CN115974348A - Sludge harmless treatment process and equipment - Google Patents
Sludge harmless treatment process and equipment Download PDFInfo
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- CN115974348A CN115974348A CN202211628202.1A CN202211628202A CN115974348A CN 115974348 A CN115974348 A CN 115974348A CN 202211628202 A CN202211628202 A CN 202211628202A CN 115974348 A CN115974348 A CN 115974348A
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- 239000010802 sludge Substances 0.000 title claims abstract description 110
- 238000000034 method Methods 0.000 title claims description 14
- 238000000926 separation method Methods 0.000 claims abstract description 64
- 230000005540 biological transmission Effects 0.000 claims abstract description 43
- 239000004575 stone Substances 0.000 claims abstract description 33
- 239000000463 material Substances 0.000 claims abstract description 12
- 238000012216 screening Methods 0.000 claims abstract description 4
- 241000510097 Megalonaias nervosa Species 0.000 claims description 33
- 238000012545 processing Methods 0.000 claims description 11
- 230000000903 blocking effect Effects 0.000 claims description 10
- 238000010276 construction Methods 0.000 claims description 8
- 238000005452 bending Methods 0.000 claims description 7
- 238000012546 transfer Methods 0.000 claims description 5
- 238000010586 diagram Methods 0.000 description 7
- 238000001035 drying Methods 0.000 description 5
- 238000004064 recycling Methods 0.000 description 4
- 230000009286 beneficial effect Effects 0.000 description 1
- 238000004898 kneading Methods 0.000 description 1
- 239000004570 mortar (masonry) Substances 0.000 description 1
- 239000002689 soil Substances 0.000 description 1
- 239000002699 waste material Substances 0.000 description 1
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02W—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
- Y02W30/00—Technologies for solid waste management
- Y02W30/50—Reuse, recycling or recovery technologies
- Y02W30/58—Construction or demolition [C&D] waste
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Abstract
本发明公开了一种污泥无害化处理设备,属于污泥处理设备技术领域,包括装置壳体,装置壳体电机的输出端固定连接有分离组件用于将污泥块进行破碎,分离组件的后端固定连接于装置壳体的前端,分离组件的右侧啮合连接有震动组件用于将破碎后的污泥块进行筛选,震动组件的下部固定连接于装置壳体的前端,分离组件的左侧固定连接有传动组件,传动组件的下端固定连接有上料组件用于传送污泥,上料组件的上端滑动连接于装置壳体的后端,通过震动组件的动作将石子与污泥进行震动实现二次分离,使得石子能够单独存放,污泥进行单独存放,便于后期的物料处理。
The invention discloses a sludge harmless treatment equipment, which belongs to the technical field of sludge treatment equipment, and comprises a device housing, the output end of the motor of the device housing is fixedly connected with a separation component for crushing sludge blocks, and the separation component The rear end of the device is fixedly connected to the front end of the device housing, and the right side of the separation component is meshed with a vibrating component for screening the crushed sludge. The lower part of the vibrating component is fixedly connected to the front end of the device housing. The left side is fixedly connected to the transmission assembly, and the lower end of the transmission assembly is fixedly connected to the feeding assembly for transferring sludge. The upper end of the feeding assembly is slidingly connected to the rear end of the device housing, and the stones and sludge are separated by the action of the vibration assembly. Vibration realizes secondary separation, so that stones can be stored separately, and sludge can be stored separately, which is convenient for later material treatment.
Description
技术领域technical field
本发明涉及污泥处理设备技术领域,具体为污泥无害化处理工艺及设备。The invention relates to the technical field of sludge treatment equipment, in particular to a sludge harmless treatment process and equipment.
背景技术Background technique
在建筑施工过程中会产生较多的污泥,如果直接将其排放则会污染环境,并且造成资源的浪费,现有对建筑施工过程中产生的污泥处理的方式主要是将其进行干燥,然后将干燥后的泥土重新回收利用,节约资源。During the construction process, a lot of sludge will be generated. If it is directly discharged, it will pollute the environment and cause a waste of resources. The existing treatment method for the sludge generated during the construction process is mainly to dry it. The dried soil is then recycled to save resources.
