Hanging structure of arrack hanging pot
Through the hoarfruit hanging pot suspension structure integrating hook and rope suspension mechanism, the problems of cumbersome operation and safety hazards of traditional sourfruit hanging pot suspension structure are solved, and safe and efficient pot removal operation is achieved, reducing equipment investment and labor costs.
Patent Information
- Application Number
- CN202422511355.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-10-17
AI Technical Summary
The traditional soju hanging pot suspension structure requires two sets of spreader components to remove the lid and pot body respectively, which is cumbersome, costly and has safety hazards.
The integrated hook and rope suspension mechanism are used to integrate the spreader assembly and fix the rope by clamping the assembly to realize the removal of the cover and pot body of a set of equipment. It is suitable for various specifications and models of soju hangers.
It simplifies the operation process, improves safety and operation convenience, reduces equipment investment and labor costs, and improves production efficiency.
Smart Images

Figure CN223150053U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of brewing equipment, in particular to a suspension structure for a distilled spirit hanging pot. Background Art
[0002] In the traditional suspension structure of a distilled spirit hanging pot, usually two sets of lifting components are required to separately remove the cover body and the pot body. First, an electric hoist is used to carry a rope and tie it to the handle of the hanging pot cover to remove the cover body; then, a lifting tool rack and a hook are used to remove the pot body. This operation method has the problems of cumbersome operation process, high investment, inconvenient operation, and certain potential safety hazards. For example, it is necessary to perform two removal operations on the cover body and the pot body respectively, which undoubtedly increases the operation difficulty and time cost; since the handle positions of the two components are different, it is impossible to directly use the lifting tool rack and the hook to pick up the cover body, and the rope cannot bear the weight of the pot body and will cause the pot body to shake, so two kinds of lifting tools are required, increasing the equipment cost. When removing the cover body, the rope is fixed to the handle by winding and tying, and this method is prone to cause the rope to loosen or slip off, resulting in safety accidents. Content of the Utility Model
[0003] Aiming at the deficiencies of the prior art, the utility model provides a suspension structure for a distilled spirit hanging pot, which solves the problems of cumbersome and inconvenient operation of the existing suspension components when suspending the hanging pot.
[0004] To achieve the above object, the utility model is realized through the following technical solutions: A suspension structure for a distilled spirit hanging pot, comprising a steel structure frame and a transmission mechanism arranged on the steel structure frame, a lifting component is arranged on the transmission mechanism, and the lifting component includes:
[0005] A lifting beam arm, arranged on the transmission mechanism;
[0006] An integrated frame, arranged at the end of the lifting beam arm; a first hook lifting mechanism and a second hook lifting mechanism are respectively arranged on the left and right sides of the integrated frame;
[0007] The first hook lifting mechanism includes a rope suspension mechanism, and the rope suspension mechanism includes:
[0008] A housing, including a first housing and a second housing, the bottoms of the first housing and the second housing are hinged, and the tops are connected by a locking member;
[0009] An opening groove is formed at the ends of the first housing and the second housing;
[0010] A storage box, fixed in the first housing, a rope winder is arranged in the storage box, a rope is wound on the rope winder, and a wire outlet hole is opened on the storage box;
[0011] A clamping component, arranged on the first housing and the second housing;
[0012] One end of the rope is led out and wound around an object to be wound, and then led back into the housing through the opening groove and fixed by the clamping assembly.
[0013] Preferably, the clamping assembly includes a first mounting plate and a second mounting plate, which are respectively fixed to the inner sides of the first housing and the second housing; a first wire groove and a second wire groove are formed between the second mounting plate, the storage box and the first mounting plate;
[0014] The first wire groove is used for fixing the rope led out from the rope winder; the second wire groove is used for fixing the rope led back into the housing through the opening groove.
[0015] Preferably, the first wire groove is continuously bent in an "S" shape, and the second wire groove is in a "V" shape.
[0016] Preferably, the first wire groove includes a first half groove provided on the first mounting plate and a second half groove provided on the second mounting plate.
