Availability: | |
---|---|
Quantity: | |
8080781
for Hitachi 240
Excavator Pin Shaft
Connecting Components4: It is mainly used to connect the boom and bucket of Hitachi 240 excavators, ensuring a firm connection between the two components and enabling them to work in coordination. It allows the bucket to rotate and swing relative to the boom, achieving various digging and loading operations.
Transmitting Force: Transmits the force from the boom to the bucket, enabling the bucket to exert the necessary force during digging, scooping, and dumping operations. It ensures the efficient transfer of power, improving the work efficiency and performance of the excavator.
Positioning and Guiding: Plays a role in positioning and guiding, ensuring that the bucket moves in the correct direction and position relative to the boom. This helps to improve the accuracy and stability of the excavator's operations, allowing for more precise digging and loading.
Excavator Pin Shaft
Connecting Components4: It is mainly used to connect the boom and bucket of Hitachi 240 excavators, ensuring a firm connection between the two components and enabling them to work in coordination. It allows the bucket to rotate and swing relative to the boom, achieving various digging and loading operations.
Transmitting Force: Transmits the force from the boom to the bucket, enabling the bucket to exert the necessary force during digging, scooping, and dumping operations. It ensures the efficient transfer of power, improving the work efficiency and performance of the excavator.
Positioning and Guiding: Plays a role in positioning and guiding, ensuring that the bucket moves in the correct direction and position relative to the boom. This helps to improve the accuracy and stability of the excavator's operations, allowing for more precise digging and loading.
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OEM | NAME | OEM | NAME | OEM | NAME |
8102646 | PIN | 3088753 | PIN | 4402460 | BUSHING |
3088573 | PIN | 3088754 | PIN | 4443881 | BUSHING |
3088574 | PIN | 8125101 | PIN | 4409122 | BUSHING |
3088575 | PIN | 8080936 | PIN | 4409178 | BUSHING |
8102957 | PIN | 3079491 | PIN | 4723760 | BUSHING |
3088578 | PIN | 8096435 | PIN | 4397790 | BUSHING |
3088579 | PIN | 8092014/8090472 | PIN | 4443885 | BUSHING |
3088581 | PIN | 8096448/8080908 | PIN | 4364501 | BUSHING |
3088577 | PIN | 3102467 | PIN | 4443883 | BUSHING |
3088580 | PIN | 3089968 | PIN | 4434036 | BUSHING |
8094393 | PIN | 3092037 | PIN | 4358100 | BUSHING |
4359565 | PIN | 3090417 | PIN | 4381855 | BUSHING |
3038444 | PIN | 3090418 | PIN | 4630702 | BUSHING |
3088751 | PIN | 4352398 | BUSHING | 4381857 | BUSHING |
8080781 | PIN | 4355875 | BUSHING | 4443884 | BUSHING |
3076627 | PIN | 4352399 | BUSHING | 4724236 | BUSHING |
3088752 | PIN | 4352400 | BUSHING | 4724237 | BUSHING |
3038448 | PIN | 4443880 | BUSHING | 4438771 | BUSHING |
4443882 | BUSHING |
Excavator bushing
Excavator pin
Loader bushing
Loader pin
Construction machinery pins and bushings
>> Partial Applicable Vehicle Model Display
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OEM | NAME | OEM | NAME | OEM | NAME |
8102646 | PIN | 3088753 | PIN | 4402460 | BUSHING |
3088573 | PIN | 3088754 | PIN | 4443881 | BUSHING |
3088574 | PIN | 8125101 | PIN | 4409122 | BUSHING |
3088575 | PIN | 8080936 | PIN | 4409178 | BUSHING |
8102957 | PIN | 3079491 | PIN | 4723760 | BUSHING |
3088578 | PIN | 8096435 | PIN | 4397790 | BUSHING |
3088579 | PIN | 8092014/8090472 | PIN | 4443885 | BUSHING |
3088581 | PIN | 8096448/8080908 | PIN | 4364501 | BUSHING |
3088577 | PIN | 3102467 | PIN | 4443883 | BUSHING |
3088580 | PIN | 3089968 | PIN | 4434036 | BUSHING |
8094393 | PIN | 3092037 | PIN | 4358100 | BUSHING |
4359565 | PIN | 3090417 | PIN | 4381855 | BUSHING |
3038444 | PIN | 3090418 | PIN | 4630702 | BUSHING |
3088751 | PIN | 4352398 | BUSHING | 4381857 | BUSHING |