但是在对建筑污泥进行干燥处理时,因为污泥中会出现石子与泥浆板结成块状的现象,如果不进行石子与泥浆的分离,会使污泥在干燥后,石子与泥浆会结合的更加牢固,使得后续的回收利用需要对完全固定为一个整体的石子与砂浆的结合体进行进一步处理,才能使用污泥。However, when the construction sludge is dried, because the stones and mud boards will form lumps in the sludge, if the separation of the stones and the mud is not carried out, the stones and the mud will be combined after the sludge is dried. It is more firm, so that subsequent recycling requires further processing of the combination of stones and mortar that is completely fixed as a whole before the sludge can be used.
基于此,本发明设计了污泥无害化处理工艺及设备,以解决上述问题。Based on this, the present invention designs a sludge harmless treatment process and equipment to solve the above problems.
发明内容Contents of the invention
本发明的目的在于提供污泥无害化处理工艺及设备,以解决污泥在干燥前,如果不对污泥中的石子与泥浆板结成块进行分离,会使得后续干燥后石子与泥浆结合的更牢固,使得后续的回收利用需要再次将物料进行加工分离才能使用的的问题。The purpose of the present invention is to provide a sludge harmless treatment process and equipment to solve the problem of combining the stones with the mud after the subsequent drying if the stones in the sludge are not separated from the mud board before the sludge is dried. Stronger, so that the subsequent recycling needs to process and separate the materials again before they can be used.
为实现上述目的,本发明提供如下技术方案:污泥无害化处理设备,包括装置壳体,所述装置壳体电机的输出端固定连接有分离组件用于将污泥块进行破碎,所述分离组件的后端固定连接于装置壳体的前端,所述分离组件的右侧啮合连接有震动组件用于将破碎后的污泥块进行筛选,所述震动组件的下部固定连接于装置壳体的前端,所述分离组件的左侧固定连接有传动组件,所述传动组件的下端固定连接有上料组件用于传送污泥,所述上料组件的上端滑动连接于装置壳体的后端;In order to achieve the above object, the present invention provides the following technical solution: sludge harmless treatment equipment, including a device housing, the output end of the device housing motor is fixedly connected with a separation component for crushing the sludge block, the The rear end of the separation assembly is fixedly connected to the front end of the device housing, and the right side of the separation assembly is meshed with a vibration assembly for screening the crushed sludge, and the lower part of the vibration assembly is fixedly connected to the device housing The front end of the separation assembly is fixedly connected to the transmission assembly on the left side, the lower end of the transmission assembly is fixedly connected to the feeding assembly for conveying sludge, and the upper end of the feeding assembly is slidably connected to the rear end of the device housing ;
所述上料组件包括:内齿件、驱动柄、弹性插销,所述内齿件的上端固定连接于装置壳体的下部,所述内齿件的右端转动连接于驱动柄的下端,所述驱动柄的上端滑动连接于装置壳体的内壁,所述弹性插销固定连接于装置壳体的后侧;The feeding assembly includes: an internal gear, a drive handle, and an elastic bolt. The upper end of the internal gear is fixedly connected to the lower part of the device housing, and the right end of the internal gear is rotatably connected to the lower end of the drive handle. The upper end of the driving handle is slidably connected to the inner wall of the device housing, and the elastic bolt is fixedly connected to the rear side of the device housing;