[0017] Preferably, the second wire groove includes a third half groove and a fourth half groove, and both the third half groove and the fourth half groove include a front section groove and a rear section groove;
[0018] The front section groove of the third half groove is formed on the first mounting plate, and the rear section groove is formed on the storage box;
[0019] Both the front section groove and the rear section groove of the fourth half groove are formed on the second mounting plate.
[0020] Preferably, when the first housing and the second housing are buckled, a first clamping cavity is formed between the first mounting plate and the second mounting plate, and a second clamping cavity is formed between the storage box and the second mounting plate; wherein, the first wire groove is arranged in the first clamping cavity, the front section groove of the second wire groove is arranged in the first clamping cavity, and the rear section groove of the second wire groove is arranged in the second clamping cavity.
[0021] Preferably, when the first housing and the second housing are buckled, a front accommodation cavity is formed between the front sides of the first mounting plate and the second mounting plate and the housing, and a rear accommodation cavity is formed between the rear side of the second mounting plate and the housing.
[0022] Preferably, the sling beam arm includes:
[0023] A sling plate, a sling is rotatably connected to the top of the sling plate, and the transmission mechanism is hooked to the sling;
[0024] A support beam arm, fixed around the sling plate, and the support beam arm is inclined downward to the side with the connection end to the sling plate as the base point.
[0025] Preferably, the support beam arm includes:
[0026] Side beam arm, fixed to the sling plate;
[0027] Auxiliary beam arm, detachably connected between the side beam arm and the integrated frame through a flange.
[0028] Preferably, the second hook lifting mechanism includes a hook.
[0029] Advantages of the present utility model: By using a suspension structure for a shochu hanging pot provided by the present utility model, the hook and the rope suspension mechanism are integrated, reducing the investment in a set of sling components. Moreover, the rope does not need to be manually wound and then tied tightly. After being wound, it only needs to be clamped in the clamping component within the rope suspension mechanism. After threading the rope into the preset first wire groove and second wire groove, the rope can be fixed by closing the first housing and the second housing, which is safe and efficient. By integrating the hook and the rope suspension mechanism, the operation of removing the cover body and the pot body can be completed with one set of equipment, reducing the equipment investment. The use of the clamping component to fix the rope avoids the risk of the rope loosening or slipping, improves the operation safety, and is applicable to various specifications and models of shochu hanging pots, having strong versatility and adaptability. In short, the suspension structure of the shochu hanging pot simplifies the operation process, improves the safety and operation convenience, reduces the equipment investment and labor cost, and improves the production efficiency. Description of the Drawings
[0030] Figure 1 Schematic three-dimensional structure diagram of the suspension mechanism of the present utility model;
[0031] Figure 2 Schematic three-dimensional structure diagram of the sling component of the present utility model;
[0032] Figure 3 Front view of the sling component of the present utility model;
[0033] Figure 4 Schematic three-dimensional structure diagram of the rope suspension mechanism of the present utility model;
[0034] Figure 5 Schematic diagram of the internal structure of the rope suspension mechanism of the present utility model after being unfolded;
[0035] Figure 6 Schematic diagram of the rope suspension mechanism of the present utility model after the rope passes through the opening groove and is drawn out;
[0036] Figure 7 Top view of the rope suspension mechanism of the present utility model;
[0037] Figure 8 Schematic diagram of the sling component of the present utility model lifting the cover body of the hanging pot;
[0038] Figure 9This is a schematic diagram of the pot body of the sling component of the present utility model for lifting a cooking pot.
[0039] Explanation of the reference numerals in the figure
[0040] 1. Steel structure frame, 2. Transmission mechanism, 3. Sling plate, 4. Side beam arm, 5. Auxiliary beam arm, 6. Integrated frame, 7. Hook, 8. Rope suspension mechanism, 81. Locking piece, 82. First housing, 83. Second housing, 84. Opening groove, 85. Rope, 86. First assembly plate, 87. Storage box, 88. Second assembly plate, 89. Front accommodation cavity, 810. First half groove, 811. Second half groove, 812. Third half groove, 813. Fourth half groove, 814. Rear storage cavity, 815. Rope take-up device, 816. Front section groove, 817. Rear section groove, 818. First clamping cavity, 819. Wire outlet hole, 820. Second clamping cavity. Specific implementation manners
[0041] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. As long as the effects of the present utility model can be exerted, various changes can be made to the implementation solutions.
