Pre-embedded ironing kettle suitable for liquid feeding system of pig farm
By designing a pre-embedded scalding kettle and using a pre-embedded frame and support plate for positioning and installation, the problem of easy tilting and leakage of existing scalding kettles in pig farms has been solved, achieving stable and efficient feed delivery and automated control in pig farms.
Patent Information
- Application Number
- CN202423258294.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2034-12-27
AI Technical Summary
Existing pig farm feed scalding tanks lack positioning structures during long-term use, making them prone to movement or tilting, which can lead to leakage during feed delivery and affect the normal operation of pig farm feed feeding.
The device adopts a pre-embedded hot material kettle design, combined with a pre-embedded frame and bottom support plate for positioning and installation, ensuring that the device is accurately installed in the designated position. The positioning plate is pre-welded with the connecting pipe to avoid installation deviation and shaking. The electromagnetic valve is used to control the timed and quantitative material discharge, enhancing the sealing performance.
It improves the stability and sealing performance of the device, reduces the risk of leakage, ensures the normal operation of feed delivery in pig farms, reduces maintenance costs and frequency, and improves the automation and intelligence of the system.
Smart Images

Figure CN223584999U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of material steaming kettle, especially to a pre-buried material steaming kettle suitable for pig farm liquid feeding system. BACKGROUND
[0002] The pig farm liquid feeding system is a feeding mode that solid or liquid feed raw materials are mixed and stirred according to the corresponding proportion, and then are delivered to pigs through a pipeline under the intelligent control of a computer, and the system can also realize comprehensive data recording and timely grasp of the growth of the pig population, thus providing strong support for pig farm management, and has become an important choice of modern pig farm feeding mode.
[0003] The existing pig farm material steaming kettle is usually installed in a mobile or temporary manner during use, and the mobile type lacks a certain positioning structure and is prone to movement or tilting during long-term use of the device, which reduces the stability of the equipment, causes the feed to leak during the delivery process, and affects the normal operation of the pig farm feed feeding.
[0004] Therefore, in view of the above-mentioned existing pig farm material steaming kettle, which is usually installed in a mobile or temporary manner, the mobile type lacks a certain positioning structure and is prone to movement or tilting, which reduces the stability of the equipment, causes the feed to leak during the delivery process, and affects the normal operation of the pig farm feed feeding, a pre-buried material steaming kettle suitable for the pig farm liquid feeding system can be designed, which is installed by using a pre-buried frame combined with a bottom support plate for auxiliary positioning, optimizes the installation layout of the reaction kettle, accurately installs the reaction kettle at the specified position, avoids the deviation during the installation process, prevents the device from shaking during operation, and ensures the normal pig farm feed feeding work of the device. UTILITY MODEL CONTENTS
[0005] In order to overcome the problem that the existing pig farm material steaming kettle lacks a certain positioning structure and is prone to movement or tilting during long-term use of the device, which causes the feed to leak during the delivery process and affects the normal operation of the pig farm feed feeding.
[0006] The technical scheme of the utility model is as follows: a pre-buried material steaming kettle suitable for a pig farm liquid feeding system, which comprises a reaction kettle and a pre-buried component; a pre-buried component for pre-installation and fixation is installed at the outer end of the reaction kettle, the pre-buried component comprises a pre-buried frame, a positioning disc, a butt joint pipe, a linking frame, a linking pipe, an electromagnetic valve, a support plate, a fixed cover, a sealing cover, and a control module, a plurality of pre-buried frames are welded around the outer wall of the reaction kettle, two groups of limiting bolts are arranged in the pre-buried frames, a plurality of support plates are welded at the bottom of the reaction kettle, and a limiting hole is formed in the support plates.
[0007] As preferred, the outer end of the reaction kettle is welded with a positioning disc, a plurality of limiting pins are arranged around the outer end of the positioning disc, the positioning disc is fixedly connected with the reaction kettle through the plurality of limiting pins, and a butt joint pipe is arranged in the inside of the positioning disc.
[0008] As preferred, the outer end of the reaction kettle is communicated with a connecting pipe, a discharge hose is fixedly arranged at one end of the connecting pipe, and an electromagnetic valve is fixedly arranged at the outer end of the discharge hose.
[0009] As preferred, the outer side of the connecting pipe is provided with a connecting frame, a connecting hole for accommodating the discharge hose is formed in the outer end of the connecting frame, a plurality of screws are arranged at the outer end of the connecting frame, and the connecting frame is threadedly fixed with the reaction kettle through the plurality of screws.