所述内齿件还包括:转动柄、齿轮三、固定柄,所述内齿件啮合连接齿轮三,所述齿轮三的左端固定连接于转动柄的右侧,所述转动柄的左侧贯穿转动连接于装置壳体的下部,所述转动柄的左端固定连接于传动组件的下端,所述齿轮三的右端固定连接于固定柄的左侧,所述固定柄的右端转动连接于驱动柄的下端;The internal gear part also includes: a rotating handle, a gear three, and a fixed handle. The internal gear part is engaged with the gear three, and the left end of the gear three is fixedly connected to the right side of the rotating handle, and the left side of the rotating handle runs through Rotationally connected to the lower part of the device housing, the left end of the rotating handle is fixedly connected to the lower end of the transmission assembly, the right end of the gear three is fixedly connected to the left side of the fixed handle, and the right end of the fixed handle is rotatably connected to the drive handle lower end;
所述驱动柄还包括:滑动销、斜板、弯曲件,所述驱动柄的上端转动连接于滑动销的下端,所述滑动销的上部滑动连接于装置壳体的下部,所述滑动销的上端固定连接于斜板的下端,所述斜板的后端固定连接于弯曲件的下端;The driving handle also includes: a sliding pin, a swash plate, and a bending member. The upper end of the driving handle is rotatably connected to the lower end of the sliding pin, and the upper part of the sliding pin is slidably connected to the lower part of the device housing. The upper end is fixedly connected to the lower end of the inclined plate, and the rear end of the inclined plate is fixedly connected to the lower end of the bending piece;
所述弹性插销还包括:固定限位滑板、阻挡板,所述弹性插销的后端固定连接于固定限位滑板的下端,所述固定限位滑板开始的滑槽滑动连接于阻挡板的下端,所述阻挡板的上端滑动连接于装置壳体后端的内壁;The elastic bolt also includes: a fixed limit slide plate and a blocking plate, the rear end of the elastic bolt is fixedly connected to the lower end of the fixed limit slide plate, and the chute at the beginning of the fixed limit slide plate is slidably connected to the lower end of the block plate, The upper end of the blocking plate is slidably connected to the inner wall of the rear end of the device housing;
所述分离组件包括:螺杆件、固定搓板、长柄、双头齿轮件,所述螺杆件的右端固定连接于装置壳体电机的输出端,所述螺杆件的左端贯穿转动连接于固定搓板的后端,所螺杆件的前端转动连接于长柄的一端,所述长柄的另一端转动连接于双头齿轮件的中部,所述双头齿轮件的下端啮合连接于固定搓板的中部,所述固定搓板的后端固定连接于装置壳体的前端;The separation assembly includes: a screw member, a fixed washboard, a long handle, and a double-headed gear member. The right end of the screw member is fixedly connected to the output end of the motor of the device housing, and the left end of the screw member is connected to the fixed washboard by rotation. At the rear end, the front end of the screw member is rotatably connected to one end of the long handle, and the other end of the long handle is rotatably connected to the middle part of the double-headed gear part, and the lower end of the double-headed gear part is meshed and connected to the middle part of the fixed washboard. The rear end of the fixed washboard is fixedly connected to the front end of the device housing;
所述螺杆件还包括:齿轮一、齿轮二、短柄,所述螺杆件的左端固定连接齿轮一,所述齿轮一啮合连接齿轮二,所述齿轮二的右端固定连接短柄,所述短柄的右侧转动连接长柄;The screw part also includes: gear one, gear two, and a short handle. The left end of the screw part is fixedly connected to gear one, and the gear one is engaged with gear two. The right end of the gear two is fixedly connected to a short handle. The right side of the handle is turned to connect the long handle;
所述固定搓板还包括:固定齿板、移动齿板、移动搓板,所述固定搓板的左右两侧分别滑动连接于移动搓板的左右两端,所述固定搓板的左端固定连接于固定齿板的左端,所述固定齿板的右端啮合连接于双头齿轮件,所述双头齿轮件的上端啮合连接移动齿板,所述移动齿板的下端固定连接于移动搓板的上端;The fixed washboard also includes: a fixed tooth plate, a movable tooth plate, and a mobile washboard. On the left end, the right end of the fixed gear plate is meshed with the double-headed gear, the upper end of the double-headed gear is meshed with the movable toothed plate, and the lower end of the movable toothed plate is fixedly connected with the upper end of the movable washboard;