[0042] Through those skilled in the art, the components in this case are connected in sequence. For the specific connection and operation sequence, reference should be made to the following working principle. The detailed connection means are well-known techniques in the art. The following mainly introduces the working principle and process.
[0043] Refer to Figures 1-9 A suspension structure of a shochu cooking pot for this implementation solution will be described.
[0044] It includes a steel structure frame 1 and a transmission mechanism 2 arranged on the steel structure frame 1. The steel structure frame 1 is a gantry frame erected outside the cooking pot; the transmission mechanism 2 is arranged along the length direction of the steel structure frame 1.
[0045] A sling component is arranged on the transmission mechanism 2. The transmission mechanism 2 is an electric hoist. The sling component includes a sling beam arm and an integrated frame 6. The sling beam arm is arranged on the transmission mechanism 2; the sling beam arm includes a sling plate 3 and a support beam arm; a sling ring is rotatably connected to the top of the sling plate 3, and the transmission mechanism 2 is hooked and connected to the sling ring; the support beam arms are fixed around the sling plate 3, and the support beam arms are inclined downward to the side with the connection end to the sling plate 3 as the base point. The way that the support beam arms are inclined downward to the side makes the sling component trapezoidal in the main view projection, and its inner side can accommodate the lid of the cooking pot to facilitate hooking the lid.
[0046] The support beam arm includes a side beam arm 4 and an auxiliary beam arm 5. The side beam arm 4 is fixed to the sling plate 3 and is a fixed part. The auxiliary beam arm 5 is detachably connected between the side beam arm 4 and the integrated frame 6 through a flange. The auxiliary beam arm 5 is connected by a flange, so it is a replaceable part. According to the model of the hanging pot, auxiliary beam arms 5 of different lengths can be replaced, enabling the sling assembly to replace auxiliary beam arms 5 of different lengths according to the diameter of the hanging pot, thereby improving the flexible use degree of the sling assembly.
[0047] The integrated frame 6 is provided at the end of the sling beam arm; a first hook hanging mechanism and a second hook hanging mechanism are respectively arranged on the left and right sides of the integrated frame 6. Among them, the first hook hanging mechanism includes a rope suspension mechanism 8, and the rope suspension mechanism 8 is used for hooking the lid of the hanging pot. The second hook hanging mechanism includes a hook 7, and the hook 7 is used for hooking the hanging pot.
[0048] Specifically, the rope suspension mechanism 8 includes a housing, a storage box 87 and a clamping assembly. The housing includes a first housing 82 and a second housing 83. The bottoms of the first housing 82 and the second housing 83 are hinged, and the tops are connected by a locking member 81; the first housing 82 is fixed to the integrated frame 6. Open slots 84 are formed at the ends of the first housing 82 and the second housing 83, and the open slots 84 are used for the penetration and exit of the rope 85.
[0049] The storage box 87 is fixed inside the first housing 82. A rope winder 815 is arranged inside the storage box 87, and the rope 85 is wound around the rope winder 815. A wire outlet hole 819 is opened on the storage box 87; among them, after one end of the rope 85 is led out and wound around the winding object, it is drawn back into the housing through the open slot 84 and fixed by the clamping assembly.
[0050] The clamping assembly is arranged on the first housing 82 and the second housing 83; the clamping assembly includes a first mounting plate 86 and a second mounting plate 88. The first mounting plate 86 and the second mounting plate 88 are respectively fixed to the inner sides of the first housing 82 and the second housing 83; a first wire groove and a second wire groove are formed between the second mounting plate 88, the storage box 87 and the first mounting plate 86; the first wire groove is used for fixing the rope 85 led out from the rope winder 815; the second wire groove is used for fixing the rope 85 drawn back into the housing through the open slot 84.
[0051] The first wire groove is continuously bent in an "S" shape, and the second wire groove is in a "V" shape. Through the "S" and "V" shaped designs, a bent corner can appear in the fixed state of the rope 85, improving the fixing effect on the rope 85. The part of the rope 85 led out from the rope winder 815 is embedded in the first wire groove, and the rope 85 drawn back into the housing is embedded in the second wire groove. When the first housing 82 and the second housing 83 are closed, the first wire groove and the second wire groove clamp the rope 85, and after clamping, it is locked and fixed by the locking member 81.