[0010] As preferred, the upper end of the reaction kettle is provided with a fixed cover, a plurality of fastening pins are arranged around the outer end of the fixed cover, the fixed cover is tightly sealed with the reaction kettle through the plurality of fastening pins, a feeding pipe is arranged in communication with the upper end of the fixed cover, a connecting rod is fixedly arranged at one end of the feeding pipe, and the feeding pipe is movably arranged with the feeding pipe through the connecting rod.
[0011] As preferred, a driving motor is fixedly arranged at the upper end of the fixed cover, and a rotating frame is fixedly arranged in the inside of the reaction kettle at one end of the driving motor.
[0012] As preferred, a control module is fixedly arranged on the outer wall of the reaction kettle, and one end of the control module is electrically connected with the driving motor.
[0013] The beneficial effects of the utility model are as follows:
[0014] 1. Compared with the traditional material heating kettle, the pre-embedded frame of the reaction kettle is combined with the bottom supporting plate for auxiliary positioning and installation, the installation layout of the reaction kettle is optimized, the reaction kettle is accurately installed at the specified position, the deviation in the installation process is avoided to prevent shaking of the device during operation, the risk of leakage and failure of the feed during the conveying process is reduced, the normal feeding work of the pig farm feed of the device is ensured, the maintenance cost and frequency in the later period are reduced, the butt joint pipe can be correctly and effectively positioned in the construction according to the pipeline direction, the displacement of the butt joint pipe is avoided to prevent the risk of rework and structure leakage in the later period, and the overall installation quality of the pipeline is improved. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 A pre-embedded material heating kettle structure schematic view suitable for a pig farm liquid feeding system is shown.
[0016] Fig. 2 A pre-embedded material heating kettle structure schematic view suitable for a pig farm liquid feeding system is shown.
[0017] Fig. 3The utility model discloses a preburied type scalding kettle stirring frame structure schematic diagram suitable for pig farm liquid feeding system is shown.
[0018] Fig. 4 The utility model discloses a preburied type scalding kettle link frame structure schematic diagram suitable for pig farm liquid feeding system is shown.
[0019] The figure mark explains: 1, reaction kettle, 201, preburied frame, 202, limit bolt, 203, positioning disc, 204, limit pin, 205, butt joint pipe, 206, link frame, 207, link pipe, 208, electromagnetic valve, 209, discharge hose, 210, screw, 211, support plate, 212, fixed cover, 213, feed pipe, 214, sealing cover, 215, link rod, 216, drive motor, 217, rotating frame, 218, control module. DETAILED DESCRIPTION
[0020] The utility model is further explained below in connection with the drawings and examples.
[0021] Pig farm liquid feeding system is modernized pig feeding technology, it is through the even fluid form that the feed and water are modulated according to certain proportion again supply pig, to realize the automatic, accurate feeding management, liquid feeding system is divided into artificial stirring liquid material, liquid feeding device (porridge material device), intelligent liquid feeding system three big categories, intelligent liquid feeding system is through computer control, according to the type, quantity, feed formula, feeding curve data of pig, automatically calculates the dry material quantity and water quantity needed for each cycle, system adds the mixing of water and feed raw materials in stirring tank, after stirring evenly, liquid material is delivered to the trough of pig by pump, after feeding, the system will automatically clean the pipeline and stirring tank, to ensure health, is applicable to different scale pig farm, reduces the artificial cost, improves feeding efficiency, pig farm liquid feeding system is a kind of efficient, environmental protection, economic modernized pig raising technology, it improves pig raising efficiency and economic benefit through automatic control and accurate feeding.
[0022] The scalding kettle in the pig farm liquid feeding system usually refers to the stirring tank for heating and mixing feed, which is an important part of the liquid feeding system. The scalding kettle is internally provided with a stirrer for mixing feed and water to ensure uniform mixing of the feed. The stirrer can be made of stainless steel and work with a frequency converter to change the stirring speed according to the filling degree of the cylinder, for preparing liquid feed by mixing dry feed with water in a certain proportion to form liquid feed suitable for pigs to eat. The scalding kettle can be matched with a computer control system to realize precise feeding management, and can be combined with a specific additive system to quickly add additives or drugs to meet the specific nutritional or health needs of pigs. It is not only responsible for heating and mixing of feed, but also involves feed preparation, bio-safety, precise feeding and other aspects, and is a key equipment for realizing efficient, sanitary and economic feeding.
[0023] Although there are many scalding kettles for pig farm liquid feeding systems on the market at present, there are still some problems and challenges in actual application. The existing pig farm scalding kettle is usually installed in a mobile or temporary manner. When the device is used for a long time, the mobile type lacks a certain positioning structure and is easy to move or tilt, reducing the stability of the equipment, causing the feed to leak during transportation, and affecting the normal operation of the pig farm feed feeding.