所述传动组件还包括:转动盘一、连杆一、转动盘二,所述转动盘一的右端固定连接于分离组件的左端,所述转动盘一的左端转动连接于连杆一的上端,所述连杆一的下端转动连接于转动盘二的左端,所述转动盘二的右端固定连接于上料组件的左端;The transmission assembly also includes: a
所述震动组件包括:传动杆、连接柄、筛框、储藏箱、固定弹簧筒,所述传动杆的上端啮合连接于分离组件的右侧,所述传动杆的前部转动连接于连接柄,所述连接柄的上端固定连接于筛框的右端,所述筛框的下端固定连接于固定弹簧筒的上端,所述固定弹簧筒的下端固定连接于储藏箱的中部;The vibrating assembly includes: a transmission rod, a connecting handle, a screen frame, a storage box, and a fixed spring barrel. The upper end of the transmission rod is meshed and connected to the right side of the separation assembly, and the front part of the transmission rod is rotatably connected to the connecting handle. The upper end of the connecting handle is fixedly connected to the right end of the screen frame, the lower end of the screen frame is fixedly connected to the upper end of the fixed spring cylinder, and the lower end of the fixed spring cylinder is fixedly connected to the middle part of the storage box;
所述传动杆还包括:转动杆、曲柄,所述传动杆的下端啮合连接于转动杆的后端,所述转动杆的前端固定连接于曲柄,所述曲柄的中部转动连接于连接柄,所述曲柄的前端固定连接于储藏箱的右端;The transmission rod also includes: a rotation rod and a crank. The lower end of the transmission rod is meshed and connected to the rear end of the rotation rod, the front end of the rotation rod is fixedly connected to the crank, and the middle part of the crank is connected to the connecting handle in rotation. The front end of the crank is fixedly connected to the right end of the storage box;
所述连接柄还包括:伸缩销板,固定筒,橡胶块,所述伸缩销板下端转动连接于连接柄的上端,所述伸缩销板的上端插接于固定筒的内壁,所述固定筒的上端固定连接于筛框的右端,所述固定筒的下端固定连接于橡胶块的上端;The connecting handle also includes: a telescopic pin plate, a fixed cylinder, and a rubber block. The lower end of the telescopic pin plate is rotatably connected to the upper end of the connecting handle, and the upper end of the telescopic pin plate is inserted into the inner wall of the fixed cylinder. The fixed cylinder The upper end of the fixed cylinder is fixedly connected to the right end of the screen frame, and the lower end of the fixed cylinder is fixedly connected to the upper end of the rubber block;
如上述的污泥无害化处理工艺,该分离具体步骤为,Such as the above-mentioned sludge harmless treatment process, the specific steps of the separation are,
步骤一:启动装置壳体上的电机,带动分离组件动作,从而使得分离组件通过传动组件驱动上料组件动作,使得上料组件将建筑污泥进行定量传送至分离组件上;Step 1: Start the motor on the device housing to drive the separation assembly to move, so that the separation assembly drives the feeding assembly through the transmission assembly, so that the feeding assembly can quantitatively transfer the construction sludge to the separation assembly;
步骤二:通过分离组件的动作,将成团状的污泥进行挤压揉搓,使得成团状的污泥被分离,将石子与污泥分离开。然后将分离后的物料送至震动组件中;Step 2: Squeeze and knead the agglomerated sludge through the action of the separation component, so that the agglomerated sludge is separated, and the stones are separated from the sludge. Then the separated material is sent to the vibrating assembly;
步骤三:通过震动组件的动作将石子与污泥进行震动实现二次分离,使得石子能够单独存放,污泥进行单独存放,便于后期的物料处理。Step 3: Vibrate the stones and sludge through the action of the vibration component to achieve secondary separation, so that the stones can be stored separately, and the sludge can be stored separately, which is convenient for later material processing.