[0052] The first wire groove includes a first half groove 810 provided on the first assembly plate 86 and a second half groove 811 provided on the second assembly plate 88. Tooth teeth are evenly distributed in the first half groove 810 and the second half groove 811. When the rope 85 is clamped, the tooth teeth can be inserted into the rope 85 to strengthen the fixing effect on the rope 85.
[0053] The second wire groove includes a third half groove 812 and a fourth half groove 813. The third half groove 812 and the fourth half groove 813 both include a front section groove 816 and a rear section groove 817. The front section groove 816 of the third half groove 812 is formed on the first assembly plate 86, and the rear section groove 817 is formed on the storage box 87. The front section groove 816 and the rear section groove 817 of the fourth half groove 813 are both formed on the second assembly plate 88. Tooth teeth are evenly distributed in the third half groove 812 and the fourth half groove 813, and the effect is equivalent to that of setting tooth teeth in the first half groove 810 and the second half groove 811.
[0054] When the first housing 82 and the second housing 83 are buckled, a first clamping cavity 818 is formed between the first assembly plate 86 and the second assembly plate 88, and a second clamping cavity 820 is formed between the storage box 87 and the second assembly plate 88. The first clamping cavity 818 and the second clamping cavity 820 are arranged in a staggered manner under the top view projection. Among them, the first wire groove is arranged in the first clamping cavity 818, the front section groove 816 of the second wire groove is arranged in the first clamping cavity 818, and the rear section groove 817 of the second wire groove is arranged in the second clamping cavity 820, so that a part of the rope 85 after being led back is clamped in the second wire groove at the first clamping cavity 818, and the other part is clamped in the second wire groove at the second clamping cavity 820. The staggered setting further strengthens the fixing effect on the rope 85.
[0055] When the first housing 82 and the second housing 83 are buckled, a front accommodation cavity 89 is formed between the front sides of the first assembly plate 86 and the second assembly plate 88 and the housing, and a rear accommodation cavity 814 is formed between the rear side of the second assembly plate 88 and the housing. Before the rope suspension mechanism 8 is used, the end of the rope 85 is placed in the front accommodation cavity 89, so that the rope 85 can be directly taken and wound around the handle of the lid of the hanging pot when in use. After the rope 85 is wound around the lid of the hanging pot and led back into the housing and clamped and fixed by the clamping assembly, the end of the rope 85 can be stored in the rear accommodation cavity 814 and will not fall outside.
[0056] Working principle: The suspension mechanism is divided into two parts for hanging the lid and the pot body of the hanging pot. First, the lid is hung, and then the pot body is hung.
[0057] When hoisting the lid body, the transmission mechanism 2 drives the lifting tool assembly to move above the cooking pot. When the transmission mechanism 2 drives the lifting tool assembly to descend to a certain position and stops, the first housing 82 and the second housing 83 are opened, the rope 85 is pulled out and wound around the handle of the lid body, then the end of the rope 85 is led back, and the end of the rope 85 close to the rope take-up device 815 is embedded into the first half groove 810 on the first assembly plate 86. The led-back end of the rope 85 is sequentially embedded into the third half groove 812 on the outer wall surface of the first assembly plate 86 and the storage box 87. The second housing 83 is buckled and locked by the locking member 81, so that the rope 85 is clamped in the first wire groove formed by the first half groove 810 and the second half groove 811, and the rope 85 led back into the housing is clamped in the misaligned third half groove 812 and the fourth half groove 813. The transmission mechanism 2 rises and moves to remove the lid body.
[0058] When hoisting the cooking pot body, the transmission mechanism 2 drives the lifting tool assembly to move above the cooking pot. When the transmission mechanism 2 drives the lifting tool assembly to descend to a certain position and stops, the hook 7 is hooked on the handle of the cooking pot body, and the transmission mechanism 2 rises and moves to realize the movement of the cooking pot body.