8080781 | PIN | 4355875 | BUSHING | 4443884 | BUSHING |
3076627 | PIN | 4352399 | BUSHING | 4724236 | BUSHING |
3088752 | PIN | 4352400 | BUSHING | 4724237 | BUSHING |
3038448 | PIN | 4443880 | BUSHING | 4438771 | BUSHING |
4443882 | BUSHING |
Excavator bushing
Excavator pin
Loader bushing
Loader pin
Construction machinery pins and bushings
>> Partial Applicable Vehicle Model Display
Alloy Steel: High-strength alloy steels such as 40Cr and 35CrMo are often used. These materials have excellent comprehensive mechanical properties, including high strength, good toughness, and excellent wear resistance and fatigue resistance. They can withstand the large forces and stresses that occur during the excavator's operation, ensuring the pin's service life and reliability.
Alloy Steel: High-strength alloy steels such as 40Cr and 35CrMo are often used. These materials have excellent comprehensive mechanical properties, including high strength, good toughness, and excellent wear resistance and fatigue resistance. They can withstand the large forces and stresses that occur during the excavator's operation, ensuring the pin's service life and reliability.
Raw Material Preparation: Select high-quality alloy steel materials according to product design requirements. Check the quality of the purchased steel, including its appearance, dimensions, chemical composition, and mechanical properties. Cut the steel into blank materials of the required length using cutting equipment such as sawing machines.
Forging Processing: Heat the blank to an appropriate forging temperature range and use forging equipment to perform forging operations. Through processes such as upsetting, drawing out, and punching, the internal structure of the steel is refined and its mechanical properties are improved. The blank is gradually forged into a shape close to that of the pin.
Machining: Perform rough machining operations such as turning and drilling on the forged blank to remove most of the excess material. Then, carry out finish machining using grinding machines and other equipment to ensure that the pin's dimensions and surface roughness meet the design requirements. Process key structures such as keyways and threads on the pin as required.
Heat Treatment: Quench the machined pin to obtain a martensitic structure and improve its hardness and strength. Then perform tempering to eliminate internal stress, stabilize the structure, and achieve a balance between hardness and toughness.
Surface Treatment: Perform surface treatment such as zinc plating or phosphating on the heat-treated pin to improve its corrosion resistance and wear resistance.
Quality Inspection: Use measuring tools to check the pin's dimensions, and use visual inspection, microscopy, and other methods to check its surface quality. Test the pin's hardness and perform flaw detection to check for internal cracks and other defects.
Assembly and Packaging: Clean the qualified pins, apply anti-rust oil or grease, and then package them in appropriate packaging materials for storage and shipment.
Q1: What is the typical lifespan of the Custom Steel Excavator Pin for Hitachi 200?
A1: Our hardened excavator pins are built for extended durability, offering high performance over time with proper maintenance.
Q2: Do you offer Custom Excavator Pins for other Hitachi models?
A2: Yes, we specialize in custom steel pins for a range of Hitachi models. Contact us to get the perfect match for your equipment.
Q3: How does the hardened steel pin shaft improve excavator performance?
A3: The hardened steel pin shaft enhances wear resistance and load-bearing capacity, improving performance in demanding construction and mining operations.
Q4: Can your Custom Excavator Pins be used for both construction and mining?
A4: Our custom steel pins are designed to handle heavy-duty tasks across industries such as construction, mining, and earth-moving.