与现有技术相比,本发明的有益效果是:Compared with prior art, the beneficial effect of the present invention is:
1.本发明通过上料组件的动作,能使得存放在装置壳体后端箱体内的污泥,被定量移送至分离组件内进行加工,避免了一次投放进行分离组件内的污泥过程,而导致的堵塞,或者使得物料被堆积在一起,影响加工的效率;1. Through the action of the feeding assembly, the present invention can transfer the sludge stored in the rear end of the device housing to the separation assembly for processing, avoiding the sludge process in the separation assembly at one time, and The resulting blockage, or the material is piled up together, affecting the efficiency of processing;
2.本发明通过分离组的动作将流入分离组内污泥块进行反复挤压揉搓,使得污泥块中的污泥与石子进行分离,当揉搓至石子大小时流出分离组落入震动组内,这样解决了直接烘干污泥,导致污泥块干燥后更加牢固,使得后续的污泥回收利用需要将干燥固定后的污泥块进行分离破碎,而且分离组通过传动组驱动上料组进行定量上料,解决了一次上料保持适量;2. The present invention repeatedly squeezes and kneads the sludge block flowing into the separation group through the action of the separation group, so that the sludge in the sludge block is separated from the stones, and when it is rubbed to the size of a stone, it flows out of the separation group and falls into the vibration group , which solves the problem of directly drying the sludge, which makes the sludge block more firm after drying, so that the subsequent sludge recycling needs to separate and break the dried and fixed sludge block, and the separation group drives the feeding group through the transmission group. Quantitative feeding solves the problem of maintaining an appropriate amount of feeding at one time;
3.本发明通过震动组件的动作,能使得掉落至筛框上的污泥被震动,从而使得石子上粘连的小污泥被进一步的震落,使得污泥与石子分离的更干净,而且石子将留在筛框上,而污泥将从筛框上的小孔被震落至储藏箱内进行存放,这样也实现了石子与污泥的分开存放,方便了后续的加工处理。3. The present invention can vibrate the sludge falling on the screen frame through the action of the vibrating component, so that the small sludge adhered to the stones can be further shaken off, so that the sludge and the stones can be separated more cleanly, and The stones will remain on the screen frame, and the sludge will be shaken from the small holes on the screen frame to the storage box for storage, which also realizes the separate storage of stones and sludge, which facilitates subsequent processing.
附图说明Description of drawings
图1为本发明的前侧结构示意图;Fig. 1 is the front side structure schematic diagram of the present invention;
图2为图1的A部放大结构示意图;Fig. 2 is a schematic diagram of the enlarged structure of part A of Fig. 1;
图3为本发明的右侧结构示意图;Fig. 3 is the structural representation on the right side of the present invention;
图4为图3的B部放大结构示意图;Fig. 4 is a schematic diagram showing the enlarged structure of part B of Fig. 3;
图5为图3的D部放大结构示意图;Fig. 5 is a schematic diagram of an enlarged structure of part D of Fig. 3;
图6为图3的C部放大结构示意图;Fig. 6 is a schematic diagram of the enlarged structure of part C of Fig. 3;
图7为本发明的后侧结构示意图;Figure 7 is a schematic view of the rear structure of the present invention;
图8为图7的E部放大结构示意图;Fig. 8 is a schematic diagram showing an enlarged structure of part E of Fig. 7;
图9为本发明的左侧结构示意图;Fig. 9 is a schematic diagram of the structure on the left side of the present invention;
图10为本发明的俯视结构示意图;Figure 10 is a schematic top view of the present invention;
图11为污泥的处理流程图。Figure 11 is a flow chart of sludge treatment.