[0024] Please refer to Figs. 1-4 The utility model provides a kind of embodiment: a pre-buried scalding kettle suitable for pig farm liquid feeding system, including reaction kettle 1 and pre-buried component;Reaction kettle 1 is installed with pre-buried component for pre-installation fixed, pre-buried component includes pre-buried frame 201, positioning disc 203, butt joint pipe 205, link frame 206, link pipe 207, electromagnetic valve 208, support plate 211, fixed cover 212, sealing cover 214, control module 218, reaction kettle 1 is welded with multiple pre-buried frames 201 around outer wall, the inside of multiple pre-buried frames 201 is equipped with two groups of limit bolts 202, reaction kettle 1 is welded with multiple support plates 211 in bottom, multiple support plates 211 are internally provided with limit hole.
[0025] Please refer to Figs. 1-2In the embodiment, the outer end of the reaction kettle 1 is welded with a positioning disc 203, a plurality of limiting pins 204 are arranged around the outer end of the positioning disc 203, the positioning disc 203 is fixedly connected with the reaction kettle 1 through the plurality of limiting pins 204, a butt joint pipe 205 is arranged in communication with the inside of the positioning disc 203, the butt joint pipe 205 is pre-welded by using the positioning disc 203 according to the pipeline direction, so that the position of the butt joint pipe 205 in construction can be correct and effective, the displacement of the butt joint pipe 205 is avoided to cause rework and structural leakage risk in the later period, the overall installation quality of the pipeline is improved, the outer end of the reaction kettle 1 is communicated with a connecting pipe 207, a discharge hose 209 is fixedly arranged at one end of the connecting pipe 207, an electromagnetic valve 208 is fixedly arranged at the outer end of the discharge hose 209, the discharge of the equipment is stably controlled according to the feeding amount pre-set by the electromagnetic valve 208, the feed is distributed to the corresponding material level in a timely and quantitative manner, the feeding demand of the pigs is met, and the utilization rate of the feed is improved.
[0026] Please refer to Figs. 1-3 In the embodiment, the outer side of the connecting pipe 207 is provided with a connecting frame 206, a connecting hole for accommodating the discharge hose 209 is formed in the outer end of the connecting frame 206, a plurality of screws 210 are arranged at the outer end of the connecting frame 206, and the connecting frame 206 is threadedly fixed with the reaction kettle 1 through the plurality of screws 210. The electromagnetic valve 208 is controlled to discharge by using the connecting frame 206 to assist protection, the fault risk caused by equipment vibration or movement is reduced, the durability of the whole system is improved, the upper end of the reaction kettle 1 is provided with a fixed cover 212, a plurality of fastening pins are arranged around the outer end of the fixed cover 212, the fixed cover 212 is buckled and sealed with the reaction kettle 1 through the plurality of fastening pins, a feeding pipe 213 is arranged in communication with the upper end of the fixed cover 212, a connecting rod 215 is fixedly arranged at one end of the feeding pipe 213, and the feeding pipe 213 is movably arranged with the feeding pipe 213 through the connecting rod 215. The sealing equipment is fixed by using the fastening pin to connect the fixed cover 212, the sealing performance of the material heating kettle is enhanced, the leakage of the material caused by the explosion of the reaction kettle 1 is avoided, and the safety performance of the use of the reaction kettle 1 is improved.
[0027] Please refer to Figs. 2-4 In the embodiment, a driving motor 216 is fixedly arranged at the upper end of the fixed cover 212, a rotating frame 217 is fixedly arranged at one end of the driving motor 216 inside the reaction kettle 1, the liquid in the reaction kettle 1 is caused to collide by using the driving motor 216 to connect the rotating frame 217 to process, so that the liquid feed is fully mixed, the feeding time is reduced, and the working efficiency is improved, the outer wall of the reaction kettle 1 is fixedly provided with a control module 218, one end of the control module 218 is electrically connected with the driving motor 216, the driving motor 216 is controlled by using the control module 218, so that the liquid feeding system is more automated and intelligent, and manual operation is reduced.