Q5: How do I place a bulk order for the Custom Steel Excavator Pin?
A5: Get in touch with us for bulk orders, and we will provide a personalized quote and production timeline for your custom pin shafts.
Q6: What quality control measures do you implement for Custom Excavator Pins?
A6: Our custom pins go through rigorous quality control, ensuring strict adherence to specifications, material standards, and durability for optimal performance.
Q7: Can I choose specific materials for the Custom Steel Pin?
A7: Yes, we offer various materials such as 45C, 41Cr4, and 42CrMo4, allowing you to select the ideal material for your excavator pin requirements.
Q8: How can I ensure the Custom Steel Excavator Pin fits my Hitachi equipment perfectly?
A8: Our custom steel pins are made to precise dimensions, and we offer tailored solutions to guarantee a perfect fit for your Hitachi 200 excavator.
Raw Material Preparation: Select high-quality alloy steel materials according to product design requirements. Check the quality of the purchased steel, including its appearance, dimensions, chemical composition, and mechanical properties. Cut the steel into blank materials of the required length using cutting equipment such as sawing machines.
Forging Processing: Heat the blank to an appropriate forging temperature range and use forging equipment to perform forging operations. Through processes such as upsetting, drawing out, and punching, the internal structure of the steel is refined and its mechanical properties are improved. The blank is gradually forged into a shape close to that of the pin.
Machining: Perform rough machining operations such as turning and drilling on the forged blank to remove most of the excess material. Then, carry out finish machining using grinding machines and other equipment to ensure that the pin's dimensions and surface roughness meet the design requirements. Process key structures such as keyways and threads on the pin as required.
Heat Treatment: Quench the machined pin to obtain a martensitic structure and improve its hardness and strength. Then perform tempering to eliminate internal stress, stabilize the structure, and achieve a balance between hardness and toughness.
Surface Treatment: Perform surface treatment such as zinc plating or phosphating on the heat-treated pin to improve its corrosion resistance and wear resistance.
Quality Inspection: Use measuring tools to check the pin's dimensions, and use visual inspection, microscopy, and other methods to check its surface quality. Test the pin's hardness and perform flaw detection to check for internal cracks and other defects.
Assembly and Packaging: Clean the qualified pins, apply anti-rust oil or grease, and then package them in appropriate packaging materials for storage and shipment.
Q1: What is the typical lifespan of the Custom Steel Excavator Pin for Hitachi 200?
A1: Our hardened excavator pins are built for extended durability, offering high performance over time with proper maintenance.
Q2: Do you offer Custom Excavator Pins for other Hitachi models?
A2: Yes, we specialize in custom steel pins for a range of Hitachi models. Contact us to get the perfect match for your equipment.
Q3: How does the hardened steel pin shaft improve excavator performance?
A3: The hardened steel pin shaft enhances wear resistance and load-bearing capacity, improving performance in demanding construction and mining operations.
Q4: Can your Custom Excavator Pins be used for both construction and mining?
A4: Our custom steel pins are designed to handle heavy-duty tasks across industries such as construction, mining, and earth-moving.
Q5: How do I place a bulk order for the Custom Steel Excavator Pin?
A5: Get in touch with us for bulk orders, and we will provide a personalized quote and production timeline for your custom pin shafts.
Q6: What quality control measures do you implement for Custom Excavator Pins?
A6: Our custom pins go through rigorous quality control, ensuring strict adherence to specifications, material standards, and durability for optimal performance.
Q7: Can I choose specific materials for the Custom Steel Pin?
A7: Yes, we offer various materials such as 45C, 41Cr4, and 42CrMo4, allowing you to select the ideal material for your excavator pin requirements.
Q8: How can I ensure the Custom Steel Excavator Pin fits my Hitachi equipment perfectly?
A8: Our custom steel pins are made to precise dimensions, and we offer tailored solutions to guarantee a perfect fit for your Hitachi 200 excavator.