附图中,各标号所代表的部件列表如下:In the accompanying drawings, the list of parts represented by each label is as follows:
1、装置壳体;2、震动组件;21、传动杆;211、转动杆;212、曲柄;22、连接柄;221、伸缩销板;222、固定筒;202、橡胶块;23、筛框;24、储藏箱;241、固定弹簧筒;3、分离组件;31、螺杆件;311、齿轮一;312 齿轮二;313、短柄;32、固定搓板;321、固定齿板;322、移动齿板;323、移动搓板;33、长柄;34、双头齿轮件;4、上料组件;41、内齿件;411、转动柄;412、齿轮三;413、固定柄;42、驱动柄;421、滑动销;422、斜板;423、弯曲件;43、弹性插销;431、固定限位滑板;432、阻挡板;5、传动组件;51、转动盘一;52、连杆一;53、转动盘二。1. Device shell; 2. Vibration component; 21. Transmission rod; 211. Rotation rod; 212. Crank; 22. Connecting handle; 221. Telescopic pin plate; 222. Fixed cylinder; 202. Rubber block; 23.
具体实施方式Detailed ways
请参阅图1-11,本实施例提供一种技术方案:污泥无害化处理设备,包括装置壳体1,所述装置壳体1电机的输出端固定连接有分离组件3用于将污泥块进行破碎;所述分离组件3的后端固定连接于装置壳体1的前端,所述分离组件3的右侧啮合连接有震动组件2用于将破碎后的污泥块进行筛选,所述震动组件2的下部固定连接于装置壳体1的前端,所述分离组件3的左侧固定连接有传动组件5,所述传动组件5的下端固定连接有上料组件4用于传送污泥,所述上料组件4的上端滑动连接于装置壳体1的后端;Please refer to Figures 1-11, this embodiment provides a technical solution: sludge harmless treatment equipment, including a
将建筑污泥倒入装置壳体1后端的箱体内,然后启动装置壳体1上的电机,这时电机带动分离组件3动作,从而使得分离组件3通过传动组件5驱动上料组件4动作,而装置壳体1后端箱体存放的污泥将会流向上料组件4滑动连接的装置壳体1前端的箱体内,使得上料组件4将建筑污泥进行定量传送至分离组件3上;通过分离组件3的揉搓挤压动作,将成团状的污泥进行挤压揉搓,使得成团状的污泥被分离开,将石子与污泥分离开,然后分离后的污泥将顺着分离组件3向下滑动,使得将分离后的物料送至震动组件2中;这时分离组件3带动的震动组件2动作,通过震动组件2的动作将石子与污泥进行震动实现二次分离,使得石子能够单独存放,污泥进行单独存放,便于后期的物料处理。Pour the construction sludge into the box at the rear end of the
作为本实施例的进一步方案,所述上料组件4包括:内齿件41、驱动柄42、弹性插销43,所述内齿件41的上端固定连接于装置壳体1的下部,所述内齿件41的右端转动连接于驱动柄42的下端,所述驱动柄42的上端滑动连接于装置壳体1的内壁,所述弹性插销43固定连接于装置壳体1的后侧;As a further solution of this embodiment, the feeding assembly 4 includes: an
所述内齿件41还包括:转动柄411、齿轮三412、固定柄413,所述内齿件41啮合连接齿轮三412,所述齿轮三412的左端固定连接于转动柄411的右侧,所述转动柄411的左侧贯穿转动连接于装置壳体1的下部,所述转动柄411的左端固定连接于传动组件5的下端,所述齿轮三412的右端固定连接于固定柄413的左侧,所述固定柄413的右端转动连接于驱动柄42的下端;The
