fourth straight rod 705 is placed into the third straight rod 701 through the second hole of the third straight rod 701, then, after being adjusted to a suitable height, the second threaded fastening ring 704 is screwed onto the third threaded rod 703 so that the second threaded fastening ring 704 abuts against the third straight rod 701, so that the fourth straight rod 705 is fastened on the third straight rod 701, then the second threaded rod sleeve 707 is sleeved on the fourth threaded rod 706, and the second threaded rod sleeve 707 is rotated on the fourth threaded rod 706 by rotating the second rotating handle 709 until the entire second telescopic rod module 7 is fixed on the second telescopic rod frame 6, and the process operation is completed.

[0049] Through the use of the second telescopic rod module 7, the device can freely move in the vertical direction, so that the device can freely adjust the height, and after the height is adjusted to the required height, the height can be fixed, so that the device can actively adapt to various types of articles, which meets the needs of building sites to hoist various types of articles, and at the same time, the device can freely adjust the height, so that the site does not need to purchase various types of devices, which reduces the cost of shipbuilding on site to a certain extent.

[0050] In summary, the tooling hopper, the first telescopic rod frame 2 and the second telescopic rod frame 6 are placed on the bottom plate 1, the first bolt is screwed through the first telescopic rod frame 2 into the first threaded hole on the bottom plate 1, and then the third bolt is screwed into the third threaded hole on the second telescopic rod frame 6 and continues to rotate until it is screwed into the bottom plate 1, the first telescopic rod module 3 is slid into the first telescopic rod frame 2, the second telescopic rod module 7 is slid into the second telescopic rod frame 6, the lifting lug 8 is placed on the first telescopic rod frame 2, then the second bolt is passed through the lifting lug 8 and screwed into the first telescopic rod frame 2, then the first connecting plate 4 is installed between the first telescopic rod frame 2 and the second telescopic rod frame 6, the second connecting plate 5 is also placed between the first telescopic rod frame 2 and the second telescopic rod frame 6 to complete the installation, the first sliding groove and the first sliding groove plate 201 are integrally formed, the first telescopic rod module 3 is slid into the first sliding groove, the second sliding groove plate 202 and the second sliding groove are integrally formed, the second sliding groove plate 202 is slid through the second sliding groove to the first telescopic rod module 3, then the second connecting plate 5 is placed between the first sliding groove plate 201 and the second telescopic rod frame 6, then the fourth bolt is passed through the second connecting plate 5 and screwed onto the first sliding groove plate 201, then the fifth bolt is screwed into the fifth threaded hole on the second connecting plate 5 and continues to rotate until it is screwed into the second telescopic rod frame 6, then the first connecting plate 4 is placed between the second sliding groove plate 202 and the second telescopic rod frame 6, the sixth bolt is passed through the first connecting plate 4 and screwed into the second sliding groove plate 202, then the seventh bolt is screwed into the seventh threaded hole on the first connecting plate 4 and screwed into the second telescopic rod frame 6 to complete the installation, the first sliding tenon 302 and the first straight rod 301 are integrally formed, the third sliding groove, the first hole and the first straight rod 301 are integrally formed, the first threaded rod 303 is integrally connected with the second straight rod 305, the first threaded fastening ring 304 is screwed onto the first threaded rod 303, the second threaded rod 306 is integrally connected with the second straight rod 305, the first threaded rod sleeve 307 and the first turntable 308 are integrally connected, and the first handle 309 is welded to the first turntable 308, the first threaded rod sleeve 307 is screwed onto the second threaded rod 306 on the second straight rod 305 to complete the installation, the fourth sliding groove and the third sliding groove plate 601 are integrally formed, the second telescopic rod module 7 is slid into the fourth sliding groove of the third sliding groove plate 601, and the fifth sliding groove and the fourth sliding groove plate 602 are integrally formed, the fourth sliding groove plate 602 is slid through the fifth sliding groove to the second telescopic rod module 7 to complete the installation, the second sliding tenon 702 and the third straight rod 701 are integrally formed, the sixth sliding groove, the second hole and the third straight rod 701 are integrally formed, the third threaded rod 703, the fourth threaded rod 706 and the fourth straight rod 705 are integrally connected, the second threaded fastening ring 704 is screwed onto the third threaded rod 703, the second threaded rod sleeve 707 and the fourth straight rod 705 are integrally connected, and the second threaded rod sleeve 707 and the second turntable 708 are integrally connected,The second rotating handle 709 is welded on the second rotating disc 708, and the second threaded rod sleeve 707 is screwed on the fourth threaded rod 706 to complete the installation.

[0051] It is to be noted that the relational terms herein, such as first and second, and the like, are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can also include other elements not expressly listed or inherent to such process, method, article, or apparatus. An element proceeded by "comprises... a" does not, without more constraints, exclude the existence of additional identical elements in the process, method, article, or apparatus that comprises the element.