[0028] In the work, first of all, the reactor 1 is moved to the designated area, and a plurality of support plates 211 at the bottom of the reactor 1 are used for preliminary positioning and installation, and a plurality of pre-buried frames 201 on the outer wall of the reactor 1 are combined with limiting bolts 202 for pre-buried installation, so as to optimize the installation layout of the reactor 1 and accurately install it at the designated position, avoid deviation during installation to cause shaking during device operation, reduce the risk of leakage and failure of feed during conveying, and pre-weld the butt joint pipe 205 according to the pipeline direction using the positioning disc 203, so that the position of the butt joint pipe 205 during construction can be correct and effective. Secondly, a plurality of screws 210 are used to install the connection frame 206 to the outside of the connection pipe 207 to provide protection for the electromagnetic valve 208, and the electromagnetic valve 208 controls the equipment to stably discharge according to the preset feeding amount of the program, and the feed is distributed to the corresponding position in a timely and quantitative manner, so that the control equipment can stably discharge and meet the feeding needs of pigs. Secondly, the required materials are added to the reactor 1 through the feeding pipe, the control module 218 is used to control the driving motor 216, the driving motor 216 is connected to the rotating frame 217 for processing, so that the liquid in the reactor 1 collides violently, ensuring that the liquid feed is fully mixed, making the liquid feeding system more automated and intelligent, and realizing stable feeding work of the device.
[0029] Through the above steps, by using the pre-buried frame 201 on the outer wall of the reactor 1 combined with the bottom support plate 211 for auxiliary positioning and installation, the installation layout of the reactor 1 is optimized, and it is accurately installed at the designated position, avoiding deviation during installation to cause shaking during device operation, reducing the risk of leakage and failure of feed during conveying, ensuring that the device can normally feed the pig farm feed, reducing the maintenance cost and frequency in the later period; and the positioning disc 203 is used to pre-weld the butt joint pipe 205 according to the pipeline direction, so that the position of the butt joint pipe 205 during construction can be correct and effective, avoiding displacement of the butt joint pipe 205 to cause rework and structural leakage risk in the later period, and improving the overall installation quality of the pipeline.
Claims
1. A pre-embedded scalding tank suitable for liquid feeding systems in pig farms, comprising a reaction vessel (1); characterized in that: It also includes pre-embedded components; the outer end of the reactor (1) is equipped with pre-embedded components for pre-installation and fixing. The pre-embedded components include pre-embedded frame (201), positioning plate (203), connecting pipe (205), connecting frame (206), connecting pipe (207), solenoid valve (208), support plate (211), fixing cover (212), sealing cover (214), and control module (218). Multiple sets of pre-embedded frames (201) are welded around the outer wall of the reactor (1). Each set of pre-embedded frames (201) is provided with two sets of limit bolts (202). Multiple sets of support plates (211) are welded to the bottom of the reactor (1). Limit holes are opened inside the multiple sets of support plates (211).
2. The pre-embedded scalding pot for a liquid feeding system in a pig farm according to claim 1, characterized in that: A positioning plate (203) is welded to the outer end of the reactor (1). Multiple sets of limiting pins (204) are arranged around the outer end of the positioning plate (203). The positioning plate (203) is fixedly connected to the reactor (1) through multiple sets of limiting pins (204). A connecting pipe (205) is provided inside the positioning plate (203).
3. The pre-embedded scalding pot for liquid feeding systems in pig farms according to claim 1, characterized in that: The outer end of the reactor (1) is connected to a connecting pipe (207), one end of the connecting pipe (207) is fixedly provided with a discharge hose (209), and the outer end of the discharge hose (209) is fixedly provided with a solenoid valve (208).
4. The pre-embedded scalding pot for a liquid feeding system in a pig farm according to claim 3, characterized in that: A connecting frame (206) is provided on the outside of the connecting pipe (207). The outer end of the connecting frame (206) is provided with a connecting hole for accommodating the discharge hose (209). The outer end of the connecting frame (206) is provided with multiple sets of screws (210). The connecting frame (206) is threadedly fixed to the reactor (1) by multiple sets of screws (210).
5. A pre-embedded scalding pot for liquid feeding systems in pig farms according to claim 1, characterized in that: The upper end of the reactor (1) is provided with a fixed cover (212). The outer end of the fixed cover (212) is surrounded by multiple sets of fastening pins. The fixed cover (212) is fastened and sealed to the reactor (1) by multiple sets of fastening pins. The upper end of the fixed cover (212) is connected to a feed pipe (213). One end of the feed pipe (213) is fixed with a connecting rod (215). The feed pipe (213) is movably connected to the feed pipe (213) through the connecting rod (215).
6. A pre-embedded scalding pot for liquid feeding systems in pig farms according to claim 5, characterized in that: A drive motor (216) is fixedly installed at the upper end of the fixed cover (212), and a rotating frame (217) is fixedly installed at one end of the drive motor (216) inside the reactor (1).
7. A pre-embedded scalding pot for liquid feeding systems in pig farms according to claim 6, characterized in that: A control module (218) is fixedly installed on the outer wall of the reactor (1), and one end of the control module (218) is electrically connected to the drive motor (216).