所述驱动柄42还包括:滑动销421、斜板422、弯曲件423,所述驱动柄42的上端转动连接于滑动销421的下端,所述滑动销421的上部滑动连接于装置壳体1的下部,所述滑动销421的上端固定连接于斜板422的下端,所述斜板422的后端固定连接于弯曲件423的下端;The driving handle 42 also includes: a sliding
所述弹性插销43还包括:固定限位滑板431、阻挡板432,所述弹性插销43的后端固定连接于固定限位滑板431的下端,所述固定限位滑板431开始的滑槽滑动连接于阻挡板432的下端,所述阻挡板432的上端滑动连接于装置壳体1后端的内壁;The
当分离组件3通过传动组件5带动上料组件4动作时,因为转动柄411于传动组件5的下端固定连接,所以传动组件5会带动转动柄411转动,二转动柄411又会带动齿轮三412转动,使得齿轮三412沿着内齿件41内部的齿动移动,二齿轮三412又会带动固定柄413转动,使得固定柄413带动驱动柄42向上顶,使得驱动柄42顶着滑动销421上移,从而使得斜板422在装置壳体1前端的箱体内滑动上移,从而带动了从装置壳体1后端箱体内流到斜板422上的污泥上移,在上移到一半时,弯曲件423会将弹性插销43抵住后移,这时斜板422继续上移,弹性插销43将被一直抵住,直至斜板422下移到抵住弹性插销43的位置之下,弹性插销43才会弹出,二污泥将顺着斜板422滑落至分离组件3内进行进一步加工,二弹性插销43被向后抵住移动时,弹性插销43将带动固定限位滑板431一同后移,使得固定限位滑板431上滑动连接的阻挡板432底部顺着固定限位滑板431开始的滑槽向上移动,从而将装置壳体1后端箱体存放的污泥堵住,避免污泥继续流出。When the
通过上料组件4的动作,能使得存放在装置壳体1后端箱体内的污泥,被定量移送至分离组件3内进行加工,避免了一次投放进行分离组件3内的污泥过程,而导致的堵塞,或者使得物料被堆积在一起,影响加工的效率。Through the action of the feeding assembly 4, the sludge stored in the box at the rear end of the
作为本实施例的进一步方案,所述分离组件3包括:螺杆件31、固定搓板32、长柄33、双头齿轮件34,所述螺杆件31的右端固定连接于装置壳体1电机的输出端,所述螺杆件31的左端贯穿转动连接于固定搓板32的后端,所螺杆件31的前端转动连接于长柄33的一端,所述长柄33的另一端转动连接于双头齿轮件34的中部,所述双头齿轮件34的下端啮合连接于固定搓板32的中部,所述固定搓板32的后端固定连接于装置壳体1的前端;As a further solution of this embodiment, the
所述螺杆件31还包括:齿轮一311、齿轮二312、短柄313,所述螺杆件31的左端固定连接齿轮一311,所述齿轮一311啮合连接齿轮二312,所述齿轮二312的右端固定连接短柄313,所述短柄313的右侧转动连接长柄33;Described
所述固定搓板32还包括:固定齿板321、移动齿板322、移动搓板323,所述固定搓板32的左右两侧分别滑动连接于移动搓板323的左右两端,所述固定搓板32的左端固定连接于固定齿板321的左端,所述固定齿板321的右端啮合连接于双头齿轮件34,所述双头齿轮件34的上端啮合连接移动齿板322,所述移动齿板322的下端固定连接于移动搓板323的上端;The fixed
所述传动组件5还包括:转动盘一51、连杆一52、转动盘二53,所述转动盘一51的右端固定连接于分离组件3的左端,所述转动盘一51的左端转动连接于连杆一52的上端,所述连杆一52的下端转动连接于转动盘二53的左端,所述转动盘二53的右端固定连接于上料组件4的左端;The
当电机带动螺杆件31转动时,螺杆件31会驱动齿轮一311转动,使得齿轮一311带动齿轮二312转动,二齿轮二312会带动短柄313同步转动,使得短柄313带动长柄33做前后往复移动,从而使得长柄33带动双头齿轮件34同步移动,使得双头齿轮件34带动移动齿板322前后往复移动,而移动齿板322会带动移动搓板323同步移动,而移动搓板323左右两端与固定搓板32左右两端滑动连接的,所以移动搓板323前后运动会被限制,防止出现左右偏移,这时流落至移动搓板323与固定搓板32之间的污泥,将被移动搓板323前后移动所反复揉搓,直至污泥块被搓至石子大小才会落入震动组件2内,而螺杆件31转动也会带动转动盘一51同步转动,使得转动的转动盘一51驱动连杆一52往复移动,使得连杆一52带动转动盘二53进行转动,使得转动盘二53带动转动柄411转动,从而使得分离组件3通过传动组件5驱动上料组件4进行动作。When the motor drives the