[0059] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A suspension structure for a shochu hanging pot, characterized in that, It includes a steel structure frame (1) and a transmission mechanism (2) arranged on the steel structure frame (1). A spreader assembly is arranged on the transmission mechanism (2), and the spreader assembly includes: A spreader beam arm, arranged on the transmission mechanism (2); An integrated frame (6), arranged at the end of the spreader beam arm; a first hook lifting mechanism and a second hook lifting mechanism are respectively arranged on the left and right sides of the integrated frame (6); The first hook lifting mechanism includes a rope suspension mechanism (8), and the rope suspension mechanism (8) includes: A housing, including a first housing (82) and a second housing (83), the bottoms of the first housing (82) and the second housing (83) are hinged, and the tops are connected by a locking member (81); An opening groove (84), formed at the ends of the first housing (82) and the second housing (83); A storage box (87), fixed inside the first housing (82), a rope winder (815) is arranged inside the storage box (87), a rope (85) is wound on the rope winder (815), and a wire outlet hole (819) is opened on the storage box (87); A clamping assembly, arranged on the first housing (82) and the second housing (83); Wherein, one end of the rope (85) is led out and wound around an object to be wound, and then is led back into the housing through the opening groove (84) and fixed by the clamping assembly.
2. The suspension structure of a shochu hanging pot according to claim 1, characterized in that: The clamping assembly includes a first mounting plate (86) and a second mounting plate (88), and the first mounting plate (86) and the second mounting plate (88) are respectively fixed on the inner sides of the first housing (82) and the second housing (83); a first wire groove and a second wire groove are formed between the second mounting plate (88), the storage box (87) and the first mounting plate (86); The first wire groove is used for fixing the rope (85) led out from the rope winder (815); the second wire groove is used for fixing the rope (85) led back into the housing through the opening groove (84).
3. A suspension structure for a shochu hanging pot according to claim 2, characterized in that: The first wire groove is continuously bent in an "S" shape, and the second wire groove is in a "V" shape.
4. A suspension structure for a shochu hanging pot according to claim 3, characterized in that: The first wire groove includes a first half groove (810) arranged on the first mounting plate (86) and a second half groove (811) arranged on the second mounting plate (88).
5. The suspension structure of a shochu hanging pot according to claim 3, characterized in that: The second wire groove includes a third half groove (812) and a fourth half groove (813), and both the third half groove (812) and the fourth half groove (813) include a front section groove (816) and a rear section groove (817); The front section groove (816) of the third half groove (812) is formed on the first mounting plate (86), and the rear section groove (817) is formed on the storage box (87); The front section groove (816) and the rear section groove (817) of the fourth half groove (813) are both formed on the second mounting plate (88).
6. The suspension structure of the shochu hanging pot according to claim 4 or 5, characterized in that: When the first housing (82) and the second housing (83) are fastened together, a first clamping cavity (818) is formed between the first assembly plate (86) and the second assembly plate (88), and a second clamping cavity (820) is formed between the storage box (87) and the second assembly plate (88); wherein, the first wire groove is arranged in the first clamping cavity (818), the front section groove (816) of the second wire groove is arranged in the first clamping cavity (818), and the rear section groove (817) of the second wire groove is arranged in the second clamping cavity (820).
7. A suspension structure for a shochu hanging pot according to claim 6, characterized in that: When the first housing (82) and the second housing (83) are fastened together, a front accommodation cavity (89) is formed between the front sides of the first assembly plate (86) and the second assembly plate (88) and the housing, and a rear accommodation cavity (814) is formed between the rear side of the second assembly plate (88) and the housing.
8. The suspension structure of a shochu hanging pot according to claim 1, characterized in that: The sling beam arm includes: A sling plate (3), a sling ring is rotatably connected to the top of the sling plate (3), and the transmission mechanism (2) is hooked and connected to the sling ring; Support beam arms, fixed around the sling plate (3), and the support beam arms are inclined downward to the side with the connection end to the sling plate (3) as the base point.
9. The suspension structure of the shochu hanging pot according to claim 8, wherein: The support beam arm includes: Side beam arms (4), fixed to the sling plate (3); Auxiliary beam arms (5), detachably connected between the side beam arms (4) and the integrated frame (6) through flanges.
10. A suspension structure for a shochu hanging pot according to claim 1, characterized in that: The second hooking mechanism includes a hook (7).