[0052] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A tooling hopper comprising a floor (1), characterised in that: The first threaded hole is internally threaded with a first bolt, the first threaded hole is threadedly connected with a first telescopic rod frame (2) through the first bolt, the inner wall of the first telescopic frame (2) is provided with a first telescopic rod module (3), the front surface of the first telescopic rod module (3) is sequentially provided with a first connecting plate (4) and a second connecting plate (5) from top to bottom, and the first telescopic frame (2) is installed with a second telescopic rod frame (6) through the first connecting plate (4).

2. A tooling hopper according to claim 1, wherein: The first telescopic rod module (3) is internally threaded with a second bolt, the second threaded hole is threadedly connected with a lifting lug (8) through the second bolt, the second telescopic rod frame (6) is installed with a second telescopic rod frame (6) through the second connecting plate (5), the front surface of the second telescopic rod frame (6) is provided with a third threaded hole, the inner wall of the third threaded hole is internally threaded with a third bolt, and the third threaded hole is threadedly connected with the bottom plate (1) through the third bolt.

3. A tooling hopper as claimed in claim 1, wherein: The first telescopic rod frame (2) comprises a first sliding groove plate (201), the top of the first sliding groove plate (201) is provided with a first sliding groove, and the inner wall of the first sliding groove is slidably connected with the first telescopic rod module (3).

4. A tooling hopper according to claim 3, wherein: The inner wall of the second sliding groove is provided with the first telescopic rod module (3), the front surface of the first sliding groove plate (201) is provided with a fourth threaded hole, the inner wall of the fourth threaded hole is internally threaded with a fourth bolt, the fourth threaded hole is threadedly connected with the second connecting plate (5) through the fourth bolt, the front surface of the second connecting plate (5) is provided with a fifth threaded hole, the inner wall of the fifth threaded hole is internally threaded with a fifth bolt, and the fifth threaded hole is threadedly connected with the second telescopic rod frame (6) through the fifth bolt.

5. A tooling hopper according to claim 4, wherein: The front surface of the second sliding groove plate (202) is provided with a sixth threaded hole, the inner wall of the sixth threaded hole is internally threaded with a sixth bolt, the sixth threaded hole is threadedly connected with the first connecting plate (4) through the sixth bolt, the front surface of the first connecting plate (4) is provided with a seventh threaded hole, the inner wall of the seventh threaded hole is internally threaded with a seventh bolt, and the seventh threaded hole is threadedly connected with the second telescopic rod frame (6) through the seventh bolt.

6. A tooling hopper as claimed in claim 3, wherein: The first telescopic rod module (3) comprises a first straight rod (301), the bottom of the first straight rod (301) is fixedly connected with a first sliding tenon (302), the first sliding tenon (302) and the first sliding groove are matched with each other, the side surface of the first straight rod (301) is provided with a third sliding groove, the inner wall of the third sliding groove is slidably connected with a first threaded rod (303), and the surface of the first threaded rod (303) is threadedly connected with a first threaded fastening ring (304).

7. A tooling hopper according to claim 6, wherein: One end of the first threaded rod (303) is fixedly connected with a second straight rod (305), a first hole is opened in the top of the first straight rod (301), the first hole and the second straight rod (305) are matched with each other, the top of the second straight rod (305) is fixedly connected with a second threaded rod (306), the surface of the second threaded rod (306) is provided with a first threaded rod sleeve (307), the top of the first threaded rod sleeve (307) is fixedly connected with a first rotating disc (308), and the top of the first rotating disc (308) is fixedly connected with a first rotating handle (309).

8. A tooling hopper as claimed in claim 1, wherein: The second telescopic rod frame (6) comprises a third sliding groove plate (601), a fourth sliding groove is opened in the top of the third sliding groove plate (601), and the inner wall of the fourth sliding groove is provided with a second telescopic rod module (7); the third sliding groove plate (601) is provided with a fourth sliding groove plate (602) through the second telescopic rod module (7); and the top of the fourth sliding groove plate (602) is provided with a fifth sliding groove.

9. A tooling hopper as claimed in claim 7, wherein: The second telescopic rod module (7) comprises a third straight rod (701), the bottom of the third straight rod (701) is fixedly connected with a second sliding tenon (702), the second sliding tenon (702) and the fourth sliding groove are matched with each other, the side surface of the third straight rod (701) is provided with a sixth sliding groove, the inner wall of the sixth sliding groove is provided with a third threaded rod (703), and the surface of the third threaded rod (703) is threadedly connected with a second threaded fastening ring (704).

10. A tooling hopper according to claim 9, wherein: One end of the third threaded rod (703) is fixedly connected with a fourth straight rod (705), a second hole is opened in the top of the third straight rod (701), the second hole and the third straight rod (701) are matched with each other, the top of the fourth straight rod (705) is fixedly connected with a fourth threaded rod (706), the surface of the fourth threaded rod (706) is threadedly connected with a second threaded rod sleeve (707), the top of the second threaded rod sleeve (707) is fixedly connected with a second rotating disc (708), and the top of the second rotating disc (708) is fixedly connected with a second rotating handle (709).