通过分离组件3的动作将流入分离组件3内污泥块进行反复挤压揉搓,使得污泥块中的污泥与石子进行分离,当揉搓至石子大小时流出分离组件3落入震动组件2内,这样解决了直接烘干污泥,导致污泥块干燥后更加牢固,使得后续的污泥回收利用需要将干燥固定后的污泥块进行分离破碎,而且分离组件3通过传动组件5驱动上料组件4进行定量上料,解决了一次上料保持适量。Through the action of the
作为本实施例的进一步方案,所述震动组件2包括:传动杆21、连接柄22、筛框23、储藏箱24、固定弹簧筒241,所述传动杆21的上端啮合连接于分离组件3的右侧,所述传动杆21的前部转动连接于连接柄22,所述连接柄22的上端固定连接于筛框23的右端,所述筛框23的下端固定连接于固定弹簧筒241的上端,所述固定弹簧筒241的下端固定连接于储藏箱24的中部;As a further solution of this embodiment, the vibrating
所述传动杆21还包括:转动杆211、曲柄212,所述传动杆21的下端啮合连接于转动杆211的后端,所述转动杆211的前端固定连接于曲柄212,所述曲柄212的中部转动连接于连接柄22,所述曲柄212的前端固定连接于储藏箱24的右端;The
所述连接柄22还包括:伸缩销板221,固定筒222,橡胶块202,所述伸缩销板221下端转动连接于连接柄22的上端,所述伸缩销板221的上端插接于固定筒222的内壁,所述固定筒222的上端固定连接于筛框23的右端,所述固定筒222的下端固定连接于橡胶块202的上端;The connecting
当螺杆件31带动传动杆21转动时,传动杆21又会带动转动杆211同步转动,使得转动杆211带动曲柄212转动,从而使得连接柄22被带动做往复上下移动,而连接柄22又会带动伸缩销板221在连接柄22内上下移动,防止伸缩销板221出现偏移,二伸缩销板221会在上移过程中敲击橡胶块202,使得橡胶块202带动筛框23的右端上移,从而使得固定弹簧筒241被挤压变形,而当伸缩销板221复位时,被挤压的固定弹簧筒241将会复位,重复上诉动作,会使得固定弹簧筒241在挤压与复位的动作中带动筛框23做左右方向的摇晃,从而将流落至筛框23上的污泥进行震动。When the
通过震动组件2的动作,能使得掉落至筛框23上的污泥被震动,从而使得石子上粘连的小污泥被进一步的震落,使得污泥与石子分离的更干净,而且石子将留在筛框23上,而污泥将从筛框23上的小孔被震落至储藏箱24内进行存放,这样也实现了石子与污泥的分开存放,方便了后续的加工处理。Through the action of the vibrating
如上述的污泥无害化处理工艺,该分离具体步骤为,Such as the above-mentioned sludge harmless treatment process, the specific steps of the separation are,
步骤一:启动装置壳体1上的电机,带动分离组件3动作,从而使得分离组件3通过传动组件5驱动上料组件4动作,使得上料组件4将建筑污泥进行定量传送至分离组件3上;Step 1: Start the motor on the
步骤二:通过分离组件3的动作,将成团状的污泥进行挤压揉搓,使得成团状的污泥被分离,将石子与污泥分离开。然后将分离后的物料送至震动组件2中;Step 2: Squeeze and knead the agglomerated sludge through the action of the
步骤三:通过震动组件2的动作将石子与污泥进行震动实现二次分离,使得石子能够单独存放,污泥进行单独存放,便于后期的物料处理。Step 3: Through the action of the vibrating
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